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A Method to Relate Steady-State Ionic Currents Conductances and Membrane Potential in Ion Exchange Membranes with Unknown Thermodynamic Properties

机译:具有未知热力学性质的离子交换膜中稳态离子流电导和膜电位的相关方法

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摘要

A method is presented by which the steady-state properties of an homogeneous, permselective membrane at uniform temperature can be predicted without knowledge of its thermodynamic properties other than assuming that they are functions only of local mole fractions in the membrane. By making this assumption, it is shown how the ionic conductances can be calculated at any point in the membrane from two sets of measurements, (a) Rsymm, the steady-state resistance of the membrane measured between identical solutions and (b) V0, the potential difference between nonidentical solutions for zero current. These two parameters are measured at different external solution compositions (e.g. a varying sodium-potassium ratio ranging from zero to infinity). From these measurements it is shown how the flux equations may be integrated without a knowledge of mobilities, activity coefficients, and other interior membrane parameters. The application of the method to fixed site membranes with variable mobilities is described and the theory for this particular case has also been verified experimentally in glass membranes. A possible application to biological membranes is discussed and a comparison is made between the present treatment and previous treatments used to calculate the steady-state properties of cell membranes, notably the theory of Teorell, Meyer, and Sievers and the constant field theory.
机译:提出了一种方法,通过该方法可以在不知道其热力学性质的情况下预测均匀温度下的均相,选择性渗透膜的稳态性质,只是假设它们仅是膜中局部摩尔分数的函数。通过进行这种假设,说明了如何通过两组测量值来计算膜上任意点的离子电导率:(a)Rsymm,在相同溶液之间测量的膜的稳态电阻,以及(b)V0,零电流的不同解决方案之间的电位差。这两个参数是在不同的外部溶液组成下测量的(例如,钠钾比的变化范围从零到无穷大)。从这些测量结果中可以看出,如何在不了解迁移率,活度系数和其他内部膜参数的情况下如何积分通量方程。描述了该方法在可变迁移率的固定位膜上的应用,并且已经针对这种特殊情况的理论在玻璃膜上进行了实验验证。 讨论了在生物膜上的可能应用并进行了比较在当前处理和用于计算细胞膜稳态特性的先前处理之间,特别是Teorell,Meyer和Sievers理论以及恒定场理论。

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