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Radioxenon spiked air

机译:放射性氙加标空气

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Four of the radioactive xenon isotopes (Xe-131m, Xe-133m, Xe-133 and Xe-135) with half-lives ranging from 9 h to 12 days are produced from nuclear fission and can be detected from days to weeks following their production and release. Being inert gases, they are readily transported through the atmosphere. Sources for release of radioactive xenon isotopes include operating nuclear reactors via leaks in fuel rods, medical isotope production facilities, and nuclear weapons' detonations. They are not normally released from fuel reprocessing due to the short half-lives. The Comprehensive Nuclear-Test-Ban Treaty has led to creation of the International Monitoring System. The International Monitoring System, when fully implemented, will consist of one component with 40 stations monitoring radioactive xenon around the globe. Monitoring these radioactive xenon isotopes is important to the Comprehensive Nuclear-Test-Ban Treaty in determining whether a seismically detected event is or is not a nuclear detonation. A variety of radioactive xenon quality control check standards, quantitatively spiked into various gas matrices, could be used to demonstrate that these stations are operating on the same basis in order to bolster defensibility of data across the International Monitoring System. This paper focuses on Idaho National Laboratory's capability to produce three of the xenon isotopes in pure form and the use of the four xenon isotopes in various combinations to produce radioactive xenon spiked air samples that could be subsequently distributed to participating facilities. (C) 2015 Elsevier Ltd. All rights reserved.
机译:半衰期为9小时至12天的四种放射性氙同位素(Xe-131m,Xe-133m,Xe-133和Xe-135)是由核裂变产生的,在其产生后的数天至数周内可被检测到然后释放。它们是惰性气体,很容易通过大气传输。放射性氙同位素的释放源包括通过燃料棒泄漏,医学同位素生产设施以及核武器爆炸而运行的核反应堆。由于半衰期短,它们通常不会从燃料后处理中释放出来。 《全面禁止核试验条约》导致建立了国际监测系统。全面实施的国际监测系统将由一个组成部分,由40个台站监测全球的放射性氙。监测这些放射性氙同位素对《全面禁止核试验条约》至关重要,以确定地震探测到的事件是否是核爆炸。可以使用定量地掺入各种气体基质中的各种放射性氙质量控制检查标准来证明这些台站在相同的基础上运行,以增强国际监测系统中数据的可辩护性。本文重点介绍爱达荷州国家实验室生产纯形式的三种氙同位素的能力,以及使用四种氙同位素的各种组合来生产放射性氙加标空气样品,这些样品随后可分发给参与的设施。 (C)2015 Elsevier Ltd.保留所有权利。

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