首页> 外文会议>Annual meeting of the Institute of Nuclear Materials Management >Use of the UNCLE Facility to Assess Integrated Online Monitoring Systems for Detection of Diversion at Uranium Conversion Facilities
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Use of the UNCLE Facility to Assess Integrated Online Monitoring Systems for Detection of Diversion at Uranium Conversion Facilities

机译:使用UNCLE设施评估综合在线监测系统,以检测铀转化设施的转移情况

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Historically, the approach to safeguarding nuclear material in the front end of the fuel cycle was implemented only at the stage when UF_6 was declared as feedstock for enrichment plants. Recent International Atomic Energy Agency (IAEA) circulars and policy papers have sought to implement safeguards when any purified aqueous uranium solution or uranium oxides suitable for isotopic enrichment or fuel fabrication exist. Oak Ridge National Laboratory has developed the Uranyl Nitrate Calibration Loop Equipment (UNCLE) facility to simulate the full-scale operating conditions for a purified uranium-bearing aqueous stream exiting the solvent extraction process conducted in a natural uranium conversion plant (NUCP) operating at 6000 MTU/year. Monitoring instruments, including the ~3He passive neutron detector developed at Los Alamos National Laboratory and the Endress+Hauser Promass 83F Coriolis meter, have been tested at UNCLE and field tested at Springfields. The field trials demonstrated the need to perform full-scale equipment testing under controlled conditions prior to field deployment of operations and safeguards monitoring at additional plants. Currently, UNCLE is testing neutron-based monitoring for detection of noncompliant activities; however, gamma-ray source term monitoring is currently being explored complementary to the neutron detector in order to detect undeclared activities in a more timely manner. The preliminary results of gamma-ray source term modeling and monitoring at UNCLE are being analyzed as part of a comprehensive source term and detector benchmarking effort. Based on neutron source term detection capabilities, alternative gamma-based detection and monitoring methods will be proposed to more effectively monitor NUCP operations in verifying or detecting deviations from declared conversion activities.
机译:从历史上看,在燃料循环的前端保护核材料的方法仅在将UF_6宣布为浓缩厂原料的阶段才实施。当存在任何适用于同位素富集或燃料制造的纯净铀水溶液或氧化铀时,国际原子能机构(IAEA)的最新通告和政策文件均已寻求实施保障措施。橡树岭国家实验室(Oak Ridge National Laboratory)已开发了硝酸铀酰校准回路设备(UNCLE)设施,以模拟在6000吨天然铀转化工厂(NUCP)中进行溶剂萃取工艺的纯化的含铀水流的全规模运行条件。 MTU /年。监视仪器,包括在洛斯阿拉莫斯国家实验室开发的〜3He被动中子探测器和Endress + Hauser Promass 83F科里奥利仪表,已在UNCLE进行了测试,并在Springfields进行了现场测试。现场试验表明,有必要在受控条件下进行全面的设备测试,然后再在其他工厂进行操作部署和安全监控。 UNCLE目前正在测试基于中子的监测,以发现不合规的活动;但是,目前正在探索与中子探测器互补的伽马射线源项监测,以便更及时地探测未申报的活动。作为全面的放射源术语和探测器基准测试工作的一部分,正在对UNCLE的伽马射线放射源术语建模和监视的初步结果进行分析。基于中子源项检测功能,将提出基于伽马的替代检测和监视方法,以更有效地监视NUCP操作,以验证或检测与声明的转换活动的偏差。

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