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Transition to electrokinetic instability near imperfect charge-selective membranes

机译:在不完美电荷选择性膜附近的电动不稳定性过渡

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摘要

The hydrodynamics and electrostatics of imperfect electric membranes are examined numerically. The investigation is based on the Nernst-Planck-Poisson-Stokes system of equations. A threelayer geometry, electrolyte-nanoporous membrane-electrolyte, is considered. The threshold of the electrokinetic instability of the one-dimensional quiescent state and the corresponding change of the current regime to the overlimiting one are studied. A map of the bifurcations, transitions, and regimes is constructed in the coordinates of the selectivity, the applied potential difference, and the Debye number. For good membrane selectivity (it corresponds to the dimensionless fixed charge in the membrane, N 10), the hydrodynamics and electrostatics are quantitatively the same as for perfect membranes: the instability is monotonic and nonequilibrium and the voltage-current (VC) characteristic has all three portions: the underlimiting, limiting, and overlimiting regimes. For intermediate selectivity (1 N 10), the imperfect membrane behaves qualitatively as a perfect membrane. For poor membrane selectivity (N 1), the nonequilibrium electro-osmosis turns to the equilibrium one and the monotonic instability is replaced by an oscillatory one. The concept of slip velocity loses its meaning, surface spike-like coherent structures disappear, and the equilibrium instability is caused by the bulk residual charge. For poor membrane selectivity, the VC characteristic dramatically changes: transition to the overlimiting currents occurs, bypassing the limiting current regime. There is a qualitative agreement between theoretical prediction and experimental observations of the microvortex expansion. Published by AIP Publishing.
机译:流体力学和不完善电膜的静电进行数值检查。该案是基于方程的能斯特 - 普朗克泊松斯托克斯系统。甲threelayer几何形状,电解质 - 纳米多孔膜 - 电解质,被认为。一维静止状态的电动不稳定和当前制度到overlimiting一个相应的变化的阈值进行了研究。的分叉,转换,和制度的地图中的选择性,所施加的电势差,和德拜数量的坐标构成。为了获得良好的膜的选择性(其对应于在膜中的无量纲的固定电荷,N大于10),流体动力学和静电是定量的相同完美膜:不稳定是单调的和非平衡和电压 - 电流(VC)的特征具有所有三个部分:在underlimiting,限制性的,并且overlimiting制度。对于中间选择性(1 ; N< 10),所述不完全膜定性表现为完美膜。对于差膜的选择性(N。1),非平衡电渗透匝的平衡和所述单调不稳定性是由振荡一个代替。滑动速度的概念失去了意义,表面尖峰状相干结构消失,且平衡不稳定性是由本体的剩余电荷造成的。对于膜的选择性差,VC特性急剧变化:过渡到overlimiting电流发生时,绕过限流制度。有理论预测和microvortex扩张的实验观察之间的定性一致。通过AIP发布发布。

著录项

  • 来源
    《Physics of fluids》 |2018年第8期|共18页
  • 作者单位

    Financial Univ Lab Micro &

    Nanoscale Electro &

    Hydrodynam Krasnodar 350051 Russia;

    Financial Univ Lab Micro &

    Nanoscale Electro &

    Hydrodynam Krasnodar 350051 Russia;

    Financial Univ Dept Math &

    Informat Krasnodar 350051 Russia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 流体力学;
  • 关键词

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