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Computational analysis of a molten-salt electrochemical system for nuclear waste treatment

机译:用于核废料处理的熔融盐电化学系统的计算分析

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摘要

This paper describes ongoing research into the multi-physics model development of an electrorefining process for the treatment of spent nuclear fuel. A forced convection of molten eutectic (LiCl-KCl) electrolyte in an electrorefining cell is considered to establish an appropriate electro-fluid model within the 3-dimensional framework of a conventional computational fluid dynamic model. This computational platform includes the electrochemical reaction rate of charge transfer kinetics which is described by a Butler-Volmer equation, while mass transport is considered using an ionic transport equation. The coupling of the local overpotential distribution and uranium concentration gradient makes it possible to predict the local current density distribution at the electrode surfaces.
机译:本文介绍了一种用于处理乏核燃料的电精炼工艺的多物理场模型开发的正在进行的研究。在电精炼池中,熔融共晶(LiCl-KCl)电解质的强制对流被认为可以在常规计算流体动力学模型的3维框架内建立合适的电流体模型。该计算平台包括由Butler-Volmer方程描述的电荷转移动力学的电化学反应速率,而使用离子迁移方程来考虑质量迁移。局部超电势分布和铀浓度梯度的耦合使得可以预测电极表面的局部电流密度分布。

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