Plutonium Signatures in Molten-Salt Reactor Off-Gas Tank and Safeguards Considerations

IF 0.5 Q4 NUCLEAR SCIENCE & TECHNOLOGY Journal of Nuclear Engineering and Radiation Science Pub Date : 2023-05-18 DOI:10.3390/jne4020028
Nicholas Dunkle, Alex Wheeler, Jarod Richardson, Sandra Bogetic, Ondrej Chvala, Steven E. Skutnik
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引用次数: 1

Abstract

Fluid-fueled molten-salt reactors (MSRs) are actively being developed by several companies, with plans to deploy them internationally. The current IAEA inspection tools are largely incompatible with the unique design features of liquid fuel MSRs (e.g., the complex fuel chemistry, circulating fuel inventory, bulk accountancy, and high radiation environment). For these reasons, safeguards for MSRs are seen as challenging and require the development of new techniques. This paper proposes one such technique through the observation of the reactor’s off-gas. Any reactor design using low-enriched uranium will build up plutonium as the fuel undergoes burnup. Plutonium has different fission product yields than uranium. Therefore, a shift in fission product production is expected with fuel evolution. The passive removal of certain gaseous fission products to the off-gas tank of an MSR provides a valuable opportunity for analysis without significant modifications to the design of the system. Uniquely, due to the gaseous nature of the isotopes, beta particle emissions are available for observation. The ratios of these fission product isotopes can, thus, be traced back to the relative amount and types of fissile isotopes in the core. This proposed technique represents an effective safeguards tool for bulk accountancy which, while avoiding being onerous, could be used in concert with other techniques to meet the IAEA’s timeliness goals for the detection of a diversion.
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熔盐堆废气罐中的钚特征及保障措施
一些公司正在积极开发液体燃料熔盐反应堆(MSRs),并计划在国际上部署它们。目前的原子能机构视察工具在很大程度上与液体燃料MSRs的独特设计特点不相容(例如,复杂的燃料化学、循环燃料库存、散装核算和高辐射环境)。由于这些原因,对msr的保障措施被视为具有挑战性,需要开发新技术。本文通过对反应器废气的观察,提出了一种这样的技术。任何使用低浓缩铀的反应堆设计都会在燃料燃尽时产生钚。钚的裂变产物产量与铀不同。因此,随着燃料的演变,裂变产物的生产将发生变化。将某些气态裂变产物被动去除到MSR的废气罐中,为分析提供了宝贵的机会,而无需对系统设计进行重大修改。独特的是,由于同位素的气态性质,可以观测到β粒子的发射。因此,这些裂变产物同位素的比例可以追溯到核中可裂变同位素的相对数量和类型。这项拟议的技术是大规模核算的有效保障工具,在避免繁琐的同时,可以与其他技术一起使用,以达到原子能机构及时发现转移的目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.30
自引率
0.00%
发文量
56
期刊介绍: The Journal of Nuclear Engineering and Radiation Science is ASME’s latest title within the energy sector. The publication is for specialists in the nuclear/power engineering areas of industry, academia, and government.
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