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首页> 外文期刊>Microchimica Acta >Elemental Analyses Using Laser Ablation-Inductively Coupled Plasma-Mass Spectrometry (LA-ICP-MS) of Geological Samples Fused with Li2B4O7 and Calibrated Without Matrix-Matched Standards
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Elemental Analyses Using Laser Ablation-Inductively Coupled Plasma-Mass Spectrometry (LA-ICP-MS) of Geological Samples Fused with Li2B4O7 and Calibrated Without Matrix-Matched Standards

机译:激光烧蚀-电感耦合等离子体质谱法(LA-ICP-MS)对掺入Li2 B4 O7 且未经基质匹配标样校准的地质样品进行元素分析

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摘要

Laser ablation-inductively coupled plasma-mass spectrometry (LA-ICP-MS) was used as a complementary technique to X-ray fluorescence (XRF), for multi-element analysis of geological samples fused with lithium-tetraborate Li2B4O7). Different calibration strategies using external non-matrix matched reference materials were investigated. Various internal standards were tested, including the use of Li from the flux, and the use of the naturally occurring internal standards, Si or Ca. The use of a naturally occurring standard is not as efficient as this required a prior analysis of the samples using XRF. The obtained values for the analysis of geological reference materials were compared with consensus literature values, and satisfactory agreement was found. Laser pits, which were formed, had a diameter of 80 μm and 3–5 replicates on each fused disc were measured. The reproducibility of the method was better than 10% for concentrations above 1 μg/g and better than 15% for lower concentrations. The use of Li as the internal standard offers the possibility of multi-element determinations in geological samples, which have an unknown composition when the laser ablation analysis is carried out. However, using the calculated stoichiometric composition of the lithium-tetraborate for the calculation of the Li concentration leads to a constant deviation from the recommended values. Therefore, it was necessary to determine the Li concentration within each sample batch using at least one lithium tetraborate fused geological reference material. This resulting Li concentration in the beads was then used for all subsequent samples in a run. Limits of detection, reproducibility, deviation from reference values indicate the potential of LA-ICP-MS for such bulk analysis without matrix matched calibration standards.
机译:激光烧蚀-电感耦合等离子体质谱法(LA-ICP-MS)是X射线荧光(XRF)的补充技术,用于对四硼酸锂Li2 B4融合的地质样品进行多元素分析 O7 )。研究了使用外部非基质匹配参考材料的不同校准策略。测试了各种内标,包括使用助熔剂中的Li和使用自然存在的内标Si或Ca。使用天然存在的标准品效率不如要求使用XRF事先对样品进行分析。将获得的用于地质参考材料分析的值与共识文献值进行比较,并找到令人满意的一致性。形成的激光凹坑直径为80μm,并测量了每个熔融圆盘上的3-5个重复。该方法的重现性在浓度高于1μg/ g时优于10%,在浓度较低时优于15%。使用Li作为内标提供了在地质样品中进行多元素测定的可能性,当进行激光烧蚀分析时,地质样品的成分未知。然而,将计算出的四硼酸锂的化学计量组成用于Li浓度的计算导致与推荐值的恒定偏差。因此,有必要使用至少一种四硼酸锂熔融地质参比物确定每个样品批次中的Li浓度。然后将珠中所得的Li浓度用于运行中的所有后续样品。检测限,重现性,与参考值的偏差表明,在没有基质匹配的校准标准品的情况下,LA-ICP-MS可以用于这种批量分析。

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  • 来源
    《Microchimica Acta 》 |2001年第4期| 101-107| 共7页
  • 作者单位

    Laboratory of Inorganic Chemistry Swiss Federal Institute of Technology ETH Zürich Universitätstrasse 6 CH-8092 Zürich;

    Institute of Isotope Geochemistry and Mineral Resources ETH Zürich Sonneggstrasse 5 CH-8092 Zürich Switzerland;

    Laboratory of Inorganic Chemistry Swiss Federal Institute of Technology ETH Zürich Universitätstrasse 6 CH-8092 Zürich;

    Laboratory of Inorganic Chemistry Swiss Federal Institute of Technology ETH Zürich Universitätstrasse 6 CH-8092 Zürich;

    Institute of Mineralogy and Petrography Swiss Federal Institute of Technology ETH Zürich Sonneggstrasse 5 CH-8092 Zürich Switzerland;

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  • 原文格式 PDF
  • 正文语种 eng
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  • 关键词

    Key words: Trace element ICP-MS; laser ablation; non-matrix-matched calibration; geological reference materials.;

    机译:关键字:微量元素ICP-MS;激光烧蚀非矩阵匹配的校准;地质参考资料。;

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