Berezina N P, Kononenko N A, Dyomina O A, Gnusin N P
Department of Physical Chemistry, Kuban State University, 149, Stavropolskaya St., Krasnodar, 350040, Russia.
Adv Colloid Interface Sci. 2008 Jun 22;139(1-2):3-28. doi: 10.1016/j.cis.2008.01.002. Epub 2008 Jan 26.
This review focuses on the preparation, structure and applications of ion-exchange membranes formed from various materials and exhibiting various functions (electrodialytic, perfluorinated sulphocation-exchange and novel laboratory-tested membranes). A number of experimental techniques for measuring electrotransport properties as well as the general procedure for membrane testing are also described. The review emphasizes the relationships between membrane structures, physical and chemical properties and mechanisms of electrochemical processes that occur in charged membrane materials. The water content in membranes is considered to be a key factor in the ion and water transfer and in polarization processes in electromembrane systems. We suggest the theoretical approach, which makes it possible to model and characterize the electrochemical properties of heterogeneous membranes using several transport-structural parameters. These parameters are extracted from the experimental dependences of specific electroconductivity and diffusion permeability on concentration. The review covers the most significant experimental and theoretical research on ion-exchange membranes that have been carried out in the Membrane Materials Laboratory of the Kuban State University. These results have been discussed at the conferences "Membrane Electrochemistry", Krasnodar, Russia for many years and were published mainly in Russian scientific sources.
本综述聚焦于由各种材料制成并具有多种功能(电渗析、全氟磺酸阳离子交换和新型实验室测试膜)的离子交换膜的制备、结构及应用。还描述了一些用于测量电迁移性质的实验技术以及膜测试的一般程序。该综述强调了膜结构、物理和化学性质与带电膜材料中发生的电化学过程机制之间的关系。膜中的含水量被认为是离子和水传输以及电膜系统中极化过程的关键因素。我们提出了一种理论方法,该方法能够利用几个传输结构参数对非均质膜的电化学性质进行建模和表征。这些参数是从比电导率和扩散渗透率对浓度的实验依赖性中提取出来的。本综述涵盖了在库班国立大学膜材料实验室进行的关于离子交换膜的最重要的实验和理论研究。这些结果在俄罗斯克拉斯诺达尔召开的“膜电化学”会议上已讨论多年,并且主要发表在俄罗斯的科学文献中。