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A XANES study of chromophores: the case of black glass

机译:XANES研究发色团:黑色玻璃的情况

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We studied the Fe K-edge X-ray absorption near edge (XANES) spectra of several Roman black glass fragments in order to determine the Fe3+/?£Fe ratio of these materials. The selected archaeological glass samples cover the period 1sta€“5th century AD in nine different sites of the North Western provinces of the Roman Empire. The fragments belong to two different compositional groups demonstrating a diachronic evolution: early Roman HMG (High Magnesia Glass) and Roman Imperial LMG (Low Magnesia Glass). The first group contains natural Fe levels (below 2 wt% as Fe2O3), while the LMG has concentrations above 5 wt%. This difference is also reflected by Fe3+/?£Fe values. Low iron glass was produced under strongly reducing conditions in order to obtain the black colour, with average Fe3+/?£Fe values a‰? 0.17. LMG glass is somewhat more oxidised (Fe3+/?£Fe a‰? 0.4a€“0.5). While HMG glass required active control of the furnace environment, LMG was made under ambient atmosphere and its higher oxidation degree is mainly determined by the chemistry of the raw glass.
机译:我们研究了几种罗马黑色玻璃碎片的Fe K边缘X射线吸收近边缘(XANES)光谱,以确定这些材料的Fe3 + /?£ Fe比。选定的考古玻璃样品覆盖了罗马帝国西北各省的九个不同地点的公元1sta-5世纪。这些碎片属于两个不同的成分组,这些组证明了历时的演变:早期的罗马HMG(高镁玻璃)和罗马帝国LMG(低镁玻璃)。第一组含有天然铁含量(低于2 wt%的Fe2O3),而LMG的浓度高于5 wt%。 Fe 3+ /ΔFe值也反映了这种差异。为了获得黑色,在强烈还原条件下生产了低铁玻璃,其平均Fe3 + /ΔFe值为a‰。 0.17。 LMG玻璃的氧化程度更高(Fe3 + / Fe≥0.4a≤0.5)。虽然HMG玻璃需要主动控制熔炉环境,但LMG是在环境气氛下生产的,其较高的氧化度主要取决于原料玻璃的化学性质。

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