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Development, validation and verification of an ICP-MS procedure for a multi-element analysis of uranium ore concentrates

机译:开发,验证和验证用于铀精矿多元素分析的ICP-MS程序

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The International Atomic Energy Agency (IAEA) uses information from characterization of uranium-bearing material samples to support the verification of states' declarations and to look for indications of possible undeclared materials and activities. Parameters of interest include, among others, the concentrations of elemental impurities, the patterns of rare earth elements (REE), and the isotope ratios of uranium and some impurity elements. These data along with other physical and chemical properties are being used to assess material quality, monitor chemical processes, and verify material origin. This manuscript describes a Sector Field-Inductively Coupled Plasma-Mass Spectrometry (SF-ICP-MS) procedure for the determination of 67 minor and trace elements, including REE, in uranium ore concentrates (UOC) and related compounds without matrix separation. All elements are measured within one instrumental sequence, which improves the timeliness of the analyses. A particular focus is set on developing a reliable quality control mechanism in the absence of uranium-bearing reference materials with certified concentrations of all analysed elements. In order to provide objective experimental evidence that the particular requirements for each specific parameter are fulfilled the validation process included (i) assessment of measurement uncertainties, (ii) analysis of available certified reference materials with uranium matrix (validated for 31 elements), and (iii) measuring test samples in the frame of four inter-laboratory comparison exercises (validated for 54 elements). The majority of the analysed elements could be measured with a satisfactory accuracy but determination of difficult-to-analyse elements, such as silicon and tungsten, requires a modified sample preparation and measurement procedure. An alternative 'non-destructive' analytical method, such as XRF or laser ablation ICP-MS, can be applied for direct analysis of non-dissolved residues that remain in the digests.
机译:国际原子能机构(IAEA)使用表征铀的材料样品中的信息来支持对各州声明的核查,并寻找可能未声明的材料和活动的迹象。感兴趣的参数包括元素杂质的浓度,稀土元素(REE)的图案以及铀和某些杂质元素的同位素比。这些数据以及其他物理和化学特性被用于评估材料质量,监控化学过程并验证材料来源。该手稿描述了一种行业现场电感耦合等离子体质谱法(SF-ICP-MS),该程序用于测定铀精矿(UOC)和相关化合物中的67种微量和微量元素,包括REE,而无需进行基质分离。所有元素均在一个仪器序列中进行测量,从而提高了分析的及时性。在没有铀和所有分析元素都经过认证浓度的参考物质的情况下,将重点放在开发可靠的质量控制机制上。为了提供客观的实验证据,证明满足每个特定参数的特定要求,验证过程包括(i)测量不确定度的评估,(ii)具有铀基质的可用认证参考材料的分析(针对31种元素进行验证),以及( iii)在四个实验室间比较练习的框架内测量测试样品(针对54个元素进行验证)。大部分被分析的元素都可以以令人满意的准确度进行测量,但是难以分析的元素(例如硅和钨)的测定需要改进的样品制备和测量程序。替代的“非破坏性”分析方法,例如XRF或激光烧蚀ICP-MS,可用于直接分析消化液中残留的未溶解残留物。

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  • 来源
    《Journal of Analytical Atomic Spectrometry》 |2017年第11期|2226-2237|共12页
  • 作者单位

    Department of Safeguards, International Atomic Energy Agency, PO Box 100, Vienna, Austria;

    Department of Safeguards, International Atomic Energy Agency, PO Box 100, Vienna, Austria;

    Department of Safeguards, International Atomic Energy Agency, PO Box 100, Vienna, Austria;

    Department of Safeguards, International Atomic Energy Agency, PO Box 100, Vienna, Austria;

    Department of Safeguards, International Atomic Energy Agency, PO Box 100, Vienna, Austria;

    Department of Safeguards, International Atomic Energy Agency, PO Box 100, Vienna, Austria;

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