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The benefit of using chemical analysis in understanding archaeological glass. Case-study: Roman black glass

机译:化学分析在理解考古玻璃中的益处。案例研究:罗马黑玻璃

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LA-ICP-MS is a well acquainted technique for the quantification of a wide range of minor and trace elements present in the glass matrix. The benefit to understand the changes in technological processes or the added value in assessing the provenance and chronology of the raw glass material is however rarely discussed. By selecting a set of 197 Roman black glass artifacts dating between the 1st and 5th century AD we aimed to contribute to this issue. The obtained data on the production of glass artifacts helps better understand the constantly evolving patterns in glass consumption throughout the Roman imperial period. The key trace elements linked with the sand generally show the use of Levantine and Egyptian raw glass to produce black glass artifacts and result in well defined clusters. These indications are evidence for the use of different raw glasses in the Roman Empire and therefore featuring the work of diverse workshops over time. Specific trace elements such as copper, cobalt and lead reflect the application of recycling glass in Roman times.
机译:LA-ICP-MS是一种熟悉的技术,用于定量玻璃基质中存在的各种次要元素和痕量元素。然而,不应讨论理解技术过程的变化或评估原料玻璃材料的出处和年表的增加的价值。通过选择一套197年的罗马黑色玻璃工件,我们旨在为此问题做出贡献。所获得的关于玻璃伪影的生产数据有助于更好地了解整个罗马帝国时期的玻璃消耗中不断发展的模式。与沙子相关的关键痕量元素普遍展示了左南宁和埃及原料玻璃生产黑色玻璃伪影,并导致定义良好的簇。这些指示是在罗马帝国使用不同的原料眼镜,因此随着时间的推移为不同的研讨会的工作。具体的微量元素如铜,钴和铅反映了回收玻璃在罗马时代的应用。

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