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The Electroosmotic Effects Arising from the Interaction of the Selectively Anion and Selectively Cation Permeable Parts of Mosaic Membranes

机译:马赛克膜的选择性阴离子和选择性阳离子可渗透部分相互作用产生的电渗效应

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摘要

It has been previously shown, theoretically and in model system experiments, that mosaic membranes composed of anion-selective (electropositive) and cation-selective (electronegative) parts interposed between electrolytic solutions of different concentrations give rise to local electrical circuits. In this work with model systems it is shown that these currents produce electroosmosis. In systems with permselective electronegative membranes and KCl solutions, the electroosmotic water transport was 16 moles/faraday. With the permselective electronegative membrane replaced by more porous electronegative membranes, the electroosmotic effects were about twice as high. With Li salts, the water transport was considerably larger. A system with a permselective electropositive membrane of 50 cm2 effective area and an electronegative membrane of 120 cm2 gave internally generated currents up to 20 ma. In extrapolating from the results with macromodels to effects with true mosaics, i.e. microsystems, it is stressed that current depends on the linear distance over which membranes interact. In true mosaic membranes, the current pathways will be of the same order as the dimensions of individual membrane microelements; the sum of all local microcurrents will be correspondingly larger than the current in the macromodel, and the electroosmotic effects will be proportionately greater. Electroosmotic effects with true charge-mosaic membranes may be of the same order or larger than the liquid transport by normal and anomalous osmosis which might occur across the individual parts of the charge-mosaic.
机译:先前已经在理论上和模型系统实验中表明,由阴离子选择性(电正性)和阳离子选择性(电负性)部分组成的镶嵌膜插入不同浓度的电解液之间会形成局部电路。在模型系统的这项工作中,表明这些电流会产生电渗。在具有渗透选择性电负性膜和KCl溶液的系统中,电渗水输运率为16摩尔/法拉第。用更多的多孔负电性膜代替全选择性电负性膜时,电渗效应约为后者的两倍。使用锂盐,水的传输量更大。系统具有50 cm 2 的选择性渗透电正膜和120 cm 2 的负电膜的系统产生的内部电流高达20 ma。从宏观模型的结果外推到真实镶嵌(即微系统)的效果时,需要强调的是,电流取决于膜相互作用的线性距离。在真正的镶嵌膜中,电流路径与单个膜微元件的尺寸相同。所有局部微电流的总和将相应地大于宏模型中的电流,并且电渗效应将成比例地更大。真正的电荷镶嵌膜的电渗作用可能与正常的和反渗透的液体传输的量级相同或更大,后者可能发生在电荷镶嵌物的各个部分。

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