区分重水反应堆中钚和氚生产方式的核考古学

IF 0.7 Q3 INTERNATIONAL RELATIONS Science & Global Security Pub Date : 2018-09-02 DOI:10.1080/08929882.2018.1518693
J. de Troullioud de Lanversin, M. Göttsche, A. Glaser
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引用次数: 5

摘要

为了确定专用核反应堆的历史钚产量,已经提出了几种核考古技术。这些方法依赖于从反应堆堆芯取样材料,或特别设计的监测标签,来检查合适的同位素比率,并推断出钚的产量。然而,一些生产反应堆能够生产除钚以外的同位素,如氚。如果一个反应堆被宣布生产氚,关键是要确认它实际上生产的是氚,而不是钚。在本文中,我们描述了如何同位素比率差异可以用来区分钚和氚的生产模式。我们介绍了从模拟萨凡纳河重水生产反应堆中获得的结果,并表明诸如铪和钨之类的元素可以探测到未申报的钚生产。
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Nuclear Archaeology to Distinguish Plutonium and Tritium Production Modes in Heavy-Water Reactors
Abstract Several nuclear archaeology techniques have been proposed to determine historic plutonium production in dedicated nuclear reactors. These methods rely on sampling materials from the reactor core, or specially designed monitor tags, to examine suited isotopic ratios and deduce the amount of plutonium produced. However, some production reactors are capable of producing isotopes other than plutonium, such as tritium. If a reactor was declared to produce tritium, it would be crucial to confirm that it was in fact producing tritium, and not plutonium. In this paper, we describe how isotopic ratios discrepancies could be used to distinguish between plutonium and tritium production modes. We present results obtained from the simulation of reactor lattices inspired by Savannah River Site heavy-water production reactors and show that elements such as hafnium and tungsten can detect undeclared production of plutonium.
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来源期刊
Science & Global Security
Science & Global Security INTERNATIONAL RELATIONS-
CiteScore
1.00
自引率
14.30%
发文量
8
期刊最新文献
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