Conti F, Eisenman G
Biophys J. 1966 May;6(3):227-46. doi: 10.1016/S0006-3495(66)86653-5.
A study of the properties of the steady states of a system composed of two solutions separated by an ion exchange membrane having mobile sites is presented. It is assumed that the membrane is impermeable to coions; the solutions contain no more than two species of counterions, both of the same valence; and no flow of bulk solution occurs. Assuming that all ions are completely dissociated, behave ideally, and have constant mobilities throughout the membrane, explicit expressions are derived for the steady states of the electric current, individual fluxes, and concentration profiles as functions of the compositions of the solutions and of the difference of electric potential between them. The derived expressions are compared with those for an ion exchange membrane having fixed sites; and it is found that the expressions of certain quantities, such as the difference of electric potential between the two solutions for zero current or the ratio of the fluxes of the counterions as functions of the external parameters of the system, are the same for both types of membranes. On the other hand, differences in the behavior of the two types of membranes are found from other expressions-for example, the current-voltage relationship. In the mobile site ion exchanger the current asymptotically approaches finite limiting values for high positive and negative voltages while in the fixed site ion exchanger it is the conductance which approaches finite limiting values.
本文对由两个溶液组成且被具有移动位点的离子交换膜隔开的系统的稳态性质进行了研究。假设该膜对同离子是不可渗透的;溶液中所含的反离子不超过两种,且二者具有相同的化合价;并且不存在本体溶液的流动。假设所有离子都完全解离、行为理想且在整个膜中具有恒定的迁移率,推导出了电流、单个通量以及浓度分布的稳态的显式表达式,这些表达式是溶液组成及其之间电势差的函数。将推导得到的表达式与具有固定位点的离子交换膜的表达式进行了比较;发现对于某些量的表达式,例如零电流时两种溶液之间的电势差或作为系统外部参数函数的反离子通量比,对于两种类型的膜是相同的。另一方面,从其他表达式,例如电流 - 电压关系,发现了两种类型膜行为的差异。在具有移动位点的离子交换器中,对于高正电压和负电压,电流渐近地趋近于有限的极限值,而在具有固定位点的离子交换器中,是电导率趋近于有限的极限值。