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首页> 外文期刊>Separation and Purification Technology >Modeling of electrokinetic processes by finite element integration of the Nernst-Planck-Poisson system of equations
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Modeling of electrokinetic processes by finite element integration of the Nernst-Planck-Poisson system of equations

机译:通过Nernst-Planck-Poisson方程组的有限元积分对电动过程进行建模

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摘要

Electrokinetic remediation covers a variety of useful techniques for the mobilization of ionic and nonionic species from porous materials by means of the application of an external electric field. Due to the large number of physicochemical interactions in the process, designing an electrokinetic remediation process is not simple. Mathematical models are necessary for a better understanding of its fundamentals. In this study, a model for the electrokinetic transport phenomena based on the strongly coupled Nernst-Planck-Poisson system of equations is described. In the model presented here, the diffusion, the electromigration and the electroosmotic transport contributors are taken into account. The Poisson's equation of electrostatics is used for the calculation of the electrical potential distribution based on the global charge balance. The effect of the electrode half-reactions is included. In addition to this, water equilibrium is continuously assured and the pH value is monitored. Results from some selected test simulations of the electrokinetic desalination of a sample of porous material are presented, outlining the versatility of the model as well as showing the effect of the counterion in the removal rate of a target ion.
机译:电动修复涵盖了各种有用的技术,这些技术可通过施加外部电场从多孔材料中转移离子和非离子物质。由于该过程中存在大量的物理化学相互作用,因此设计电动修复过程并不简单。数学模型对于更好地理解其基本原理是必需的。在这项研究中,描述了基于强耦合Nernst-Planck-Poisson方程组的电动迁移现象模型。在此处介绍的模型中,考虑了扩散,电迁移和电渗输运因素。泊松静电方程式用于基于全局电荷平衡计算电位分布。电极半反应的效果也包括在内。除此之外,还可以确保水平衡并监控pH值。给出了多孔材料样品的电动脱盐的一些选定测试模拟结果,概述了模型的多功能性,并显示了抗衡离子对目标离子去除率的影响。

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