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半透膜的电导。II. 单极流动,对称电解质。

The electrical conductance of semipermeable membranes. II. Unipolar flow, symmetric electrolytes.

作者信息

Bruner L J

出版信息

Biophys J. 1965 Nov;5(6):887-908. doi: 10.1016/S0006-3495(65)86758-3.

DOI:10.1016/S0006-3495(65)86758-3
PMID:5884015
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1367909/
Abstract

A general formulation of the problem of stationary ion flow through semipermeable membranes was presented in the first paper of this series. The formalism is applied here to the evaluation of membrane conductance for the special case of unipolar ion flow between symmetric electrolytes. Thus it is assumed that the permeant ions carry one sign of charge only. Furthermore, the valences of all ions in solution on both sides of the membrane are taken to be of equal absolute magnitude. Conductance results obtained by numerical methods are presented for several representative sets of the parameters which characterize the membrane system in equilibrium. These results are discussed qualitatively with emphasis upon the contribution of particular system parameters to the non-linearities observed. Approximate analytic conductance relations, valid for high current levels, are also given.

摘要

本系列的第一篇论文提出了静态离子通过半透膜流动问题的一般公式。这里将该形式体系应用于评估对称电解质之间单极离子流动这一特殊情况下的膜电导。因此,假设渗透离子仅携带一种电荷符号。此外,膜两侧溶液中所有离子的价态绝对值相等。针对表征处于平衡状态的膜系统的几组代表性参数,给出了通过数值方法获得的电导结果。对这些结果进行了定性讨论,重点是特定系统参数对所观察到的非线性的贡献。还给出了适用于高电流水平的近似解析电导关系。