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A monitor solution to characterize a fissile material in a glove box

机译:监视器解决方案,以表征杂物盒中的裂变材料

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Handling fissionable material requires special know-how in managing irradiation and contamination risks while controlling any potential chain reaction, i.e. maintaining sub-criticality. If the risks associated with cleanup and dismantling operations had to be ranked in order of seriousness, keeping control of sub-criticality would probably be number one. The control modes for sub-criticality management are often reduced to the measurement of the fissile mass. This subject represents an opportunity for the development of fissile material mass control. More precisely, D&D operations require the design and deployment of innovative ways to ensure accurate measurement of the mass of fissile material in a hostile environment. The technical proposal described in this document is based on gamma spectrometry applied to the characterization of fissile material holdup in a glove box. Gamma spectrometry is adapted to monitoring the evolution of the main radionuclides: ~(241)Am and ~(241)Pu. The work has confirmed that detectors equipped with CdZnTe crystals are devices which are well-adapted to on-line monitoring of glove box cleanup.
机译:处理裂变材料需要在控制任何潜在的链反应的同时,即维持亚临界性,在管理辐射和污染风险方面需要特殊的专业知识。如果必须按照严重的顺序对与清理和拆除操作相关的风险进行排名,那么控制次临界的风险可能是第一。亚临界程度管理的控制模式通常会降低为裂变质量的测量。该主题代表了开发裂变材料质量控制的机会。更确切地说,D&D操作需要设计和部署创新的方式,以确保在敌对环境中准确测量裂变材料的质量。本文档中描述的技术建议是基于应用于玻璃盒中裂变材料的表征的伽马光谱法。伽马光谱法适合监测主要放射性核素的演化:〜(241)AM和〜(241)PU。这项工作已经证实,配备了CDZNTE晶体的探测器是适合在线监视手套箱清理的设备。

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