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data-work_id="49257665" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/49257665/Comparative_Investigation_of_the_Efficacy_of_Three_Different_Adsorbents_against_OTA_Induced_Toxicity_in_Broiler_Chickens">Comparative Investigation of the Efficacy of Three Different Adsorbents against OTA-Induced Toxicity in Broiler Chickens</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">The aim of our study was to determine the efficacy of three different adsorbents, inorganic (modified zeolite), organic (esterified glucomannans) and mixed (inorganic and organic components, with the addition of enzymes), in protecting... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_49257665" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">The aim of our study was to determine the efficacy of three different adsorbents, inorganic (modified zeolite), organic (esterified glucomannans) and mixed (inorganic and organic components, with the addition of enzymes), in protecting broilers from the toxic effects of ochratoxin A in feed. Broilers were fed diets containing 2 mg/kg of ochratoxin A (OTA) and supplemented with adsorbents at the recommended concentration of 2 g/kg for 21 days. The presence of OTA led to a notable reduction in body weight, lower weight gain, increased feed conversion and induced histopathological changes in the liver and kidneys. The presence of inorganic, organic and mixed adsorbents in contaminated feed only partially reduced the negative effects of OTA on the broiler performances. Broilers that were fed with adsorbent-supplemented feed reached higher body weight (17.96%, 19.09% and 13.59%), compared to the group that received only OTA. The presence of adsorbents partially alleviated the reduction i...</div></div></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/49257665" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="a8c3eb3504e326b3d70c84201276512f" rel="nofollow" data-download="{"attachment_id":67641501,"asset_id":49257665,"asset_type":"Work","always_allow_download":false,"track":null,"button_location":"work_strip","source":null,"hide_modal":null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/67641501/download_file?st=MTczMzI1MzQ3NCw4LjIyMi4yMDguMTQ2&s=work_strip"><i class="fa fa-arrow-circle-o-down fa-lg"></i><span class="u-textUppercase u-ml1x" data-content="button_text">Download</span></a></div></li><li class="InlineList-item"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by <span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="94864572" href="https://independent.academia.edu/trailovic">sasa trailovic</a><script data-card-contents-for-user="94864572" type="text/json">{"id":94864572,"first_name":"sasa","last_name":"trailovic","domain_name":"independent","page_name":"trailovic","display_name":"sasa trailovic","profile_url":"https://independent.academia.edu/trailovic?f_ri=55543","photo":"https://0.academia-photos.com/94864572/31403404/28841355/s65_sasa.trailovic.jpg"}</script></span></span></li><li class="js-paper-rank-work_49257665 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="49257665"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 49257665, container: ".js-paper-rank-work_49257665", }); 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Broilers were fed diets containing 2 mg/kg of ochratoxin A (OTA) and supplemented with adsorbents at the recommended concentration of 2 g/kg for 21 days. The presence of OTA led to a notable reduction in body weight, lower weight gain, increased feed conversion and induced histopathological changes in the liver and kidneys. The presence of inorganic, organic and mixed adsorbents in contaminated feed only partially reduced the negative effects of OTA on the broiler performances. Broilers that were fed with adsorbent-supplemented feed reached higher body weight (17.96%, 19.09% and 13.59%), compared to the group that received only OTA. The presence of adsorbents partially alleviated the reduction i...","downloadable_attachments":[{"id":67641501,"asset_id":49257665,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":94864572,"first_name":"sasa","last_name":"trailovic","domain_name":"independent","page_name":"trailovic","display_name":"sasa trailovic","profile_url":"https://independent.academia.edu/trailovic?f_ri=55543","photo":"https://0.academia-photos.com/94864572/31403404/28841355/s65_sasa.trailovic.jpg"}],"research_interests":[{"id":12426,"name":"Treatment 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href="https://www.academia.edu/45244544/Synthesis_of_1_5_Benzodiazepine_and_Its_Derivatives_by_Condensation_Reaction_Using_H_MCM_22_as_Catalyst">Synthesis of 1,5-Benzodiazepine and Its Derivatives by Condensation Reaction Using H-MCM-22 as Catalyst</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">A simple and versatile method for the synthesis of 1,5-benzodiazepines is via condensation of o-phenylenediamines (OPDA) and ketones in the presence of catalytic amount of H-MCM-22 using acetonitrile as solvent at room temperature. In all... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_45244544" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">A simple and versatile method for the synthesis of 1,5-benzodiazepines is via condensation of o-phenylenediamines (OPDA) and ketones in the presence of catalytic amount of H-MCM-22 using acetonitrile as solvent at room temperature. In all the cases, the reactions are highly selective and are completed within 1–3 h. The method is applicable to both cyclic and acyclic ketones without significant differences. The reaction proceeds efficiently under ambient conditions with good-to-excellent yields.</div></div></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/45244544" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="29c35e6bf6c7a05c9d6022478f0aa81f" rel="nofollow" data-download="{"attachment_id":65814353,"asset_id":45244544,"asset_type":"Work","always_allow_download":false,"track":null,"button_location":"work_strip","source":null,"hide_modal":null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/65814353/download_file?st=MTczMzI1MzQ3NCw4LjIyMi4yMDguMTQ2&s=work_strip"><i class="fa fa-arrow-circle-o-down fa-lg"></i><span class="u-textUppercase u-ml1x" data-content="button_text">Download</span></a></div></li><li class="InlineList-item"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by <span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="59214989" href="https://gdcboysang.academia.edu/WaheedKhanday">Waheed Khanday</a><script data-card-contents-for-user="59214989" type="text/json">{"id":59214989,"first_name":"Waheed","last_name":"Khanday","domain_name":"gdcboysang","page_name":"WaheedKhanday","display_name":"Waheed Khanday","profile_url":"https://gdcboysang.academia.edu/WaheedKhanday?f_ri=55543","photo":"https://0.academia-photos.com/59214989/103940998/93122796/s65_waheed.khanday.jpeg"}</script></span></span></li><li class="js-paper-rank-work_45244544 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="45244544"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 45244544, container: ".js-paper-rank-work_45244544", }); 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In all the cases, the reactions are highly selective and are completed within 1–3 h. The method is applicable to both cyclic and acyclic ketones without significant differences. The reaction proceeds efficiently under ambient conditions with good-to-excellent yields.","downloadable_attachments":[{"id":65814353,"asset_id":45244544,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":59214989,"first_name":"Waheed","last_name":"Khanday","domain_name":"gdcboysang","page_name":"WaheedKhanday","display_name":"Waheed Khanday","profile_url":"https://gdcboysang.academia.edu/WaheedKhanday?f_ri=55543","photo":"https://0.academia-photos.com/59214989/103940998/93122796/s65_waheed.khanday.jpeg"}],"research_interests":[{"id":923,"name":"Technology","url":"https://www.academia.edu/Documents/in/Technology?f_ri=55543","nofollow":false},{"id":1066,"name":"Biomedicine","url":"https://www.academia.edu/Documents/in/Biomedicine?f_ri=55543","nofollow":false},{"id":4749,"name":"Catalysis","url":"https://www.academia.edu/Documents/in/Catalysis?f_ri=55543","nofollow":false},{"id":47884,"name":"Biological 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Shen","profile_url":"https://independent.academia.edu/QunShen?f_ri=55543","photo":"/images/s65_no_pic.png"}],"research_interests":[{"id":523,"name":"Chemistry","url":"https://www.academia.edu/Documents/in/Chemistry?f_ri=55543","nofollow":false},{"id":4749,"name":"Catalysis","url":"https://www.academia.edu/Documents/in/Catalysis?f_ri=55543","nofollow":false},{"id":28235,"name":"Multidisciplinary","url":"https://www.academia.edu/Documents/in/Multidisciplinary?f_ri=55543","nofollow":false},{"id":34633,"name":"Environmental science and technology","url":"https://www.academia.edu/Documents/in/Environmental_science_and_technology?f_ri=55543","nofollow":false},{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543"},{"id":58054,"name":"Environmental 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Technology","url":"https://www.academia.edu/Documents/in/Science_Technology?f_ri=55543"},{"id":457859,"name":"Cost Benefit Analysis","url":"https://www.academia.edu/Documents/in/Cost_Benefit_Analysis?f_ri=55543"},{"id":549280,"name":"Reproducibility of Results","url":"https://www.academia.edu/Documents/in/Reproducibility_of_Results?f_ri=55543"},{"id":809002,"name":"Nitrogen Oxides","url":"https://www.academia.edu/Documents/in/Nitrogen_Oxides?f_ri=55543"},{"id":1256747,"name":"Oxidation-Reduction","url":"https://www.academia.edu/Documents/in/Oxidation-Reduction?f_ri=55543"},{"id":1257960,"name":"Ferric Compounds","url":"https://www.academia.edu/Documents/in/Ferric_Compounds?f_ri=55543"},{"id":1257974,"name":"Ions","url":"https://www.academia.edu/Documents/in/Ions?f_ri=55543"},{"id":1490196,"name":"Active sites","url":"https://www.academia.edu/Documents/in/Active_sites?f_ri=55543"}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_4617072" data-work_id="4617072" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/4617072/Characterization_and_Gravimetric_Analysis_of_the_Dissolved_Quartz_in_the_Conversion_of_Coal_Fly_Ash_to_Sodalite">Characterization and Gravimetric Analysis of the Dissolved Quartz in the Conversion of Coal Fly Ash to Sodalite</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">Coal fly ash (CFA) is a waste product produced from the electrical power plant and hazardous towards the environment. However, the high composition of silica and alumina in the CFA makes it useful as raw materials in the zeolite... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_4617072" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">Coal fly ash (CFA) is a waste product produced from the electrical power plant and hazardous towards the environment. However, the high composition of silica and alumina in the CFA makes it useful as raw materials in the zeolite synthesis. However, the presence of silica in the form of quartz in the CFA does not facilitate the transformation of CFA to zeolite at 100oC and autogeneous pressure. In this study, CFA was converted to zeolites in various NaOH concentrations by microwave heating at various heating time. All synthesized product were characterized by X-ray diffraction(XRD), and gravimetric analysis. XRD has shown that quite pure sodalite in nanosize has been formed as early as 15 minutes and increase with time. Prolong heating up to 45 minutes has reduced the content of quartz to ca 20%. Gravimetric analysis performed on the liquor of the reaction showed that the dissolved silica decrease with increase of heating time indicating that most of the dissolved quartz is used up to form sodalite framework. Hence, quartz of CFA did help in enhancing the crystallinity of the formed sodalite after prolong heating.</div></div></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/4617072" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="1869fad3467b9ad5d44756166b429d8d" rel="nofollow" data-download="{"attachment_id":31975363,"asset_id":4617072,"asset_type":"Work","always_allow_download":false,"track":null,"button_location":"work_strip","source":null,"hide_modal":null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/31975363/download_file?st=MTczMzI1MzQ3NCw4LjIyMi4yMDguMTQ2&s=work_strip"><i class="fa fa-arrow-circle-o-down fa-lg"></i><span class="u-textUppercase u-ml1x" data-content="button_text">Download</span></a></div></li><li class="InlineList-item"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by <span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="5741579" href="https://teknologimalaysia.academia.edu/HendrikOktendyLintang">Hendrik Oktendy Lintang</a><script data-card-contents-for-user="5741579" type="text/json">{"id":5741579,"first_name":"Hendrik Oktendy","last_name":"Lintang","domain_name":"teknologimalaysia","page_name":"HendrikOktendyLintang","display_name":"Hendrik Oktendy Lintang","profile_url":"https://teknologimalaysia.academia.edu/HendrikOktendyLintang?f_ri=55543","photo":"https://0.academia-photos.com/5741579/2482179/2883529/s65_hendrik_oktendy.lintang.jpg"}</script></span></span></li><li class="js-paper-rank-work_4617072 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="4617072"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 4617072, container: ".js-paper-rank-work_4617072", }); 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$(".js-view-count[data-work-id=4617072]").text(description); $(".js-view-count-work_4617072").attr('title', description).tooltip(); }); });</script></span><script>$(function() { $(".js-view-count-work_4617072").removeClass('hidden') })</script></div></li><li class="InlineList-item u-positionRelative" style="max-width: 250px"><div class="u-positionAbsolute" data-has-card-for-ri-list="4617072"><i class="fa fa-tag InlineList-item-icon u-positionRelative"></i> <a class="InlineList-item-text u-positionRelative">3</a> </div><span class="InlineList-item-text u-textTruncate u-pl9x"><a class="InlineList-item-text" data-has-card-for-ri="55543" href="https://www.academia.edu/Documents/in/Zeolites">Zeolites</a>, <script data-card-contents-for-ri="55543" type="text/json">{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="173601" href="https://www.academia.edu/Documents/in/Fly_Ash">Fly Ash</a>, <script data-card-contents-for-ri="173601" type="text/json">{"id":173601,"name":"Fly Ash","url":"https://www.academia.edu/Documents/in/Fly_Ash?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="607277" href="https://www.academia.edu/Documents/in/Synthesis_of_Zeolites">Synthesis of Zeolites</a><script data-card-contents-for-ri="607277" type="text/json">{"id":607277,"name":"Synthesis of Zeolites","url":"https://www.academia.edu/Documents/in/Synthesis_of_Zeolites?f_ri=55543","nofollow":false}</script></span></li><script>(function(){ if (true) { new Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=4617072]'), work: {"id":4617072,"title":"Characterization and Gravimetric Analysis of the Dissolved Quartz in the Conversion of Coal Fly Ash to Sodalite","created_at":"2013-09-29T00:02:54.285-07:00","url":"https://www.academia.edu/4617072/Characterization_and_Gravimetric_Analysis_of_the_Dissolved_Quartz_in_the_Conversion_of_Coal_Fly_Ash_to_Sodalite?f_ri=55543","dom_id":"work_4617072","summary":"Coal fly ash (CFA) is a waste product produced from the electrical power plant and hazardous towards the environment. However, the high composition of silica and alumina in the CFA makes it useful as raw materials in the zeolite synthesis. However, the presence of silica in the form of quartz in the CFA does not facilitate the transformation of CFA to zeolite at 100oC and autogeneous pressure. In this study, CFA was converted to zeolites in various NaOH concentrations by microwave heating at various heating time. All synthesized product were characterized by X-ray diffraction(XRD), and gravimetric analysis. XRD has shown that quite pure sodalite in nanosize has been formed as early as 15 minutes and increase with time. Prolong heating up to 45 minutes has reduced the content of quartz to ca 20%. Gravimetric analysis performed on the liquor of the reaction showed that the dissolved silica decrease with increase of heating time indicating that most of the dissolved quartz is used up to form sodalite framework. Hence, quartz of CFA did help in enhancing the crystallinity of the formed sodalite after prolong heating.","downloadable_attachments":[{"id":31975363,"asset_id":4617072,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":5741579,"first_name":"Hendrik Oktendy","last_name":"Lintang","domain_name":"teknologimalaysia","page_name":"HendrikOktendyLintang","display_name":"Hendrik Oktendy Lintang","profile_url":"https://teknologimalaysia.academia.edu/HendrikOktendyLintang?f_ri=55543","photo":"https://0.academia-photos.com/5741579/2482179/2883529/s65_hendrik_oktendy.lintang.jpg"}],"research_interests":[{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543","nofollow":false},{"id":173601,"name":"Fly Ash","url":"https://www.academia.edu/Documents/in/Fly_Ash?f_ri=55543","nofollow":false},{"id":607277,"name":"Synthesis of Zeolites","url":"https://www.academia.edu/Documents/in/Synthesis_of_Zeolites?f_ri=55543","nofollow":false}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_54495436" data-work_id="54495436" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/54495436/Photodecolorization_of_Eriochrome_Black_T_using_NiS_P_zeolite_as_a_heterogeneous_catalyst">Photodecolorization of Eriochrome Black T using NiS�P zeolite as a heterogeneous catalyst</a></div></div><div class="u-pb4x u-mt3x"></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/54495436" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span 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class="u-tcGrayDark u-fw700" data-has-card-for-user="65841563" href="https://independent.academia.edu/AlirezaNezamzadehEjhieh">Alireza Nezamzadeh Ejhieh</a><script data-card-contents-for-user="65841563" type="text/json">{"id":65841563,"first_name":"Alireza","last_name":"Nezamzadeh Ejhieh","domain_name":"independent","page_name":"AlirezaNezamzadehEjhieh","display_name":"Alireza Nezamzadeh Ejhieh","profile_url":"https://independent.academia.edu/AlirezaNezamzadehEjhieh?f_ri=55543","photo":"https://0.academia-photos.com/65841563/26114414/24733583/s65_alireza.nezamzadeh_ejhieh.jpg"}</script></span></span></li><li class="js-paper-rank-work_54495436 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="54495436"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 54495436, container: ".js-paper-rank-work_54495436", }); 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type="text/json">{"id":48,"name":"Engineering","url":"https://www.academia.edu/Documents/in/Engineering?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="4749" href="https://www.academia.edu/Documents/in/Catalysis">Catalysis</a>, <script data-card-contents-for-ri="4749" type="text/json">{"id":4749,"name":"Catalysis","url":"https://www.academia.edu/Documents/in/Catalysis?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="4987" href="https://www.academia.edu/Documents/in/Kinetics">Kinetics</a>, <script data-card-contents-for-ri="4987" type="text/json">{"id":4987,"name":"Kinetics","url":"https://www.academia.edu/Documents/in/Kinetics?