快堆和热堆中武器级钚核取证归因的痕量裂变产物比

IF 0.7 Q3 INTERNATIONAL RELATIONS Science & Global Security Pub Date : 2015-01-02 DOI:10.1080/08929882.2015.996079
S. Chirayath, Jeremy M. Osborn, T. M. Coles
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引用次数: 21

摘要

对核恐怖主义威胁的日益关注,加强了发展快速和准确的核取证分析技术的必要性,以确定核材料来源的归属,并建立可靠的核威慑。钚是核反应堆燃料的副产品,特别是在低燃耗(1至2 MWd/kg)排放的燃料中产生的,是潜在的武器可用材料。在禁止钚走私的情况下,在对这一恶意行为作出任何反应之前,必须通过核法医归因方法确定其来源。从排放的反应堆燃料中分离出来的钚的特征和相关的裂变产物的痕迹取决于诸如反应堆类型(热反应堆或快堆)、燃料燃烧、辐照历史和用于分离钚的化学过程等因素。本文提出了一种利用痕量裂变产物与钚之比进行核取证的新方法,将钚归因于用于生产钚的反应堆类型,并提出了利用这两种核反应堆的公开文献设计信息对快中子谱增殖反应堆和热中子谱反应堆进行案例研究的结果。
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Trace Fission Product Ratios for Nuclear Forensics Attribution of Weapons-Grade Plutonium from Fast and Thermal Reactors
The growing concern about nuclear terrorism threats has enhanced the need to develop fast and accurate nuclear forensics analysis techniques for nuclear material source attribution and to create a credible nuclear deterrence. Plutonium produced as a by-product in nuclear reactor fuel, especially in fuel discharged at low burn-up (1 to 2 MWd/kg), is potentially weapons usable material. In the event of plutonium interdiction from a smuggling act, its origin has to be established through nuclear forensics attribution methods before any response is initiated against this malicious act. The characteristics of separated plutonium from discharged reactor fuel and the associated fission product traces depend on factors such as the reactor type (thermal or fast reactor), fuel burn-up, irradiation history, and the chemical process used to separate plutonium. A new methodology of using trace fission product to plutonium ratios for nuclear forensics attribution of plutonium to the type of reactor used for its production is presented along with results obtained for case studies of a fast neutron spectrum breeder reactor and a thermal neutron spectrum reactor using open literature design information of these two types of nuclear reactors.
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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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