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Multi-Element Isotope Dilution Sector Field ICP-MS: A Precise Technique for the Analysis of Geological Materials and its Application to Geological Reference Materials

机译:多元素同位素稀释领域ICP-MS:一种精确的地质材料分析技术及其在地质参考材料中的应用

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摘要

We present a multi-element technique for the simultaneous determination of twelve trace elements in geological materials by combined isotope dilution (ID) sector field inductively coupled plasma-mass spectrometry (SF-ICP-MS) following simple sample digestion. In addition, the concentrations of fourteen other trace elements have been obtained using the ID determined elements as internal standards. This method combines the advantages of ID (high precision and accuracy) with those of SF-ICP-MS (multi-element capability, fast sample processing without element separation) and overcomes the most prevailing drawbacks of ICP-MS (matrix effects and drift in sensitivity). Trace element concentration data for BHVO-1 (n = 5) reproduced to within 1-3% RSD with an accuracy of 1-2% relative to respective literature values for ID values and 2-3% for all other values. We have applied this technique to the analysis of seventeen geological reference materials from the USGS, GSJ and IAG. The sample set also included the new USGS reference glasses BCR-2G, BHVO-2G and BIR-1G, as well as the MPI-DING reference glasses KL2-G and ML3B-G, and NIST SRM 612. Most data agreed within 3-4% with respective literature data. The concentration data for the USGS reference glasses agreed in most cases with respective data of the original rock powder within the combined standard uncertainty of the method (2-3%), except the U concentration of BIR-1G, which showed a three times higher concentration compared to BIR-1.
机译:我们提出了一种简单的样品消解后,通过联合同位素稀释(ID)扇区场电感耦合等离子体质谱(SF-ICP-MS)同时测定地质材料中十二种微量元素的多元素技术。此外,使用ID确定的元素作为内标物还获得了14种其他痕量元素的浓度。该方法结合了ID(高精度和准确性)与SF-ICP-MS的优势(多元素功能,快速的样品处理而无需元素分离),并克服了ICP-MS的最主要缺点(矩阵效应和漂移)。灵敏度)。将BHVO-1(n = 5)的痕量元素浓度数据复制到RSD的1-3%以内,相对于ID值的相应文献值,准确度为1-2%,所有其他值的准确度为2-3%。我们已将此技术应用于USGS,GSJ和IAG的17种地质参考材料的分析中。样本集还包括新的USGS参考眼镜BCR-2G,BHVO-2G和BIR-1G,以及MPI-DING参考眼镜KL2-G和ML3B-G和NIST SRM612。大多数数据在3-有相应文献数据的占4%。在大多数情况下,USGS参比玻璃的浓度数据与方法组合标准不确定度(2-3%)内的原始岩石粉末的相应数据相符(BIR-1G的U浓度高出三倍)浓度与BIR-1相比。

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