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="10655" href="https://www.academia.edu/Documents/in/Scanning_Electron_Microscopy">Scanning Electron Microscopy</a><script data-card-contents-for-ri="10655" 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Ejhieh","profile_url":"https://independent.academia.edu/AlirezaNezamzadehEjhieh?f_ri=55543","photo":"https://0.academia-photos.com/65841563/26114414/24733583/s65_alireza.nezamzadeh_ejhieh.jpg"}],"research_interests":[{"id":48,"name":"Engineering","url":"https://www.academia.edu/Documents/in/Engineering?f_ri=55543","nofollow":false},{"id":4749,"name":"Catalysis","url":"https://www.academia.edu/Documents/in/Catalysis?f_ri=55543","nofollow":false},{"id":4987,"name":"Kinetics","url":"https://www.academia.edu/Documents/in/Kinetics?f_ri=55543","nofollow":false},{"id":10655,"name":"Scanning Electron Microscopy","url":"https://www.academia.edu/Documents/in/Scanning_Electron_Microscopy?f_ri=55543","nofollow":false},{"id":40957,"name":"Heterogeneous Catalysis","url":"https://www.academia.edu/Documents/in/Heterogeneous_Catalysis?f_ri=55543"},{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543"},{"id":59731,"name":"Catalyst","url":"https://www.academia.edu/Documents/in/Catalyst?f_ri=55543"},{"id":84278,"name":"Ph","url":"https://www.academia.edu/Documents/in/Ph?f_ri=55543"},{"id":149625,"name":"Hazardous Materials","url":"https://www.academia.edu/Documents/in/Hazardous_Materials?f_ri=55543"},{"id":169323,"name":"Composite Material","url":"https://www.academia.edu/Documents/in/Composite_Material?f_ri=55543"},{"id":194828,"name":"Nickel","url":"https://www.academia.edu/Documents/in/Nickel?f_ri=55543"},{"id":277231,"name":"Mineralization","url":"https://www.academia.edu/Documents/in/Mineralization?f_ri=55543"},{"id":369145,"name":"Chemical Precipitation","url":"https://www.academia.edu/Documents/in/Chemical_Precipitation?f_ri=55543"},{"id":485597,"name":"UV 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itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/49246041/Zeolites_Encapsulated_with_Organic_Matrices_in_Vegetable_and_Ornamental_Plants_Fertilization">Zeolites Encapsulated with Organic Matrices in Vegetable and Ornamental Plants Fertilization</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">The aim of this research was to evaluate the fertilizing capacity of an innovative zeolite product, characterised by an encapsulated structure with an organic matrix on vegetable and ornamental plants and the interaction with soil... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_49246041" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">The aim of this research was to evaluate the fertilizing capacity of an innovative zeolite product, characterised by an encapsulated structure with an organic matrix on vegetable and ornamental plants and the interaction with soil microorganisms present in the cultivation substrates. The experiments, started in January 2021, were conducted in the greenhouses of CREA-OF in Pescia (PT), Tuscany. The experimental groups were: i) group control, irrigated with water and substrate previously fertilized; ii) group with zeolite 21% ammoniacal nitrogen; iii) group with zeolite coated with Ecoat; iv) group with zeolite 21% ammoniacal nitrogen, SO3 57.7% with nitritification inhibitor dcd (dicyandiamide) and DMPP 3,4 dimethylpyrazole-phosphate. The trial carried out on strawberry and Polygala myrtifolia actually showed how the use of zeolite can improve the fertilizing properties of the substrate. In particular, the use of encapsulated zeolite resulted in an increase in plant height, vegetative and root weight, number and flowers life, number and weight of fruits in strawberry and Polygala myrtifolia. In addition, there were changes in substrate pH, microbiological count and nitrogen, phosphorus and potassium content depending on the type of zeolytic product used. Research has shown that the use of loaded zeolite can significantly improve the agronomic and production quality of strawberry and Polygala myrtifolia plants. For example, Ecoat treatment with zeolite encapsulated with organic matrices in strawberries resulted in a pot production of 39.61 fruits and a weight of 36.39 g/fruit, compared to 24.21 and 26.48 g/fruit for the untreated control. While in Polygala myrtifolia the same treatment (Ecoat) resulted in 48.00 flowers per plant and a flowers life of 9.20 days compared to 34.86 flowers and 6.20 of the control. The trial also showed that treatment with Ecoat can promote the development of microbial colonies in the substrate, 3.5 x 104 cfu/g compared with 2.3 x 102 cfu/g in the control in strawberries and 3.2 x 104 cfu/g compared with 2.6 x 102 cfu/g in Polygala myrtifolia. In addition, the application of these aluminosilicates in substrates can influence the pH and the microbial component that is essential for the cultivation and defence of plants. The Ecoat product that performed best in the trial can play the role of both a nitrogen based fertiliser and, thanks to its organic matrix, of stimulating microbial development in the substrate in which the plants are grown.</div></div></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/49246041" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="30aeb68daf56c44dedcef6e2867afa08" rel="nofollow" data-download="{"attachment_id":67630186,"asset_id":49246041,"asset_type":"Work","always_allow_download":false,"track":null,"button_location":"work_strip","source":null,"hide_modal":null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/67630186/download_file?st=MTczMzI1MzQ3NCw4LjIyMi4yMDguMTQ2&s=work_strip"><i class="fa fa-arrow-circle-o-down fa-lg"></i><span class="u-textUppercase u-ml1x" data-content="button_text">Download</span></a></div></li><li class="InlineList-item"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by <span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="111328583" href="https://polytechnique-fr.academia.edu/DomenicoPrisa">Domenico Prisa</a><script data-card-contents-for-user="111328583" type="text/json">{"id":111328583,"first_name":"Domenico","last_name":"Prisa","domain_name":"polytechnique-fr","page_name":"DomenicoPrisa","display_name":"Domenico Prisa","profile_url":"https://polytechnique-fr.academia.edu/DomenicoPrisa?f_ri=55543","photo":"https://gravatar.com/avatar/c0e0085956e2144e437e90c573738ca1?s=65"}</script></span></span></li><li class="js-paper-rank-work_49246041 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="49246041"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 49246041, container: ".js-paper-rank-work_49246041", }); 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$(".js-view-count[data-work-id=49246041]").text(description); $(".js-view-count-work_49246041").attr('title', description).tooltip(); }); });</script></span><script>$(function() { $(".js-view-count-work_49246041").removeClass('hidden') })</script></div></li><li class="InlineList-item u-positionRelative" style="max-width: 250px"><div class="u-positionAbsolute" data-has-card-for-ri-list="49246041"><i class="fa fa-tag InlineList-item-icon u-positionRelative"></i> <a class="InlineList-item-text u-positionRelative">5</a> </div><span class="InlineList-item-text u-textTruncate u-pl9x"><a class="InlineList-item-text" data-has-card-for-ri="55543" href="https://www.academia.edu/Documents/in/Zeolites">Zeolites</a>, <script data-card-contents-for-ri="55543" type="text/json">{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="181646" href="https://www.academia.edu/Documents/in/Strawberry">Strawberry</a>, <script data-card-contents-for-ri="181646" type="text/json">{"id":181646,"name":"Strawberry","url":"https://www.academia.edu/Documents/in/Strawberry?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="208544" href="https://www.academia.edu/Documents/in/Vegetables">Vegetables</a>, <script data-card-contents-for-ri="208544" type="text/json">{"id":208544,"name":"Vegetables","url":"https://www.academia.edu/Documents/in/Vegetables?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="280134" href="https://www.academia.edu/Documents/in/Microorganisms">Microorganisms</a><script data-card-contents-for-ri="280134" type="text/json">{"id":280134,"name":"Microorganisms","url":"https://www.academia.edu/Documents/in/Microorganisms?f_ri=55543","nofollow":false}</script></span></li><script>(function(){ if (true) { new Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=49246041]'), work: {"id":49246041,"title":"Zeolites Encapsulated with Organic Matrices in Vegetable and Ornamental Plants Fertilization","created_at":"2021-06-15T00:04:55.930-07:00","url":"https://www.academia.edu/49246041/Zeolites_Encapsulated_with_Organic_Matrices_in_Vegetable_and_Ornamental_Plants_Fertilization?f_ri=55543","dom_id":"work_49246041","summary":"The aim of this research was to evaluate the fertilizing capacity of an innovative zeolite product, characterised by an encapsulated structure with an organic matrix on vegetable and ornamental plants and the interaction with soil microorganisms present in the cultivation substrates. The experiments, started in January 2021, were conducted in the greenhouses of CREA-OF in Pescia (PT), Tuscany. The experimental groups were: i) group control, irrigated with water and substrate previously fertilized; ii) group with zeolite 21% ammoniacal nitrogen; iii) group with zeolite coated with Ecoat; iv) group with zeolite 21% ammoniacal nitrogen, SO3 57.7% with nitritification inhibitor dcd (dicyandiamide) and DMPP 3,4 dimethylpyrazole-phosphate. The trial carried out on strawberry and Polygala myrtifolia actually showed how the use of zeolite can improve the fertilizing properties of the substrate. In particular, the use of encapsulated zeolite resulted in an increase in plant height, vegetative and root weight, number and flowers life, number and weight of fruits in strawberry and Polygala myrtifolia. In addition, there were changes in substrate pH, microbiological count and nitrogen, phosphorus and potassium content depending on the type of zeolytic product used. Research has shown that the use of loaded zeolite can significantly improve the agronomic and production quality of strawberry and Polygala myrtifolia plants. For example, Ecoat treatment with zeolite encapsulated with organic matrices in strawberries resulted in a pot production of 39.61 fruits and a weight of 36.39 g/fruit, compared to 24.21 and 26.48 g/fruit for the untreated control. While in Polygala myrtifolia the same treatment (Ecoat) resulted in 48.00 flowers per plant and a flowers life of 9.20 days compared to 34.86 flowers and 6.20 of the control. The trial also showed that treatment with Ecoat can promote the development of microbial colonies in the substrate, 3.5 x 104 cfu/g compared with 2.3 x 102 cfu/g in the control in strawberries and 3.2 x 104 cfu/g compared with 2.6 x 102 cfu/g in Polygala myrtifolia. In addition, the application of these aluminosilicates in substrates can influence the pH and the microbial component that is essential for the cultivation and defence of plants. The Ecoat product that performed best in the trial can play the role of both a nitrogen based fertiliser and, thanks to its organic matrix, of stimulating microbial development in the substrate in which the plants are grown.","downloadable_attachments":[{"id":67630186,"asset_id":49246041,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":111328583,"first_name":"Domenico","last_name":"Prisa","domain_name":"polytechnique-fr","page_name":"DomenicoPrisa","display_name":"Domenico Prisa","profile_url":"https://polytechnique-fr.academia.edu/DomenicoPrisa?f_ri=55543","photo":"https://gravatar.com/avatar/c0e0085956e2144e437e90c573738ca1?s=65"}],"research_interests":[{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543","nofollow":false},{"id":181646,"name":"Strawberry","url":"https://www.academia.edu/Documents/in/Strawberry?f_ri=55543","nofollow":false},{"id":208544,"name":"Vegetables","url":"https://www.academia.edu/Documents/in/Vegetables?f_ri=55543","nofollow":false},{"id":280134,"name":"Microorganisms","url":"https://www.academia.edu/Documents/in/Microorganisms?f_ri=55543","nofollow":false},{"id":865583,"name":"Ornamental Horticulture","url":"https://www.academia.edu/Documents/in/Ornamental_Horticulture?f_ri=55543"}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_25743764" data-work_id="25743764" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/25743764/Removal_of_sulfonamide_antibiotics_from_water_Evidence_of_adsorption_into_an_organophilic_zeolite_Y_by_its_structural_modifications">Removal of sulfonamide antibiotics from water: Evidence of adsorption into an organophilic zeolite Y by its structural modifications</a></div></div><div class="u-pb4x u-mt3x"></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/25743764" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li 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$(".js-view-count-work_25743764").attr('title', description).tooltip(); }); });</script></span><script>$(function() { $(".js-view-count-work_25743764").removeClass('hidden') })</script></div></li><li class="InlineList-item u-positionRelative" style="max-width: 250px"><div class="u-positionAbsolute" data-has-card-for-ri-list="25743764"><i class="fa fa-tag InlineList-item-icon u-positionRelative"></i> <a class="InlineList-item-text u-positionRelative">21</a> </div><span class="InlineList-item-text u-textTruncate u-pl10x"><a class="InlineList-item-text" data-has-card-for-ri="48" href="https://www.academia.edu/Documents/in/Engineering">Engineering</a>, <script data-card-contents-for-ri="48" type="text/json">{"id":48,"name":"Engineering","url":"https://www.academia.edu/Documents/in/Engineering?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="522" href="https://www.academia.edu/Documents/in/Thermodynamics">Thermodynamics</a>, <script data-card-contents-for-ri="522" type="text/json">{"id":522,"name":"Thermodynamics","url":"https://www.academia.edu/Documents/in/Thermodynamics?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="2215" href="https://www.academia.edu/Documents/in/Water">Water</a>, <script data-card-contents-for-ri="2215" type="text/json">{"id":2215,"name":"Water","url":"https://www.academia.edu/Documents/in/Water?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="4987" href="https://www.academia.edu/Documents/in/Kinetics">Kinetics</a><script data-card-contents-for-ri="4987" type="text/json">{"id":4987,"name":"Kinetics","url":"https://www.academia.edu/Documents/in/Kinetics?f_ri=55543","nofollow":false}</script></span></li><script>(function(){ if (true) { new Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=25743764]'), work: {"id":25743764,"title":"Removal of sulfonamide antibiotics from water: Evidence of adsorption into an organophilic zeolite Y by its structural modifications","created_at":"2016-05-31T08:28:14.096-07:00","url":"https://www.academia.edu/25743764/Removal_of_sulfonamide_antibiotics_from_water_Evidence_of_adsorption_into_an_organophilic_zeolite_Y_by_its_structural_modifications?f_ri=55543","dom_id":"work_25743764","summary":null,"downloadable_attachments":[{"id":46099961,"asset_id":25743764,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":36901291,"first_name":"Annalisa","last_name":"Martucci","domain_name":"unifueu","page_name":"AnnalisaMartucci","display_name":"Annalisa Martucci","profile_url":"https://unifueu.academia.edu/AnnalisaMartucci?f_ri=55543","photo":"/images/s65_no_pic.png"}],"research_interests":[{"id":48,"name":"Engineering","url":"https://www.academia.edu/Documents/in/Engineering?f_ri=55543","nofollow":false},{"id":522,"name":"Thermodynamics","url":"https://www.academia.edu/Documents/in/Thermodynamics?f_ri=55543","nofollow":false},{"id":2215,"name":"Water","url":"https://www.academia.edu/Documents/in/Water?f_ri=55543","nofollow":false},{"id":4987,"name":"Kinetics","url":"https://www.academia.edu/Documents/in/Kinetics?f_ri=55543","nofollow":false},{"id":16605,"name":"Persistence","url":"https://www.academia.edu/Documents/in/Persistence?f_ri=55543"},{"id":39752,"name":"Adsorption","url":"https://www.academia.edu/Documents/in/Adsorption?f_ri=55543"},{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543"},{"id":58906,"name":"Fourier Analysis","url":"https://www.academia.edu/Documents/in/Fourier_Analysis?f_ri=55543"},{"id":68315,"name":"Porosity","url":"https://www.academia.edu/Documents/in/Porosity?f_ri=55543"},{"id":75610,"name":"Bacterial resistance","url":"https://www.academia.edu/Documents/in/Bacterial_resistance?f_ri=55543"},{"id":126340,"name":"Deformation","url":"https://www.academia.edu/Documents/in/Deformation?f_ri=55543"},{"id":149625,"name":"Hazardous Materials","url":"https://www.academia.edu/Documents/in/Hazardous_Materials?f_ri=55543"},{"id":151091,"name":"Nitrogen","url":"https://www.academia.edu/Documents/in/Nitrogen?f_ri=55543"},{"id":205584,"name":"Solubility","url":"https://www.academia.edu/Documents/in/Solubility?f_ri=55543"},{"id":246560,"name":"High Pressure Liquid Chromatography","url":"https://www.academia.edu/Documents/in/High_Pressure_Liquid_Chromatography?f_ri=55543"},{"id":246949,"name":"Thermogravimetry","url":"https://www.academia.edu/Documents/in/Thermogravimetry?f_ri=55543"},{"id":335984,"name":"Anti-Bacterial Agents","url":"https://www.academia.edu/Documents/in/Anti-Bacterial_Agents?f_ri=55543"},{"id":386527,"name":"X ray diffraction","url":"https://www.academia.edu/Documents/in/X_ray_diffraction?f_ri=55543"},{"id":394388,"name":"Hazardous","url":"https://www.academia.edu/Documents/in/Hazardous?f_ri=55543"},{"id":538342,"name":"Pollutant","url":"https://www.academia.edu/Documents/in/Pollutant?f_ri=55543"},{"id":1520073,"name":"Rietveld method","url":"https://www.academia.edu/Documents/in/Rietveld_method?f_ri=55543"}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_45244493" data-work_id="45244493" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/45244493/Synthesis_of_1_5_Benzodiazepine_and_Its_Derivatives_by_Condensation_Reaction_Using_H_MCM_22_as_Catalyst">Synthesis of 1,5-Benzodiazepine and Its Derivatives by Condensation Reaction Using H-MCM-22 as Catalyst</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">A simple and versatile method for the synthesis of 1,5-benzodiazepines is via condensation of o-phenylenediamines (OPDA) and ketones in the presence of catalytic amount of H-MCM-22 using acetonitrile as solvent at room temperature. In all... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_45244493" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">A simple and versatile method for the synthesis of 1,5-benzodiazepines is via condensation of o-phenylenediamines (OPDA) and ketones in the presence of catalytic amount of H-MCM-22 using acetonitrile as solvent at room temperature. In all the cases, the reactions are highly selective and are completed within 1–3 h. The method is applicable to both cyclic and acyclic ketones without significant differences. The reaction proceeds efficiently under ambient conditions with good-to-excellent yields.