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Testing the reliability of the JEOL FEGSEM 6500F electron microprobe for quantitative major element analysis of glass shards from rhyolitic tephra

机译:测试JEOL FEGSEM 6500F电子微探针的可靠性,以定量分析流纹特非拉属玻璃碎片中的主要元素

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Electronprobe microanalysis is now widely adopted in tephra studies as a technique for determining the major element geochemistry of individual glass shards. Accurate geochemical characterization is crucial for enabling robust tephra-based correlations; such information may also be used to link the tephra to a specific source and often to a particular eruption. In this article, we present major element analyses for rhyolitic natural glass standards analysed on three different microprobes and the new JEOL FEGSEM 6500F microprobe at Queen's University Belfast. Despite the scatter in some elements, good comparability is demonstrated among data yielded from this new system, the previous Belfast JEOL-733 Superprobe, the JEOL-8200 Superprobe (Copenhagen) and the existing long-established microprobe facility in Edinburgh. Importantly, our results show that major elements analysed using different microprobes and variable operating conditions allow two high-silica glasses to be discriminated accurately.
机译:电子探针微分析法目前已广泛用于蒂法研究中,作为确定单个玻璃碎片主要元素地球化学的技术。准确的地球化学特征对于建立稳固的基于特非拉的相关性至关重要。这些信息也可用于将特非拉与特定来源联系起来,通常也与特定喷发联系在一起。在本文中,我们介绍了贝尔法斯特女王大学使用三种不同微探针和新型JEOL FEGSEM 6500F微探针分析的流纹天然玻璃标准品的主要元素分析。尽管在某些方面存在分散性,但是从该新系统,以前的贝尔法斯特JEOL-733超级探针,JEOL-8200超级探针(哥本哈根)以及爱丁堡现有的历史悠久的微型探针设施中获得的数据之间显示出良好的可比性。重要的是,我们的结果表明,使用不同的微探针和可变的工作条件分​​析的主要元素可以准确地区分两个高硅玻璃。

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