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PLUTONIUM HOST PHASES DERIVED FROM HIGH-LEVEL WASTE AT THE IDAHO CHEMICAL PROCESSING PLANT

机译:钚宿主阶段来自爱达荷化学加工厂的高级垃圾

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The National Academy of Sciences recommended dissolution in a silicate matrix, with fission products to provide a diversion-resistant radiation field, as one option for dispositioning excess weapons-grade plutonium. Candidate materials and processing conditions have been developed to pursue this option using high-level waste stored at the Idaho Chemical Processing Plant. Devitrification of glassy host materials achieves increased plutonium loading by partitioning plutonium into durable crystalline host phases. Results of devitrification experiments are summarized, and several unique plutonium host phases are reported. These phases were initially synthesized and characterized using cerium as a plutonium surrogate, to simplify operational requirements. Tests using plutonium were performed to validate results obtained with surrogate materials. Characterization and leach test results are reported.
机译:国家科学院推荐在硅酸盐基质中溶解,具有裂变产物,提供导流抗辐射场,作为一种双重武器级钚的一种选择。已经开发了候选材料和加工条件,以利用存储在爱达荷化学加工厂的高级废物来追求这种选择。通过将钚分配成耐用的结晶宿主相,玻璃状宿主材料的透过率达到钚负荷增加。总结了缺失实验的结果,报告了几个独特的钚宿主阶段。最初合成这些阶段,用铈作为钚替代物合成并表征,以简化操作要求。使用钚进行试验以验证用替代材料获得的结果。报告了表征和浸出试验结果。

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