</div></div></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/45244493" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="153d321611d657f0f40b7d664e47dd4c" rel="nofollow" data-download="{"attachment_id":65814336,"asset_id":45244493,"asset_type":"Work","always_allow_download":false,"track":null,"button_location":"work_strip","source":null,"hide_modal":null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/65814336/download_file?st=MTczMzI1MzQ3NCw4LjIyMi4yMDguMTQ2&s=work_strip"><i class="fa fa-arrow-circle-o-down fa-lg"></i><span class="u-textUppercase u-ml1x" data-content="button_text">Download</span></a></div></li><li class="InlineList-item"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by <span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="59214989" href="https://gdcboysang.academia.edu/WaheedKhanday">Waheed Khanday</a><script data-card-contents-for-user="59214989" type="text/json">{"id":59214989,"first_name":"Waheed","last_name":"Khanday","domain_name":"gdcboysang","page_name":"WaheedKhanday","display_name":"Waheed Khanday","profile_url":"https://gdcboysang.academia.edu/WaheedKhanday?f_ri=55543","photo":"https://0.academia-photos.com/59214989/103940998/93122796/s65_waheed.khanday.jpeg"}</script></span></span></li><li class="js-paper-rank-work_45244493 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="45244493"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 45244493, container: ".js-paper-rank-work_45244493", }); 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In all the cases, the reactions are highly selective and are completed within 1–3 h. The method is applicable to both cyclic and acyclic ketones without significant differences. The reaction proceeds efficiently under ambient conditions with good-to-excellent yields.","downloadable_attachments":[{"id":65814336,"asset_id":45244493,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":59214989,"first_name":"Waheed","last_name":"Khanday","domain_name":"gdcboysang","page_name":"WaheedKhanday","display_name":"Waheed Khanday","profile_url":"https://gdcboysang.academia.edu/WaheedKhanday?f_ri=55543","photo":"https://0.academia-photos.com/59214989/103940998/93122796/s65_waheed.khanday.jpeg"}],"research_interests":[{"id":923,"name":"Technology","url":"https://www.academia.edu/Documents/in/Technology?f_ri=55543","nofollow":false},{"id":1066,"name":"Biomedicine","url":"https://www.academia.edu/Documents/in/Biomedicine?f_ri=55543","nofollow":false},{"id":4749,"name":"Catalysis","url":"https://www.academia.edu/Documents/in/Catalysis?f_ri=55543","nofollow":false},{"id":47884,"name":"Biological Sciences","url":"https://www.academia.edu/Documents/in/Biological_Sciences?f_ri=55543","nofollow":false},{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543"},{"id":133351,"name":"Benzodiazepines","url":"https://www.academia.edu/Documents/in/Benzodiazepines?f_ri=55543"},{"id":222543,"name":"Biomed","url":"https://www.academia.edu/Documents/in/Biomed?f_ri=55543"},{"id":386527,"name":"X ray diffraction","url":"https://www.academia.edu/Documents/in/X_ray_diffraction?f_ri=55543"},{"id":398650,"name":"Fourier transform infrared spectroscopy","url":"https://www.academia.edu/Documents/in/Fourier_transform_infrared_spectroscopy?f_ri=55543"},{"id":832190,"name":"Biomedicine and Biotechnology","url":"https://www.academia.edu/Documents/in/Biomedicine_and_Biotechnology?f_ri=55543"},{"id":3024741,"name":"ketones","url":"https://www.academia.edu/Documents/in/ketones?f_ri=55543"}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_41771970" data-work_id="41771970" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/41771970/Optimised_fertilisation_with_zeolitites_containing_Plant_Growth_Promoting_Rhizobacteria_PGPR_in_Ranunculus_asiaticus">Optimised fertilisation with zeolitites containing Plant Growth Promoting Rhizobacteria (PGPR) in Ranunculus asiaticus</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">In this study, the possibility of optimizing the use of fertilizers on Ranunculus asiaticus by adding chabazite with Plant Growth Promoting Rhizobacteria (PGPR) to the substrate was evaluated. The five experimental groups in cultivation... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_41771970" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">In this study, the possibility of optimizing the use of fertilizers on Ranunculus asiaticus by adding chabazite with Plant Growth Promoting Rhizobacteria (PGPR) to the substrate was evaluated. The five experimental groups in cultivation were: i) group without zeolites (CTRL), irrigated with water and substrate previously fertilized; ii) group with natural chabazite (CN) and 100% fertilised substrate; iii) group with chabazite enriched with PGPR (CM) and 100% fertilised substrate; iv) group with natural chabazite (CN2) and 50% fertilised substrate; v) group with chabazite enriched with PGPR (CM2) and 50% fertilised substrate. All plants treated with chabazite (CN and CN2) and chabazite enriched with PGPR (CM and CM2) showed a significant increase in the agronomic characteristics analysed compared to the untreated control (CTRL). The results show that the microorganisms are able to improve the performance of zeolitite, probably increasing the efficiency of nutrient and water absorption by the roots. This is also evident when evaluating physiological parameters where the photosynthesis rate and chlorophyll content are significantly better in (CM) and (CM2) than in (CN) and (CN2). Zeolites can act as a "home" for microorganisms, as is normally the case in nature with clays. In fact, under conditions of water stress, microorganisms take refuge inside the clay particles until the environmental conditions are suitable again to colonize the soil. Zeolites are able to actively interact with the organic components present in the soil or brought with fertilization, and have the ability to make more available the mineral and nutritional components present within their crystalline lattice, according to the needs of the plant.</div></div></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/41771970" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="3d881e19029ad01eb2586044acc04808" rel="nofollow" data-download="{"attachment_id":61928676,"asset_id":41771970,"asset_type":"Work","always_allow_download":false,"track":null,"button_location":"work_strip","source":null,"hide_modal":null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/61928676/download_file?st=MTczMzI1MzQ3NCw4LjIyMi4yMDguMTQ2&s=work_strip"><i class="fa fa-arrow-circle-o-down fa-lg"></i><span class="u-textUppercase u-ml1x" data-content="button_text">Download</span></a></div></li><li class="InlineList-item"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by <span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="111328583" href="https://polytechnique-fr.academia.edu/DomenicoPrisa">Domenico Prisa</a><script data-card-contents-for-user="111328583" type="text/json">{"id":111328583,"first_name":"Domenico","last_name":"Prisa","domain_name":"polytechnique-fr","page_name":"DomenicoPrisa","display_name":"Domenico Prisa","profile_url":"https://polytechnique-fr.academia.edu/DomenicoPrisa?f_ri=55543","photo":"https://gravatar.com/avatar/c0e0085956e2144e437e90c573738ca1?s=65"}</script></span></span></li><li class="js-paper-rank-work_41771970 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="41771970"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 41771970, container: ".js-paper-rank-work_41771970", }); 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$(".js-view-count[data-work-id=41771970]").text(description); $(".js-view-count-work_41771970").attr('title', description).tooltip(); }); });</script></span><script>$(function() { $(".js-view-count-work_41771970").removeClass('hidden') })</script></div></li><li class="InlineList-item u-positionRelative" style="max-width: 250px"><div class="u-positionAbsolute" data-has-card-for-ri-list="41771970"><i class="fa fa-tag InlineList-item-icon u-positionRelative"></i> <a class="InlineList-item-text u-positionRelative">8</a> </div><span class="InlineList-item-text u-textTruncate u-pl9x"><a class="InlineList-item-text" data-has-card-for-ri="55543" href="https://www.academia.edu/Documents/in/Zeolites">Zeolites</a>, <script data-card-contents-for-ri="55543" type="text/json">{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="57461" href="https://www.academia.edu/Documents/in/Plant_Physiology">Plant Physiology</a>, <script data-card-contents-for-ri="57461" type="text/json">{"id":57461,"name":"Plant Physiology","url":"https://www.academia.edu/Documents/in/Plant_Physiology?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="127006" href="https://www.academia.edu/Documents/in/Plant_growth">Plant growth</a>, <script data-card-contents-for-ri="127006" type="text/json">{"id":127006,"name":"Plant growth","url":"https://www.academia.edu/Documents/in/Plant_growth?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="141336" href="https://www.academia.edu/Documents/in/Beneficial_microorganism_Plant_Growth_Promoting_Rhizobacteria_Plant-microbe_interaction_under_stre">Beneficial microorganism, Plant Growth Promoting Rhizobacteria, Plant-microbe interaction under stress</a><script data-card-contents-for-ri="141336" type="text/json">{"id":141336,"name":"Beneficial microorganism, Plant Growth Promoting Rhizobacteria, Plant-microbe interaction under stress","url":"https://www.academia.edu/Documents/in/Beneficial_microorganism_Plant_Growth_Promoting_Rhizobacteria_Plant-microbe_interaction_under_stre?f_ri=55543","nofollow":false}</script></span></li><script>(function(){ if (true) { new Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=41771970]'), work: {"id":41771970,"title":"Optimised fertilisation with zeolitites containing Plant Growth Promoting Rhizobacteria (PGPR) in Ranunculus asiaticus","created_at":"2020-01-29T04:18:23.310-08:00","url":"https://www.academia.edu/41771970/Optimised_fertilisation_with_zeolitites_containing_Plant_Growth_Promoting_Rhizobacteria_PGPR_in_Ranunculus_asiaticus?f_ri=55543","dom_id":"work_41771970","summary":"In this study, the possibility of optimizing the use of fertilizers on Ranunculus asiaticus by adding chabazite with Plant Growth Promoting Rhizobacteria (PGPR) to the substrate was evaluated. The five experimental groups in cultivation were: i) group without zeolites (CTRL), irrigated with water and substrate previously fertilized; ii) group with natural chabazite (CN) and 100% fertilised substrate; iii) group with chabazite enriched with PGPR (CM) and 100% fertilised substrate; iv) group with natural chabazite (CN2) and 50% fertilised substrate; v) group with chabazite enriched with PGPR (CM2) and 50% fertilised substrate. All plants treated with chabazite (CN and CN2) and chabazite enriched with PGPR (CM and CM2) showed a significant increase in the agronomic characteristics analysed compared to the untreated control (CTRL). The results show that the microorganisms are able to improve the performance of zeolitite, probably increasing the efficiency of nutrient and water absorption by the roots. This is also evident when evaluating physiological parameters where the photosynthesis rate and chlorophyll content are significantly better in (CM) and (CM2) than in (CN) and (CN2). Zeolites can act as a \"home\" for microorganisms, as is normally the case in nature with clays. In fact, under conditions of water stress, microorganisms take refuge inside the clay particles until the environmental conditions are suitable again to colonize the soil. Zeolites are able to actively interact with the organic components present in the soil or brought with fertilization, and have the ability to make more available the mineral and nutritional components present within their crystalline lattice, according to the needs of the plant.","downloadable_attachments":[{"id":61928676,"asset_id":41771970,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":111328583,"first_name":"Domenico","last_name":"Prisa","domain_name":"polytechnique-fr","page_name":"DomenicoPrisa","display_name":"Domenico Prisa","profile_url":"https://polytechnique-fr.academia.edu/DomenicoPrisa?f_ri=55543","photo":"https://gravatar.com/avatar/c0e0085956e2144e437e90c573738ca1?s=65"}],"research_interests":[{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543","nofollow":false},{"id":57461,"name":"Plant Physiology","url":"https://www.academia.edu/Documents/in/Plant_Physiology?f_ri=55543","nofollow":false},{"id":127006,"name":"Plant growth","url":"https://www.academia.edu/Documents/in/Plant_growth?f_ri=55543","nofollow":false},{"id":141336,"name":"Beneficial microorganism, Plant Growth Promoting Rhizobacteria, Plant-microbe interaction under stress","url":"https://www.academia.edu/Documents/in/Beneficial_microorganism_Plant_Growth_Promoting_Rhizobacteria_Plant-microbe_interaction_under_stre?f_ri=55543","nofollow":false},{"id":217322,"name":"Natural Zeolites","url":"https://www.academia.edu/Documents/in/Natural_Zeolites?f_ri=55543"},{"id":280134,"name":"Microorganisms","url":"https://www.academia.edu/Documents/in/Microorganisms?f_ri=55543"},{"id":280709,"name":"Plant Growth Promoting Rhizobacteria","url":"https://www.academia.edu/Documents/in/Plant_Growth_Promoting_Rhizobacteria?f_ri=55543"},{"id":607277,"name":"Synthesis of Zeolites","url":"https://www.academia.edu/Documents/in/Synthesis_of_Zeolites?f_ri=55543"}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_28496689" data-work_id="28496689" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/28496689/Sorption_hysteresis_of_Cd_II_and_Pb_II_on_natural_zeolite_and_bentonite">Sorption hysteresis of Cd(II) and Pb(II) on natural zeolite and bentonite</a></div></div><div class="u-pb4x u-mt3x"></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/28496689" data-share-source="work_strip" 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class="summarized">The development of recyclable solid acids is of major industrial importance and challenging in many reactions, for instance, the Friedel-Crafts alkylation as one of the most prevalent examples, which generally requires the presence of... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_32675493" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">The development of recyclable solid acids is of major industrial importance and challenging in many reactions, for instance, the Friedel-Crafts alkylation as one of the most prevalent examples, which generally requires the presence of acid catalysts. However, not only the replacement of traditional toxic acid catalyst by solid acidic zeolites but also the improvement such catalysts in term of high efficiency has been addressed through environmental technologies. Our present study explores the use of hierarchical faujasite zeolite nanosheets as catalysts in industrial applications with the frame of development of green and sustainable technologies. The simple and efficient route to prepare the faujasite zeolite with the nanosheet-assembled structure together with the roles of synthetic parameters on the characteristics and properties are systematically investigated. This first example of hierarchical zeolite, which has uniform mesoporous features derived from the interstitial pores between the nanosheet assemblies, exhibits a superior catalytic activity in terms of conversion and selectivity for the benzylation of toluene with benzyl chloride. In conclusion, the fine-tuning of structural characteristics of zeolites by a simple optimization of surfactant contents and crystallization temperatures allows the design of the candidate catalyst for a green and sustainable future. This work also demonstrates the next step forward in the development of an industrial catalyst based on the concept of cleaner production.</div></div></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/32675493" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="c15bd97453775121540b25a0640e50ec" rel="nofollow" data-download="{"attachment_id":52841805,"asset_id":32675493,"asset_type":"Work","always_allow_download":false,"track":null,"button_location":"work_strip","source":null,"hide_modal":null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/52841805/download_file?st=MTczMzI1MzQ3NCw4LjIyMi4yMDguMTQ2&s=work_strip"><i class="fa fa-arrow-circle-o-down fa-lg"></i><span class="u-textUppercase u-ml1x" data-content="button_text">Download</span></a></div></li><li class="InlineList-item"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by <span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="3109162" href="https://vistec.academia.edu/ThittayaYutthalekha">Thittaya Yutthalekha</a><script data-card-contents-for-user="3109162" type="text/json">{"id":3109162,"first_name":"Thittaya","last_name":"Yutthalekha","domain_name":"vistec","page_name":"ThittayaYutthalekha","display_name":"Thittaya Yutthalekha","profile_url":"https://vistec.academia.edu/ThittayaYutthalekha?f_ri=55543","photo":"https://0.academia-photos.com/3109162/1021555/1276943/s65_nui.thittaya.jpg"}</script></span></span></li><li class="js-paper-rank-work_32675493 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="32675493"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 32675493, container: ".js-paper-rank-work_32675493", }); 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However, not only the replacement of traditional toxic acid catalyst by solid acidic zeolites but also the improvement such catalysts in term of high efficiency has been addressed through environmental technologies. Our present study explores the use of hierarchical faujasite zeolite nanosheets as catalysts in industrial applications with the frame of development of green and sustainable technologies. The simple and efficient route to prepare the faujasite zeolite with the nanosheet-assembled structure together with the roles of synthetic parameters on the characteristics and properties are systematically investigated. This first example of hierarchical zeolite, which has uniform mesoporous features derived from the interstitial pores between the nanosheet assemblies, exhibits a superior catalytic activity in terms of conversion and selectivity for the benzylation of toluene with benzyl chloride. In conclusion, the fine-tuning of structural characteristics of zeolites by a simple optimization of surfactant contents and crystallization temperatures allows the design of the candidate catalyst for a green and sustainable future. This work also demonstrates the next step forward in the development of an industrial catalyst based on the concept of cleaner production.","downloadable_attachments":[{"id":52841805,"asset_id":32675493,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":3109162,"first_name":"Thittaya","last_name":"Yutthalekha","domain_name":"vistec","page_name":"ThittayaYutthalekha","display_name":"Thittaya Yutthalekha","profile_url":"https://vistec.academia.edu/ThittayaYutthalekha?f_ri=55543","photo":"https://0.academia-photos.com/3109162/1021555/1276943/s65_nui.thittaya.jpg"}],"research_interests":[{"id":3408,"name":"Green Chemistry","url":"https://www.academia.edu/Documents/in/Green_Chemistry?f_ri=55543","nofollow":false},{"id":40957,"name":"Heterogeneous Catalysis","url":"https://www.academia.edu/Documents/in/Heterogeneous_Catalysis?f_ri=55543","nofollow":false},{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543","nofollow":false},{"id":84395,"name":"Recycled Materials","url":"https://www.academia.edu/Documents/in/Recycled_Materials?f_ri=55543","nofollow":false}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_9518846" data-work_id="9518846" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/9518846/Influence_of_cations_on_the_physicochemical_and_structural_properties_of_aluminosilicate_gel_precursors_Part_1_Chemical_and_thermal_properties">Influence of cations on the physicochemical and structural properties of aluminosilicate gel precursors. 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})();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_1492433" data-work_id="1492433" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/1492433/Influence_of_stormwater_infiltration_on_the_treatment_capacity_of_a_LECA_based_horizontal_subsurface_flow_constructed_wetland">Influence of stormwater infiltration on the treatment capacity of a LECA-based horizontal subsurface flow constructed wetland</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">This research work evaluates the impact of stormwater infiltration on the removal of organics, solids, nitrogen and phosphorus in a LECA-based horizontal subsurface flow constructed wetland. Stormwater runoff for the period between... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_1492433" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">This research work evaluates the impact of stormwater infiltration on the removal of organics, solids, nitrogen and phosphorus in a LECA-based horizontal subsurface flow constructed wetland. Stormwater runoff for the period between January 2008 and June 2010 (30 months) was estimated for the drainage basin of the Vila Fernando wastewater treatment plant (constructed wetland system) and it was observed proportionality between the increase in surface runoff and the infiltration flow rate that reached the plant. The average stormwater infiltration rate that reached the plant was 67.4 m(3) d(-1) (77% of the influent flow rate into the plant). The 30 month monitoring campaign set up at one of the reed beds showed that stormwater infiltration led to a high variation of the hydraulic loading rate (HLR) throughout the bed, which affected its performance in the removal of organic matter, suspended solids and nitrogen. For a HLR below 20 cm d-1 the removal efficiencies for BOD5, COD and TSS doubled. The removal of nitrogen was too low and was associated with the weak development of nitrifying biofilm and the poor growth of reeds. However, it was observed a good relationship between the applied and removed loads for most of the parameters, which seems to indicate that the organic, solid, nitrogen and phosphorus loading rates influenced the respective removal rates. The use of a bed material with high specific surface area, such as LECA, can only improve the treatment capacity of horizontal subsurface flow systems if the organic and solid loading rates, as well as the HLR, can be effectively controlled.