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理论休克电渗析 II:选择性离子去除的机制。

Theory of shock electrodialysis II: Mechanisms of selective ion removal.

机构信息

Department of Chemical Engineering, Massachusetts Institute of Technology, MA 02139, USA.

Department of Chemical Engineering, Massachusetts Institute of Technology, MA 02139, USA; Department of Mathematics, Massachusetts Institute of Technology, MA 02139, USA.

出版信息

J Colloid Interface Sci. 2021 May;589:616-621. doi: 10.1016/j.jcis.2020.11.127. Epub 2020 Dec 15.

Abstract

Shock electrodialysis (shock ED), an emerging nonlinear electrokinetic process for water treatment, has recently showed its capability to selectively remove multivalent cations from electrolyte mixtures. However, the mechanisms have not been understood yet. Based on the depth-averaged model developed in the first-part of the series paper for planer shock ED system, this work focuses on the mechanisms of selective ion removal. We first assume plug feed flow and do scaling analysis, and identify three possible mechanisms of selective removal of multivalent cations: smaller concentration left behind deionization zone, affinity to the charged surface where non-slip boundary slows down the velocity, and stronger push-back by streaming potential. Then we use numerical simulations to prove our hypothesis and show additional contribution from electroosmotic flow. Simulation results show that Mg is more removed from Na-Mg-Cl mixture at overlimiting current, which is qualitatively consistent with experiment results in literature.

摘要

冲击电渗析(shock ED)是一种新兴的非线性电动处理水的方法,最近已显示出其从电解质混合物中选择性去除多价阳离子的能力。然而,其机制尚未被理解。基于前一系列论文中为平面冲击 ED 系统开发的深度平均模型,这项工作重点研究了选择性离子去除的机制。我们首先假设塞流并进行缩放分析,并确定了选择性去除多价阳离子的三种可能机制:留下的较小浓度去离子区、与带电荷表面的亲和力,其中非滑移边界会降低速度,以及由流动电势产生的更强的推回力。然后,我们使用数值模拟来验证我们的假设,并展示了电渗流的额外贡献。模拟结果表明,在超电流极限下,Na-Mg-Cl 混合物中 Mg 的去除率更高,这与文献中的实验结果定性一致。

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