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基于激光剥蚀多接收电感耦合等离子体质谱法的单颗粒同位素比测量的评价策略。

Evaluation strategies for isotope ratio measurements of single particles by LA-MC-ICPMS.

机构信息

Department of Chemistry, Division of Analytical Chemistry-VIRIS Laboratory, University of Natural Resources and Life Sciences, Vienna, Tulln an der Donau, Austria.

出版信息

Anal Bioanal Chem. 2013 Mar;405(9):2943-55. doi: 10.1007/s00216-012-6674-3. Epub 2013 Jan 15.

Abstract

Data evaluation is a crucial step when it comes to the determination of accurate and precise isotope ratios computed from transient signals measured by multi-collector-inductively coupled plasma mass spectrometry (MC-ICPMS) coupled to, for example, laser ablation (LA). In the present study, the applicability of different data evaluation strategies (i.e. 'point-by-point', 'integration' and 'linear regression slope' method) for the computation of (235)U/(238)U isotope ratios measured in single particles by LA-MC-ICPMS was investigated. The analyzed uranium oxide particles (i.e. 9073-01-B, CRM U010 and NUSIMEP-7 test samples), having sizes down to the sub-micrometre range, are certified with respect to their (235)U/(238)U isotopic signature, which enabled evaluation of the applied strategies with respect to precision and accuracy. The different strategies were also compared with respect to their expanded uncertainties. Even though the 'point-by-point' method proved to be superior, the other methods are advantageous, as they take weighted signal intensities into account. For the first time, the use of a 'finite mixture model' is presented for the determination of an unknown number of different U isotopic compositions of single particles present on the same planchet. The model uses an algorithm that determines the number of isotopic signatures by attributing individual data points to computed clusters. The (235)U/(238)U isotope ratios are then determined by means of the slopes of linear regressions estimated for each cluster. The model was successfully applied for the accurate determination of different (235)U/(238)U isotope ratios of particles deposited on the NUSIMEP-7 test samples.

摘要

数据评估是通过多接收电感耦合等离子体质谱仪(MC-ICPMS)与激光烧蚀(LA)等技术测量瞬态信号计算准确和精确同位素比的关键步骤。在本研究中,研究了不同数据评估策略(即“逐点”、“积分”和“线性回归斜率”方法)在通过 LA-MC-ICPMS 测量单个颗粒中(235)U/(238)U 同位素比的适用性。分析的氧化铀颗粒(即 9073-01-B、CRM U010 和 NUSIMEP-7 测试样品)的尺寸小至亚微米范围,其(235)U/(238)U 同位素特征经过认证,这使得可以评估应用策略的精度和准确性。还比较了不同策略的扩展不确定度。尽管“逐点”方法被证明更优越,但其他方法也有优势,因为它们考虑了加权信号强度。首次提出了使用“有限混合模型”来确定同一金属片上存在的单个颗粒中未知数量的不同 U 同位素组成。该模型使用一种算法,通过将各个数据点分配给计算出的簇来确定同位素特征的数量。然后通过为每个簇估计的线性回归斜率来确定(235)U/(238)U 同位素比。该模型成功应用于准确确定沉积在 NUSIMEP-7 测试样品上的颗粒的不同(235)U/(238)U 同位素比。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2d82/3589628/1715e11180b2/216_2012_6674_Fig1_HTML.jpg

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