</div></div></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/1492433" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="441a31228a21ceb5a14bffb2d92627dd" rel="nofollow" data-download="{"attachment_id":11691229,"asset_id":1492433,"asset_type":"Work","always_allow_download":false,"track":null,"button_location":"work_strip","source":null,"hide_modal":null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/11691229/download_file?st=MTczMzI1MzQ3NCw4LjIyMi4yMDguMTQ2&s=work_strip"><i class="fa fa-arrow-circle-o-down fa-lg"></i><span class="u-textUppercase u-ml1x" data-content="button_text">Download</span></a></div></li><li class="InlineList-item"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by <span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="808373" href="https://ubi.academia.edu/AntonioAlbuquerque">Antonio Albuquerque</a><script data-card-contents-for-user="808373" type="text/json">{"id":808373,"first_name":"Antonio","last_name":"Albuquerque","domain_name":"ubi","page_name":"AntonioAlbuquerque","display_name":"Antonio Albuquerque","profile_url":"https://ubi.academia.edu/AntonioAlbuquerque?f_ri=55543","photo":"https://0.academia-photos.com/808373/278177/19913077/s65_antonio.albuquerque.jpg"}</script></span></span></li><li class="js-paper-rank-work_1492433 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="1492433"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 1492433, container: ".js-paper-rank-work_1492433", }); 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data-has-card-for-ri="4749" href="https://www.academia.edu/Documents/in/Catalysis">Catalysis</a>, <script data-card-contents-for-ri="4749" type="text/json">{"id":4749,"name":"Catalysis","url":"https://www.academia.edu/Documents/in/Catalysis?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="55543" href="https://www.academia.edu/Documents/in/Zeolites">Zeolites</a>, <script data-card-contents-for-ri="55543" type="text/json">{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="260118" href="https://www.academia.edu/Documents/in/CHEMICAL_SCIENCES">CHEMICAL SCIENCES</a>, <script data-card-contents-for-ri="260118" type="text/json">{"id":260118,"name":"CHEMICAL SCIENCES","url":"https://www.academia.edu/Documents/in/CHEMICAL_SCIENCES?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="1480634" 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Verboekend","profile_url":"https://independent.academia.edu/DannyVerboekend?f_ri=55543","photo":"/images/s65_no_pic.png"}],"research_interests":[{"id":4749,"name":"Catalysis","url":"https://www.academia.edu/Documents/in/Catalysis?f_ri=55543","nofollow":false},{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543","nofollow":false},{"id":260118,"name":"CHEMICAL SCIENCES","url":"https://www.academia.edu/Documents/in/CHEMICAL_SCIENCES?f_ri=55543","nofollow":false},{"id":1480634,"name":"Chimia","url":"https://www.academia.edu/Documents/in/Chimia?f_ri=55543","nofollow":false}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_76735015" data-work_id="76735015" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/76735015/Effect_of_Clinoptilolite_and_Sepiolite_Nanoclays_on_Human_and_Parasitic_Highly_Phagocytic_Cells">Effect of Clinoptilolite and Sepiolite Nanoclays on Human and Parasitic Highly Phagocytic Cells</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">Nanoclays have potential applications in biomedicine raising the need to evaluate their toxicity inin vitromodels as a first approach to its biocompatibility. In this study,in vitrotoxicity of clinoptilolite and sepiolite nanoclays (NC)... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_76735015" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">Nanoclays have potential applications in biomedicine raising the need to evaluate their toxicity inin vitromodels as a first approach to its biocompatibility. In this study,in vitrotoxicity of clinoptilolite and sepiolite nanoclays (NC) was analyzed in highly phagocytic cultures of amoebas and human and mice macrophages. While amebic viability was significantly affected only by sepiolite NC at concentrations higher than 0.1 mg/mL, the effect on macrophage cultures was dependent on the origin of the cells. Macrophages derived from human peripheral blood monocytes were less affected in viability (25% decrease at 48 h), followed by the RAW 264.7 cell line (40%), and finally, macrophages derived from mice bone marrow monocytes (98%). Moreover, the cell line and mice macrophages die mainly by necrosis, whereas human macrophages exhibit increased apoptosis. Cytokine expression analysis in media of sepiolite NC treated cultures showed a proinflammatory profile (INFγ, IL-1α, IL-8, and IL-6)...</div></div></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/76735015" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="257a3edefe508fd68a2ef4414c34328f" rel="nofollow" data-download="{"attachment_id":84339347,"asset_id":76735015,"asset_type":"Work","always_allow_download":false,"track":null,"button_location":"work_strip","source":null,"hide_modal":null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/84339347/download_file?st=MTczMzI1MzQ3NCw4LjIyMi4yMDguMTQ2&s=work_strip"><i class="fa fa-arrow-circle-o-down fa-lg"></i><span class="u-textUppercase u-ml1x" data-content="button_text">Download</span></a></div></li><li class="InlineList-item"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by <span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="36697270" href="https://independent.academia.edu/JulioCarrero1">Julio Carrero</a><script data-card-contents-for-user="36697270" type="text/json">{"id":36697270,"first_name":"Julio","last_name":"Carrero","domain_name":"independent","page_name":"JulioCarrero1","display_name":"Julio Carrero","profile_url":"https://independent.academia.edu/JulioCarrero1?f_ri=55543","photo":"/images/s65_no_pic.png"}</script></span></span></li><li class="js-paper-rank-work_76735015 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="76735015"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 76735015, container: ".js-paper-rank-work_76735015", }); 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In this study,in vitrotoxicity of clinoptilolite and sepiolite nanoclays (NC) was analyzed in highly phagocytic cultures of amoebas and human and mice macrophages. While amebic viability was significantly affected only by sepiolite NC at concentrations higher than 0.1 mg/mL, the effect on macrophage cultures was dependent on the origin of the cells. Macrophages derived from human peripheral blood monocytes were less affected in viability (25% decrease at 48 h), followed by the RAW 264.7 cell line (40%), and finally, macrophages derived from mice bone marrow monocytes (98%). Moreover, the cell line and mice macrophages die mainly by necrosis, whereas human macrophages exhibit increased apoptosis. Cytokine expression analysis in media of sepiolite NC treated cultures showed a proinflammatory profile (INFγ, IL-1α, IL-8, and IL-6)...","downloadable_attachments":[{"id":84339347,"asset_id":76735015,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":36697270,"first_name":"Julio","last_name":"Carrero","domain_name":"independent","page_name":"JulioCarrero1","display_name":"Julio Carrero","profile_url":"https://independent.academia.edu/JulioCarrero1?f_ri=55543","photo":"/images/s65_no_pic.png"}],"research_interests":[{"id":523,"name":"Chemistry","url":"https://www.academia.edu/Documents/in/Chemistry?f_ri=55543","nofollow":false},{"id":17491,"name":"Macrophages","url":"https://www.academia.edu/Documents/in/Macrophages?f_ri=55543","nofollow":false},{"id":22050,"name":"Cytotoxicity","url":"https://www.academia.edu/Documents/in/Cytotoxicity?f_ri=55543","nofollow":false},{"id":26327,"name":"Medicine","url":"https://www.academia.edu/Documents/in/Medicine?f_ri=55543","nofollow":false},{"id":27784,"name":"Gene expression","url":"https://www.academia.edu/Documents/in/Gene_expression?f_ri=55543"},{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543"},{"id":60436,"name":"Cell Differentiation","url":"https://www.academia.edu/Documents/in/Cell_Differentiation?f_ri=55543"},{"id":84760,"name":"Mice","url":"https://www.academia.edu/Documents/in/Mice?f_ri=55543"},{"id":222543,"name":"Biomed","url":"https://www.academia.edu/Documents/in/Biomed?f_ri=55543"},{"id":474029,"name":"Tumor necrosis factor-alpha","url":"https://www.academia.edu/Documents/in/Tumor_necrosis_factor-alpha?f_ri=55543"},{"id":1924712,"name":"Interleukin","url":"https://www.academia.edu/Documents/in/Interleukin?f_ri=55543"}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_38801980" data-work_id="38801980" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/38801980/Untapped_potential_of_zeolites_in_optimization_of_food_waste_composting_pdf">Untapped potential of zeolites in optimization of food waste composting.pdf</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">This study aims to examine the effect of zeolites in optimizing the process of food waste composting. A novel method of sequential hydrothermal was introduced to modify the natural zeolite and apply to in-vessel compost bioreactors. Raw... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_38801980" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">This study aims to examine the effect of zeolites in optimizing the process of food waste composting. A novel method of sequential hydrothermal was introduced to modify the natural zeolite and apply to in-vessel compost bioreactors. Raw and modified natural zeolites were applied at 10 and 15% (w/w) of the total waste and compared with un-amended control trial. Both raw and modified zeolites affected the composting process, but the notable results were observed for modified natural zeolite. The results for compost stability parameters were prominent at 15% modified natural zeolite concentration. The rapid and long-term thermophillic temperature and moisture content reduction to the optimum range was observed for modified natural zeolite. Furthermore, the total ammonium (NH 4 +) and nitrate (NO 3 −) concentration in modified natural zeolite were increased by 11.1 and 21.5% respectively as compared to raw zeolite. Compost stability against moisture contents (MC), electrical conductivity (EC), organic matters (OM), total carbon (TC), mineral nitrogen, nitrification index (NI) and germination index (GI) was achieved after 60 days of composting that was in accordance with the international compost quality standards. The findings of this study suggested the suitability of modified natural zeolite addition at 15% to the total waste as the optimum ratio for the composting of food waste in order to achieve a stable nutrient-rich compost.</div></div></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/38801980" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="9193dcd5fc6f224f187dea5b8e4d6edf" rel="nofollow" data-download="{"attachment_id":58893208,"asset_id":38801980,"asset_type":"Work","always_allow_download":false,"track":null,"button_location":"work_strip","source":null,"hide_modal":null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/58893208/download_file?st=MTczMzI1MzQ3NCw4LjIyMi4yMDguMTQ2&s=work_strip"><i class="fa fa-arrow-circle-o-down fa-lg"></i><span class="u-textUppercase u-ml1x" data-content="button_text">Download</span></a></div></li><li class="InlineList-item"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by <span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="24648553" href="https://gcu-pk.academia.edu/DrAbdulSattarNizami">Dr. Abdul-Sattar Nizami</a><script data-card-contents-for-user="24648553" type="text/json">{"id":24648553,"first_name":"Dr. Abdul-Sattar","last_name":"Nizami","domain_name":"gcu-pk","page_name":"DrAbdulSattarNizami","display_name":"Dr. Abdul-Sattar Nizami","profile_url":"https://gcu-pk.academia.edu/DrAbdulSattarNizami?f_ri=55543","photo":"https://0.academia-photos.com/24648553/6666988/61191093/s65_dr._abdul-sattar.nizami.jpg"}</script></span></span></li><li class="js-paper-rank-work_38801980 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="38801980"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 38801980, container: ".js-paper-rank-work_38801980", }); 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$(".js-view-count[data-work-id=38801980]").text(description); $(".js-view-count-work_38801980").attr('title', description).tooltip(); }); });</script></span><script>$(function() { $(".js-view-count-work_38801980").removeClass('hidden') })</script></div></li><li class="InlineList-item u-positionRelative" style="max-width: 250px"><div class="u-positionAbsolute" data-has-card-for-ri-list="38801980"><i class="fa fa-tag InlineList-item-icon u-positionRelative"></i> <a class="InlineList-item-text u-positionRelative">20</a> </div><span class="InlineList-item-text u-textTruncate u-pl10x"><a class="InlineList-item-text" data-has-card-for-ri="55" href="https://www.academia.edu/Documents/in/Environmental_Engineering">Environmental Engineering</a>, <script data-card-contents-for-ri="55" type="text/json">{"id":55,"name":"Environmental Engineering","url":"https://www.academia.edu/Documents/in/Environmental_Engineering?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="402" href="https://www.academia.edu/Documents/in/Environmental_Science">Environmental Science</a>, <script data-card-contents-for-ri="402" type="text/json">{"id":402,"name":"Environmental Science","url":"https://www.academia.edu/Documents/in/Environmental_Science?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="421" href="https://www.academia.edu/Documents/in/Soil_Science">Soil Science</a>, <script data-card-contents-for-ri="421" type="text/json">{"id":421,"name":"Soil Science","url":"https://www.academia.edu/Documents/in/Soil_Science?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="1063" href="https://www.academia.edu/Documents/in/Environmental_Education">Environmental Education</a><script data-card-contents-for-ri="1063" type="text/json">{"id":1063,"name":"Environmental Education","url":"https://www.academia.edu/Documents/in/Environmental_Education?f_ri=55543","nofollow":false}</script></span></li><script>(function(){ if (true) { new Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=38801980]'), work: {"id":38801980,"title":"Untapped potential of zeolites in optimization of food waste composting.pdf","created_at":"2019-04-14T00:34:44.486-07:00","url":"https://www.academia.edu/38801980/Untapped_potential_of_zeolites_in_optimization_of_food_waste_composting_pdf?f_ri=55543","dom_id":"work_38801980","summary":"This study aims to examine the effect of zeolites in optimizing the process of food waste composting. A novel method of sequential hydrothermal was introduced to modify the natural zeolite and apply to in-vessel compost bioreactors. Raw and modified natural zeolites were applied at 10 and 15% (w/w) of the total waste and compared with un-amended control trial. Both raw and modified zeolites affected the composting process, but the notable results were observed for modified natural zeolite. The results for compost stability parameters were prominent at 15% modified natural zeolite concentration. The rapid and long-term thermophillic temperature and moisture content reduction to the optimum range was observed for modified natural zeolite. Furthermore, the total ammonium (NH 4 +) and nitrate (NO 3 −) concentration in modified natural zeolite were increased by 11.1 and 21.5% respectively as compared to raw zeolite. Compost stability against moisture contents (MC), electrical conductivity (EC), organic matters (OM), total carbon (TC), mineral nitrogen, nitrification index (NI) and germination index (GI) was achieved after 60 days of composting that was in accordance with the international compost quality standards. The findings of this study suggested the suitability of modified natural zeolite addition at 15% to the total waste as the optimum ratio for the composting of food waste in order to achieve a stable nutrient-rich compost.","downloadable_attachments":[{"id":58893208,"asset_id":38801980,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":24648553,"first_name":"Dr. Abdul-Sattar","last_name":"Nizami","domain_name":"gcu-pk","page_name":"DrAbdulSattarNizami","display_name":"Dr. Abdul-Sattar Nizami","profile_url":"https://gcu-pk.academia.edu/DrAbdulSattarNizami?f_ri=55543","photo":"https://0.academia-photos.com/24648553/6666988/61191093/s65_dr._abdul-sattar.nizami.jpg"}],"research_interests":[{"id":55,"name":"Environmental Engineering","url":"https://www.academia.edu/Documents/in/Environmental_Engineering?f_ri=55543","nofollow":false},{"id":402,"name":"Environmental Science","url":"https://www.academia.edu/Documents/in/Environmental_Science?f_ri=55543","nofollow":false},{"id":421,"name":"Soil Science","url":"https://www.academia.edu/Documents/in/Soil_Science?f_ri=55543","nofollow":false},{"id":1063,"name":"Environmental Education","url":"https://www.academia.edu/Documents/in/Environmental_Education?f_ri=55543","nofollow":false},{"id":3407,"name":"Environmental Studies","url":"https://www.academia.edu/Documents/in/Environmental_Studies?f_ri=55543"},{"id":7609,"name":"Environmental Management","url":"https://www.academia.edu/Documents/in/Environmental_Management?f_ri=55543"},{"id":14085,"name":"Waste Management","url":"https://www.academia.edu/Documents/in/Waste_Management?f_ri=55543"},{"id":18845,"name":"Environmental Sustainability","url":"https://www.academia.edu/Documents/in/Environmental_Sustainability?f_ri=55543"},{"id":18987,"name":"Natural Science","url":"https://www.academia.edu/Documents/in/Natural_Science?f_ri=55543"},{"id":21963,"name":"Solid Waste Management","url":"https://www.academia.edu/Documents/in/Solid_Waste_Management?f_ri=55543"},{"id":23209,"name":"Environmental Soil Science","url":"https://www.academia.edu/Documents/in/Environmental_Soil_Science?f_ri=55543"},{"id":34478,"name":"Food Science and Technology","url":"https://www.academia.edu/Documents/in/Food_Science_and_Technology?f_ri=55543"},{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543"},{"id":61981,"name":"Food Waste","url":"https://www.academia.edu/Documents/in/Food_Waste?f_ri=55543"},{"id":121344,"name":"Composting","url":"https://www.academia.edu/Documents/in/Composting?f_ri=55543"},{"id":217322,"name":"Natural Zeolites","url":"https://www.academia.edu/Documents/in/Natural_Zeolites?f_ri=55543"},{"id":555091,"name":"Compost","url":"https://www.academia.edu/Documents/in/Compost?f_ri=55543"},{"id":572022,"name":"Composting and Organic Fertilizers","url":"https://www.academia.edu/Documents/in/Composting_and_Organic_Fertilizers?f_ri=55543"},{"id":607277,"name":"Synthesis of Zeolites","url":"https://www.academia.edu/Documents/in/Synthesis_of_Zeolites?f_ri=55543"},{"id":1383203,"name":"Bioremediation \u0026 Composting","url":"https://www.academia.edu/Documents/in/Bioremediation_and_Composting?f_ri=55543"}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_8272343" data-work_id="8272343" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/8272343/Bio_oil_from_hydro_liquefaction_of_Dunaliella_salina_over_Ni_REHY_catalyst">Bio-oil from hydro-liquefaction of Dunaliella salina over Ni/REHY catalyst</a></div></div><div class="u-pb4x u-mt3x"></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/8272343" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="9039d8167b048b840d2db723f553b4cb" rel="nofollow" data-download="{"attachment_id":48159858,"asset_id":8272343,"asset_type":"Work","always_allow_download":false,"track":null,"button_location":"work_strip","source":null,"hide_modal":null}" class="Button Button--sm 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The initial Mo and Ni concentration in the sampled domestic drinking water of north Jordan is 550 and 110 µg/L, respectively. The efficiency of using natural faujasite–phillipsite and... