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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >ACTINIDES RECOVERY FROM MOLTEN SALT LIQUID METAL SYSTEM BY ELECTROCHEMICAL METHODS
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ACTINIDES RECOVERY FROM MOLTEN SALT LIQUID METAL SYSTEM BY ELECTROCHEMICAL METHODS

机译:电化学法从熔融盐金属液中回收系

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Electrochemical methods were examined for the recovery of actinides from the electrorefiner which is used in pyrometallurgical reprocessing of spent metal fuel for fast reactors. Uranium was successfully collected at the solid steel cathode from both liquid cadmium and molten salt solvents. In electrotransport from liquid cadmium, the behavior of uranium and rare earths was as expected by a computer simulation code based on the diffusion layer model at the interface between the electrolyte and the electrodes. In electroreduction from the molten salt electrolyte, a considerable amount of uranium was reduced at the Cd-Li anode by direct chemical reduction with lithium, especially at a lower anodic current density. The decrease in collection efficiency of uranium due to the direct chemical reduction would be avoided by maintaining the anode potential higher than the deposition potential of uranium. (C) 1997 Elsevier Science B.V. [References: 3]
机译:检验了电化学方法从电精炼机中回收act系元素,该精炼机用于快速反应堆的废金属燃料的火法冶金后处理。在固态钢阴极成功地从液态镉和熔融盐溶剂中收集了铀。在从液态镉的电迁移中,铀和稀土的行为是基于计算机模拟代码所期望的,该代码基于在电解质和电极之间的界面处的扩散层模型。在从熔融盐电解质中进行电解还原时,通过用锂直接化学还原,尤其是在较低的阳极电流密度下,可在Cd-Li阳极还原大量的铀。通过保持阳极电势高于铀的沉积电势,可以避免由于直接化学还原而导致的铀收集效率的下降。 (C)1997 Elsevier Science B.V. [参考:3]

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