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About: Electrokinetic phenomena
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</span> <span class="text-nowrap">within Data Space: <a href="http://dbpedia.org">dbpedia.org</a></span> </div> </div> </div> <div class="row pt-2"> <div class="col-xs-9 col-sm-10"> <p class="lead">Electrokinetic phenomena are a family of several different effects that occur in heterogeneous fluids, or in porous bodies filled with fluid, or in a fast flow over a flat surface. The term heterogeneous here means a fluid containing particles. Particles can be solid, liquid or gas bubbles with sizes on the scale of a micrometer or nanometer. There is a common source of all these effects—the so-called interfacial 'double layer' of charges. Influence of an external force on the diffuse layer generates tangential motion of a fluid with respect to an adjacent charged surface. This force might be electric, pressure gradient, concentration gradient, or gravity. In addition, the moving phase might be either continuous fluid or dispersed phase.</p> </div> </div> </div> </section> <!-- page-header --> <!-- property-table --> <section> <div class="container-xl"> <div class="row"> <div class="table-responsive"> <table class="table table-hover table-sm table-light"> <thead> <tr> <th class="col-xs-3 ">Property</th> <th class="col-xs-9 px-3">Value</th> </tr> </thead> <tbody> <tr class="odd"><td class="col-2"><a class="uri" href="http://dbpedia.org/ontology/abstract"><small>dbo:</small>abstract</a> </td><td class="col-10 text-break"><ul> <li style="display:none;"><span class="literal"><span property="dbo:abstract" lang="de" >Die Elektrokinetik ist die Lehre von der Erzeugung elektrischen Stroms durch bewegte Nichtleiter und die durch elektrische Felder verursachte Bewegung von Nichtleitern. Elektrokinetische Erscheinungen treten an der Grenzfläche zweier Phasen auf, wenn sich hier eine Doppelschicht bildet. Infolge auftretender Raumladungen führen äußere elektrische Felder zur Bewegung der beteiligten Fluide. Elektrokinetische Erscheinungen sind beispielsweise: * Elektrophorese, die Wanderung elektrisch geladener Teilchen durch einen als Trägermaterial dienenden Stoff in einem elektrischen Feld * Elektroosmose, Bewegung einer Flüssigkeit parallel zu einer Oberfläche durch ein elektrisches Feld * Die Umkehrung der Elektroosmose: Erzeugung von Elektrizität beim Überströmen einer Oberfläche * Erzeugung eines elektrischen Stroms durch bewegte Partikel in einer Flüssigkeit, beispielsweise bei Sedimentation. * , die Oberflächenspannung einer Flüssigkeit verändert sich bei elektrischer Aufladung Da die elektrokinetischen Erscheinungen nur von der Grenzfläche ausgehen, sind sie vor allem in feinporigem Material, in Kapillaren, in Suspensionen, Kolloiden und anderen Kombinationen mit fein verteilten Körpern und großen Oberflächen zu beobachten. Wenn Salzwasser über eine Eisenplatte mit einer mikroskopisch dünnen Schicht Rost rinnt, wird eine elektrische Ladungstrennung erzeugt. Positiv geladene Ionen im Salzwasser ziehen die negativ geladene Elektronen im Eisen unterhalb der dünnen Oxidschicht an. Mit der Bewegung des Salzwassers werden die Elektronen im Eisen mitgezogen, was einen Generator in Form einer darstellt.</span><small> (de)</small></span></li> <li><span class="literal"><span property="dbo:abstract" lang="en" >Electrokinetic phenomena are a family of several different effects that occur in heterogeneous fluids, or in porous bodies filled with fluid, or in a fast flow over a flat surface. The term heterogeneous here means a fluid containing particles. Particles can be solid, liquid or gas bubbles with sizes on the scale of a micrometer or nanometer. There is a common source of all these effects—the so-called interfacial 'double layer' of charges. Influence of an external force on the diffuse layer generates tangential motion of a fluid with respect to an adjacent charged surface. This force might be electric, pressure gradient, concentration gradient, or gravity. In addition, the moving phase might be either continuous fluid or dispersed phase.