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_29747347" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">Mo and Ni metals could be hazardous in natural waters. The initial Mo and Ni concentration in the sampled domestic drinking water of north Jordan is 550 and 110 µg/L, respectively. The efficiency of using natural faujasite–phillipsite and phillipsite–chabazite tuffs in removing Mo and Ni from contaminated drinking water was tested. Batch experiments using different weights of the adsorbent were conducted at different contact times to determine the optimum conditions. The maximal uptake capacity of Mo from drinking water was equivalent to 440–420 µg/g adsorbent. The maximum removal efficiency of Mo by faujasite–phillipsite, phillipsite–chabazite, and the modified surfactant phillipsite–chabazite tuffs were 80%, 76%, and 78%, respectively. The proportional relationship between contact time and removal efficiency of Ni from water samples was observed. The maximum removal efficiency of Ni by the zeolitic tuffs is up to 90% compared to the original groundwater sample.</div></div></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/29747347" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="8321af649caa6b6c8ac38f717adff22b" rel="nofollow" data-download="{"attachment_id":50205497,"asset_id":29747347,"asset_type":"Work","always_allow_download":false,"track":null,"button_location":"work_strip","source":null,"hide_modal":null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/50205497/download_file?st=MTczMzI1MzQ3NCw4LjIyMi4yMDguMTQ2&s=work_strip"><i class="fa fa-arrow-circle-o-down fa-lg"></i><span class="u-textUppercase u-ml1x" data-content="button_text">Download</span></a></div></li><li class="InlineList-item"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by <span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="42464315" href="https://hu-jo.academia.edu/Ibrahim">Khalil M Ibrahim</a><script data-card-contents-for-user="42464315" type="text/json">{"id":42464315,"first_name":"Khalil","last_name":"Ibrahim","domain_name":"hu-jo","page_name":"Ibrahim","display_name":"Khalil M Ibrahim","profile_url":"https://hu-jo.academia.edu/Ibrahim?f_ri=55543","photo":"https://0.academia-photos.com/42464315/11436916/12756884/s65_khalil.ibrahim.jpg"}</script></span></span><span class="u-displayInlineBlock InlineList-item-text"> and <span class="u-textDecorationUnderline u-clickable InlineList-item-text js-work-more-authors-29747347">+1</span><div class="hidden js-additional-users-29747347"><div><span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a href="https://independent.academia.edu/RandaTuffaha">Randa Tuffaha</a></span></div></div></span><script>(function(){ var popoverSettings = { el: $('.js-work-more-authors-29747347'), placement: 'bottom', hide_delay: 200, html: true, content: function(){ return $('.js-additional-users-29747347').html(); 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The initial Mo and Ni concentration in the sampled domestic drinking water of north Jordan is 550 and 110 µg/L, respectively. The efficiency of using natural faujasite–phillipsite and phillipsite–chabazite tuffs in removing Mo and Ni from contaminated drinking water was tested. Batch experiments using different weights of the adsorbent were conducted at different contact times to determine the optimum conditions. The maximal uptake capacity of Mo from drinking water was equivalent to 440–420 µg/g adsorbent. The maximum removal efficiency of Mo by faujasite–phillipsite, phillipsite–chabazite, and the modified surfactant phillipsite–chabazite tuffs were 80%, 76%, and 78%, respectively. The proportional relationship between contact time and removal efficiency of Ni from water samples was observed. The maximum removal efficiency of Ni by the zeolitic tuffs is up to 90% compared to the original groundwater sample.","downloadable_attachments":[{"id":50205497,"asset_id":29747347,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":42464315,"first_name":"Khalil","last_name":"Ibrahim","domain_name":"hu-jo","page_name":"Ibrahim","display_name":"Khalil M Ibrahim","profile_url":"https://hu-jo.academia.edu/Ibrahim?f_ri=55543","photo":"https://0.academia-photos.com/42464315/11436916/12756884/s65_khalil.ibrahim.jpg"},{"id":56701097,"first_name":"Randa","last_name":"Tuffaha","domain_name":"independent","page_name":"RandaTuffaha","display_name":"Randa Tuffaha","profile_url":"https://independent.academia.edu/RandaTuffaha?f_ri=55543","photo":"/images/s65_no_pic.png"}],"research_interests":[{"id":9990,"name":"Water 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href="https://www.academia.edu/41512669/Prospect_of_Molecular_Sieves_Production_using_Rice_Husk_in_Bangladesh_A_Review">Prospect of Molecular Sieves Production using Rice Husk in Bangladesh: A Review</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">A growing need of molecular sieves, now a day, in many industries of Bangladesh makes the materials most important and attracted special attention. The review explores each step involved in the whole process of molecular sieves... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_41512669" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">A growing need of molecular sieves, now a day, in many industries of Bangladesh makes the materials most important and attracted special attention. The review explores each step involved in the whole process of molecular sieves preparation from rice husk (RH). Many refineries and chemical industries are using molecular sieves as adsorbent material and process catalyst very efficiently. Rice husk is one of the potential sources of biomass to get a maximum percent of SiO2 that is required to synthesize molecular sieves. 93.2% of SiO2 can be extracted from rice husk ash (RHA). In the fiscal year of 2016-2017, about 6.86 million tons of rice husk are produced in Bangladesh whereas worldwide production of rice husk is approximately 97.24 million tons. Geographical locations, combustion methods, and temperature are influencing factor mainly to get the content of silica and structure of molecular sieves.) Rice husk ash containing amorphous silica is produced at temperatures lower than 800 o C (500-800 o C). The chemical method with washing pretreatment and post heat treatment are considered as the most simple and successful SiO2 extraction methods from RH. Different types of molecular sieves; 13x, 3A, 4A & 5A can successfully be synthesized via the widely used hydrothermal method. Molar ratio of ingredients, reaction temperature, time, acid-base media, ageing etc. are key factors to be considered in designing different molecular sieves.</div></div></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/41512669" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="97fe03700cb2e6c54767817ba4d77be6" rel="nofollow" data-download="{"attachment_id":61679969,"asset_id":41512669,"asset_type":"Work","always_allow_download":false,"track":null,"button_location":"work_strip","source":null,"hide_modal":null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/61679969/download_file?st=MTczMzI1MzQ3NSw4LjIyMi4yMDguMTQ2&s=work_strip"><i class="fa fa-arrow-circle-o-down fa-lg"></i><span class="u-textUppercase u-ml1x" data-content="button_text">Download</span></a></div></li><li class="InlineList-item"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by <span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="65479726" href="https://independent.academia.edu/kawsarAhmed57">kawsar Ahmed</a><script data-card-contents-for-user="65479726" type="text/json">{"id":65479726,"first_name":"kawsar","last_name":"Ahmed","domain_name":"independent","page_name":"kawsarAhmed57","display_name":"kawsar Ahmed","profile_url":"https://independent.academia.edu/kawsarAhmed57?f_ri=55543","photo":"https://0.academia-photos.com/65479726/17063513/17237657/s65_kawsar.ahmed.jpg"}</script></span></span><span class="u-displayInlineBlock InlineList-item-text"> and <span class="u-textDecorationUnderline u-clickable InlineList-item-text js-work-more-authors-41512669">+2</span><div class="hidden js-additional-users-41512669"><div><span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a href="https://buet.academia.edu/TareqHossain">Tareq Hossain</a></span></div><div><span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a href="https://univdhaka.academia.edu/MdSahabUddin">Md Sahab Uddin</a></span></div></div></span><script>(function(){ var popoverSettings = { el: $('.js-work-more-authors-41512669'), placement: 'bottom', hide_delay: 200, html: true, content: function(){ return $('.js-additional-users-41512669').html(); 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container.find('.percentile-widget').removeClass('hidden'); }); });</script></li><li class="js-view-count-work_41512669 InlineList-item InlineList-item--bordered hidden"><div><span><span class="js-view-count view-count u-mr2x" data-work-id="41512669"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 41512669; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=41512669]").text(description); $(".js-view-count-work_41512669").attr('title', description).tooltip(); }); });</script></span><script>$(function() { $(".js-view-count-work_41512669").removeClass('hidden') })</script></div></li><li class="InlineList-item u-positionRelative" style="max-width: 250px"><div class="u-positionAbsolute" data-has-card-for-ri-list="41512669"><i class="fa fa-tag InlineList-item-icon u-positionRelative"></i> <a class="InlineList-item-text u-positionRelative">8</a> </div><span class="InlineList-item-text u-textTruncate u-pl9x"><a class="InlineList-item-text" data-has-card-for-ri="5411" href="https://www.academia.edu/Documents/in/Biomass">Biomass</a>, <script data-card-contents-for-ri="5411" type="text/json">{"id":5411,"name":"Biomass","url":"https://www.academia.edu/Documents/in/Biomass?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="14136" href="https://www.academia.edu/Documents/in/Pyrolysis">Pyrolysis</a>, <script data-card-contents-for-ri="14136" type="text/json">{"id":14136,"name":"Pyrolysis","url":"https://www.academia.edu/Documents/in/Pyrolysis?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="55543" href="https://www.academia.edu/Documents/in/Zeolites">Zeolites</a>, <script data-card-contents-for-ri="55543" type="text/json">{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="98440" href="https://www.academia.edu/Documents/in/Silica">Silica</a><script data-card-contents-for-ri="98440" type="text/json">{"id":98440,"name":"Silica","url":"https://www.academia.edu/Documents/in/Silica?f_ri=55543","nofollow":false}</script></span></li><script>(function(){ if (true) { new Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=41512669]'), work: {"id":41512669,"title":"Prospect of Molecular Sieves Production using Rice Husk in Bangladesh: A Review","created_at":"2020-01-04T10:28:15.564-08:00","url":"https://www.academia.edu/41512669/Prospect_of_Molecular_Sieves_Production_using_Rice_Husk_in_Bangladesh_A_Review?f_ri=55543","dom_id":"work_41512669","summary":"A growing need of molecular sieves, now a day, in many industries of Bangladesh makes the materials most important and attracted special attention. The review explores each step involved in the whole process of molecular sieves preparation from rice husk (RH). Many refineries and chemical industries are using molecular sieves as adsorbent material and process catalyst very efficiently. Rice husk is one of the potential sources of biomass to get a maximum percent of SiO2 that is required to synthesize molecular sieves. 93.2% of SiO2 can be extracted from rice husk ash (RHA). In the fiscal year of 2016-2017, about 6.86 million tons of rice husk are produced in Bangladesh whereas worldwide production of rice husk is approximately 97.24 million tons. Geographical locations, combustion methods, and temperature are influencing factor mainly to get the content of silica and structure of molecular sieves.) Rice husk ash containing amorphous silica is produced at temperatures lower than 800 o C (500-800 o C). The chemical method with washing pretreatment and post heat treatment are considered as the most simple and successful SiO2 extraction methods from RH. Different types of molecular sieves; 13x, 3A, 4A \u0026 5A can successfully be synthesized via the widely used hydrothermal method. Molar ratio of ingredients, reaction temperature, time, acid-base media, ageing etc. are key factors to be considered in designing different molecular sieves.","downloadable_attachments":[{"id":61679969,"asset_id":41512669,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":65479726,"first_name":"kawsar","last_name":"Ahmed","domain_name":"independent","page_name":"kawsarAhmed57","display_name":"kawsar Ahmed","profile_url":"https://independent.academia.edu/kawsarAhmed57?f_ri=55543","photo":"https://0.academia-photos.com/65479726/17063513/17237657/s65_kawsar.ahmed.jpg"},{"id":102400781,"first_name":"Tareq","last_name":"Hossain","domain_name":"buet","page_name":"TareqHossain","display_name":"Tareq Hossain","profile_url":"https://buet.academia.edu/TareqHossain?f_ri=55543","photo":"https://0.academia-photos.com/102400781/29169072/32064271/s65_tareq.hossain.jpg"},{"id":141371675,"first_name":"Md Sahab","last_name":"Uddin","domain_name":"univdhaka","page_name":"MdSahabUddin","display_name":"Md Sahab Uddin","profile_url":"https://univdhaka.academia.edu/MdSahabUddin?f_ri=55543","photo":"https://0.academia-photos.com/141371675/38233704/32064070/s65_md_sahab.uddin.jpg"}],"research_interests":[{"id":5411,"name":"Biomass","url":"https://www.academia.edu/Documents/in/Biomass?f_ri=55543","nofollow":false},{"id":14136,"name":"Pyrolysis","url":"https://www.academia.edu/Documents/in/Pyrolysis?f_ri=55543","nofollow":false},{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543","nofollow":false},{"id":98440,"name":"Silica","url":"https://www.academia.edu/Documents/in/Silica?f_ri=55543","nofollow":false},{"id":206037,"name":"Utilization of Rice Husk","url":"https://www.academia.edu/Documents/in/Utilization_of_Rice_Husk?f_ri=55543"},{"id":392172,"name":"Molecular Sieves","url":"https://www.academia.edu/Documents/in/Molecular_Sieves?f_ri=55543"},{"id":561285,"name":"Silica Extraction From Rise Husk","url":"https://www.academia.edu/Documents/in/Silica_Extraction_From_Rise_Husk?f_ri=55543"},{"id":954818,"name":"Rice husk Ash","url":"https://www.academia.edu/Documents/in/Rice_husk_Ash?f_ri=55543"}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_40675353" data-work_id="40675353" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/40675353/SYNTHESIS_OF_ZEOLITE_FROM_KAOLIN_CLAY_FROM_ERUSU_AKOKO_SOUTHWESTERN_NIGERIA">SYNTHESIS OF ZEOLITE FROM KAOLIN CLAY FROM ERUSU AKOKO SOUTHWESTERN NIGERIA</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">Nigeria is blessed with abundant kaolin clay and solid mineral deposits scattered in various parts of the country, yet the country solely depends on imported zeolite as commercial adsorbent for wastewater treatment, catalyst for the... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_40675353" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">Nigeria is blessed with abundant kaolin clay and solid mineral deposits scattered in various parts of the country, yet the country solely depends on imported zeolite as commercial adsorbent for wastewater treatment, catalyst for the petroleum industry and other applications. This work describes the development of a process to produce zeolite from clay mineral.The beneficiated kaolin clay was converted to metakaolin at 600 o C, and then leached with sulphuric acid to achieve the required silica-alumina ratio for zeolite synthesis. An alkaline fusion stage was then carried-out to transform the metakaolin into zeolite. Identification of the crystalline phase by X-Ray Diffraction analysis showed that it consists of both zeolite X and Y. Infrared spectra analysis confirmed the presence of zeolite framework structure. Transmission electron microscopy, surface area and pore volume of the synthesized zeolite were examined and the results from all the analysis confirmed that zeolite can be produced from the kaolin clay.</div></div></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/40675353" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="0f8b0b7de5ca691eea67fc0152002461" rel="nofollow" data-download="{"attachment_id":60958097,"asset_id":40675353,"asset_type":"Work","always_allow_download":false,"track":null,"button_location":"work_strip","source":null,"hide_modal":null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/60958097/download_file?st=MTczMzI1MzQ3NSw4LjIyMi4yMDguMTQ2&s=work_strip"><i class="fa fa-arrow-circle-o-down fa-lg"></i><span class="u-textUppercase u-ml1x" data-content="button_text">Download</span></a></div></li><li class="InlineList-item"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by <span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="124202456" href="https://independent.academia.edu/ADEOLAAdedapoOluwasanu">ADEOLA Adedapo Oluwasanu</a><script data-card-contents-for-user="124202456" type="text/json">{"id":124202456,"first_name":"ADEOLA Adedapo","last_name":"Oluwasanu","domain_name":"independent","page_name":"ADEOLAAdedapoOluwasanu","display_name":"ADEOLA Adedapo Oluwasanu","profile_url":"https://independent.academia.edu/ADEOLAAdedapoOluwasanu?f_ri=55543","photo":"https://0.academia-photos.com/124202456/34336137/36966536/s65_adeola_adedapo.oluwasanu.png"}</script></span></span></li><li class="js-paper-rank-work_40675353 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="40675353"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 40675353, container: ".js-paper-rank-work_40675353", }); });</script></li><li class="js-percentile-work_40675353 InlineList-item InlineList-item--bordered hidden u-tcGrayDark"><span class="percentile-widget hidden"><span class="u-mr2x percentile-widget" style="display: none">•</span><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 40675353; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-percentile-work_40675353"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></li><li class="js-view-count-work_40675353 InlineList-item InlineList-item--bordered hidden"><div><span><span class="js-view-count view-count u-mr2x" data-work-id="40675353"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 40675353; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=40675353]").text(description); $(".js-view-count-work_40675353").attr('title', description).tooltip(); }); });</script></span><script>$(function() { $(".js-view-count-work_40675353").removeClass('hidden') })</script></div></li><li class="InlineList-item u-positionRelative" style="max-width: 250px"><div class="u-positionAbsolute" data-has-card-for-ri-list="40675353"><i class="fa fa-tag InlineList-item-icon u-positionRelative"></i></div><span class="InlineList-item-text u-textTruncate u-pl6x"><a class="InlineList-item-text" data-has-card-for-ri="55543" href="https://www.academia.edu/Documents/in/Zeolites">Zeolites</a><script data-card-contents-for-ri="55543" type="text/json">{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543","nofollow":false}</script></span></li><script>(function(){ if (false) { new Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=40675353]'), work: {"id":40675353,"title":"SYNTHESIS OF ZEOLITE FROM KAOLIN CLAY FROM ERUSU AKOKO SOUTHWESTERN NIGERIA","created_at":"2019-10-20T02:58:16.578-07:00","url":"https://www.academia.edu/40675353/SYNTHESIS_OF_ZEOLITE_FROM_KAOLIN_CLAY_FROM_ERUSU_AKOKO_SOUTHWESTERN_NIGERIA?f_ri=55543","dom_id":"work_40675353","summary":"Nigeria is blessed with abundant kaolin clay and solid mineral deposits scattered in various parts of the country, yet the country solely depends on imported zeolite as commercial adsorbent for wastewater treatment, catalyst for the petroleum industry and other applications. This work describes the development of a process to produce zeolite from clay mineral.The beneficiated kaolin clay was converted to metakaolin at 600 o C, and then leached with sulphuric acid to achieve the required silica-alumina ratio for zeolite synthesis. An alkaline fusion stage was then carried-out to transform the metakaolin into zeolite. Identification of the crystalline phase by X-Ray Diffraction analysis showed that it consists of both zeolite X and Y. Infrared spectra analysis confirmed the presence of zeolite framework structure. Transmission electron microscopy, surface area and pore volume of the synthesized zeolite were examined and the results from all the analysis confirmed that zeolite can be produced from the kaolin clay.","downloadable_attachments":[{"id":60958097,"asset_id":40675353,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":124202456,"first_name":"ADEOLA Adedapo","last_name":"Oluwasanu","domain_name":"independent","page_name":"ADEOLAAdedapoOluwasanu","display_name":"ADEOLA Adedapo Oluwasanu","profile_url":"https://independent.academia.edu/ADEOLAAdedapoOluwasanu?f_ri=55543","photo":"https://0.academia-photos.com/124202456/34336137/36966536/s65_adeola_adedapo.oluwasanu.png"}],"research_interests":[{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543","nofollow":false}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_37698041" data-work_id="37698041" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/37698041/Porous_materials_for_oil_spill_cleanup_a_review_of_the_synthesis_and_absorbing_properties">Porous materials for oil spill cleanup: a review of the synthesis and absorbing properties</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">This paper reviews the synthesis and the absorbing properties of the wide variety of porous sorbent materials that have been studied for application in the removal of organics, particularly in the area of oil spill cleanup. The discussion... