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Hydrogen Energy Research Papers - Academia.edu

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for Clean Energy</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">As the global energy market shifts from coal, petroleum fuel, and natural gas to more environmentally friendly primary energy sources, hydrogen is becoming a crucial pillar in the clean energy movement. [35] The measurement delivers an... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_44245021" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">As the global energy market shifts from coal, petroleum fuel, and natural gas to more environmentally friendly primary energy sources, hydrogen is becoming a crucial pillar in the clean energy movement. [35] The measurement delivers an order of magnitude improvement over the previous best and is a significant deviation from the most recent theoretical calculations. Resolving this discrepancy could lead to improvements in molecular quantum theory and could result in a better measured value for the proton radius. [34] Researchers at the Technion-Israel Institute of Technology have constructed a first-of-its-kind optic isolator based on resonance of light waves on a rapidly rotating glass sphere. [33] The micro-resonator is a two-mirror trap for the light, with the mirrors facing each other within several hundred nanometers. [32] &quot;The realization of such all-optical single-photon devices will be a large step towards deterministic multi-mode entanglement generation as well as high-fidelity photonic quantum gates that are crucial for all-optical quantum information processing,&quot; says Tanji-Suzuki. [31] Researchers at ETH have now used attosecond laser pulses to measure the time evolution of this effect in molecules. [30] A new benchmark quantum chemical calculation of C2, Si2, and their hydrides reveals a qualitative difference in the topologies of core electron orbitals of organic molecules and their silicon analogues. [29] A University of Central Florida team has designed a nanostructured optical sensor that for the first time can efficiently detect molecular chirality-a property of molecular spatial twist that defines its biochemical properties. [28] UCLA scientists and engineers have developed a new process for assembling semiconductor devices. [27]</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/44245021" 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="6646a40a556288fa85a21885e3d6deb7" rel="nofollow" data-download="{&quot;attachment_id&quot;:64616628,&quot;asset_id&quot;:44245021,&quot;asset_type&quot;:&quot;Work&quot;,&quot;always_allow_download&quot;:false,&quot;track&quot;:null,&quot;button_location&quot;:&quot;work_strip&quot;,&quot;source&quot;:null,&quot;hide_modal&quot;:null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/64616628/download_file?st=MTczMjcxNDE3Myw4LjIyMi4yMDguMTQ2&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&nbsp;<span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="4716086" href="https://independent.academia.edu/GeorgeRajna">George Rajna</a><script data-card-contents-for-user="4716086" type="text/json">{"id":4716086,"first_name":"George","last_name":"Rajna","domain_name":"independent","page_name":"GeorgeRajna","display_name":"George Rajna","profile_url":"https://independent.academia.edu/GeorgeRajna?f_ri=104345","photo":"https://0.academia-photos.com/4716086/1992312/2351930/s65_george.rajna.jpg"}</script></span></span></li><li class="js-paper-rank-work_44245021 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="44245021"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 44245021, container: ".js-paper-rank-work_44245021", }); });</script></li><li class="js-percentile-work_44245021 InlineList-item InlineList-item--bordered hidden u-tcGrayDark"><span class="percentile-widget hidden"><span class="u-mr2x percentile-widget" style="display: none">•</span><span class="u-mr2x work-percentile"></span></span><script>$(function () { var workId = 44245021; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-percentile-work_44245021"); container.find('.work-percentile').text(percentileText.charAt(0).toUpperCase() + percentileText.slice(1)); container.find('.percentile-widget').show(); container.find('.percentile-widget').removeClass('hidden'); }); });</script></li><li class="js-view-count-work_44245021 InlineList-item InlineList-item--bordered hidden"><div><span><span class="js-view-count view-count u-mr2x" data-work-id="44245021"><i class="fa fa-spinner fa-spin"></i></span><script>$(function () { var workId = 44245021; window.Academia.workViewCountsFetcher.queue(workId, function (count) { var description = window.$h.commaizeInt(count) + " " + window.$h.pluralize(count, 'View'); $(".js-view-count[data-work-id=44245021]").text(description); $(".js-view-count-work_44245021").attr('title', description).tooltip(); }); });</script></span><script>$(function() { $(".js-view-count-work_44245021").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="44245021"><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="104345" href="https://www.academia.edu/Documents/in/Hydrogen_Energy">Hydrogen Energy</a><script data-card-contents-for-ri="104345" type="text/json">{"id":104345,"name":"Hydrogen Energy","url":"https://www.academia.edu/Documents/in/Hydrogen_Energy?f_ri=104345","nofollow":false}</script></span></li><script>(function(){ if (false) { new Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=44245021]'), work: {"id":44245021,"title":"Hydrogen for Clean Energy","created_at":"2020-10-07T01:42:12.540-07:00","url":"https://www.academia.edu/44245021/Hydrogen_for_Clean_Energy?f_ri=104345","dom_id":"work_44245021","summary":"As the global energy market shifts from coal, petroleum fuel, and natural gas to more environmentally friendly primary energy sources, hydrogen is becoming a crucial pillar in the clean energy movement. [35] The measurement delivers an order of magnitude improvement over the previous best and is a significant deviation from the most recent theoretical calculations. Resolving this discrepancy could lead to improvements in molecular quantum theory and could result in a better measured value for the proton radius. [34] Researchers at the Technion-Israel Institute of Technology have constructed