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首页> 外文期刊>Journal of Hazardous Materials >Modeling of electrokinetic remediation combining local chemical equilibrium and chemical reaction kinetics
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Modeling of electrokinetic remediation combining local chemical equilibrium and chemical reaction kinetics

机译:结合局部化学平衡和化学反应动力学的电动修复模型

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摘要

A mathematical model for reactive-transport processes in porous media is presented. The modeled system includes diffusion, electromigration and electroosmosis as the most relevant transport mechanisms and water electrolysis at the electrodes, aqueous species complexation, precipitation and dissolution as the chemical reactions taken place during the treatment time. The model is based on the local chemical equilibrium for most of the reversible chemical reactions occurring in the process. As a novel enhancement of previous models, the local chemical equilibrium reactive-transport model is combined with the solution of the transient equations for the kinetics of those chemical reactions that have representative rates in the same order than the transport mechanisms.The model is validated by comparison of simulation and experimental results for an acid-enhanced electrokinetic treatment of a real Pb-contaminated calcareous soil. The kinetics of the main pH buffering process, the calcite dissolution, was defined by a simplified empirical kinetic law. Results show that the evaluation of kinetic rate entails a significant improvement of the model prediction capability.
机译:提出了多孔介质中反应输运过程的数学模型。建模的系统包括扩散,电迁移和电渗作为最相关的传输机制,电极上的水电解,在处理期间发生的化学反应是水物种的络合,沉淀和溶解。该模型基于过程中发生的大多数可逆化学反应的局部化学平衡。作为对先前模型的一种新颖改进,将局部化学平衡反应性运输模型与瞬态方程组的求解方法相结合,以解决那些具有代表性速率(与运输机理相同的速率)的化学反应的动力学过程。酸增强的电动处理真实铅污染的钙质土壤的模拟和实验结果的比较。通过简化的经验动力学定律定义了主要pH缓冲过程的方解石溶解动力学。结果表明,动力学速率的评估大大提高了模型的预测能力。

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