首页> 外文会议>International nuclear fuel cycle conference >PYROPROCESSING OF OXIDIZED SODIUM-BONDED FAST REACTOR FUEL - AN EXPERIMENTAL STUDY OF TREATMENT OPTIONS FOR DEGRADED EBR-Ⅱ FUEL
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PYROPROCESSING OF OXIDIZED SODIUM-BONDED FAST REACTOR FUEL - AN EXPERIMENTAL STUDY OF TREATMENT OPTIONS FOR DEGRADED EBR-Ⅱ FUEL

机译:氧化钠键合快速反应器燃料的热加工-降解EBR-Ⅱ燃料处理方案的实验研究

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An experimental study was conducted to assess pyrochemical treatment options for degraded EBR-II fuel. As oxidized material, the degraded fuel would need to be converted back to metal to enable electrorefining within an existing electrometallurgical treatment process. A lithium-based electrolytic reduction process was studied to assess the efficacy of converting oxide materials to metal with a particular focus on the impact of zirconium oxide and sodium oxide on this process. Bench-scale electrolytic reduction experiments were performed in LiCl-Li_2O at 650 °C with combinations of manganese oxide (used as a surrogate for uranium oxide), zirconium oxide, and sodium oxide. The experimental study illustrated how zirconium oxide and sodium oxide present different challenges to a lithium-based electrolytic reduction system for conversion of select metal oxides to metal.
机译:进行了一项实验研究,以评估降解的EBR-II燃料的热化学处理方案。作为氧化材料,降解后的燃料将需要转化回金属,以便在现有的电冶金处理工艺中进行电精炼。研究了一种基于锂的电解还原工艺,以评估将氧化物材料转化为金属的功效,特别关注氧化锆和氧化钠对该工艺的影响。在LiCl-Li_2O中于650°C的氧化锰(用作氧化铀的替代品),氧化锆和氧化钠的组合进行了台式电解还原实验。实验研究表明,氧化锆和氧化钠如何对锂基电解还原系统(将特定的金属氧化物转化为金属)带来不同的挑战。

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