</span><small> (en)</small></span></li> <li style="display:none;"><span class="literal"><span property="dbo:abstract" lang="es" >Los fenómenos electrocinéticos son una familia de varios efectos diferentes que se producen en fluidos heterogéneos, en cuerpos porosos llenos de fluido o en un flujo rápido sobre una superficie plana. El término heterogéneo aquí significa un fluido que contiene partículas. Las partículas pueden ser burbujas sólidas, líquidas o de gas con tamaños en la escala de un micrómetro o nanómetro. Hay una fuente común de todos estos efectos: la llamada 'capa doble' interfacial de cargas. La influencia de una fuerza externa sobre la capa difusa genera el movimiento tangencial de un fluido con respecto a una superficie cargada adyacente. Esta fuerza puede ser eléctrica, , gradiente de concentración o gravedad. Además, la fase móvil puede ser fluida continua o fase dispersa.</span><small> (es)</small></span></li> <li style="display:none;"><span class="literal"><span property="dbo:abstract" lang="it" >L'elettrocinetica è lo studio relativo al movimento di "particelle" (o un aggregato di particelle) all'interno di un fluido sotto l'influenza di un campo elettrico. Le "particelle" studiate nell'ambito dell'elettrocinetica possono avere dimensioni dell'ordine del micrometro o del nanometro e possono presentarsi in forma solida, liquida o gassosa; possono costituire una fase dispersa o una fase continua (nel loro insieme). Il fluido costituisce invece sempre una fase continua. Tra i fenomeni studiati nell'ambito dell'elettrocinetica si annoverano: * elettroforesi: moto di particelle sotto l'influenza di un campo elettrico; * : moto di un liquido all'interno di una matrice porosa sotto l'influenza di un campo elettrico; * differenza di potenziale elettrico generata dal movimento di un fluido in prossimità di una superficie carica (che può essere una superficie piana o l'insieme delle cavità di un mezzo poroso); * : differenza di potenziale elettrico generata dalla sedimentazione di particelle colloidali. Il doppio strato elettrico svolge un ruolo fondamentale nello svolgersi dei fenomeni elettrocinetici.</span><small> (it)</small></span></li> <li style="display:none;"><span class="literal"><span property="dbo:abstract" lang="pl" >Zjawiska elektrokinetyczne – zjawiska, w których istnieje możliwość ścięcia ruchomej części podwójnej warstwy elektrycznej z naładowanej powierzchni cząsteczki, którą może być ciało stałe, ciecz lub pęcherzyk gazu w wymiarach skali nano lub mikro (zob. potencjał elektrokinetyczny, potencjał dzeta, potencjał ζ). Jeśli pole elektryczne jest przyłożone stycznie wzdłuż naładowanej powierzchni, wtedy siła jest wywierana na obie części podwójnej warstwy elektrycznej. Naładowana powierzchnia (plus związany z nią materiał) ma tendencję do ruchu we właściwym kierunku, podczas gdy jony w ruchliwej części podwójnej warstwy elektrycznej wykazują saldo migracji w przeciwnym kierunku, niosąc wraz z nimi rozpuszczalnik, powodując jego przepływ. Odwrotnie, pole elektryczne jest wytworzone, gdy naładowana powierzchnia i część dyfuzyjna podwójnej warstwy elektrycznej poruszają się względem siebie. Siłą wywołującą ruch cząsteczek lub cieczy może być pole elektryczne, gradient stężeń, grawitacja czy gradient ciśnieniaWyróżniane są cztery główne zjawiska elektrokinetyczne: * Elektroforeza - ruch naładowanych powierzchni i związanego z nimi materiału (np. rozpuszczony lub zawieszony w rozpuszczalniku materiał) względem nieruchomej cieczy spowodowany przyłożonym polem elektrycznym, * Elektroosmoza - ruch cieczy względem nieruchomej naładowanej powierzchni (np. kapilarny lub porowaty korek, membrana) spowodowany przyłożonym polem elektrycznym (tj. uzupełnienie elektroforezy). Ciśnienie potrzebne do zrównoważenia przepływu elektroosmotycznego jest nazywane ciśnieniem elektroosmotycznym, * - pole elektryczne, które jest wytwarzane kiedy ciecz przepływa wzdłuż nieruchomej naładowanej powierzchni (tj. odwrotność elektroosmozy), * Potencjał sedymentacji - pole elektryczne jest wytworzone, gdy naładowane cząsteczki poruszają się względem nieruchomej cieczy (tj. przeciwieństwo elektroforezy). Elektroforeza ma największe praktyczne zastosowanie, przez co jest badana bardzo intensywnie w różnych swoich formach, podczas gdy elektroosmoza i potencjał przepływu stosunkowo rzadko, a potencjał sedymentacji najrzadziej ze zjawisk elektrokinetycznych, ze względu na trudności doświadczalne.