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Realising the potential of portable XRF for the geochemical classification of volcanic rock types

机译:实现Volcanic岩石类型地球化学分类的便携式XRF的潜力

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The ability to geologically classify stone artefact materials is crucial because it is the first step in provenance allocation and geochemical grouping that inform archaeological models used for understanding exchange systems within prehistoric social networks. Geochemical analyses have revolutionised exchange studies by making it possible to match stone artefacts back to quarry sources, sometimes hundreds or thousands of kilometres away. Most archaeological basalt characterisation and provenance studies have relied on destructive sampling techniques to obtain the major trace elements NaO2, K2O and SiO2 (wt%) to identify volcanic rock types on the Total Alkali Silica (TAS) diagram. To overcome this limitation, this paper presents an alternative method, the Pearce W-F diagram, that determines volcanic rock type and alkalinity using elements TiO2, Zr, Y and Nb that are accurately detected by non-destructive portable X-ray fluorescence (pXRF). This new method is proven to be effective in a comparison with recent XRF archaeological basalt studies in the Pacific. The power to classify volcanic rock types non-destructively with pXRF significantly increases the number of artefacts and museum objects available for inclusion in archaeological exchange studies.
机译:地质上分类石工材料的能力至关重要,因为它是通知用于了解史前社交网络中的交换系统的考古模型的第一步。地球化学分析通过使石头人工制品搭配回Quarry来源,有时可以将石头艺术者匹配,有时甚至数千公里。大多数考古玄武岩表征和出现研究依赖于破坏性采样技术,以获得主要微量元素NaO2,K 2 O和SiO 2(WT%),以鉴定总碱性二氧化硅(TA)图上的火山岩类型。为了克服这种限制,本文提出了一种替代方法,Pearce W-F图,其使用无损便携式X射线荧光(PXRF)精确地检测到使用元素TiO2,Zr,Y和Nb来确定火山岩型和碱度。与最近近期XRF考古玄武岩研究相比,这一新方法是有效的。通过PXRF无损分类火山岩类型的能力显着增加了可用于包含在考古交流研究中的人工制品和博物馆对象的数量。

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