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Application of micro-XRF for nuclear materials characterization and problem solving

机译:微型XRF在核材料表征和解决问题中的应用

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摘要

A number of spatially resolved elemental imaging techniques are commonly employed to examine plutonium and other nuclear materials (e.g., scanning electron microscopy). Up until the past 10-15 years, micro-X-ray fluorescence (MXRF) instrumentation had been relatively uncommon, and even currently, it is underutilized for spatially resolved nuclear materials analysis and imaging. In the current study, a number of plutonium materials problem solving applications are presented to demonstrate the power and utility of MXRF for providing unique, spatially resolved elemental composition information. Applications discussed include identification of multiple insoluble fractions in plutonium and neptunium mixed oxide, spatially resolved imaging of plutonium residue and other elements on surface swipes, and spatial mapping of impurities in plutonium metal. The mixed oxide particle analysis demonstrated the ability to non-destructively identify particles of interest for potential extraction and analysis by other methods. The surface swipes study demonstrated the unique ability of MXRF to non-destructively image large multiple cm2 sized, non-conducting, radiologically contaminated samples. The plutonium metal investigation showed the capability of MXRF to non-destructively map elemental heterogeneity directly in an actinide matrix. Such information is extremely valuable prior to using destructive analysis (DA) trace elemental analytical chemistry techniques. If a metal is found to contain significant elemental impurity heterogeneity by MXRF, time consuming destructive sample preparation and analysis do not need to be repeated to confirm that the sample is indeed heterogeneous.
机译:通常使用许多空间分辨元素成像技术来检查p和其他核材料(例如,扫描电子显微镜)。直到过去的10到15年,微X射线荧光(MXRF)仪器一直很少见,甚至目前,它在空间分辨核材料分析和成像方面也没有得到充分利用。在当前的研究中,提出了许多of材料解决问题的应用程序,以证明MXRF能够提供独特的,空间分辨的元素组成信息。讨论的应用包括identification和n混合氧化物中多个不溶部分的鉴定,surface残留物和表面擦拭物上其他元素的空间分辨成像以及p金属中杂质的空间作图。混合氧化物颗粒分析表明,可以无损识别感兴趣的颗粒,以通过其他方法进行潜在的提取和分析。表面擦拭研究证明了MXRF独特的能力,可以无损成像多个cm2大小,不导电且受到放射污染的样品。 metal金属研究表明,MXRF能够直接在an系元素基质中非破坏性地映射元素异质性。在使用破坏性分析(DA)痕量元素分析化学技术之前,此类信息非常有价值。如果通过MXRF发现金属含有明显的元素杂质异质性,则无需重复耗时的破坏性样品制备和分析过程即可确认样品确实是异质的。

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