a first-of-its-kind optic isolator based on resonance of light waves on a rapidly rotating glass sphere. [33] The micro-resonator is a two-mirror trap for the light, with the mirrors facing each other within several hundred nanometers. [32] \"The realization of such all-optical single-photon devices will be a large step towards deterministic multi-mode entanglement generation as well as high-fidelity photonic quantum gates that are crucial for all-optical quantum information processing,\" says Tanji-Suzuki. [31] Researchers at ETH have now used attosecond laser pulses to measure the time evolution of this effect in molecules. [30] A new benchmark quantum chemical calculation of C2, Si2, and their hydrides reveals a qualitative difference in the topologies of core electron orbitals of organic molecules and their silicon analogues. [29] A University of Central Florida team has designed a nanostructured optical sensor that for the first time can efficiently detect molecular chirality-a property of molecular spatial twist that defines its biochemical properties. [28] UCLA scientists and engineers have developed a new process for assembling semiconductor devices. [27]","downloadable_attachments":[{"id":64616628,"asset_id":44245021,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":4716086,"first_name":"George","last_name":"Rajna","domain_name":"independent","page_name":"GeorgeRajna","display_name":"George Rajna","profile_url":"https://independent.academia.edu/GeorgeRajna?f_ri=104345","photo":"https://0.academia-photos.com/4716086/1992312/2351930/s65_george.rajna.jpg"}],"research_interests":[{"id":104345,"name":"Hydrogen Energy","url":"https://www.academia.edu/Documents/in/Hydrogen_Energy?f_ri=104345","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_6346827" data-work_id="6346827" 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" 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js-work-link" href="https://www.academia.edu/74111997/Hydrogen_Tank_Rupture_in_Fire_in_the_Open_Atmosphere_Hazard_Distance_Defined_by_Fireball">Hydrogen Tank Rupture in Fire in the Open Atmosphere: Hazard Distance Defined by Fireball</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 engineering correlations for assessment of hazard distance defined by a size of fireball after either liquid hydrogen spill combustion or high-pressure hydrogen tank rupture in a fire in the open atmosphere (both for stand-alone and... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_74111997" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">The engineering correlations for assessment of hazard distance defined by a size of fireball after either liquid hydrogen spill combustion or high-pressure hydrogen tank rupture in a fire in the open atmosphere (both for stand-alone and under-vehicle tanks) are presented. The term “fireball size” is used for the maximum horizontal size of a fireball that is different from the term “fireball diameter” applied to spherical or semi-spherical shape fireballs. There are different reasons for a fireball to deviate from a spherical shape, e.g., in case of tank rupture under a vehicle, the non-instantaneous opening of tank walls, etc. Two conservative correlations are built using theoretical analysis, numerical simulations, and experimental data available in the literature. The theoretical model for hydrogen fireball size assumes complete isobaric combustion of hydrogen in air and presumes its hemispherical shape as observed in the experiments and the simulations for tank rupturing at the g...</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/74111997" 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="0050c6dc7b76461b2f6addb9dacf875b" rel="nofollow" data-download="{&quot;attachment_id&quot;:82381743,&quot;asset_id&quot;:74111997,&quot;asset_type&quot;:&quot;Work&quot;,&quot;always_allow_download&quot;:false,&quot;track&quot;:null,&quot;button_location&quot;:&quot;work_strip&quot;,&quot;source&quot;:null,&quot;hide_modal&quot;:null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/82381743/download_file?st=MTczMjcxNDE3Myw4LjIyMi4yMDguMTQ2&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&nbsp;<span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="147808" href="https://ulster.academia.edu/VladimirMolkov">Vladimir Molkov</a><script data-card-contents-for-user="147808" type="text/json">{"id":147808,"first_name":"Vladimir","last_name":"Molkov","domain_name":"ulster","page_name":"VladimirMolkov","display_name":"Vladimir Molkov","profile_url":"https://ulster.academia.edu/VladimirMolkov?f_ri=104345","photo":"/images/s65_no_pic.png"}</script></span></span></li><li class="js-paper-rank-work_74111997 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="74111997"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 74111997, container: ".js-paper-rank-work_74111997", }); 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class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">Pt nanoparticles were supported on Sb2O5.SnO2 (ATO), on carbon and on physical mixtures of ATO and carbon by an alcohol-reduction process using ethylene glycol as reducing agent. The obtained materials were characterized by X-ray... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_3802770" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">Pt nanoparticles were supported on Sb2O5.SnO2 (ATO), on carbon and on physical mixtures of ATO and carbon by an alcohol-reduction process using ethylene glycol as reducing agent. The obtained materials were characterized by X-ray diffraction (XRD) and transmission electron microscopy (TEM). Their performance for ethanol oxidation was investigated at room temperature by chronoamperometry and in a direct ethanol fuel cell (DEFC) at 100 °C. Pt nanoparticles supported on a physical mixture of ATO and carbon showed a significant increase of performance for ethanol oxidation compared to Pt nanoparticles supported on ATO or on carbon.