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Diffusion of Electrolytes of Different Natures through the Cation-Exchange Membrane

机译:通过阳离子交换膜的不同自然电解质的扩散

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Diffusion of different electrolytes through a negatively charged (cation-exchange) membrane into distilled water has been studied. It has been established theoretically (with no regard to the presence of diffusion layers) that the integral diffusion permeability coefficient of an electrolyte depends on the diffusion coefficients and the ratio between the charge numbers of a cation-anion pair, the ratio between the density of charges fixed in the membrane and electrolyte concentration, and the averaged coefficient of equilibrium distribution of cation-anion ion pairs in the membrane matrix. It has been found that, when co-ions have a higher mobility, the dependence of diffusion permeability on electrolyte concentration passes through a maximum. Derived equations have been compared with experimental dependences of the diffusion permeability of an MC-40 membrane with respect to different solutions of inorganic 1 : 1 and 2 : 1 electrolytes. The developed method has been shown to be applicable for describing diffusion of any electrolytes (including asymmetric ones) through arbitrary uniformly charged membranes.
机译:研究了通过带负电(阳离子交换)膜进入蒸馏水的不同电解质的扩散。理论上已经建立(对于漫射层的存在,电解质的积分扩散磁导率系数取决于阳离子阴离子对的电荷数与阳离子阴离子对之间的比率之间的比率膜基质中膜基质中阳离子阴离子离子对的平均平衡系数固定在膜和电解质浓度。已经发现,当共离子具有较高的迁移率时,扩散渗透率对电解质浓度的依赖性通过最大值。已经与MC-40膜的扩散渗透相对于无机1:1和2:1电解质的不同溶液进行了比较了衍生方程。已经示出了开发的方法可用于描述通过任意均匀的带电膜的任何电解质(包括不对称)的扩散。

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