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Failure of the Nernst-Einstein Equation to Correlate Electrical Resistances and Rates of Ionic Self-Exchange across Certain Fixed Charge Membranes

机译:Nernst-Einstein方程无法使某些固定电荷膜上的电阻和离子自交换速率相关

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摘要

The electrical resistances and rates of self-exchange of univalent critical ions across several types of collodion matrix membranes of high ionic selectivity were studied over a wide range of conditions. The relationship which was observed between these quantities with membranes of a certain type, namely those activated with poly-2-vinyl-N-methyl pyridinium bromide, cannot be explained on the basis of current concepts of the movement of ions across ion exchange membranes. Rates of self-exchange across these membranes were several times greater than those calculated from the electrical resistances of the membranes on the basis of an expression derived by the use of the Nernst-Einstein equation. The magnitude of the discrepancy was greatest at low concentrations of the ambient electrolyte solution and was independent of the species of both critical and noncritical ions. The data obtained with other types of collodion matrix membranes were, at least approximately, in agreement with the predictions based on the Nernst-Einstein equation. Self-exchange rates across the anion permeable protamine collodion membranes, and across the cation permeable polystyrene sulfonic acid collodion membranes, were about 20% less than those calculated from the electrical resistances. The direction and magnitude of these differences, also observed by other investigators, are qualitatively understood as an electroosmotic effect. With cation permeable membranes prepared by the oxidation of preformed collodion membranes, almost exact agreement was obtained between measured and calculated self-exchange rates; the cause of the apparent absence of an electroosmotic effect with these membranes is unknown.
机译:在宽范围的条件下,研究了几种具有高离子选择性的胶棉基质膜上的单价临界离子的电阻和自交换速率。在这些量与某种类型的膜之间观察到的关系,即那些被聚-2-乙烯基-N-甲基吡啶鎓溴化物活化的膜,不能基于当前离子在离子交换膜上运动的概念来解释。这些膜上的自交换速率比根据使用Nernst-Einstein方程得出的表达式从膜的电阻计算得出的自交换速率大几倍。在环境电解质溶液浓度低时,差异的幅度最大,并且与临界离子和非临界离子的种类无关。用其他类型的胶棉基质膜获得的数据至少近似与基于Nernst-Einstein方程的预测一致。阴离子可渗透的鱼精蛋白胶棉膜和阳离子可渗透的聚苯乙烯磺酸胶棉膜的自交换率比电阻计算的自交换率低约20%。这些差异的方向和大小,也被其他研究人员观察到,定性地理解为电渗效应。用预制的胶棉膜氧化制备的阳离子可渗透膜,在测得的和计算出的自交换率之间几乎完全吻合。这些膜明显缺乏电渗作用的原因尚不清楚。

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