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A generalized model for transport of contaminants in soil by electric fields

机译:电场传输土壤中污染物的通用模型

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摘要

A generalized model applicable to soils contaminated with multiple species under enhanced boundary conditions during treatment by electric fields is presented. The partial differential equations describing species transport are developed by applying the law of mass conservation to their fluxes. Transport, due to migration, advection and diffusion, of each aqueous component and complex species are combined to produce one partial differential equation that describes transport of the total analytical concentrations of component species which are the primary dependent variables. This transport couples with geochemical reactions such as aqueous equilibrium, sorption, precipitation and dissolution. The enhanced model is used to simulate electrokinetic cleanup of lead and copper contaminants at an Army Firing Range. Acid enhancement is achieved by the use of adipic acid to neutralize the basic front produced for the cathode electrochemical reaction. The model is able to simulate enhanced application of the process by modifying the boundary conditions. The model showed that kinetics of geochemical reactions, such as metals dissolution/leaching and redox reactions, may be significant for realistic prediction of enhanced electrokinetic extraction of metals in real-world applications.
机译:提出了适用于电场处理过程中边界条件增强的多种物种污染土壤的通用模型。通过将质量守恒定律应用于通量,建立了描述物种迁移的偏微分方程。由于迁移,对流和扩散,每种水性组分和复杂物质的迁移结合在一起,产生一个偏微分方程,该方程描述了作为主要因变量的组分物种总分析浓度的迁移。这种运输与地球化学反应(例如水平衡,吸附,沉淀和溶解)耦合。增强的模型用于模拟在陆军射击场上对铅和铜污染物的电动清除。通过使用己二酸中和为阴极电化学反应产生的碱性前沿来实现酸增强。该模型能够通过修改边界条件来模拟流程的增强应用。该模型表明,地球化学反应的动力学(例如金属溶解/浸出和氧化还原反应)对于现实应用中金属的电动增强萃取的现实预测可能具有重要意义。

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