Szymczyk A, Aoubiza B, Fievet P, Pagetti J
Laboratoire de Corrosion et Traitements de Surface, 32 rue Mégevand, Besançon cedex, 25030, France
J Colloid Interface Sci. 1999 Aug 15;216(2):285-296. doi: 10.1006/jcis.1999.6321.
The electrokinetic phenomena occurring in homogeneous cylindrical pores containing symmetric electrolytes are studied. The local relations for flow in the pores (Nernst-Planck and Navier-Stokes equations) are developed. The analysis includes a numerical solution of the nonlinear Poisson-Boltzmann equation. The integral expressions of the phenomenological coefficients coupling the solvent flow and the electrical current with the hydrostatic pressure and the electrical potential gradients are established and calculated numerically. The mobilities of anions and cations are individually specified and the electroviscous effects as well as the surface conductance are taken into account. Streaming potentials obtained from numerical calculations are compared with results given by classical relations in a range of zeta potentials and electrokinetic radii that may commonly occur in experimental investigation of micro- and ultrafiltration membranes. In this work, it is shown that classical approximated relations can give rise to very misleading conclusions and that the determination of the true zeta potential requires a full analysis (including numerical calculations) of the basic relations for flow and potential distribution in charged pores. Copyright 1999 Academic Press.
研究了在含有对称电解质的均匀圆柱形孔隙中发生的电动现象。推导了孔隙中流动的局部关系式(能斯特-普朗克方程和纳维-斯托克斯方程)。分析包括非线性泊松-玻尔兹曼方程的数值解。建立了将溶剂流动和电流与静水压力及电势梯度耦合的现象学系数的积分表达式,并进行了数值计算。分别指定了阴离子和阳离子的迁移率,并考虑了电黏滞效应以及表面电导。在一系列可能在微滤和超滤膜实验研究中常见的zeta电位和电动半径范围内,将数值计算得到的流动电势与经典关系式给出的结果进行了比较。在这项工作中,结果表明经典近似关系式可能会得出极具误导性的结论,并且确定真实的zeta电位需要对带电孔隙中流动和电位分布的基本关系式进行全面分析(包括数值计算)。版权所有1999年,学术出版社。