高温处理保障措施文献综述

Abigayle I. Hargreaves, Eva Barker, Jaylyn Berry, Evan Dolley, Chad L. Pope
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引用次数: 0

摘要

热处理是一种用于后处理轻水反应堆(LWR)和钠快堆(SFR)废核燃料(UNF)的前景广阔的技术。随着 TerraPower 等公司的项目推动了快堆的发展,热处理技术的前景比以往任何时候都更加广阔,因为快堆可以消耗所有锕系元素,而不仅仅是铀和钚。在热处理商业化之前,用于水基后处理的现有保障措施必须适用于热处理。核管制委员会(NRC)和国际原子能机构(IAEA)确定的保障措施将作为国内和国际后处理厂所用方法的准则在本综述中讨论。然后根据现有水处理设施的经验,审查了水处理后处理中保障措施的实施情 况。实验性热处理设施被确定为处于设计阶段的热处理厂,但燃料调节设施(FCF)除外。考虑了为每个设施实施或设计的保障方法,以及在热处理中利用现有保障措施的相应挑战,并对适用方法进行了总结。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A literature review of pyroprocessing safeguards
Pyroprocessing is a promising technology for reprocessing used nuclear fuel (UNF) from light water reactors (LWR) and sodium fast reactors (SFR). With the advancement of fast reactors with projects from companies such as TerraPower, the prospects of pyroprocessing are more promising than ever before, as fast reactors can consume all actinides, not just uranium and plutonium. Before pyroprocessing can be implemented commercially, pre-existing safeguards used for aqueous reprocessing must be adapted for pyroprocessing. Safeguards, as determined by both the Nuclear Regulatory Commission (NRC) and the International Atomic Energy Agency (IAEA), are discussed in this review as guidelines for approaches used in both domestic and international reprocessing plants. The implementation of safeguards in aqueous reprocessing was then reviewed based on the experience from existing aqueous facilities. The experimental pyroprocessing facilities were identified as pyroprocessing plants in the design stage with one operating exception of the Fuel Conditioning Facility (FCF). The safeguard methods implemented or designed for each and the accompanying challenges of utilizing existing safeguards in pyroprocessing are considered and a summary of applicable approaches is included.
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