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_37698041" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">This paper reviews the synthesis and the absorbing properties of the wide variety of porous sorbent materials that have been studied for application in the removal of organics, particularly in the area of oil spill cleanup. The discussion is especially focused on hydrophobic silica aerogels, zeolites, organoclays and natural sorbents many of which have been demonstrated to exhibit (or show potential to exhibit) excellent oil absorption properties. The areas for further development of some of<br />these materials are identified.</div></div></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/37698041" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="3c1fac8b10b411fa9f0a3f59fc472dc1" rel="nofollow" data-download="{"attachment_id":57689245,"asset_id":37698041,"asset_type":"Work","always_allow_download":false,"track":null,"button_location":"work_strip","source":null,"hide_modal":null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/57689245/download_file?st=MTczMzI1MzQ3NSw4LjIyMi4yMDguMTQ2&s=work_strip"><i class="fa fa-arrow-circle-o-down fa-lg"></i><span class="u-textUppercase u-ml1x" data-content="button_text">Download</span></a></div></li><li class="InlineList-item"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by <span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="94226986" href="https://upvisayas.academia.edu/JTHEOKLOPROGGE">J. THEO KLOPROGGE</a><script data-card-contents-for-user="94226986" type="text/json">{"id":94226986,"first_name":"J. THEO","last_name":"KLOPROGGE","domain_name":"upvisayas","page_name":"JTHEOKLOPROGGE","display_name":"J. THEO KLOPROGGE","profile_url":"https://upvisayas.academia.edu/JTHEOKLOPROGGE?f_ri=55543","photo":"https://0.academia-photos.com/94226986/21035226/20527458/s65_j._theo.kloprogge.jpg"}</script></span></span></li><li class="js-paper-rank-work_37698041 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="37698041"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 37698041, container: ".js-paper-rank-work_37698041", }); });</script></li><li class="js-percentile-work_37698041 InlineList-item InlineList-item--bordered hidden u-tcGrayDark"><span class="percentile-widget hidden"><span class="u-mr2x percentile-widget" style="display: none">•</span><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 37698041; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-percentile-work_37698041"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></li><li class="js-view-count-work_37698041 InlineList-item InlineList-item--bordered hidden"><div><span><span class="js-view-count view-count u-mr2x" data-work-id="37698041"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 37698041; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=37698041]").text(description); $(".js-view-count-work_37698041").attr('title', description).tooltip(); }); });</script></span><script>$(function() { $(".js-view-count-work_37698041").removeClass('hidden') })</script></div></li><li class="InlineList-item u-positionRelative" style="max-width: 250px"><div class="u-positionAbsolute" data-has-card-for-ri-list="37698041"><i class="fa fa-tag InlineList-item-icon u-positionRelative"></i> <a class="InlineList-item-text u-positionRelative">9</a> </div><span class="InlineList-item-text u-textTruncate u-pl9x"><a class="InlineList-item-text" data-has-card-for-ri="35123" href="https://www.academia.edu/Documents/in/Oil_Spill">Oil Spill</a>, <script data-card-contents-for-ri="35123" type="text/json">{"id":35123,"name":"Oil Spill","url":"https://www.academia.edu/Documents/in/Oil_Spill?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="39499" href="https://www.academia.edu/Documents/in/Porous_Materials">Porous Materials</a>, <script data-card-contents-for-ri="39499" type="text/json">{"id":39499,"name":"Porous Materials","url":"https://www.academia.edu/Documents/in/Porous_Materials?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="39500" href="https://www.academia.edu/Documents/in/Inorganic_Porous_Materials">Inorganic Porous Materials</a>, <script data-card-contents-for-ri="39500" type="text/json">{"id":39500,"name":"Inorganic Porous Materials","url":"https://www.academia.edu/Documents/in/Inorganic_Porous_Materials?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="55543" href="https://www.academia.edu/Documents/in/Zeolites">Zeolites</a><script data-card-contents-for-ri="55543" type="text/json">{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543","nofollow":false}</script></span></li><script>(function(){ if (true) { new Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=37698041]'), work: {"id":37698041,"title":"Porous materials for oil spill cleanup: a review of the synthesis and absorbing properties","created_at":"2018-11-03T23:54:12.151-07:00","url":"https://www.academia.edu/37698041/Porous_materials_for_oil_spill_cleanup_a_review_of_the_synthesis_and_absorbing_properties?f_ri=55543","dom_id":"work_37698041","summary":"This paper reviews the synthesis and the absorbing properties of the wide variety of porous sorbent materials that have been studied for application in the removal of organics, particularly in the area of oil spill cleanup. The discussion is especially focused on hydrophobic silica aerogels, zeolites, organoclays and natural sorbents many of which have been demonstrated to exhibit (or show potential to exhibit) excellent oil absorption properties. The areas for further development of some of\nthese materials are identified. ","downloadable_attachments":[{"id":57689245,"asset_id":37698041,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":94226986,"first_name":"J. THEO","last_name":"KLOPROGGE","domain_name":"upvisayas","page_name":"JTHEOKLOPROGGE","display_name":"J. THEO KLOPROGGE","profile_url":"https://upvisayas.academia.edu/JTHEOKLOPROGGE?f_ri=55543","photo":"https://0.academia-photos.com/94226986/21035226/20527458/s65_j._theo.kloprogge.jpg"}],"research_interests":[{"id":35123,"name":"Oil Spill","url":"https://www.academia.edu/Documents/in/Oil_Spill?f_ri=55543","nofollow":false},{"id":39499,"name":"Porous Materials","url":"https://www.academia.edu/Documents/in/Porous_Materials?f_ri=55543","nofollow":false},{"id":39500,"name":"Inorganic Porous Materials","url":"https://www.academia.edu/Documents/in/Inorganic_Porous_Materials?f_ri=55543","nofollow":false},{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543","nofollow":false},{"id":98440,"name":"Silica","url":"https://www.academia.edu/Documents/in/Silica?f_ri=55543"},{"id":579205,"name":"Silica Aerogel","url":"https://www.academia.edu/Documents/in/Silica_Aerogel?f_ri=55543"},{"id":615584,"name":"Natural Adsorbent","url":"https://www.academia.edu/Documents/in/Natural_Adsorbent?f_ri=55543"},{"id":705428,"name":"Organoclay","url":"https://www.academia.edu/Documents/in/Organoclay?f_ri=55543"},{"id":720836,"name":"Oil Spill Cleanup","url":"https://www.academia.edu/Documents/in/Oil_Spill_Cleanup?f_ri=55543"}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_12206601" data-work_id="12206601" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/12206601/Recent_applications_of_nanomaterials_in_water_desalination_A_critical_review_and_future_opportunities">Recent applications of nanomaterials in water desalination: A critical review and future opportunities</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">Given their unique structural and morphological features, nanomaterials have gained considerable attention for their applications in membrane desalination. Recent advances in nanomaterial-incorporated membranes have resulted in membranes... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_12206601" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">Given their unique structural and morphological features, nanomaterials have gained considerable attention for<br />their applications in membrane desalination. Recent advances in nanomaterial-incorporated membranes have<br />resulted in membranes with very high water flux and salt rejection, both being sought after in membrane desalination.<br />Nevertheless, the economic feasibility of scaling up such membranes remains questionable. The present<br />paper surveyed the recent published literatures and current studies on nanomaterials and their applications in<br />membrane desalination. The goal of this workwas to reveal, through reviewing experimental and computational<br />studies, the potential of nanomaterials in desalination. The paper reviewed three of the most studied<br />nanomaterials in membrane desalination namely; carbon nanotubes, zeolites, and graphene. The investigation<br />included preparation and synthesis of nanomaterial membranes, their properties with respect to desalination,<br />and their applications in membrane desalination. This includes different membrane processes, and opportunities<br />and challenges of those materials in desalination applications. The environmental and economic sustainability of<br />nanomaterials in desalination for future prospects has also been presented.</div></div></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/12206601" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="15ed39b93ff253826ca38111ed81ed17" rel="nofollow" data-download="{"attachment_id":37489477,"asset_id":12206601,"asset_type":"Work","always_allow_download":false,"track":null,"button_location":"work_strip","source":null,"hide_modal":null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/37489477/download_file?st=MTczMzI1MzQ3NSw4LjIyMi4yMDguMTQ2&s=work_strip"><i class="fa fa-arrow-circle-o-down fa-lg"></i><span class="u-textUppercase u-ml1x" data-content="button_text">Download</span></a></div></li><li class="InlineList-item"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by <span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="26943494" href="https://cityu-hk.academia.edu/JehadKharraz">Jehad Kharraz</a><script data-card-contents-for-user="26943494" type="text/json">{"id":26943494,"first_name":"Jehad","last_name":"Kharraz","domain_name":"cityu-hk","page_name":"JehadKharraz","display_name":"Jehad Kharraz","profile_url":"https://cityu-hk.academia.edu/JehadKharraz?f_ri=55543","photo":"https://0.academia-photos.com/26943494/7548371/18259818/s65_jehad.kharraz.png"}</script></span></span></li><li class="js-paper-rank-work_12206601 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="12206601"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 12206601, container: ".js-paper-rank-work_12206601", }); });</script></li><li class="js-percentile-work_12206601 InlineList-item InlineList-item--bordered hidden u-tcGrayDark"><span class="percentile-widget hidden"><span class="u-mr2x percentile-widget" style="display: none">•</span><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 12206601; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-percentile-work_12206601"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></li><li class="js-view-count-work_12206601 InlineList-item InlineList-item--bordered hidden"><div><span><span class="js-view-count view-count u-mr2x" data-work-id="12206601"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 12206601; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=12206601]").text(description); $(".js-view-count-work_12206601").attr('title', description).tooltip(); }); });</script></span><script>$(function() { $(".js-view-count-work_12206601").removeClass('hidden') })</script></div></li><li class="InlineList-item u-positionRelative" style="max-width: 250px"><div class="u-positionAbsolute" data-has-card-for-ri-list="12206601"><i class="fa fa-tag InlineList-item-icon u-positionRelative"></i> <a class="InlineList-item-text u-positionRelative">5</a> </div><span class="InlineList-item-text u-textTruncate u-pl9x"><a class="InlineList-item-text" data-has-card-for-ri="10909" href="https://www.academia.edu/Documents/in/Carbon_Nanotubes">Carbon Nanotubes</a>, <script data-card-contents-for-ri="10909" type="text/json">{"id":10909,"name":"Carbon Nanotubes","url":"https://www.academia.edu/Documents/in/Carbon_Nanotubes?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="11541" href="https://www.academia.edu/Documents/in/Graphene">Graphene</a>, <script data-card-contents-for-ri="11541" type="text/json">{"id":11541,"name":"Graphene","url":"https://www.academia.edu/Documents/in/Graphene?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="11973" href="https://www.academia.edu/Documents/in/Nanomaterials">Nanomaterials</a>, <script data-card-contents-for-ri="11973" type="text/json">{"id":11973,"name":"Nanomaterials","url":"https://www.academia.edu/Documents/in/Nanomaterials?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="53158" href="https://www.academia.edu/Documents/in/Desalination">Desalination</a><script data-card-contents-for-ri="53158" type="text/json">{"id":53158,"name":"Desalination","url":"https://www.academia.edu/Documents/in/Desalination?f_ri=55543","nofollow":false}</script></span></li><script>(function(){ if (true) { new Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=12206601]'), work: {"id":12206601,"title":"Recent applications of nanomaterials in water desalination: A critical review and future opportunities","created_at":"2015-05-03T08:37:58.781-07:00","url":"https://www.academia.edu/12206601/Recent_applications_of_nanomaterials_in_water_desalination_A_critical_review_and_future_opportunities?f_ri=55543","dom_id":"work_12206601","summary":"Given their unique structural and morphological features, nanomaterials have gained considerable attention for\ntheir applications in membrane desalination. Recent advances in nanomaterial-incorporated membranes have\nresulted in membranes with very high water flux and salt rejection, both being sought after in membrane desalination.\nNevertheless, the economic feasibility of scaling up such membranes remains questionable. The present\npaper surveyed the recent published literatures and current studies on nanomaterials and their applications in\nmembrane desalination. The goal of this workwas to reveal, through reviewing experimental and computational\nstudies, the potential of nanomaterials in desalination. The paper reviewed three of the most studied\nnanomaterials in membrane desalination namely; carbon nanotubes, zeolites, and graphene. The investigation\nincluded preparation and synthesis of nanomaterial membranes, their properties with respect to desalination,\nand their applications in membrane desalination. This includes different membrane processes, and opportunities\nand challenges of those materials in desalination applications. The environmental and economic sustainability of\nnanomaterials in desalination for future prospects has also been presented.","downloadable_attachments":[{"id":37489477,"asset_id":12206601,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":26943494,"first_name":"Jehad","last_name":"Kharraz","domain_name":"cityu-hk","page_name":"JehadKharraz","display_name":"Jehad Kharraz","profile_url":"https://cityu-hk.academia.edu/JehadKharraz?f_ri=55543","photo":"https://0.academia-photos.com/26943494/7548371/18259818/s65_jehad.kharraz.png"}],"research_interests":[{"id":10909,"name":"Carbon Nanotubes","url":"https://www.academia.edu/Documents/in/Carbon_Nanotubes?f_ri=55543","nofollow":false},{"id":11541,"name":"Graphene","url":"https://www.academia.edu/Documents/in/Graphene?f_ri=55543","nofollow":false},{"id":11973,"name":"Nanomaterials","url":"https://www.academia.edu/Documents/in/Nanomaterials?f_ri=55543","nofollow":false},{"id":53158,"name":"Desalination","url":"https://www.academia.edu/Documents/in/Desalination?f_ri=55543","nofollow":false},{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543"}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_10899515" data-work_id="10899515" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/10899515/Do%C4%9Fal_Zeolitlerin_Klinoptilolit_Su_Yumu%C5%9Fat%C4%B1m%C4%B1nda_Kullan%C4%B1m%C4%B1">Doğal Zeolitlerin (Klinoptilolit) Su Yumuşatımında Kullanımı</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">Bu çalışmada, ülkemizde zengin rezervleri olduğu bilinen, Balıkesir-Bigadiç üst tüf birimi zeolitik tüfleri (klinoptilolit) ile su sertliğinin giderilme potansiyeli araştırılmış; su kaynağı olarak, klorlama hariç herhangi bir ön arıtma... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_10899515" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">Bu çalışmada, ülkemizde zengin rezervleri olduğu bilinen, Balıkesir-Bigadiç üst tüf birimi zeolitik tüfleri (klinoptilolit) ile su sertliğinin giderilme potansiyeli araştırılmış; su kaynağı olarak, klorlama hariç herhangi bir ön arıtma işlemi uygulanmayan, sertlik derecesi yüksek, Selçuk Üniversitesi Kampüs kullanım suyu kullanılmıştır. Bunun için -0.85+0.60 mm fraksiyon aralığında zeolit numuneleri NaOH ile rejenere edilerek, iyon değiştirme kolonundaki zeolitik yataktan sabit akış hızında geçen suyun zamana bağlı sertlik değişimi incelenmiştir. Rejenerasyon şartları bu şekilde optimize edildikten sonra zeolitik yatağa beslenen suyun akış hızının ve kolonda bırakılan su birikintisinin suyun sertliğinin giderilmesine etkisi de araştırılmıştır.<br />Sonuç olarak; zeolit yataktan geçen suyun sertliği, en düşük değere, besleme suyu hızı 10 ml/dak tutularak ve 0.75M NaOH ile rejenere edilmiş zeolit kullanılarak düşürülmüş ve bu şartlarda çalışılması durumunda, en yüksek işletme kapasitesine ulaşılacağı tespit edilmiştir.