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COMPUTATIONAL MODEL OF THE MARK-IV ELECTROREFINER: TWO-DIMENSIONAL POTENTIAL AND CURRENT DISTRIBUTIONS

机译:MARK-IV电子整流器的计算模型:二维电位和电流分布

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摘要

A computational model of the Mark-IVelectrorefiner is currently being developed as a joint project between Idaho National Laboratory, Korea Atomic Energy Research Institute, Seoul National University, and the University of Idaho. As part of this model, the two-dimensional potential and current distributions within the molten salt electrolyte are calculated for U~(3+), Zr~(4+), and Pu~(3+) along with the total distributions, using the partial differential equation solver of the commercial Matlab software. The electrical conductivity of the electrolyte solution is shown to depend primarily on the composition of the electrolyte and to average 205 mho/m with a standard deviation of 2.5×10~(-5)% throughout the electrorefining process. These distributions show that the highest potential gradients (thus, the highest current) exist directly between the two anodes and cathode. The total, uranium, and plutonium potential gradients are shown to increase throughout the process, with a slight decrease in that of zirconium. The distributions also show small potential gradients and very little current flow in the region far from the operating electrodes.
机译:作为爱达荷州国家实验室,韩国原子能研究所,首尔国立大学和爱达荷大学之间的一项联合项目,目前正在开发Mark-IV电精炼机的计算模型。作为该模型的一部分,使用以下公式计算熔融盐电解质中U〜(3 +),Zr〜(4+)和Pu〜(3+)的二维电势和电流分布以及总分布,使用Matlab商业软件的偏微分方程求解器。在整个电精制过程中,电解液的电导率主要取决于电解液的组成,平均为205 mho / m,标准偏差为2.5×10〜(-5)%。这些分布表明,最高的电位梯度(因此,最高的电流)直接存在于两个阳极和阴极之间。在整个过程中,总的,铀和p的电势梯度显示增加,而锆的电势梯度略有下降。该分布还显示出小的电位梯度,并且在远离工作电极的区域中很少的电流流动。

著录项

  • 来源
    《Nuclear Technology》 |2011年第2期|p.176-182|共7页
  • 作者单位

    University of Idaho-Idaho Falls, Center for Advanced Energy Studies Department of Chemical Engineering, Nuclear Engineering Program 995 University Boulevard, Idaho Falls, Idaho 83402;

    University of Idaho-Idaho Falls, Center for Advanced Energy Studies Department of Chemical Engineering, Nuclear Engineering Program 995 University Boulevard, Idaho Falls, Idaho 83402;

    Idaho National Laboratory, Pyroprocessing Technology Department P.O. Box 1625, Idaho Falls, Idaho 83415;

    Idaho National Laboratory, Pyroprocessing Technology Department P.O. Box 1625, Idaho Falls, Idaho 83415;

    Idaho National Laboratory, Pyroprocessing Technology Department P.O. Box 1625, Idaho Falls, Idaho 83415;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    electrochemical pro-cessing; electrorefiner. potential distribution;

    机译:电化学处理电精炼机。电位分布;
  • 入库时间 2022-08-18 00:43:43

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