</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/3802770" 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="9d83567e5b3ea48f9accbe69c575ce57" rel="nofollow" data-download="{&quot;attachment_id&quot;:50131092,&quot;asset_id&quot;:3802770,&quot;asset_type&quot;:&quot;Work&quot;,&quot;always_allow_download&quot;:false,&quot;track&quot;:null,&quot;button_location&quot;:&quot;work_strip&quot;,&quot;source&quot;:null,&quot;hide_modal&quot;:null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/50131092/download_file?st=MTczMjcxNDE3Myw4LjIyMi4yMDguMTQ2&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&nbsp;<span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="4676007" href="https://independent.academia.edu/AtosSilva">Atos Silva</a><script data-card-contents-for-user="4676007" type="text/json">{"id":4676007,"first_name":"Atos","last_name":"Silva","domain_name":"independent","page_name":"AtosSilva","display_name":"Atos Silva","profile_url":"https://independent.academia.edu/AtosSilva?f_ri=104345","photo":"/images/s65_no_pic.png"}</script></span></span></li><li class="js-paper-rank-work_3802770 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="3802770"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 3802770, container: ".js-paper-rank-work_3802770", }); 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The obtained materials were characterized by X-ray diffraction (XRD) and transmission electron microscopy (TEM). Their performance for ethanol oxidation was investigated at room temperature by chronoamperometry and in a direct ethanol fuel cell (DEFC) at 100 °C. Pt nanoparticles supported on a physical mixture of ATO and carbon showed a significant increase of performance for ethanol oxidation compared to Pt nanoparticles supported on ATO or on carbon.","downloadable_attachments":[{"id":50131092,"asset_id":3802770,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":4676007,"first_name":"Atos","last_name":"Silva","domain_name":"independent","page_name":"AtosSilva","display_name":"Atos Silva","profile_url":"https://independent.academia.edu/AtosSilva?f_ri=104345","photo":"/images/s65_no_pic.png"}],"research_interests":[{"id":48,"name":"Engineering","url":"https://www.academia.edu/Documents/in/Engineering?f_ri=104345","nofollow":false},{"id":14076,"name":"Transmission Electron Microscopy","url":"https://www.academia.edu/Documents/in/Transmission_Electron_Microscopy?f_ri=104345","nofollow":false},{"id":27303,"name":"Fuel Cell","url":"https://www.academia.edu/Documents/in/Fuel_Cell?f_ri=104345","nofollow":false},{"id":104345,"name":"Hydrogen Energy","url":"https://www.academia.edu/Documents/in/Hydrogen_Energy?f_ri=104345","nofollow":false},{"id":260118,"name":"CHEMICAL SCIENCES","url":"https://www.academia.edu/Documents/in/CHEMICAL_SCIENCES?f_ri=104345"},{"id":386527,"name":"X ray diffraction","url":"https://www.academia.edu/Documents/in/X_ray_diffraction?f_ri=104345"},{"id":391252,"name":"Room Temperature","url":"https://www.academia.edu/Documents/in/Room_Temperature?f_ri=104345"},{"id":1650162,"name":"Ethylene Glycol","url":"https://www.academia.edu/Documents/in/Ethylene_Glycol?f_ri=104345"}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_12194002" data-work_id="12194002" 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/12194002/Providing_Hydrogen_for_Transport_in_Norway_A_Social_Learning_Approach">Providing Hydrogen for Transport in Norway: A Social Learning Approach</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">Project funding and collaboration • Norwegian Research Council – Programme: RENERGI (Clean Energy for the Future) – 3 mill NOK granted for 3 years • Norwegian University of Science and Technology – Philosophical and Historical... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_12194002" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">Project funding and collaboration <br />• Norwegian Research Council <br />– Programme: RENERGI (Clean Energy for the <br />Future) <br />– 3 mill NOK granted for 3 years <br />• Norwegian University of Science and <br />Technology <br />– Philosophical and Historical Faculty <br />• Dept. of Interdisciplinary Studies of Culture <br />– Project co-ordinator: Professor Knut Holtan Sørensen <br />Background <br />• International Partnership for the Hydrogen <br />Economy <br />– 15 countries and the European Commission <br />– Implementing and liaison committee <br />• Socio-economic task force scoping paper: <br />– Analysis of stakeholders behaviour and strategy toward <br />hydrogen energy technologies in order to understand and react <br />to potential “allies” or “opponents” <br />– Analysis of the conditions for acceptance mainly through field <br />experients analysis. In that sense field sociological analysis <br />should accompany all demonstration projects and be reported. <br />– Agenda: identification of existing sociological studies conducted <br />on demonstration projects <br /> <br />Goals of the study <br />• Provide knowledge about socio-technical <br />elements of alternative energy <br />implementation in transport <br />– Specifically, hydrogen in Norway <br />• The HyNor project <br />– actor behaviour <br />– actor strategies <br />– strategy interaction <br />– actor visions <br />• Social learning <br />• Identify critical policy issues</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/12194002" 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="4a064981560c2410c64c5015dac5f66d" rel="nofollow" data-download="{&quot;attachment_id&quot;:37778439,&quot;asset_id&quot;:12194002,&quot;asset_type&quot;:&quot;Work&quot;,&quot;always_allow_download&quot;:false,&quot;track&quot;:null,&quot;button_location&quot;:&quot;work_strip&quot;,&quot;source&quot;:null,&quot;hide_modal&quot;:null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/37778439/download_file?st=MTczMjcxNDE3Myw4LjIyMi4yMDguMTQ2&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&nbsp;<span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="30651469" href="https://vestforsk.academia.edu/OAndersen">Otto Andersen</a><script data-card-contents-for-user="30651469" type="text/json">{"id":30651469,"first_name":"Otto","last_name":"Andersen","domain_name":"vestforsk","page_name":"OAndersen","display_name":"Otto Andersen","profile_url":"https://vestforsk.academia.edu/OAndersen?f_ri=104345","photo":"https://0.academia-photos.com/30651469/9328340/10396669/s65_otto.andersen.jpg"}</script></span></span></li><li class="js-paper-rank-work_12194002 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="12194002"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 12194002, container: ".js-paper-rank-work_12194002", }); 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$(".js-view-count[data-work-id=12194002]").text(description); $(".js-view-count-work_12194002").attr('title', description).tooltip(); }); });</script></span><script>$(function() { $(".js-view-count-work_12194002").