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A COmbined Multi-Analytical Approach For The Study Of Roman Glass From South-West Iberia: Synchrotron Μ-Xrf, External-Pixe/Pige And Bsem-Eds

机译:结合的多分析方法,用于研究西南伊比利亚的罗马玻璃:同步加速器Μ-Xrf,外部像素/颜料和Bsem-Eds

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摘要

An integrated, multi-analytical approach combining the high sensitivity of SR-μXRF, the light element capability of PIXE/PIGE under a helium flux and the spatial resolution of BSEM+EDS was used to characterize chemical composition and corrosion of glass samples(first to fourth centuries ad) from an important, but scarcely investigated, Roman region of south-west Iberia(southern Portugal).The geochemical trends and associations of major, minor and trace elements were investigated to shed light on production techniques, the provenance of raw materials and decay mechanisms.The results, while confirming a production technique common to Roman glasses throughout the Empire-that is, a silica-soda-lime low-Mg, low-K composition, with glass additives as colouring and/or decolouring agents(Fe, Cu, Mn, Sb)-show at one site high Zr-Ti contents, suggesting a more precise dating for these glasses to the second half of the fourth century.The Ti-Fe-Zr-Nb geochemical correlations in the pristine glass indicate the presence of minerals such as ilmenite, zircon, Ti-rich Fe oxides and columbite in the sands used as raw materials for the glass former: these minerals are typical of granitic-type source rocks.The unusually high K content in the corrosion layers is consistent with burial conditions in K-rich soils derived from the alteration of 2:1 clays in K-bearing rock sequences.
机译:结合SR-μXRF的高灵敏度,氦通量下PIXE / PIGE的轻元素能力和BSEM + EDS的空间分辨率的综合,多分析方法来表征玻璃样品的化学成分和腐蚀(从一个重要的但鲜为人知的西南伊比利亚罗马地区(葡萄牙南部)进行了第四世纪的研究。对地球化学趋势及其主要,次要和微量元素的关联进行了研究,以阐明生产技术,原材料的来源结果证实了整个罗马帝国罗马玻璃共同的生产技术,即二氧化硅钠石灰低镁,低钾成分,以及玻璃添加剂作为着色剂和/或脱色剂(Fe ,Cu,Mn,Sb)一处显示出较高的Zr-Ti含量,这表明这些玻璃的精确年代可以追溯到第四世纪下半叶。原始玻璃中的Ti-Fe-Zr-Nb地球化学相关性表明在用作玻璃成型机原料的沙子中存在钛铁矿,锆石,富钛的Fe氧化物和钴矿等矿物:这些矿物是花岗岩型烃源岩的典型特征。腐蚀层中的K含量异常高这与含钾岩石序列中2:1黏土的变化产生的富钾土壤中的埋葬条件一致。

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