</div></div></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/10899515" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="954a5d6831a035df7fbd1ca41cd6a811" rel="nofollow" data-download="{"attachment_id":36682806,"asset_id":10899515,"asset_type":"Work","always_allow_download":false,"track":null,"button_location":"work_strip","source":null,"hide_modal":null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/36682806/download_file?st=MTczMzI1MzQ3NSw4LjIyMi4yMDguMTQ2&s=work_strip"><i class="fa fa-arrow-circle-o-down fa-lg"></i><span class="u-textUppercase u-ml1x" data-content="button_text">Download</span></a></div></li><li class="InlineList-item"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by <span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="932632" href="https://afyonkocatepe.academia.edu/Ey%C3%BCpSABAH">Eyüp SABAH</a><script data-card-contents-for-user="932632" type="text/json">{"id":932632,"first_name":"Eyüp","last_name":"SABAH","domain_name":"afyonkocatepe","page_name":"EyüpSABAH","display_name":"Eyüp SABAH","profile_url":"https://afyonkocatepe.academia.edu/Ey%C3%BCpSABAH?f_ri=55543","photo":"https://0.academia-photos.com/932632/349924/416105/s65_ey_p.sabah.jpg"}</script></span></span></li><li class="js-paper-rank-work_10899515 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="10899515"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 10899515, container: ".js-paper-rank-work_10899515", }); });</script></li><li class="js-percentile-work_10899515 InlineList-item InlineList-item--bordered hidden u-tcGrayDark"><span class="percentile-widget hidden"><span class="u-mr2x percentile-widget" style="display: none">•</span><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 10899515; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-percentile-work_10899515"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></li><li class="js-view-count-work_10899515 InlineList-item InlineList-item--bordered hidden"><div><span><span class="js-view-count view-count u-mr2x" data-work-id="10899515"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 10899515; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=10899515]").text(description); $(".js-view-count-work_10899515").attr('title', description).tooltip(); }); });</script></span><script>$(function() { $(".js-view-count-work_10899515").removeClass('hidden') })</script></div></li><li class="InlineList-item u-positionRelative" style="max-width: 250px"><div class="u-positionAbsolute" data-has-card-for-ri-list="10899515"><i class="fa fa-tag InlineList-item-icon u-positionRelative"></i> <a class="InlineList-item-text u-positionRelative">3</a> </div><span class="InlineList-item-text u-textTruncate u-pl9x"><a class="InlineList-item-text" data-has-card-for-ri="55543" href="https://www.academia.edu/Documents/in/Zeolites">Zeolites</a>, <script data-card-contents-for-ri="55543" type="text/json">{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="102203" href="https://www.academia.edu/Documents/in/Zeolite">Zeolite</a>, <script data-card-contents-for-ri="102203" type="text/json">{"id":102203,"name":"Zeolite","url":"https://www.academia.edu/Documents/in/Zeolite?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="217322" href="https://www.academia.edu/Documents/in/Natural_Zeolites">Natural Zeolites</a><script data-card-contents-for-ri="217322" type="text/json">{"id":217322,"name":"Natural Zeolites","url":"https://www.academia.edu/Documents/in/Natural_Zeolites?f_ri=55543","nofollow":false}</script></span></li><script>(function(){ if (true) { new Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=10899515]'), work: {"id":10899515,"title":"Doğal Zeolitlerin (Klinoptilolit) Su Yumuşatımında Kullanımı","created_at":"2015-02-18T08:19:24.726-08:00","url":"https://www.academia.edu/10899515/Do%C4%9Fal_Zeolitlerin_Klinoptilolit_Su_Yumu%C5%9Fat%C4%B1m%C4%B1nda_Kullan%C4%B1m%C4%B1?f_ri=55543","dom_id":"work_10899515","summary":"Bu çalışmada, ülkemizde zengin rezervleri olduğu bilinen, Balıkesir-Bigadiç üst tüf birimi zeolitik tüfleri (klinoptilolit) ile su sertliğinin giderilme potansiyeli araştırılmış; su kaynağı olarak, klorlama hariç herhangi bir ön arıtma işlemi uygulanmayan, sertlik derecesi yüksek, Selçuk Üniversitesi Kampüs kullanım suyu kullanılmıştır. Bunun için -0.85+0.60 mm fraksiyon aralığında zeolit numuneleri NaOH ile rejenere edilerek, iyon değiştirme kolonundaki zeolitik yataktan sabit akış hızında geçen suyun zamana bağlı sertlik değişimi incelenmiştir. Rejenerasyon şartları bu şekilde optimize edildikten sonra zeolitik yatağa beslenen suyun akış hızının ve kolonda bırakılan su birikintisinin suyun sertliğinin giderilmesine etkisi de araştırılmıştır.\nSonuç olarak; zeolit yataktan geçen suyun sertliği, en düşük değere, besleme suyu hızı 10 ml/dak tutularak ve 0.75M NaOH ile rejenere edilmiş zeolit kullanılarak düşürülmüş ve bu şartlarda çalışılması durumunda, en yüksek işletme kapasitesine ulaşılacağı tespit edilmiştir. \n","downloadable_attachments":[{"id":36682806,"asset_id":10899515,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":932632,"first_name":"Eyüp","last_name":"SABAH","domain_name":"afyonkocatepe","page_name":"EyüpSABAH","display_name":"Eyüp SABAH","profile_url":"https://afyonkocatepe.academia.edu/Ey%C3%BCpSABAH?f_ri=55543","photo":"https://0.academia-photos.com/932632/349924/416105/s65_ey_p.sabah.jpg"}],"research_interests":[{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543","nofollow":false},{"id":102203,"name":"Zeolite","url":"https://www.academia.edu/Documents/in/Zeolite?f_ri=55543","nofollow":false},{"id":217322,"name":"Natural Zeolites","url":"https://www.academia.edu/Documents/in/Natural_Zeolites?f_ri=55543","nofollow":false}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_34460502 coauthored" data-work_id="34460502" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/34460502/Plastic_waste_to_liquid_oil_through_catalytic_pyrolysis_using_natural_and_synthetic_zeolite_catalysts_pdf">Plastic waste to liquid oil through catalytic pyrolysis using natural and synthetic zeolite catalysts.pdf</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">This study aims to examine the catalytic pyrolysis of various plastic wastes in the presence of natural and synthetic zeolite catalysts. A small pilot scale reactor was commissioned to carry out the catalytic pyrolysis of polystyrene... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_34460502" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">This study aims to examine the catalytic pyrolysis of various plastic wastes in the presence of natural and synthetic zeolite catalysts. A small pilot scale reactor was commissioned to carry out the catalytic pyrolysis of polystyrene (PS), polypropylene (PP), polyethylene (PE) and their mixtures in different ratios at 450 °C and 75 min. PS plastic waste resulted in the highest liquid oil yield of 54% using natural zeolite and 50% using synthetic zeolite catalysts. Mixing of PS with other plastic wastes lowered the liquid oil yield whereas all mixtures of PP and PE resulted in higher liquid oil yield than the individual plastic feed-stocks using both catalysts. The GC–MS analysis revealed that the pyrolysis liquid oils from all samples mainly consisted of aromatic hydrocarbons with a few aliphatic hydrocarbon compounds. The types and amounts of different compounds present in liquid oils vary with some common compounds such as styr-ene, ethylbenzene, benzene, azulene, naphthalene, and toluene. The FT-IR data also confirmed that liquid oil contained mostly aromatic compounds with some alkanes, alkenes and small amounts of phenol group. The produced liquid oils have high heating values (HHV) of 40.2–45 MJ/kg, which are similar to conventional diesel. The liquid oil has potential to be used as an alternative source of energy or fuel production.</div></div></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/34460502" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="cc8b08141b99dc6846af03a8695a575b" rel="nofollow" data-download="{"attachment_id":54733271,"asset_id":34460502,"asset_type":"Work","always_allow_download":false,"track":null,"button_location":"work_strip","source":null,"hide_modal":null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/54733271/download_file?st=MTczMzI1MzQ3NSw4LjIyMi4yMDguMTQ2&s=work_strip"><i class="fa fa-arrow-circle-o-down fa-lg"></i><span class="u-textUppercase u-ml1x" data-content="button_text">Download</span></a></div></li><li class="InlineList-item"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by <span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="24648553" href="https://gcu-pk.academia.edu/DrAbdulSattarNizami">Dr. Abdul-Sattar Nizami</a><script data-card-contents-for-user="24648553" type="text/json">{"id":24648553,"first_name":"Dr. Abdul-Sattar","last_name":"Nizami","domain_name":"gcu-pk","page_name":"DrAbdulSattarNizami","display_name":"Dr. Abdul-Sattar Nizami","profile_url":"https://gcu-pk.academia.edu/DrAbdulSattarNizami?f_ri=55543","photo":"https://0.academia-photos.com/24648553/6666988/61191093/s65_dr._abdul-sattar.nizami.jpg"}</script></span></span><span class="u-displayInlineBlock InlineList-item-text"> and <span class="u-textDecorationUnderline u-clickable InlineList-item-text js-work-more-authors-34460502">+1</span><div class="hidden js-additional-users-34460502"><div><span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a href="https://kau.academia.edu/MohammadRehan">Mohammad Rehan</a></span></div></div></span><script>(function(){ var popoverSettings = { el: $('.js-work-more-authors-34460502'), placement: 'bottom', hide_delay: 200, html: true, content: function(){ return $('.js-additional-users-34460502').html(); 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container.find('.percentile-widget').removeClass('hidden'); }); });</script></li><li class="js-view-count-work_34460502 InlineList-item InlineList-item--bordered hidden"><div><span><span class="js-view-count view-count u-mr2x" data-work-id="34460502"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 34460502; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=34460502]").text(description); $(".js-view-count-work_34460502").attr('title', description).tooltip(); }); });</script></span><script>$(function() { $(".js-view-count-work_34460502").removeClass('hidden') })</script></div></li><li class="InlineList-item u-positionRelative" style="max-width: 250px"><div class="u-positionAbsolute" data-has-card-for-ri-list="34460502"><i class="fa fa-tag InlineList-item-icon u-positionRelative"></i> <a class="InlineList-item-text u-positionRelative">50</a> </div><span class="InlineList-item-text u-textTruncate u-pl10x"><a class="InlineList-item-text" data-has-card-for-ri="72" href="https://www.academia.edu/Documents/in/Chemical_Engineering">Chemical Engineering</a>, <script data-card-contents-for-ri="72" type="text/json">{"id":72,"name":"Chemical Engineering","url":"https://www.academia.edu/Documents/in/Chemical_Engineering?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="2738" href="https://www.academia.edu/Documents/in/Renewable_Energy">Renewable Energy</a>, <script data-card-contents-for-ri="2738" type="text/json">{"id":2738,"name":"Renewable Energy","url":"https://www.academia.edu/Documents/in/Renewable_Energy?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="4749" href="https://www.academia.edu/Documents/in/Catalysis">Catalysis</a>, <script data-card-contents-for-ri="4749" type="text/json">{"id":4749,"name":"Catalysis","url":"https://www.academia.edu/Documents/in/Catalysis?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="5412" href="https://www.academia.edu/Documents/in/Energy">Energy</a><script data-card-contents-for-ri="5412" type="text/json">{"id":5412,"name":"Energy","url":"https://www.academia.edu/Documents/in/Energy?f_ri=55543","nofollow":false}</script></span></li><script>(function(){ if (true) { new Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=34460502]'), work: {"id":34460502,"title":"Plastic waste to liquid oil through catalytic pyrolysis using natural and synthetic zeolite catalysts.pdf","created_at":"2017-09-04T07:12:42.582-07:00","url":"https://www.academia.edu/34460502/Plastic_waste_to_liquid_oil_through_catalytic_pyrolysis_using_natural_and_synthetic_zeolite_catalysts_pdf?f_ri=55543","dom_id":"work_34460502","summary":"This study aims to examine the catalytic pyrolysis of various plastic wastes in the presence of natural and synthetic zeolite catalysts. A small pilot scale reactor was commissioned to carry out the catalytic pyrolysis of polystyrene (PS), polypropylene (PP), polyethylene (PE) and their mixtures in different ratios at 450 °C and 75 min. PS plastic waste resulted in the highest liquid oil yield of 54% using natural zeolite and 50% using synthetic zeolite catalysts. Mixing of PS with other plastic wastes lowered the liquid oil yield whereas all mixtures of PP and PE resulted in higher liquid oil yield than the individual plastic feed-stocks using both catalysts. The GC–MS analysis revealed that the pyrolysis liquid oils from all samples mainly consisted of aromatic hydrocarbons with a few aliphatic hydrocarbon compounds. The types and amounts of different compounds present in liquid oils vary with some common compounds such as styr-ene, ethylbenzene, benzene, azulene, naphthalene, and toluene. The FT-IR data also confirmed that liquid oil contained mostly aromatic compounds with some alkanes, alkenes and small amounts of phenol group. The produced liquid oils have high heating values (HHV) of 40.2–45 MJ/kg, which are similar to conventional diesel. The liquid oil has potential to be used as an alternative source of energy or fuel production.","downloadable_attachments":[{"id":54733271,"asset_id":34460502,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":24648553,"first_name":"Dr. Abdul-Sattar","last_name":"Nizami","domain_name":"gcu-pk","page_name":"DrAbdulSattarNizami","display_name":"Dr. Abdul-Sattar Nizami","profile_url":"https://gcu-pk.academia.edu/DrAbdulSattarNizami?f_ri=55543","photo":"https://0.academia-photos.com/24648553/6666988/61191093/s65_dr._abdul-sattar.nizami.jpg"},{"id":24469417,"first_name":"Mohammad","last_name":"Rehan","domain_name":"kau","page_name":"MohammadRehan","display_name":"Mohammad Rehan","profile_url":"https://kau.academia.edu/MohammadRehan?f_ri=55543","photo":"https://0.academia-photos.com/24469417/15302600/153058058/s65_dr_mohammad.rehan.jpeg"}],"research_interests":[{"id":72,"name":"Chemical 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(true) { new Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=44648686]'), work: {"id":44648686,"title":"Material Sains : Cacat kristal dan sifat penting pada material padatan","created_at":"2020-12-06T09:02:08.066-08:00","url":"https://www.academia.edu/44648686/Material_Sains_Cacat_kristal_dan_sifat_penting_pada_material_padatan?f_ri=55543","dom_id":"work_44648686","summary":"Teori mengenai cacat kristal, superkonduktor, Magnetoresistor dan zeolit\n\n","downloadable_attachments":[{"id":65118975,"asset_id":44648686,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":11694795,"first_name":"Tio","last_name":"Wendari","domain_name":"unand","page_name":"TioWendari","display_name":"Tio P Wendari","profile_url":"https://unand.academia.edu/TioWendari?f_ri=55543","photo":"https://0.academia-photos.com/11694795/4322309/33711284/s65_tio.wendari.jpg"}],"research_interests":[{"id":511,"name":"Materials Science","url":"https://www.academia.edu/Documents/in/Materials_Science?f_ri=55543","nofollow":false},{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543","nofollow":false},{"id":1308225,"name":"Jurnal Kimia Anorganik","url":"https://www.academia.edu/Documents/in/Jurnal_Kimia_Anorganik?f_ri=55543","nofollow":false},{"id":1411205,"name":"Kristal Mineral","url":"https://www.academia.edu/Documents/in/Kristal_Mineral?f_ri=55543","nofollow":false},{"id":1641775,"name":"Kimia Anorganik","url":"https://www.academia.edu/Documents/in/Kimia_Anorganik?f_ri=55543"}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_30620064 coauthored" data-work_id="30620064" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/30620064/Effect_of_zeolite_catalysts_on_pyrolysis_liquid_oil_pdf">Effect of zeolite catalysts on pyrolysis liquid oil.pdf</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">The aim of this study was to determine the quality and applications of liquid oil produced by thermal and catalytic pyrolysis of polystyrene (PS) plastic waste by using a small pilot scale pyrolysis reactor. Thermal pyrolysis produced... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_30620064" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">The aim of this study was to determine the quality and applications of liquid oil produced by thermal and catalytic pyrolysis of polystyrene (PS) plastic waste by using a small pilot scale pyrolysis reactor. Thermal pyrolysis produced maximum liquid oil (80.8%) with gases (13%) and char (6.2%), while catalytic pyrolysis using synthetic and natural zeolite decreased the liquid oil yield (52%) with an increase in gases (17.7%) and char (30.1%) production. The lower yield but improved quality of liquid oil through catalytic pyrolysis are due to catalytic features of zeolites such as microporous structure and high BET surface area. The liquid oils, both from thermal and catalytic pyrolysis consist of around 99% aromatic hydrocarbons, as further confirmed by GC-MS results. FT-IR analysis further showed chemical bonding and functional groups of mostly aromatic hydrocarbons, which is consistent with GC-MS results. The produced liquid oils can be suitable for energy generation and heating purposes after the removal of acid, solid residues and contaminants. Further upgrading of liquid oil and blending with diesel is required for its potential use as a transport fuel.