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="12194002"><i class="fa fa-tag InlineList-item-icon u-positionRelative"></i>&nbsp;&nbsp;<a class="InlineList-item-text u-positionRelative">2</a>&nbsp;&nbsp;</div><span class="InlineList-item-text u-textTruncate u-pl9x"><a class="InlineList-item-text" data-has-card-for-ri="3771" href="https://www.academia.edu/Documents/in/Hydrogen">Hydrogen</a>,&nbsp;<script data-card-contents-for-ri="3771" type="text/json">{"id":3771,"name":"Hydrogen","url":"https://www.academia.edu/Documents/in/Hydrogen?f_ri=104345","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="104345" href="https://www.academia.edu/Documents/in/Hydrogen_Energy">Hydrogen Energy</a><script data-card-contents-for-ri="104345" type="text/json">{"id":104345,"name":"Hydrogen Energy","url":"https://www.academia.edu/Documents/in/Hydrogen_Energy?f_ri=104345","nofollow":false}</script></span></li><script>(function(){ if (true) { new Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=12194002]'), work: {"id":12194002,"title":"Providing Hydrogen for Transport in Norway: A Social Learning Approach","created_at":"2015-05-02T16:17:51.412-07:00","url":"https://www.academia.edu/12194002/Providing_Hydrogen_for_Transport_in_Norway_A_Social_Learning_Approach?f_ri=104345","dom_id":"work_12194002","summary":"Project funding and collaboration\r\n• Norwegian Research Council\r\n– Programme: RENERGI (Clean Energy for the\r\nFuture)\r\n– 3 mill NOK granted for 3 years\r\n• Norwegian University of Science and\r\nTechnology\r\n– Philosophical and Historical Faculty\r\n• Dept. of Interdisciplinary Studies of Culture\r\n– Project co-ordinator: Professor Knut Holtan Sørensen\r\nBackground\r\n• International Partnership for the Hydrogen\r\nEconomy\r\n– 15 countries and the European Commission\r\n– Implementing and liaison committee\r\n• Socio-economic task force scoping paper:\r\n– Analysis of stakeholders behaviour and strategy toward\r\nhydrogen energy technologies in order to understand and react\r\nto potential “allies” or “opponents”\r\n– Analysis of the conditions for acceptance mainly through field\r\nexperients analysis. In that sense field sociological analysis\r\nshould accompany all demonstration projects and be reported.\r\n– Agenda: identification of existing sociological studies conducted\r\non demonstration projects\r\n\r\nGoals of the study\r\n• Provide knowledge about socio-technical\r\nelements of alternative energy\r\nimplementation in transport\r\n– Specifically, hydrogen in Norway\r\n• The HyNor project\r\n– actor behaviour\r\n– actor strategies\r\n– strategy interaction\r\n– actor visions\r\n• Social learning\r\n• Identify critical policy issues","downloadable_attachments":[{"id":37778439,"asset_id":12194002,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":30651469,"first_name":"Otto","last_name":"Andersen","domain_name":"vestforsk","page_name":"OAndersen","display_name":"Otto 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pressure and temperature dependence factors on the membrane reactor performances</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/16571989" 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="dc7d68869ccb6ae2a047faa6dae52f52" rel="nofollow" data-download="{&quot;attachment_id&quot;:42433803,&quot;asset_id&quot;:16571989,&quot;asset_type&quot;:&quot;Work&quot;,&quot;always_allow_download&quot;:false,&quot;track&quot;:null,&quot;button_location&quot;:&quot;work_strip&quot;,&quot;source&quot;:null,&quot;hide_modal&quot;:null}" class="Button Button--sm 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Falco","profile_url":"https://unicampus.academia.edu/MarcelloFalco?f_ri=104345","photo":"/images/s65_no_pic.png"}</script></span></span></li><li class="js-paper-rank-work_16571989 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="16571989"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 16571989, container: ".js-paper-rank-work_16571989", }); });</script></li><li class="js-percentile-work_16571989 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 = 16571989; window.Academia.workPercentilesFetcher.queue(workId, function (percentileText) { var container = $(".js-percentile-work_16571989"); 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class="u-positionAbsolute" data-has-card-for-ri-list="16571989"><i class="fa fa-tag InlineList-item-icon u-positionRelative"></i>&nbsp;&nbsp;<a class="InlineList-item-text u-positionRelative">8</a>&nbsp;&nbsp;</div><span class="InlineList-item-text u-textTruncate u-pl9x"><a class="InlineList-item-text" data-has-card-for-ri="48" href="https://www.academia.edu/Documents/in/Engineering">Engineering</a>,&nbsp;<script data-card-contents-for-ri="48" type="text/json">{"id":48,"name":"Engineering","url":"https://www.academia.edu/Documents/in/Engineering?f_ri=104345","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="104345" href="https://www.academia.edu/Documents/in/Hydrogen_Energy">Hydrogen Energy</a>,&nbsp;<script data-card-contents-for-ri="104345" type="text/json">{"id":104345,"name":"Hydrogen Energy","url":"https://www.academia.edu/Documents/in/Hydrogen_Energy?f_ri=104345","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="156347" href="https://www.academia.edu/Documents/in/Methane">Methane</a>,&nbsp;<script data-card-contents-for-ri="156347" type="text/json">{"id":156347,"name":"Methane","url":"https://www.academia.edu/Documents/in/Methane?f_ri=104345","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="247487" href="https://www.academia.edu/Documents/in/Temperature_Dependence">Temperature Dependence</a><script data-card-contents-for-ri="247487" type="text/json">{"id":247487,"name":"Temperature Dependence","url":"https://www.academia.edu/Documents/in/Temperature_Dependence?f_ri=104345","nofollow":false}</script></span></li><script>(function(){ if (true) { new Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=16571989]'), work: {"id":16571989,"title":"The effect of the hydrogen flux pressure and temperature dependence factors on the membrane reactor