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EXPERIMENTAL OBSERVATIONS ON THE ROLES OF THE CADMIUM POOL IN THE MARK-IV ELECTROREFINER

机译:MARK-IV电子精炼机中镉池作用的实验观察

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Idaho National Laboratory and Argonne National Laboratory have developed and demonstrated a pyroprocessing technology for the U.S. Department of Energy to reprocess spent nuclear fuel. One of the key steps in the pyroprocessing was electrorefining the spent fuel in a metal form in a molten LiCl-KCl-UCl_3/liquid cadmium (Cd) system using the Mark-IV, an engineering-scale elec-trorefiner (ER). This paper summarizes experimental observations and engineering aspects for the roles of the Cd in electrorefining spent fuel in the Mark-IV ER. It was found that the Cd pool acted as an intermediate electrode during the electrorefining process. The Cd level gradually decreased because of its high vapor pressure at the ER operating temperature. The low Cd level caused the anode assembly to electrically short with the ER vessel hardware, which resulted in difficulty determining the endpoint of uranium dissolution from the anode baskets and reduced the current efficiency. A reflux Cd vapor trap successfully prevented the Cd level from decreasing and mitigated Cd vapor deposition on the cold metal surface inside the ER.
机译:爱达荷州国家实验室和阿贡国家实验室已经为美国能源部开发并演示了一种高温处理技术,用于对乏核燃料进行后处理。热解过程中的关键步骤之一是使用工程规模的电精炼机(ER)在熔融的LiCl-KCl-UCl3 /液态镉(Cd)系统中对金属形式的乏燃料进行电精炼。本文总结了Mark-IV ER中Cd在电精制乏燃料中的作用的实验观察和工程方面。发现在电解精炼过程中,Cd池充当中间电极。由于其在ER工作温度下的高蒸气压,Cd含量逐渐降低。低Cd含量导致阳极组件与ER容器硬件发生电气短路,这导致难以确定从阳极篮中溶解铀的终点,并降低了电流效率。回流Cd蒸气捕集器成功地防止了Cd含量降低并减轻了ER内部冷金属表面上Cd蒸气的沉积。

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