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Isotopic signature of atmospheric xenon released from light water reactors

机译:轻水反应堆释放的大气氙的同位素特征

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A global monitoring system for atmospheric xenon radioactivity is being established as part of the International Monitoring System to verify compliance with the Comprehensive Nuclear-Test-Ban Treaty (CTBT). The isotopic activity ratios of ~(135)Xe, ~(133m)Xe, ~(133)Xe and ~(131m)Xe are of interest for distinguishing nuclear explosion sources from civilian releases. Simulations of light water reactor (LWR) fuel burn-up through three operational reactor power cycles are conducted to explore the possible xenon isotopic signature of nuclear reactor releases under different operational conditions. It is studied how ratio changes are related to various parameters including the neutron flux, uranium enrichment and fuel burn-up. Further, the impact of diffusion and mixing on the isotopic activity ratio variability are explored. The simulations are validated with reported reactor emissions. In addition, activity ratios are calculated for xenon isotopes released from nuclear explosions and these are compared to the reactor ratios in order to determine whether the discrimination of explosion releases from reactor effluents is possible based on isotopic activity ratios.
机译:作为国际监测系统的一部分,正在建立一个全球氙气放射性全球监测系统,以核实对《全面禁止核试验条约》(CTBT)的遵守情况。 〜(135)Xe,〜(133m)Xe,〜(133)Xe和〜(131m)Xe的同位素活度比对于区分民用释放的核爆源很有用。进行了三个运行反应堆功率循环的轻水反应堆(LWR)燃料燃烧的模拟,以探索在不同运行条件下核反应堆释放的氙同位素特征。研究了比率变化与中子通量,铀浓缩和燃料燃烧等各种参数之间的关系。此外,探讨了扩散和混合对同位素活度比变异性的影响。通过报告的反应堆排放量对模拟进行了验证。此外,计算了从核爆炸释放的氙同位素的活度比,并将其与反应堆比率进行比较,以便基于同位素活度比来确定是否有可能区分反应堆废水的爆炸释放。

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