performances","created_at":"2015-10-08T09:34:57.458-07:00","url":"https://www.academia.edu/16571989/The_effect_of_the_hydrogen_flux_pressure_and_temperature_dependence_factors_on_the_membrane_reactor_performances?f_ri=104345","dom_id":"work_16571989","summary":null,"downloadable_attachments":[{"id":42433803,"asset_id":16571989,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":35880596,"first_name":"Marcello","last_name":"Falco","domain_name":"unicampus","page_name":"MarcelloFalco","display_name":"Marcello Falco","profile_url":"https://unicampus.academia.edu/MarcelloFalco?f_ri=104345","photo":"/images/s65_no_pic.png"}],"research_interests":[{"id":48,"name":"Engineering","url":"https://www.academia.edu/Documents/in/Engineering?f_ri=104345","nofollow":false},{"id":104345,"name":"Hydrogen 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data-work_id="75597165" 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/75597165/Application_of_hydrides_in_hydrogen_storage_and_compression_Achievements_outlook_and_perspectives">Application of hydrides in hydrogen storage and compression: Achievements, outlook and perspectives</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/75597165" 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 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href="https://www.academia.edu/17193638/Electrocatalytic_properties_of_new_spinel_type_MMoO4_M_Fe_Co_and_Ni_electrodes_for_oxygen_evolution_in_alkaline_solutions">Electrocatalytic properties of new spinel-type MMoO4 (M=Fe, Co and Ni) electrodes for oxygen evolution in alkaline solutions</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/17193638" 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="c946e41bf7e281b46a73ffaaaed9b375" rel="nofollow" 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Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=17193638]'), work: {"id":17193638,"title":"Electrocatalytic properties of new spinel-type MMoO4 (M=Fe, Co and Ni) electrodes for oxygen evolution in alkaline solutions","created_at":"2015-10-23T00:22:53.093-07:00","url":"https://www.academia.edu/17193638/Electrocatalytic_properties_of_new_spinel_type_MMoO4_M_Fe_Co_and_Ni_electrodes_for_oxygen_evolution_in_alkaline_solutions?f_ri=104345","dom_id":"work_17193638","summary":null,"downloadable_attachments":[{"id":39383456,"asset_id":17193638,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":36653961,"first_name":"raj","last_name":"singh","domain_name":"independent","page_name":"rajsingh218","display_name":"raj 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class="u-tcGrayDarkest js-work-link" href="https://www.academia.edu/57900015/Optimization_of_a_hydrogen_purification_system">Optimization of a hydrogen purification system</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 typical process of pressure swing adsorption (PSA) for H2 purification consists of a sequence of stages involving high pressure adsorption and low pressure desorption at a determined temperature. If it is desired to optimize a process... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_57900015" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">A typical process of pressure swing adsorption (PSA) for H2 purification consists of a sequence of stages involving high pressure adsorption and low pressure desorption at a determined temperature. If it is desired to optimize a process already installed, the pressure cannot be easily modified.In this work the viability of modifying other operative variables was studied. For it, in the</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/57900015" 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="1e4aab510bb1736654e5f27c5f8c683f" rel="nofollow" data-download="{&quot;attachment_id&quot;:72574889,&quot;asset_id&quot;:57900015,&quot;asset_type&quot;:&quot;Work&quot;,&quot;always_allow_download&quot;:false,&quot;track&quot;:null,&quot;button_location&quot;:&quot;work_strip&quot;,&quot;source&quot;:null,&quot;hide_modal&quot;:null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/72574889/download_file?st=MTczMjcxNDE3Myw4LjIyMi4yMDguMTQ2&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&nbsp;<span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="80841172" href="https://independent.academia.edu/Marcelotagliabue">Marcelo tagliabue</a><script data-card-contents-for-user="80841172" type="text/json">{"id":80841172,"first_name":"Marcelo","last_name":"tagliabue","domain_name":"independent","page_name":"Marcelotagliabue","display_name":"Marcelo tagliabue","profile_url":"https://independent.academia.edu/Marcelotagliabue?f_ri=104345","photo":"/images/s65_no_pic.png"}</script></span></span></li><li class="js-paper-rank-work_57900015 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="57900015"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 57900015, container: ".js-paper-rank-work_57900015", }); 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If it is desired to optimize a process already installed, the pressure cannot be easily modified.In this work the viability of modifying other operative variables was studied. For it, in the","downloadable_attachments":[{"id":72574889,"asset_id":57900015,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":80841172,"first_name":"Marcelo","last_name":"tagliabue","domain_name":"independent","page_name":"Marcelotagliabue","display_name":"Marcelo tagliabue","profile_url":"https://independent.academia.edu/Marcelotagliabue?f_ri=104345","photo":"/images/s65_no_pic.png"}],"research_interests":[{"id":48,"name":"Engineering","url":"https://www.academia.edu/Documents/in/Engineering?f_ri=104345","nofollow":false},{"id":506,"name":"Cryogenics","url":"https://www.academia.edu/Documents/in/Cryogenics?f_ri=104345","nofollow":false},{"id":4107,"name":"High Pressure","url":"https://www.academia.edu/Documents/in/High_Pressure?f_ri=104345","nofollow":false},{"id":39752,"name":"Adsorption","url":"https://www.academia.edu/Documents/in/Adsorption?f_ri=104345","nofollow":false},{"id":43981,"name":"Optimization","url":"https://www.academia.edu/Documents/in/Optimization?f_ri=104345"},{"id":104345,"name":"Hydrogen Energy","url":"https://www.academia.edu/Documents/in/Hydrogen_Energy?f_ri=104345"},{"id":156347,"name":"Methane","url":"https://www.academia.edu/Documents/in/Methane?f_ri=104345"},{"id":211876,"name":"Desorption","url":"https://www.academia.edu/Documents/in/Desorption?f_ri=104345"},{"id":260118,"name":"CHEMICAL