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mu-XRF Analysis of Trace Elements in Lapis Lazuli-Forming Minerals for a Provenance Study

机译:mu-XRF分析青金石成矿矿物中的微量元素,用于来源研究

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This paper presents new developments on the provenance study of lapis lazuli started by our group in 2008: during the years a multi-technique approach has been exploited to obtain minero-petrographic characterization and creation of a database considering only rock samples of known provenance. Since the final aim of the study is to develop a method to analyze archeological findings and artworks made with lapis lazuli in a completely non-invasive way, ion beam analysis techniques were employed to trace the provenance of the raw material used for the production of artifacts. Continuing this goal and focusing the analysis on determination of more significant minero-chemical markers for the provenance study of trace elements in different minerals, the method was extended with the use of micro X-ray fluorescence (mu-XRF), to test the potential of the technique for this application. The analyzes were focused on diopside and pyrite in lapis lazuli samples of known provenance (Afghanistan, Tajikistan, and Siberia). In addition, mu-XRF data were compared with micro proton-induced X-ray emission (mu-PIXE) results to verify the agreement between the two databases and to compare the analytical performance of both techniques for this application.
机译:本文介绍了我们小组于2008年开始进行的青金石产地研究的最新进展:多年来,人们一直采用多种技术方法来获得矿物岩石学特征,并仅考虑已知来源的岩石样品来创建数据库。由于研究的最终目的是开发一种方法,以完全非侵入性的方式分析青金石的考古发现和艺术品,因此采用离子束分析技术来追踪用于生产人工制品的原材料的来源。继续这一目标,并将分析重点放在确定更重要的矿物化学标记物上,以研究不同矿物中微量元素的来源,该方法通过使用微型X射线荧光(mu-XRF)进行了扩展,以检验其潜力。此应用程序的技术。分析的重点是已知来源(阿富汗,塔吉克斯坦和西伯利亚)的青金石样品中的透辉石和黄铁矿。此外,将mu-XRF数据与微质子诱导的X射线发射(mu-PIXE)结果进行了比较,以验证两个数据库之间的一致性,并比较这两种技术在该应用中的分析性能。

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