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Nuclear Criticality, Shielding, and Thermal Analyses of Separations Processes for the Transmutation Fuel Cycle

机译:嬗变燃料循环分离过程的核临界,屏蔽和热分析

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摘要

The first step in any transmutation strategy is the separation of radionuclides in used nuclear fuel. The current separation strategy supporting the Advanced Fuel Cycle Initiative (AFCI) program is based on the use of a solvent extraction separation process to separate the actinides, fission products, and uranium from used commercial nuclear fuel, and on the use of pyrochemical separation technologies to process used transmuter fuels. To separate the fission products and transuranic elements from the uranium in used fuel, the national program is developing a new solvent extraction process, the Uranium Extraction Plus, or UREX+, process, based on the traditional solvent extraction reprocessing technologies.As the volume of waste requiring treatment increases, a higher probability exists that fissionable isotopes of plutonium, neptunium, and curium can accumulate and form a critical mass. Criticality concerns warrant an assessment of the effective neutron multiplication factor, or keff, to prevent a possible sustained fission reaction. Maintaining keffbelow a safe level (u3c0.95) prevents criticality events. Candidate storage containers also require analysis to assess the need for radiation shielding. Since minor actinides generate significant amounts of heat through radioactive decay, proposed containment measures must be designed to avoid excessive temperatures. Radioactive decay also generates heat that can lead to melting of the fuel during storage and handling.
机译:任何trans变策略的第一步都是分离废旧核燃料中的放射性核素。当前支持高级燃料循环倡议(AFCI)计划的分离策略是基于使用溶剂萃取分离工艺从使用过的商业核燃料中分离the系元素,裂变产物和铀,以及利用热化学分离技术处理使用的变相燃料。为了从使用过的燃料中的铀中分离裂变产物和超铀元素,该国家计划正在基于传统的溶剂萃取后处理技术开发一种新的溶剂萃取工艺,即Uranium Extraction Plus或UREX +工艺。需要增加处理量的情况下,p,and和cur的可裂变同位素可能积累并形成临界质量的可能性更高。关键问题需要对有效中子倍增因子或keff进行评估,以防止可能的持续裂变反应。将keff保持在安全水平( u3c0.95)以下可防止发生危险事件。候选存储容器还需要进行分析,以评估是否需要屏蔽辐射。由于次act系元素会通过放射性衰变而产生大量热量,因此必须设计拟议的围堵措施,以避免温度过高。放射性衰变还会产生热量,在储存和处理过程中会导致燃料熔化。

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