SCIENCES","url":"https://www.academia.edu/Documents/in/CHEMICAL_SCIENCES?f_ri=104345"},{"id":412542,"name":"Pressure Swing Adsorption","url":"https://www.academia.edu/Documents/in/Pressure_Swing_Adsorption?f_ri=104345"},{"id":1174006,"name":"Low Pressure Boiler","url":"https://www.academia.edu/Documents/in/Low_Pressure_Boiler?f_ri=104345"}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_43931976" data-work_id="43931976" 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/43931976/Localisation_of_Hydrogen_Fuel_Generation_from_Urine">Localisation of Hydrogen Fuel Generation from Urine</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 discusses the possibility of extraction of Hydrogen from urine and using it as a fuel to power various machinery and automobiles which could run on hydrogen fuel. The paper also attempts to show a practical layout of various... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_43931976" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">This paper discusses the possibility of extraction of Hydrogen from urine and using it as a fuel to power various machinery and automobiles which could run on hydrogen fuel. The paper also attempts to show a practical layout of various processes and stages which could facilitate the conversion of urea into hydrogen molecules which can be then stored in compressed chambers and subsequently distributed as required. The design is compact, user-friendly, sustainable and is mostly based on domestic use.</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/43931976" 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="66cb4fba81368c130c68aa48a2a62c6e" rel="nofollow" data-download="{&quot;attachment_id&quot;:64256044,&quot;asset_id&quot;:43931976,&quot;asset_type&quot;:&quot;Work&quot;,&quot;always_allow_download&quot;:false,&quot;track&quot;:null,&quot;button_location&quot;:&quot;work_strip&quot;,&quot;source&quot;:null,&quot;hide_modal&quot;:null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/64256044/download_file?st=MTczMjcxNDE3Myw4LjIyMi4yMDguMTQ2&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&nbsp;<span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="123373961" href="https://srmuniv.academia.edu/YashKesarwani">Yash Kesarwani</a><script data-card-contents-for-user="123373961" type="text/json">{"id":123373961,"first_name":"Yash","last_name":"Kesarwani","domain_name":"srmuniv","page_name":"YashKesarwani","display_name":"Yash Kesarwani","profile_url":"https://srmuniv.academia.edu/YashKesarwani?f_ri=104345","photo":"https://0.academia-photos.com/123373961/31129235/28710828/s65_yash.kesarwani.jpg"}</script></span></span></li><li class="js-paper-rank-work_43931976 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="43931976"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 43931976, container: ".js-paper-rank-work_43931976", }); 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The paper also attempts to show a practical layout of various processes and stages which could facilitate the conversion of urea into hydrogen molecules which can be then stored in compressed chambers and subsequently distributed as required. The design is compact, user-friendly, sustainable and is mostly based on domestic use.","downloadable_attachments":[{"id":64256044,"asset_id":43931976,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":123373961,"first_name":"Yash","last_name":"Kesarwani","domain_name":"srmuniv","page_name":"YashKesarwani","display_name":"Yash Kesarwani","profile_url":"https://srmuniv.academia.edu/YashKesarwani?f_ri=104345","photo":"https://0.academia-photos.com/123373961/31129235/28710828/s65_yash.kesarwani.jpg"}],"research_interests":[{"id":2738,"name":"Renewable Energy","url":"https://www.academia.edu/Documents/in/Renewable_Energy?f_ri=104345","nofollow":false},{"id":21551,"name":"Hydrogen Storage","url":"https://www.academia.edu/Documents/in/Hydrogen_Storage?f_ri=104345","nofollow":false},{"id":88710,"name":"Localisation","url":"https://www.academia.edu/Documents/in/Localisation?f_ri=104345","nofollow":false},{"id":104345,"name":"Hydrogen Energy","url":"https://www.academia.edu/Documents/in/Hydrogen_Energy?f_ri=104345","nofollow":false},{"id":939200,"name":"Hydrogen Economy","url":"https://www.academia.edu/Documents/in/Hydrogen_Economy?f_ri=104345"},{"id":1318146,"name":"Hydrogen Vehicle Refuelling Infrastructure","url":"https://www.academia.edu/Documents/in/Hydrogen_Vehicle_Refuelling_Infrastructure?f_ri=104345"},{"id":3745756,"name":"Hydrogen Infrastructure","url":"https://www.academia.edu/Documents/in/Hydrogen_Infrastructure?f_ri=104345"}]}, }) } })();</script></ul></li></ul></div></div><div class="u-borderBottom1 u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_4627835" data-work_id="4627835" 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/4627835/Biohydrogen_production_by_Clostridium_butyricum_EB6_from_palm_oil_mill_effluent">Biohydrogen production by Clostridium butyricum EB6 from palm oil mill effluent</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/4627835" 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="c017ec52997bba5faf8650c558c810ac" rel="nofollow" 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href="https://www.academia.edu/Documents/in/Engineering">Engineering</a>,&nbsp;<script data-card-contents-for-ri="48" type="text/json">{"id":48,"name":"Engineering","url":"https://www.academia.edu/Documents/in/Engineering?f_ri=104345","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="104345" href="https://www.academia.edu/Documents/in/Hydrogen_Energy">Hydrogen Energy</a>,&nbsp;<script data-card-contents-for-ri="104345" type="text/json">{"id":104345,"name":"Hydrogen Energy","url":"https://www.academia.edu/Documents/in/Hydrogen_Energy?f_ri=104345","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="133175" href="https://www.academia.edu/Documents/in/Durability">Durability</a>,&nbsp;<script data-card-contents-for-ri="133175" type="text/json">{"id":133175,"name":"Durability","url":"https://www.academia.edu/Documents/in/Durability?f_ri=104345","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="163878" 