首页> 外文会议>Annual meeting of the Institute of Nuclear Materials Management >ADSORPTIVE FILMS IN SUPPORT OF IN-FIELD UF_6 DESTRUCTIVE ASSAY SAMPLE COLLECTION AND ANALYSIS
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ADSORPTIVE FILMS IN SUPPORT OF IN-FIELD UF_6 DESTRUCTIVE ASSAY SAMPLE COLLECTION AND ANALYSIS

机译:现场UF_6型破坏性分析样品收集和分析的吸附膜

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International Atom Energy Agency (IAEA) safeguard verification measures in gaseous centrifuge enrichment plants (GCEPs) rely on environmental sampling, non-destructive assay (NDA), and destructive assay (DA) sampling and analysis to determine uranium enrichment. UF_6 bias defect measurements are made by DA sampling and analysis to assure that enrichment is consistent with declarations. DA samples are collected from a limited number of cylinders for high precision, offsite mass spectrometer analysis. Samples are typically drawn from a sampling tap into a UF_6 sample bottle, then packaged, sealed, and shipped under IAEA chain of custody to an offsite analytical laboratory. Future DA safeguard measures may require improvements in efficiency and effectiveness as GCEP capacities increase and UF_6 shipping regulations become increasingly more restrictive. The Pacific Northwest National Laboratory (PNNL) DA sampler concept and Laser Ablation Absorption Ratio Spectrometry (LAARS) assay method are under development to potentially provide DA safeguard tools that increase inspection effectiveness and reduce sample shipping constraints. The PNNL DA sampler concept uses a handheld sampler to collect DA samples for either onsite LAARS assay or offsite laboratory analysis. The DA sampler design will use a small sampling planchet that is coated with an adsorptive film to collect controlled quantities of UF_6 gas directly from a cylinder or process sampling tap. Development efforts are currently underway at PNNL to enhance LAARS assay performance to allow high-precision onsite bias defect measurements. In this paper, we report on the experimental investigation to develop adsorptive films for the PNNL DA sampler concept. These films are intended to efficiently capture UF_6 and then stabilize the collected DA sample prior to onsite LAARS or offsite laboratory analysis. Several porous material composite films were investigated, including a film designed to maximize the chemical adsorption and binding of gaseous UF_6 onto the sampling planchet.
机译:国际原子能机构(IAEA)的气态离心浓缩厂(GCEP)的保障验证措施依赖于环境采样,非破坏性测定(NDA)和破坏性测定(DA)采样和分析来确定铀浓缩。 UF_6偏差缺陷测量是通过DA采样和分析进行的,以确保富集与声明一致。从有限数量的气瓶中收集DA样品,以进行高精度的非现场质谱仪分析。通常将样品从取样龙头中抽入UF_6样品瓶中,然后包装,密封并按照IAEA监管链运输到异地分析实验室。随着GCEP容量的增加以及UF_6运输法规的限制越来越严格,未来的DA保障措施可能需要提高效率和效力。太平洋西北国家实验室(PNNL)的DA采样器概念和激光烧蚀吸收率光谱(LAARS)分析方法正在开发中,有可能提供DA保障工具,以提高检查效率并减少样品运输限制。 PNNL DA采样器概念使用手持式采样器来收集DA样本,以用于现场LAARS分析或异地实验室分析。 DA采样器的设计将使用一个小的采样钩,该采样钩上涂有一层吸附膜,以直接从钢瓶或过程采样抽头收集受控量的UF_6气体。 PNNL目前正在进行开发工作,以增强LAARS分析性能,以实现高精度的现场偏差缺陷测量。在本文中,我们报告了为PNNL DA采样器概念开发吸附膜的实验研究。这些胶片旨在有效捕获UF_6,然后在现场LAARS或现场实验室分析之前稳定收集的DA样品。对几种多孔材料复合薄膜进行了研究,其中包括旨在最大程度地将气态UF_6化学吸附和结合到取样板上的薄膜。

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