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Characterizing uranium oxide reference particles for isotopic abundances and uranium mass by single particle isotope dilution mass spectrometry

机译:用单粒子同位素稀释质谱法表征铀氧化物参考粒子的同位素丰度和铀质量。

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Uranium and plutonium particulate test materials are becoming increasingly important as the reliability of measurement results has to be demonstrated to regulatory bodies responsible for maintaining effective nuclear safeguards. In order to address this issue, the Institute for Reference Materials and Measurements (IRMM) in collaboration with the Institute for Transuranium Elements (ITU) has initiated a study to investigate the feasibility of preparing and characterizing a uranium particle reference material for nuclear safeguards, which is finally certified for isotopic abundances and for the uranium mass per particle. Such control particles are specifically required to evaluate responses of instruments based on mass spectro-metric detection (e.g. SIMS, TIMS, LA-ICPMS) and to help ensuring the reliability and comparability of measurement results worldwide. In this paper, a methodology is described which allows quantifying the uranium mass in single micron particles by isotope dilution thermal ionization mass spectrometry (ID-TIMS). This methodology is characterized by substantial improvements recently achieved at IRMM in terms of sensitivity and measurement accuracy in the field of uranium particle analysis by TIMS. The use of monodisperse uranium oxide particles prepared using an aerosol generation technique developed at ITU, which is capable of producing particles of well-characterized size and isotopic composition was exploited. The evidence of a straightforward correlation between the particle volume and the mass of uranium was demonstrated in this study. Experimental results have shown that the uranium mass per particle can be measured via the ID-TIMS method to a relative expanded uncertainty of about 10% (coverage factor k=2). The availability of reliable and validated methods for the characterization of uranium particles is considered to be essential for the establishment of Si-traceable measurement results. It is therefore expected that the method developed in this study is valuable for the certification of particulate materials in which the isotopic composition and the content of uranium must be accurately known.
机译:铀和p颗粒物测试材料变得越来越重要,因为必须向负责维持有效核保障措施的监管机构证明测量结果的可靠性。为了解决这个问题,参考材料和计量研究所(IRMM)与超铀元素研究所(ITU)共同发起了一项研究,以研究制备和表征用于核保障的铀颗粒参考物质的可行性,最终被证明具有同位素丰度和每个粒子的铀质量。此类对照粒子是特别需要的,用于基于质谱检测(例如SIMS,TIMS,LA-ICPMS)评估仪器的响应,并有助于确保全球范围内测量结果的可靠性和可比性。在本文中,描述了一种方法,该方法可以通过同位素稀释热电离质谱(ID-TIMS)量化单个微米颗粒中的铀质量。这种方法的特点是,IRMM最近在TIMS铀颗粒分析领域的灵敏度和测量精度方面取得了重大改进。利用了由国际电联开发的气溶胶生成技术制备的单分散铀氧化物颗粒的使用,该技术能够生产特征明确的尺寸和同位素组成的颗粒。这项研究证明了铀的颗粒体积与质量之间存在直接的联系。实验结果表明,可以通过ID-TIMS方法测量每个粒子的铀质量,其相对扩展不确定度约为10%(覆盖系数k = 2)。可靠可靠的用于表征铀颗粒的方法被认为对建立可追溯Si的测量结果至关重要。因此,可以预期的是,这项研究中开发的方法对于必须准确知道同位素组成和铀含量的颗粒物质的认证是有价值的。

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