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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>,&nbsp;<script data-card-contents-for-ri="48" type="text/json">{"id":48,"name":"Engineering","url":"https://www.academia.edu/Documents/in/Engineering?f_ri=104345","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="27303" href="https://www.academia.edu/Documents/in/Fuel_Cell">Fuel Cell</a>,&nbsp;<script data-card-contents-for-ri="27303" type="text/json">{"id":27303,"name":"Fuel Cell","url":"https://www.academia.edu/Documents/in/Fuel_Cell?f_ri=104345","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="84206" href="https://www.academia.edu/Documents/in/Working_Conditions">Working Conditions</a>,&nbsp;<script data-card-contents-for-ri="84206" type="text/json">{"id":84206,"name":"Working Conditions","url":"https://www.academia.edu/Documents/in/Working_Conditions?f_ri=104345","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="104345" href="https://www.academia.edu/Documents/in/Hydrogen_Energy">Hydrogen Energy</a><script data-card-contents-for-ri="104345" type="text/json">{"id":104345,"name":"Hydrogen Energy","url":"https://www.academia.edu/Documents/in/Hydrogen_Energy?f_ri=104345","nofollow":false}</script></span></li><script>(function(){ if (true) { new Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=5586632]'), work: {"id":5586632,"title":"Optimization of parametric performance of a 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href="https://www.academia.edu/Documents/in/Hydrogen_Energy">Hydrogen Energy</a>,&nbsp;<script data-card-contents-for-ri="104345" type="text/json">{"id":104345,"name":"Hydrogen Energy","url":"https://www.academia.edu/Documents/in/Hydrogen_Energy?f_ri=104345","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=104345","nofollow":false}</script></span></li><script>(function(){ if (true) { new Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=8047120]'), work: {"id":8047120,"title":"On the use of hydrogen in confined spaces: Results from the internal project 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itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a href="https://independent.academia.edu/DouglasKarkow">Douglas Karkow</a></span></div></div></span><script>(function(){ var popoverSettings = { el: $('.js-work-more-authors-26060345'), placement: 'bottom', hide_delay: 200, html: true, content: function(){ return $('.js-additional-users-26060345').html(); } } new HoverPopover(popoverSettings); })();</script></li><li class="js-paper-rank-work_26060345 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="26060345"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 26060345, container: ".js-paper-rank-work_26060345", }); });</script></li><li class="js-percentile-work_26060345 InlineList-item InlineList-item--bordered hidden u-tcGrayDark"><span class="percentile-widget hidden"><span class="u-mr2x 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$(".js-view-count-work_26060345").attr('title', description).tooltip(); }); });</script></span><script>$(function() { $(".js-view-count-work_26060345").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="26060345"><i class="fa fa-tag InlineList-item-icon u-positionRelative"></i>&nbsp;&nbsp;<a class="InlineList-item-text u-positionRelative">3</a>&nbsp;&nbsp;</div><span class="InlineList-item-text u-textTruncate u-pl9x"><a class="InlineList-item-text" data-has-card-for-ri="48" href="https://www.academia.edu/Documents/in/Engineering">Engineering</a>,&nbsp;<script data-card-contents-for-ri="48" type="text/json">{"id":48,"name":"Engineering","url":"https://www.academia.edu/Documents/in/Engineering?f_ri=104345","nofollow":false}</script><a class="InlineList-item-text" data-has-card-for-ri="104345" href="https://www.academia.edu/Documents/in/Hydrogen_Energy">Hydrogen Energy</a>,&nbsp;<script data-card-contents-for-ri="104345" type="text/json">{"id":104345,"name":"Hydrogen Energy","url":"https://www.academia.edu/Documents/in/Hydrogen_Energy?f_ri=104345","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=104345","nofollow":false}</script></span></li><script>(function(){ if (true) { new Aedu.ResearchInterestListCard({ el: $('*[data-has-card-for-ri-list=26060345]'), work: {"id":26060345,"title":"Flame structure changes resulting from hydrogen-enrichment and pressurization for low-swirl premixed methane–air flames","created_at":"2016-06-11T11:54:06.614-07:00","url":"https://www.academia.edu/26060345/Flame_structure_changes_resulting_from_hydrogen_enrichment_and_pressurization_for_low_swirl_premixed_methane_air_flames?f_ri=104345","dom_id":"work_26060345","summary":null,"downloadable_attachments":[{"id":46402739,"asset_id":26060345,"asset_type":"Work","always_allow_download":false}],"ordered_authors":[{"id":49931354,"first_name":"Albert","last_name":"Ratner","domain_name":"uiowa","page_name":"ARatner","display_name":"Albert Ratner","profile_url":"https://uiowa.academia.edu/ARatner?f_ri=104345","photo":"/images/s65_no_pic.png"},{"id":50043452,"first_name":"Douglas","last_name":"Karkow","domain_name":"independent","page_name":"DouglasKarkow","display_name":"Douglas Karkow","profile_url":"https://independent.academia.edu/DouglasKarkow?f_ri=104345","photo":"/images/s65_no_pic.png"}],"research_interests":[{"id":48,"name":"Engineering","url":"https://www.academia.edu/Documents/in/Engineering?f_ri=104345","nofollow":false},{"id":104345,"name":"Hydrogen Energy","url":"https://www.academia.edu/Documents/in/Hydrogen_Energy?f_ri=104345","nofollow":false},{"id":260118,"name":"CHEMICAL SCIENCES","url":"https://www.academia.edu/Documents/in/CHEMICAL_SCIENCES?f_ri=104345","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_12514084" data-work_id="12514084" 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/12514084/Multi_electrode_continuous_flow_microbial_electrolysis_cell_for_biogas_production_from_acetate">Multi-electrode continuous flow microbial electrolysis cell for biogas production from acetate</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">Most microbial electrolysis cells (MECs) contain only a single set of electrodes. In order to examine the scalability of a multiple-electrode design, we constructed a 2.5 L MEC containing 8 separate electrode pairs made of graphite fiber... