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Limitations of portable XRF implementations in evaluating depth information: an archaeometric perspective

机译:便携式XRF实现在评估深度信息方面的局限性:考古学的观点

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Portable instruments that can perform non-destructive analysis techniques are of great importance due to their high applicability, which can extend beyond the controlled laboratory environment. Their importance has long been recognised in the archaeometric field where art historians, conservators and restorers perform analyses on art works without causing any damage and without the need to move the objects to specialized laboratories. The X-ray fluorescence (XRF) technique is a popular choice in the archaeometric field for in situ investigations with portable instrumentations. This enables qualitative (elemental analysis) and quantitative (chemical composition) information retrieval from the objects of interest. Quantitative analyses can be performed under the assumption that the sample is homogeneous and its surface material is the same as in the rest of the object.rnThis work aims to expose various details, including the strengths and the weaknesses of typical XRF analyses in the case of surface alterations, focusing on portable implementations. The chosen approach will be in line with certain issues considered important in archaeometry; nevertheless the presented findings are valid beyond this. We will focus our discussion on two kinds of objects that can be found in the cultural heritage field: artefacts that had their surface material altered due to prolonged exposure to the environment and artefacts that have been gilded. Our work also includes a critically examined overview of relevant information available in the literature. The core of our analysis focuses on two main distinct cases, that of multilayer objects and that of bronzes.
机译:可以执行非破坏性分析技术的便携式仪器具有高度的适用性,因为它们的适用性强,可以扩展到受控实验室环境之外。在考古学领域,艺术史学家,保护者和修复者对艺术品进行分析而不会造成任何损害,也无需将其移至专门实验室,在考古学领域,它们的重要性早已得到认可。 X射线荧光(XRF)技术是在考古领域中使用便携式仪器进行现场调查的一种流行选择。这样就可以从感兴趣的对象中检索定性(元素分析)和定量(化学成分)信息。可以在样品均质且表面材料与对象其余部分相同的前提下进行定量分析。这项工作旨在揭示各种细节,包括典型XRF分析在强度分析和分析中的优缺点。表面更改,着重于便携式实现。选择的方法将与在考古学中认为重要的某些问题相一致;尽管如此,所提出的发现仍然是有效的。我们将把讨论的重点放在文化遗产领域中可以找到的两种物体上:由于长时间暴露于环境而表面材料发生了变化的人工制品和镀金的人工制品。我们的工作还包括对文献中可用相关信息进行严格审查的概述。我们分析的核心集中在两种主要情况下,即多层物体和青铜器。

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