</span><small> (pl)</small></span></li> <li style="display:none;"><span class="literal"><span property="dbo:abstract" lang="uk" >Електрокінетичні явища — група явищ, які спостерігаються в дисперсних системах, мембранах і капілярах; включає електроосмос, електрофорез, потенціал протікання і потенціал осідання (седиментаційний потенціал, або ефект Дорна). Основну роль у виникненні електрокінетичних явищ відіграє подвійний електричний шар (ПЕШ), що формується на межі двох фаз. Зовнішнє електричне поле, спрямоване вздовж межі розділу фаз, викликає зсув одного з йонних шарів, що утворюють ПЕШ, по відношенню до іншого, що призводить до відносного переміщення фаз, тобто до електроосмосу або електрофорезу. Аналогічним чином при відносному русі фаз, що викликається механічними силами, відбувається переміщення йонних шарів ПЕШ, що призводить до просторового розділення зарядів (поляризації) в напрямку руху і до перепаду електричного потенціалу (потенціал течії, ).</span><small> (uk)</small></span></li> <li style="display:none;"><span class="literal"><span property="dbo:abstract" lang="ru" >Электрокинетические явления (от электро- и др.-греч. κίνησις — «движение») — физические явления переноса (движения) дисперсной фазы либо дисперсионной среды коллоидной системы относительно друг друга, которые происходят под действием приложенного электрического поля. Классические электрокинетические явления обусловлены наличием двойного электрического слоя на границе раздела фаз дисперсных систем. К ним относятся: * электрофорез * электроосмос * потенциал протекания (эффект Квинке) * потенциал седиментации (эффект Дорна). Существуют также нелинейные электрокинетические явления, связанные не с двойным электрическим слоем, а с формированием индуцированного заряда за его пределами при поляризации электропроводящих частиц. 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or in a fast flow over a flat surface. The term heterogeneous here means a fluid containing particles. Particles can be solid, liquid or gas bubbles with sizes on the scale of a micrometer or nanometer. There is a common source of all these effects—the so-called interfacial 'double layer' of charges. Influence of an external force on the diffuse layer generates tangential motion of a fluid with respect to an adjacent charged surface. This force might be electric, pressure gradient, concentration gradient, or gravity. In addition, the moving phase might be either continuous fluid or dispersed phase.</span><small> (en)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:comment" lang="es" >Los fenómenos electrocinéticos son una familia de varios efectos diferentes que se producen en fluidos heterogéneos, en cuerpos porosos llenos de fluido o en un flujo rápido sobre una superficie plana. El término heterogéneo aquí significa un fluido que contiene partículas. Las partículas pueden ser burbujas sólidas, líquidas o de gas con tamaños en la escala de un micrómetro o nanómetro. Hay una fuente común de todos estos efectos: la llamada 'capa doble' interfacial de cargas. La influencia de una fuerza externa sobre la capa difusa genera el movimiento tangencial de un fluido con respecto a una superficie cargada adyacente. Esta fuerza puede ser eléctrica, , gradiente de concentración o gravedad. Además, la fase móvil puede ser fluida continua o fase dispersa.