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首页> 外文期刊>Journal of nuclear science and technology >Recovery of Transuranium Elements from Real High-Level Liquid Waste by Pyropartitioning Process
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Recovery of Transuranium Elements from Real High-Level Liquid Waste by Pyropartitioning Process

机译:高温分馏法从真正的高放废液中回收铀元素

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A pyropartitioning process is under development to recover minor actinide elements from high-level liquid waste (HLLW) generated by Purex reprocessing. This pyropartitioning process consists of a denitration step that converts various elements in the HLLW into oxides, a chlorination step that converts the oxides into chlorides, and a reductive-extraction step that separates the actinide elements from fission products (FPs) in the chlorination product. The feasibility of each step was confirmed using simulating FPs and unirradiated transuranium elements (TRUs). In the present study, approximately 520 g of real HLLW was prepared to demonstrate the feasibility of the pyropartitioning process. Almost 100% of each TRU originally contained in the HLLW was recovered in the liquid cadmium phase in the reductive-extraction step, which showed that the expected chemical reactions were completed and the mass loss of TRUs was negligible in the denitration, chlorination, and reductive-extraction steps. The separation behaviors of actinide elements, including americium and curium, from FPs in the reductive-extraction step were quite similar to those observed in previous experiments using unirradiated materials. Hence, the pyropartitioning process was successfully verified.
机译:目前正在开发一种热分解工艺,以从Purex再加工产生的高放废液(HLLW)中回收微量的act系元素。该热分解过程包括将高放水废物中的各种元素转化为氧化物的脱硝步骤,将氧化物转化为氯化物的氯化步骤以及将act系元素与氯化产物中裂变产物(FPs)分离的还原萃取步骤。通过模拟FP和未辐照的铀元素(TRU)证实了每个步骤的可行性。在本研究中,准备了约520 g的实际HLLW,以证明热分解过程的可行性。在还原萃取步骤中,HLLW中最初包含的每个TRU的几乎100%被回收为液态镉相,这表明预期的化学反应已完成,并且在脱硝,氯化和还原过程中,TRU的质量损失可忽略不计提取步骤。在还原萃取步骤中,类元素(包括a和cur)从FP中的分离行为与以前使用未辐照材料进行的实验中观察到的行为非常相似。因此,热分区过程得到了成功验证。

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