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Enhancing Research Reactor Safeguards Through the Use of Mailbox Declarations

机译:通过使用邮箱声明,增强研究反应堆保护措施

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There are several historic examples of research reactors being misused to produce undeclared nuclear material. However, misuse of a State's research reactor has typically only been discovered after further investigation into the State's non-compliance related to other undeclared activities. Light water research reactors are typically designed with sample irradiation ports, where the introduction of fertile material can illicitly produce fissile material. Additionally, some light water reactors continue to be fueled by highly enriched uranium, which is a more significant safeguards concern to the International Atomic Energy Agency (IAEA). Heavy water and graphite reactors can be used for illicit plutonium production, which is of particular proliferation concern. Because research reactors are designed for flexible operations and small research reactors are less frequently inspected by the IAEA than other nuclear facilities (depending on power and fuel type, it could several years between inspections), the likelihood of timely detection by the IAEA of misuse of the research reactor is low. During a 2013 workshop on safeguarding research reactors, the United States, France, and the United Kingdom made recommendations to the IAEA on how safeguards could be strengthened for such facilities. One of the recommendations was to assess the use of "mailbox" declarations coupled with short notice random inspections or unannounced inspections by the IAEA at research reactors. An electronic mailbox declaration refers to the use of a secure information repository into which an operator submits operating reports. The near real time submittal of information enables the IAEA to better implement randomized short notice inspections. These mailboxes are not used for collecting and submitting State reports to the IAEA, but for collecting and transmitting operator data. The use of mailboxes, in conjunction with short notice random inspections, is in routine use for some other facility types. This paper assesses the potential for the practical application of mailbox declarations for various research reactor types and how the approach could be effectively used. Operator data records are discussed in connection to potential mailbox declarations, including discussion of how the data could indicate research reactor misuse.
机译:有几个历史性的研究堆被滥用以产生未释放的核材料。然而,滥用州的研究反应堆通常只在进一步调查与其他未申报活动相关的国家的不合规性之后发现。轻水研究反应堆通常设计采用样品辐射端口,其中肥沃材料的引入可以非法地产生裂变材料。此外,一些轻质水反应器继续通过高度富集的铀来燃料,这是对国际原子能机构(原子能机构)的更重要的保障问题。重水和石墨反应器可用于非法钚生产,这是特别的增殖关注。由于研究反应堆专为灵活的操作而设计,因此,IAEA的小型研究反应堆比其他核设施更少(取决于电力和燃料类型,可能会在检查之间几年),及时检测IAEA的可能性滥用的可能性研究反应堆很低。在2013年的保障研究反应堆的研讨会期间,美国,法国和英国向国际原子能机构提出了建议,就如何为这些设施加强保护。其中一项建议是评估使用“邮箱”声明的使用,即在研究堆的IAEA的短暂通知随机检查或未经发行的检查。电子邮箱声明是指操作员提交操作报告的安全信息存储库的使用。近乎实时提交信息使IAEA能够更好地实施随机简短的通知检查。这些邮箱不用于收集和向原子能机构提交国家报告,而是用于收集和传输运营商数据。与短时间通知随机检查一起使用邮箱是用于其他一些设施类型的例行用途。本文评估了各种研究反应堆类型的邮箱声明的实际应用的潜力以及如何有效地使用方法。讨论操作员数据记录与潜在的邮箱声明,包括讨论数据如何表明研究反应堆滥用。

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