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Space charge effect on competitive ion transport through ion-exchange membranes

机译:空间电荷对竞争性离子通过离子交换膜传输的影响

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摘要

A mathematical model of the competitive electro-transport of two counter-ions through an ion exchange membrane based on the Nernst-Planck and Poisson equations is developed. A three-layer system is considered: the membrane and two adjacent diffusion layers. Concentration profiles in the three layers, effective transport numbers as functions of the current and current-voltage characteristics are calculated. Deviation from the local electroneutrality in space charge region near the depleted solution/membrane interface is taken into account. It is shown that the space charge region grows with the voltage applied. However the fluxes of the competitive counter-ions at over-limiting currents are determined by their transfer through the electroneutral part of the depleted diffusion layer.
机译:基于能斯特-普朗克和泊松方程,建立了两个抗衡离子通过离子交换膜竞争性电迁移的数学模型。考虑三层系统:膜和两个相邻的扩散层。计算了三层中的浓度分布,有效传输数与电流和电流-电压特性的关系。考虑了在耗尽的溶液/膜界面附近的空间电荷区域中与局部电子中性的偏差。结果表明,空间电荷区随施加的电压而增长。但是,竞争性抗衡离子在极限电流下的通量取决于它们通过耗尽扩散层的电子中性部分的转移。

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