</div></div></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/30620064" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="8cd9406dfed8bb60b93d4f459305b8fa" rel="nofollow" data-download="{"attachment_id":52381435,"asset_id":30620064,"asset_type":"Work","always_allow_download":false,"track":null,"button_location":"work_strip","source":null,"hide_modal":null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/52381435/download_file?st=MTczMzI1MzQ3NSw4LjIyMi4yMDguMTQ2&s=work_strip"><i class="fa fa-arrow-circle-o-down fa-lg"></i><span class="u-textUppercase u-ml1x" data-content="button_text">Download</span></a></div></li><li class="InlineList-item"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by <span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="24648553" href="https://gcu-pk.academia.edu/DrAbdulSattarNizami">Dr. Abdul-Sattar Nizami</a><script data-card-contents-for-user="24648553" type="text/json">{"id":24648553,"first_name":"Dr. Abdul-Sattar","last_name":"Nizami","domain_name":"gcu-pk","page_name":"DrAbdulSattarNizami","display_name":"Dr. Abdul-Sattar Nizami","profile_url":"https://gcu-pk.academia.edu/DrAbdulSattarNizami?f_ri=55543","photo":"https://0.academia-photos.com/24648553/6666988/61191093/s65_dr._abdul-sattar.nizami.jpg"}</script></span></span><span class="u-displayInlineBlock InlineList-item-text"> and <span class="u-textDecorationUnderline u-clickable InlineList-item-text js-work-more-authors-30620064">+1</span><div class="hidden js-additional-users-30620064"><div><span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a href="https://kau.academia.edu/MohammadRehan">Mohammad Rehan</a></span></div></div></span><script>(function(){ var popoverSettings = { el: $('.js-work-more-authors-30620064'), placement: 'bottom', hide_delay: 200, html: true, content: function(){ return $('.js-additional-users-30620064').html(); 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Thermal pyrolysis produced maximum liquid oil (80.8%) with gases (13%) and char (6.2%), while catalytic pyrolysis using synthetic and natural zeolite decreased the liquid oil yield (52%) with an increase in gases (17.7%) and char (30.1%) production. The lower yield but improved quality of liquid oil through catalytic pyrolysis are due to catalytic features of zeolites such as microporous structure and high BET surface area. The liquid oils, both from thermal and catalytic pyrolysis consist of around 99% aromatic hydrocarbons, as further confirmed by GC-MS results. FT-IR analysis further showed chemical bonding and functional groups of mostly aromatic hydrocarbons, which is consistent with GC-MS results. The produced liquid oils can be suitable for energy generation and heating purposes after the removal of acid, solid residues and contaminants. Further upgrading of liquid oil and blending with diesel is required for its potential use as a transport fuel.","downloadable_attachments":[{"id":52381435,"asset_id":30620064,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":24648553,"first_name":"Dr. Abdul-Sattar","last_name":"Nizami","domain_name":"gcu-pk","page_name":"DrAbdulSattarNizami","display_name":"Dr. Abdul-Sattar Nizami","profile_url":"https://gcu-pk.academia.edu/DrAbdulSattarNizami?f_ri=55543","photo":"https://0.academia-photos.com/24648553/6666988/61191093/s65_dr._abdul-sattar.nizami.jpg"},{"id":24469417,"first_name":"Mohammad","last_name":"Rehan","domain_name":"kau","page_name":"MohammadRehan","display_name":"Mohammad Rehan","profile_url":"https://kau.academia.edu/MohammadRehan?f_ri=55543","photo":"https://0.academia-photos.com/24469417/15302600/153058058/s65_dr_mohammad.rehan.jpeg"}],"research_interests":[{"id":2738,"name":"Renewable Energy","url":"https://www.academia.edu/Documents/in/Renewable_Energy?f_ri=55543","nofollow":false},{"id":5412,"name":"Energy","url":"https://www.academia.edu/Documents/in/Energy?f_ri=55543","nofollow":false},{"id":6399,"name":"Catalysts","url":"https://www.academia.edu/Documents/in/Catalysts?f_ri=55543","nofollow":false},{"id":7587,"name":"Biorefinery","url":"https://www.academia.edu/Documents/in/Biorefinery?f_ri=55543","nofollow":false},{"id":7601,"name":"Municipal Solid Waste Management","url":"https://www.academia.edu/Documents/in/Municipal_Solid_Waste_Management?f_ri=55543"},{"id":8962,"name":"Waste-to-Energy","url":"https://www.academia.edu/Documents/in/Waste-to-Energy?f_ri=55543"},{"id":14136,"name":"Pyrolysis","url":"https://www.academia.edu/Documents/in/Pyrolysis?f_ri=55543"},{"id":21963,"name":"Solid Waste Management","url":"https://www.academia.edu/Documents/in/Solid_Waste_Management?f_ri=55543"},{"id":27687,"name":"Solid waste management and treatment","url":"https://www.academia.edu/Documents/in/Solid_waste_management_and_treatment?f_ri=55543"},{"id":52468,"name":"Alternative Fuels","url":"https://www.academia.edu/Documents/in/Alternative_Fuels?f_ri=55543"},{"id":54196,"name":"Energy Recovery Systems","url":"https://www.academia.edu/Documents/in/Energy_Recovery_Systems?f_ri=55543"},{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543"},{"id":90326,"name":"Fossils","url":"https://www.academia.edu/Documents/in/Fossils?f_ri=55543"},{"id":93298,"name":"Fossil Fuels","url":"https://www.academia.edu/Documents/in/Fossil_Fuels?f_ri=55543"},{"id":96629,"name":"Waste to Energy","url":"https://www.academia.edu/Documents/in/Waste_to_Energy?f_ri=55543"},{"id":168697,"name":"Polystyrene","url":"https://www.academia.edu/Documents/in/Polystyrene?f_ri=55543"},{"id":217322,"name":"Natural Zeolites","url":"https://www.academia.edu/Documents/in/Natural_Zeolites?f_ri=55543"},{"id":322796,"name":"Natural and Synthetic Zeolite","url":"https://www.academia.edu/Documents/in/Natural_and_Synthetic_Zeolite?f_ri=55543"},{"id":417566,"name":"Local/Municipal government","url":"https://www.academia.edu/Documents/in/Local_Municipal_government?f_ri=55543"},{"id":722106,"name":"Plastic waste","url":"https://www.academia.edu/Documents/in/Plastic_waste?f_ri=55543"},{"id":1143858,"name":"Integration of Fossil Fuels With Renewable Energy Sources","url":"https://www.academia.edu/Documents/in/Integration_of_Fossil_Fuels_With_Renewable_Energy_Sources?f_ri=55543"}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_41806301" data-work_id="41806301" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/41806301/PLANT_DESIGN_FOR_THE_TREATMENT_OF_PHENOLIC_WASTEWATER_FROM_TOR_USING_MODIFIED_SPENT_FCC_CATALYST">PLANT DESIGN FOR THE TREATMENT OF PHENOLIC WASTEWATER FROM TOR USING MODIFIED SPENT FCC CATALYST</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">This study aspires to design a plant for the treatment of phenolic wastewater from Tema Oil Refinery using modified spent FCC catalyst. This project was undertaken to mainly provide clean water and to subsequently curb the degradation of... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_41806301" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">This study aspires to design a plant for the treatment of phenolic wastewater from Tema Oil Refinery using modified spent FCC catalyst. This project was undertaken to mainly provide clean water and to subsequently curb the degradation of environment that results from the disposal of the wastewater in the Heavy Industrial Area community. The raw material was obtained from the Dissolved Air Floatation (DAF) effluent. This stream is made up of physically and chemically treated wastewater from the already existing wastewater treatment plant. In order to accomplish the aim of the project, the DAF effluent went through further chemical and physical separation processes, peroxide dosing, adsorption and oxidation processes, ultrafiltration and fluoridation. Specifically, the properties of other treatment processes were evaluated and the Catalytic Wet Air Oxidation (CWAO) process was chosen after careful consideration. Spent FCC catalyst was obtained from Residual Fluidized Catalytic Cracking (RFCC) unit and modified by calcining it with Fe3+ at high requiring temperatures. The use of the modified spent FCC catalyst optimizes the process by, enhancing the reaction rate, and thus shortening the reaction time. The plant is designed to produce 528 m3/day of treated water and will work for 300 days in a year. The plant has an attainment of 82.2%. It has a working life of 30 years in which viability has been established at 31.2% rate of return and a discounted rate of 34.53%. The payback period is estimated at 3 years after the commencement of the project. Based on the findings of this project, modified FCC catalyst treatment is a very efficient means of treating wastewater and the economic analysis proves its economic feasibility.</div></div></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/41806301" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="9280a2e664e1531542c71b72a0deea19" rel="nofollow" data-download="{"attachment_id":61952877,"asset_id":41806301,"asset_type":"Work","always_allow_download":false,"track":null,"button_location":"work_strip","source":null,"hide_modal":null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/61952877/download_file?st=MTczMzI1MzQ3NSw4LjIyMi4yMDguMTQ2&s=work_strip"><i class="fa fa-arrow-circle-o-down fa-lg"></i><span class="u-textUppercase u-ml1x" data-content="button_text">Download</span></a></div></li><li class="InlineList-item"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by <span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="68059429" href="https://knust.academia.edu/PapaKwarteng">Papa Kwarteng</a><script data-card-contents-for-user="68059429" type="text/json">{"id":68059429,"first_name":"Papa","last_name":"Kwarteng","domain_name":"knust","page_name":"PapaKwarteng","display_name":"Papa Kwarteng","profile_url":"https://knust.academia.edu/PapaKwarteng?f_ri=55543","photo":"https://0.academia-photos.com/68059429/17682982/33782024/s65_papa.kwarteng.jpg"}</script></span></span></li><li class="js-paper-rank-work_41806301 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="41806301"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 41806301, container: ".js-paper-rank-work_41806301", }); 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This project was undertaken to mainly provide clean water and to subsequently curb the degradation of environment that results from the disposal of the wastewater in the Heavy Industrial Area community. The raw material was obtained from the Dissolved Air Floatation (DAF) effluent. This stream is made up of physically and chemically treated wastewater from the already existing wastewater treatment plant. In order to accomplish the aim of the project, the DAF effluent went through further chemical and physical separation processes, peroxide dosing, adsorption and oxidation processes, ultrafiltration and fluoridation. Specifically, the properties of other treatment processes were evaluated and the Catalytic Wet Air Oxidation (CWAO) process was chosen after careful consideration. Spent FCC catalyst was obtained from Residual Fluidized Catalytic Cracking (RFCC) unit and modified by calcining it with Fe3+ at high requiring temperatures. The use of the modified spent FCC catalyst optimizes the process by, enhancing the reaction rate, and thus shortening the reaction time. The plant is designed to produce 528 m3/day of treated water and will work for 300 days in a year. The plant has an attainment of 82.2%. It has a working life of 30 years in which viability has been established at 31.2% rate of return and a discounted rate of 34.53%. The payback period is estimated at 3 years after the commencement of the project. Based on the findings of this project, modified FCC catalyst treatment is a very efficient means of treating wastewater and the economic analysis proves its economic feasibility.","downloadable_attachments":[{"id":61952877,"asset_id":41806301,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":68059429,"first_name":"Papa","last_name":"Kwarteng","domain_name":"knust","page_name":"PapaKwarteng","display_name":"Papa Kwarteng","profile_url":"https://knust.academia.edu/PapaKwarteng?f_ri=55543","photo":"https://0.academia-photos.com/68059429/17682982/33782024/s65_papa.kwarteng.jpg"}],"research_interests":[{"id":9991,"name":"Wastewater Treatment","url":"https://www.academia.edu/Documents/in/Wastewater_Treatment?f_ri=55543","nofollow":false},{"id":37447,"name":"Ultrafiltration","url":"https://www.academia.edu/Documents/in/Ultrafiltration?f_ri=55543","nofollow":false},{"id":39752,"name":"Adsorption","url":"https://www.academia.edu/Documents/in/Adsorption?f_ri=55543","nofollow":false},{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543","nofollow":false},{"id":347988,"name":"Phenols","url":"https://www.academia.edu/Documents/in/Phenols?f_ri=55543"},{"id":691092,"name":"Trickle bed reactors","url":"https://www.academia.edu/Documents/in/Trickle_bed_reactors?f_ri=55543"},{"id":972790,"name":"Adsorbent","url":"https://www.academia.edu/Documents/in/Adsorbent?f_ri=55543"}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_8060939" data-work_id="8060939" itemscope="itemscope" 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work_22358767" data-work_id="22358767" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/22358767/Using_zeolitic_adsorbents_to_cleanup_special_wastewater_streams_A_review">Using zeolitic adsorbents to cleanup special wastewater streams: A review</a></div></div><div class="u-pb4x u-mt3x"></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/22358767" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="c7d25370e1f9a621a49b31c8aeaadecc" 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href="https://www.academia.edu/33869549/Geopolymer_materials_based_on_natural_zeolite">Geopolymer materials based on natural zeolite</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">A B S T R A C T One of the potential raw materials for preparation of geopolymers is the natural zeolite. In the present report, the used natural zeolite (clinoptilolite) is from huge deposit near Beli Plast, Bulgaria. Geopolymer pastes... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_33869549" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">A B S T R A C T One of the potential raw materials for preparation of geopolymers is the natural zeolite. In the present report, the used natural zeolite (clinoptilolite) is from huge deposit near Beli Plast, Bulgaria. Geopolymer pastes and mortars are prepared by using three different alkaline activators—sodium hydroxide, sodium silicate and sodium carbonate. The hardened geopoly-mers are tested for determination of mechanical properties by traditional standardized methods. The structure and the composition of the materials are studied by direct physical methods—X-ray diffraction (XRD), thermal analysis (DTA and TGA) and scanning electron microscopy (SEM). The results show variable degree of dissolutions of the raw zeolite material when using different activators and formation of solid geopolymer materials with qualitatively different structure. Despite its relatively low compressive strength, geopolymers based on natural zeolite cured at room temperature and used as coating, show very good adhesion to concrete.</div></div></div><ul class="InlineList u-ph0x u-fs13"><li class="InlineList-item logged_in_only"><div class="share_on_academia_work_button"><a class="academia_share Button Button--inverseBlue Button--sm js-bookmark-button" data-academia-share="Work/33869549" data-share-source="work_strip" data-spinner="small_white_hide_contents"><i class="fa fa-plus"></i><span class="work-strip-link-text u-ml1x" data-content="button_text">Bookmark</span></a></div></li><li class="InlineList-item"><div class="download"><a id="89e97595dde07318e29116e0b443b8b9" rel="nofollow" data-download="{"attachment_id":53847399,"asset_id":33869549,"asset_type":"Work","always_allow_download":false,"track":null,"button_location":"work_strip","source":null,"hide_modal":null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/53847399/download_file?st=MTczMzI1MzQ3NSw4LjIyMi4yMDguMTQ2&s=work_strip"><i class="fa fa-arrow-circle-o-down fa-lg"></i><span class="u-textUppercase u-ml1x" data-content="button_text">Download</span></a></div></li><li class="InlineList-item"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by <span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="8492460" href="https://bas.academia.edu/AleksandarNikolov">Aleksandar Nikolov</a><script data-card-contents-for-user="8492460" type="text/json">{"id":8492460,"first_name":"Aleksandar","last_name":"Nikolov","domain_name":"bas","page_name":"AleksandarNikolov","display_name":"Aleksandar Nikolov","profile_url":"https://bas.academia.edu/AleksandarNikolov?f_ri=55543","photo":"https://0.academia-photos.com/8492460/2857377/3336901/s65_aleksandar.nikolov.jpg"}</script></span></span></li><li class="js-paper-rank-work_33869549 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="33869549"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 33869549, container: ".js-paper-rank-work_33869549", }); 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$(".js-view-count[data-work-id=33869549]").text(description); $(".js-view-count-work_33869549").attr('title', description).tooltip(); }); });</script></span><script>$(function() { $(".js-view-count-work_33869549").removeClass('hidden') })</script></div></li><li class="InlineList-item u-positionRelative" style="max-width: 250px"><div class="u-positionAbsolute" data-has-card-for-ri-list="33869549"><i class="fa fa-tag InlineList-item-icon u-positionRelative"></i> <a class="InlineList-item-text u-positionRelative">8</a> </div><span class="InlineList-item-text u-textTruncate u-pl9x"><a class="InlineList-item-text" data-has-card-for-ri="28505" href="https://www.academia.edu/Documents/in/Adhesion">Adhesion</a>, <script data-card-contents-for-ri="28505" type="text/json">{"id":28505,"name":"Adhesion","url":"https://www.academia.edu/Documents/in/Adhesion?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="55543" href="https://www.academia.edu/Documents/in/Zeolites">Zeolites</a>, <script data-card-contents-for-ri="55543" type="text/json">{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="102203" href="https://www.academia.edu/Documents/in/Zeolite">Zeolite</a>, <script data-card-contents-for-ri="102203" type="text/json">{"id":102203,"name":"Zeolite","url":"https://www.academia.edu/Documents/in/Zeolite?f_ri=55543","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="120956" href="https://www.academia.edu/Documents/in/Building_Materials">Building Materials</a><script data-card-contents-for-ri="120956" type="text/json">{"id":120956,"name":"Building Materials","url":"https://www.academia.edu/Documents/in/Building_Materials?f_ri=55543","nofollow":false}</script></span></li><script>(function(){ if (true) { new Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=33869549]'), work: {"id":33869549,"title":"Geopolymer materials based on natural zeolite","created_at":"2017-07-13T04:59:21.228-07:00","url":"https://www.academia.edu/33869549/Geopolymer_materials_based_on_natural_zeolite?f_ri=55543","dom_id":"work_33869549","summary":"A B S T R A C T One of the potential raw materials for preparation of geopolymers is the natural zeolite. In the present report, the used natural zeolite (clinoptilolite) is from huge deposit near Beli Plast, Bulgaria. Geopolymer pastes and mortars are prepared by using three different alkaline activators—sodium hydroxide, sodium silicate and sodium carbonate. The hardened geopoly-mers are tested for determination of mechanical properties by traditional standardized methods. The structure and the composition of the materials are studied by direct physical methods—X-ray diffraction (XRD), thermal analysis (DTA and TGA) and scanning electron microscopy (SEM). The results show variable degree of dissolutions of the raw zeolite material when using different activators and formation of solid geopolymer materials with qualitatively different structure. Despite its relatively low compressive strength, geopolymers based on natural zeolite cured at room temperature and used as coating, show very good adhesion to concrete.","downloadable_attachments":[{"id":53847399,"asset_id":33869549,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":8492460,"first_name":"Aleksandar","last_name":"Nikolov","domain_name":"bas","page_name":"AleksandarNikolov","display_name":"Aleksandar Nikolov","profile_url":"https://bas.academia.edu/AleksandarNikolov?f_ri=55543","photo":"https://0.academia-photos.com/8492460/2857377/3336901/s65_aleksandar.nikolov.jpg"}],"research_interests":[{"id":28505,"name":"Adhesion","url":"https://www.academia.edu/Documents/in/Adhesion?f_ri=55543","nofollow":false},{"id":55543,"name":"Zeolites","url":"https://www.academia.edu/Documents/in/Zeolites?f_ri=55543","nofollow":false},{"id":102203,"name":"Zeolite","url":"https://www.academia.edu/Documents/in/Zeolite?f_ri=55543","nofollow":false},{"id":120956,"name":"Building Materials","url":"https://www.academia.edu/Documents/in/Building_Materials?f_ri=55543","nofollow":false},{"id":217322,"name":"Natural Zeolites","url":"https://www.academia.edu/Documents/in/Natural_Zeolites?f_ri=55543"},{"id":267317,"name":"Geopolymers","url":"https://www.academia.edu/Documents/in/Geopolymers?f_ri=55543"},{"id":446967,"name":"Geopolymer chemistry","url":"https://www.academia.edu/Documents/in/Geopolymer_chemistry?f_ri=55543"},{"id":553925,"name":"Geopolymer Cement","url":"https://www.academia.edu/Documents/in/Geopolymer_Cement?f_ri=55543"}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_29940972" data-work_id="29940972" itemscope="itemscope" itemtype="https://schema.org/ScholarlyArticle"><div class="header"><div class="title u-fontSerif u-fs22 u-lineHeight1_3"><a class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/29940972/Acylation_of_Heteroaromatic_Amines_Facile_and_Efficient_Synthesis_of_a_New_Class_of_1_2_3_Triazolo_4_5_b_pyridine_and_Pyrazolo_4_3_b_pyridine_Derivatives">Acylation of Heteroaromatic Amines: Facile and Efficient Synthesis of a New Class of 1,2,3-Triazolo[4,5-b]pyridine and Pyrazolo[4,3-b]pyridine Derivatives</a></div></div><div class="u-pb4x u-mt3x"></div><ul class="InlineList 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href="https://www.academia.edu/18549806/Sustituir_la_tecnolog%C3%ADa_de_agroqu%C3%ADmicos_con_un_modelo_sustentable">Sustituir la tecnología de agroquímicos con un modelo sustentable</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">Se explica cómo el fundamento de la agricultura es la ciencia del suelo para saber cómo se nutren las plantas. Se propone una metodología para sustituir los agroquímicos con un paquete sustentable a base de zeolita, químicos naturales y... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_18549806" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">Se explica cómo el fundamento de la agricultura es la ciencia del suelo para saber cómo se nutren las plantas. 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