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_12514084" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">Most microbial electrolysis cells (MECs) contain only a single set of electrodes. In order to examine the scalability of a multiple-electrode design, we constructed a 2.5 L MEC containing 8 separate electrode pairs made of graphite fiber brush anodes pre-acclimated for current generation using acetate, and 304 stainless steel mesh cathodes (64 m2/m3). Under continuous flow conditions and a one day hydraulic</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/12514084" 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="89dd116cb6d91868a0c383b7feffc413" rel="nofollow" data-download="{&quot;attachment_id&quot;:46124062,&quot;asset_id&quot;:12514084,&quot;asset_type&quot;:&quot;Work&quot;,&quot;always_allow_download&quot;:false,&quot;track&quot;:null,&quot;button_location&quot;:&quot;work_strip&quot;,&quot;source&quot;:null,&quot;hide_modal&quot;:null}" class="Button Button--sm Button--inverseGreen js-download-button prompt_button doc_download" href="https://www.academia.edu/attachments/46124062/download_file?st=MTczMjcxNDE3Myw4LjIyMi4yMDguMTQ2&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&nbsp;<span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="31390566" href="https://independent.academia.edu/BruceLogan2">Bruce Logan</a><script data-card-contents-for-user="31390566" type="text/json">{"id":31390566,"first_name":"Bruce","last_name":"Logan","domain_name":"independent","page_name":"BruceLogan2","display_name":"Bruce Logan","profile_url":"https://independent.academia.edu/BruceLogan2?f_ri=104345","photo":"/images/s65_no_pic.png"}</script></span></span></li><li class="js-paper-rank-work_12514084 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="12514084"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 12514084, container: ".js-paper-rank-work_12514084", }); 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href="https://www.academia.edu/74917322/Effect_of_alloys_modified_by_sodium_borohydride_alkaline_solutions_on_the_kinetics_of_hydrogen_evolution_reaction_at_Mm_Ni3_6Co0_7Mn0_4Al0_3_1_15_hydride_electrodes">Effect of alloys modified by sodium borohydride alkaline solutions on the kinetics of hydrogen evolution reaction at Mm(Ni3.6Co0.7Mn0.4Al0.3)1.15 hydride electrodes</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/74917322" 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="f88abe5b115e23b0f949a970832b2c62" rel="nofollow" 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u-borderColorGrayLighter"><div class="clearfix u-pv7x u-mb0x js-work-card work_67022297" data-work_id="67022297" 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/67022297/Sensitivity_analysis_of_the_uncertainties_of_the_mechanical_design_parameters_Stochastic_study_performed_via_a_numerical_design_of_experiment">Sensitivity analysis of the uncertainties of the mechanical design parameters: Stochastic study performed via a numerical design of experiment</a></div></div><div class="u-pb4x u-mt3x"><div class="summary u-fs14 u-fw300 u-lineHeight1_5 u-tcGrayDarkest"><div class="summarized">As the GDL (Gas diffusion layer) is the most sensitive component in the fuel cell, any change in its structure causes a change in its porosity, which strongly influences the contact between the components of the fuel cell. Note that the... <a class="more_link u-tcGrayDark u-linkUnstyled" data-container=".work_67022297" data-show=".complete" data-hide=".summarized" data-more-link-behavior="true" href="#">more</a></div><div class="complete hidden">As the GDL (Gas diffusion layer) is the most sensitive component in the fuel cell, any change in its structure causes a change in its porosity, which strongly influences the contact between the components of the fuel cell. Note that the state of contact depends on the applied clamping pressure, the thickness and the porosity of the GDL, and the geometry of the rib (bending radius) of the BPP (Bipolar plates). These components can be subject to variations coming from very high compression, so it is necessary to consider the reliability of their dimension via modeling/simulation by the integration of uncertainties. In this article, we will study the influence on the contact pressure of the uncertainties of the mechanical design parameters. A probabilistic approach (Gauss&amp;#39;s law) is applied to evaluate the effect of the mechanical uncertainties parameter on the contact pressure between GDL/MEA and GDL/BPP.</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/67022297" 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"><ul class="InlineList InlineList--bordered u-ph0x"><li class="InlineList-item InlineList-item--bordered"><span class="InlineList-item-text">by&nbsp;<span itemscope="itemscope" itemprop="author" itemtype="https://schema.org/Person"><a class="u-tcGrayDark u-fw700" data-has-card-for-user="35094903" href="https://utbm.academia.edu/RaedKouta">Raed Kouta</a><script data-card-contents-for-user="35094903" type="text/json">{"id":35094903,"first_name":"Raed","last_name":"Kouta","domain_name":"utbm","page_name":"RaedKouta","display_name":"Raed Kouta","profile_url":"https://utbm.academia.edu/RaedKouta?f_ri=104345","photo":"https://0.academia-photos.com/35094903/10207349/11390972/s65_raed.kouta.jpg_oh_74c0a51c37a8fde469bc8ae15615ffa3_oe_5663ef12"}</script></span></span></li><li class="js-paper-rank-work_67022297 InlineList-item InlineList-item--bordered hidden"><span class="js-paper-rank-view hidden u-tcGrayDark" data-paper-rank-work-id="67022297"><i class="u-m1x fa fa-bar-chart"></i><strong class="js-paper-rank"></strong></span><script>$(function() { new Works.PaperRankView({ workId: 67022297, container: ".js-paper-rank-work_67022297", }); 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Note that the state of contact depends on the applied clamping pressure, the thickness and the porosity of the GDL, and the geometry of the rib (bending radius) of the BPP (Bipolar plates). These components can be subject to variations coming from very high compression, so it is necessary to consider the reliability of their dimension via modeling/simulation by the integration of uncertainties. In this article, we will study the influence on the contact pressure of the uncertainties of the mechanical design parameters. 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