</span><small> (es)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:comment" lang="de" >Die Elektrokinetik ist die Lehre von der Erzeugung elektrischen Stroms durch bewegte Nichtleiter und die durch elektrische Felder verursachte Bewegung von Nichtleitern. Elektrokinetische Erscheinungen treten an der Grenzfläche zweier Phasen auf, wenn sich hier eine Doppelschicht bildet. Infolge auftretender Raumladungen führen äußere elektrische Felder zur Bewegung der beteiligten Fluide. Elektrokinetische Erscheinungen sind beispielsweise:</span><small> (de)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:comment" lang="it" >L'elettrocinetica è lo studio relativo al movimento di "particelle" (o un aggregato di particelle) all'interno di un fluido sotto l'influenza di un campo elettrico. Le "particelle" studiate nell'ambito dell'elettrocinetica possono avere dimensioni dell'ordine del micrometro o del nanometro e possono presentarsi in forma solida, liquida o gassosa; possono costituire una fase dispersa o una fase continua (nel loro insieme). Il fluido costituisce invece sempre una fase continua. Tra i fenomeni studiati nell'ambito dell'elettrocinetica si annoverano:</span><small> (it)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:comment" lang="pl" >Zjawiska elektrokinetyczne – zjawiska, w których istnieje możliwość ścięcia ruchomej części podwójnej warstwy elektrycznej z naładowanej powierzchni cząsteczki, którą może być ciało stałe, ciecz lub pęcherzyk gazu w wymiarach skali nano lub mikro (zob. potencjał elektrokinetyczny, potencjał dzeta, potencjał ζ).</span><small> (pl)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:comment" lang="ru" >Электрокинетические явления (от электро- и др.-греч. κίνησις — «движение») — физические явления переноса (движения) дисперсной фазы либо дисперсионной среды коллоидной системы относительно друг друга, которые происходят под действием приложенного электрического поля. Классические электрокинетические явления обусловлены наличием двойного электрического слоя на границе раздела фаз дисперсных систем. К ним относятся: * электрофорез * электроосмос * потенциал протекания (эффект Квинке) * потенциал седиментации (эффект Дорна). К ним относятся:</span><small> (ru)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:comment" lang="uk" >Електрокінетичні явища — група явищ, які спостерігаються в дисперсних системах, мембранах і капілярах; включає електроосмос, електрофорез, потенціал протікання і потенціал осідання (седиментаційний потенціал, або ефект Дорна). Основну роль у виникненні електрокінетичних явищ відіграє подвійний електричний шар (ПЕШ), що формується на межі двох фаз. Зовнішнє електричне поле, спрямоване вздовж межі розділу фаз, викликає зсув одного з йонних шарів, що утворюють ПЕШ, по відношенню до іншого, що призводить до відносного переміщення фаз, тобто до електроосмосу або електрофорезу. Аналогічним чином при відносному русі фаз, що викликається механічними силами, відбувається переміщення йонних шарів ПЕШ, що призводить до просторового розділення зарядів (поляризації) в напрямку руху і до перепаду електр</span><small> (uk)</small></span></li> </ul></td></tr><tr class="odd"><td class="col-2"><a class="uri" href="http://www.w3.org/2000/01/rdf-schema#label"><small>rdfs:</small>label</a> </td><td class="col-10 text-break"><ul> <li style="display:none;"><span class="literal"><span property="rdfs:label" lang="de" >Elektrokinetik</span><small> (de)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:label" lang="es" >Fenómenos electrocinéticos</span><small> (es)</small></span></li> <li><span class="literal"><span property="rdfs:label" lang="en" >Electrokinetic phenomena</span><small> (en)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:label" lang="it" >Elettrocinetica</span><small> (it)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:label" lang="pl" >Zjawisko elektrokinetyczne</span><small> (pl)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:label" lang="ru" >Электрокинетические явления</span><small> (ru)</small></span></li> <li style="display:none;"><span class="literal"><span property="rdfs:label" lang="uk" >Електрокінетичні явища</span><small> (uk)</small></span></li> </ul></td></tr><tr class="even"><td class="col-2"><a class="uri" href="http://www.w3.org/2002/07/owl#sameAs"><small>owl:</small>sameAs</a> </td><td class="col-10 text-break"><ul> <li><span class="literal"><a class="uri" rel="owl:sameAs" resource="http://rdf.freebase.com/ns/m.03cb4rz" href="http://rdf.freebase.com/ns/m.03cb4rz"><small>freebase</small>:Electrokinetic phenomena</a></span></li> <li><span class="literal"><a class="uri" rel="owl:sameAs" 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