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A new method for the SI-traceable quantification of element contents in solid samples using LA-ICP-MS

机译:使用La-ICP-MS的固体样品中的元素内容物的SI可追踪量化的新方法

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The present work introduces a novel approach for the quantitative and SI-traceable analysis of element contents in solid materials with laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS). The laser ablation and the nebulizer system were connected to the torch using a y-piece. Several standard solutions having well-known element contents were introduced one after the other into the plasma simultaneously with the ablated material. In contrast to all other quantification methods the solid sample itself serves as the reference and the content of an analyte element was calculated based on the well-known content of the matrix element (like Si in a glass sample). Equations to describe the novel method were derived inspired by the standard addition method. To investigate the feasibility of the novel method, the contents of Pb and Rb were analysed in two commercially available standard reference materials (NIST SRM 610 and 612 glass samples). These solid samples were analysed together with solutions of different mass fractions of silicon as the reference element (R) and lead or rubidium as the analyte elements (A). The mass fractions of Pb and Rb measured in the two certified reference materials (CRMs) were equal to the certified values within the limits of their expanded uncertainties (U(w(x)(A)) with k = 2). Compared to other quantification methods, this new method enables SI-traceability for the measurement results without the need to employ preferably matrix-matched solid reference materials, which will be a great benefit for the application of laser ablation in general, especially considering the extreme lack of matrix-matched CRMs. The new method is best-suited to determine impurities in highly pure samples with a mass fraction of the matrix element close to 1 g g(-1).
机译:本作本作采用激光烧蚀电感耦合等离子体质谱法(La-ICP-MS)的固体材料中固体材料中元素内容物的定量和Si可追踪分析的新方法。使用Y片连接激光烧蚀和雾化器系统。将具有众所周知的元素内容物的几种标准溶液与烧蚀材料同时地将一个接一个地引入等离子体中。与所有其他量化方法相比,固体样品本身用作参考,基于基于众所周知的基质元素的众所周知的含量(如玻璃样品中的Si)计算分析物元素的含量。通过标准添加方法推导出一种描述新方法的方程。为了研究新方法的可行性,在两种市售标准参考材料(NIST SRM 610和612玻璃样品)中分析了Pb和Rb的含量。将这些固体样品与硅的不同质量分数的溶液一起分析,作为参考元素(R)和铅或铷作为分析物元素(A)。在两个经过认证的参考材料(CRM)中测量的Pb和Rb的质量分数等于其扩展不确定因素(U(W(x)(a))的局限质内的认证值,K = 2)。与其他量化方法相比,这种新方法使SI-可追溯性能够进行测量结果,而无需使用优选采用基质匹配的固体参考材料,这将是应用激光烧蚀的主要益处,特别是考虑到极度缺乏矩阵匹配的CRM。新方法最适合于测定高纯度样品中的杂质,其质量分数接近1gg g(-1)。

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