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Modeling of fission and activation products in molten salt reactors and their potential impact on the radionuclide monitoring stations of the International Monitoring System

机译:熔盐反应器中裂变和活化产物的建模及其对国际监测系统放射性核素监测站的潜在影响

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Molten Salt Reactors (MSRs) are one of six Generation IV reactor designs currently under development around the world. Because of the unique operating conditions of MSRs, which include molten fuel and the continuous removal of gaseous fission products during operation, work was performed to model the production of activation and fission products and analyze the potential impact of emissions on the International Monitoring System (IMS) of the Comprehensive Nuclear-Test-Ban Treaty (CTBT). Simulations were performed to predict the production of IMS-relevant radionuclides in four MSR designs operating under two scenarios: (1) a sealed reactor with releases only during operational shutdown, and (2) continuous reprocessing or sparging of the fuel salt. From these production estimates the radioxenon and radioiodine signatures were extracted and compared to three current reactor designs (Boiling Water Reactor, Pressurized Water Reactor, High-Power Channel-Type Reactor). In cases where continuous reprocessing of the fuel salt occurred, both the radioxenon and radioiodine signatures were nearly indistinguishable from a nuclear explosion. Estimates were also made of the potential emission rate of radioxenon for three reactor designs and it was found that MSRs have the potential to emit radioxenon isotopes at a rate of 1015 - 8 x 1016 Bq/d for 133Xe, which may adversely affect nuclear explosion monitoring, if no abatement is used. An assessment was made of activation products using a candidate fuel salt (FLiBe) mixed with corrosion products for the Thorium Molten Salt Reactor (TMSR-LF1).
机译:熔盐反应器(MSRS)是目前正在世界各地开发的六代IV反应器设计之一。由于MSRS的独特操作条件,包括熔炼燃料和运行过程中的气态裂变产品的连续去除,进行工作以模拟激活和裂变产品的生产,并分析排放对国际监测系统的潜在影响(IMS )全面的核试验禁令条约(CTBT)。进行仿真以预测在两个场景中操作的四个MSR设计中的IMS相关放射性核素的生产:(1)仅在操作停机期间的释放的密封反应器,(2)燃料盐的连续再处理或喷射释放。从这些生产估计,提取戒备和放射性碘签名并将其与三个电流反应器设计进行比较(沸水反应器,加压水反应器,高功率通道型反应器)。在发生燃料盐的连续再加工的情况下,来自核爆炸的戒烟和放射性碘特征几乎无法区分。估计还由三种反应器设计的潜在排放率制成,发现MSRS具有以1015-8×1016bq / d的速率发射射出羰烯宁同位素,对于133xe可能会产生不利影响核爆炸监测的影响,如果没有使用abatement。使用与钍熔融盐反应器(TMSR-LF1)混合的候选燃料盐(烤肉)进行激活产品进行评估。

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