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ELECTROCHEMICAL REDUCTION OF URANIUM OXIDE FUEL IN A MOLTEN LiCl/Li_2O SYSTEM

机译:LiCl / Li_2O体系中电化学还原铀氧化物的研究

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This article reports the experimental results of the electrochemical reduction of uranium oxide fuel in a bench-scale apparatus at Argonne National Laboratory. The experiments were performed in a molten LiCl/Li_2O electrolyte at 650 ℃ under an argon atmosphere in a hot cell. The purpose of the bench-scale experiments was to prove the concept, to understand the mechanisms of predominant reactions at the anode and cathode, and to establish operating conditions prior to initiating electrochemical reduction experiments with spent LWR oxide fuels. Cyclic voltammetry was utilized to explore the process limitations and to investigate the kinetic parameters of the electrode reactions. Depleted uranium oxide was used to determine the current efficiency and rate-limiting step for the electrochemical reduction process. A surrogate LWR fuel was also tested to assess fission product distributions and their impact on the electrode processes.
机译:本文报道了在阿贡国家实验室的台式规模的装置中电化学还原铀氧化物燃料的实验结果。实验是在氩气气氛下,在热室中于650℃的熔融LiCl / Li_2O电解质中进行的。实验规模的目的是证明概念,了解阳极和阴极主要反应的机理,并建立运行条件,然后再开始使用废LWR氧化物燃料进行电化学还原实验。循环伏安法用于探索工艺限制并研究电极反应的动力学参数。使用贫化的氧化铀确定电化学还原过程的电流效率和限速步骤。还对替代的轻水堆燃料进行了测试,以评估裂变产物的分布及其对电极工艺的影响。

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