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ANODIC PROCESS OF ELECTROREFINING SPENT NUCLEAR FUEL IN MOLTEN LICl-KCl-UCl_3/CD SYSTEM

机译:LiCl-KCl-UCl_3 / CD系统中电解精炼核燃料的阳极氧化过程

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摘要

This article summarizes the experimental results and engineering aspects regarding the anodic process for electrorefining 100 irradiated driver fuel assemblies, a demonstration project for the Department of Energy (DOE) to treat spent nuclear fuel. The focus is on the anode due to its unique geometry (fuel dissolution baskets loaded with chopped irradiated fuel segments), complex chemical compositions, highly demanding process goals and their significance to the entire spent fuel treatment process. Chemical analysis results of cladding hull samples were used as the key criteria to evaluate the effectiveness of the uranium dissolution and noble metal retention. Parametric study indicated that the diffusion of reactants in the porous fuel matrix was the rate-controlling step to the uranium dissolution from the chopped fuel segments. Anode resistance was the most effective parameter to assess the completeness of uranium dissolution and noble metal retention.
机译:本文总结了有关电精炼100个辐照驱动燃料组件的阳极工艺的实验结果和工程方面的内容,这是美国能源部(DOE)处理乏核燃料的示范项目。阳极由于其独特的几何形状(装载有切碎的辐照燃料段的燃料溶解篮),复杂的化学成分,非常苛刻的过程目标及其对整个乏燃料处理过程的重要性,因此重点放在阳极上。包壳船体样品的化学分析结果用作评估铀溶解和贵金属保留效果的关键标准。参数研究表明,反应物在多孔燃料基体中的扩散是控制铀从切碎的燃料段中溶解的速率控制步骤。阳极电阻是评估铀溶解和贵金属保留完整性的最有效参数。

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