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Characterization of colorants and opacifiers in roman glass mosaic tesserae through spectroscopic and spectrometric techniques

机译:通过光谱和光谱技术表征罗马玻璃马赛克镶嵌中的着色剂和遮光剂

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Several glass mosaic tesserae were recovered during the archeological excavation of the thermal baths at the 'Villa dei Quintili' in Rome and dated to the second century AD. This work reports the results of an archeometrical investigation performed, through a multi-technique approach, on 19 colored opaque tesserae. The aims of the study were (1) the characterization of coloring and opacifying agents used for the production of the glass tesserae and (2) the definition of the technological processes involved. Colorimetric measurements allowed us to classify the tesserae in color groups, while the glassy matrix and the dispersed crystallites were characterized in detail through micro-Raman spectroscopy, field emission scanning electron microscopy with energy dispersive X-ray spectroscopy, laser ablation-inductively coupled plasma-mass spectrometry, and X-ray powder diffraction analyses. Most of the glass shows the typical soda-lime-silicate composition (except for the orange and red tesserae). Raman results and elemental analysis prove the use of Sn-Pb antimonates to create yellow glass and of Ca-antimonates for the white tesserae. A mixture of Sn-Pb antimonates and copper ions was used to obtain the emerald green color, while Ca-antimonates were employed in both copper-colored and cobalt-colored blue glass to obtain different shades (blue-green, dark, and light blue). X-ray powder diffraction analyses reveal the presence of metallic copper (Cu0) and Cu2O particles (cuprite) in red and orange tesserae, respectively. These results confirm the high technological level reached by the glassmakers of the Imperial Age.
机译:在罗马“ Villa dei Quintili”温泉浴场的考古发掘过程中,发现了几块玻璃马赛克小羚羊,可追溯到公元二世纪。这项工作报告了一项考古学调查的结果,该研究是通过多种技术方法对19个彩色不透明嵌齿进行的。这项研究的目的是(1)鉴定用于生产玻璃镶嵌的着色剂和遮光剂,以及(2)定义所涉及的工艺过程。比色法的测量使我们可以将镶嵌物按颜色分组,而玻璃状基质和分散的微晶则通过显微拉曼光谱,具有能量色散X射线光谱的场发射扫描电子显微镜,激光烧蚀-电感耦合等离子体-质谱分析和X射线粉末衍射分析。大部分玻璃显示出典型的钠钙硅酸盐成分(橙色和红色雀斑除外)。拉曼结果和元素分析证明,锡-铅锑酸盐可用于制造黄色玻璃,而钙锑酸盐可用于白色镶嵌。 Sn-Pb锑酸盐和铜离子的混合物用于获得翠绿色,而Ca-锑酸盐用于铜色和钴蓝色玻璃中以获得不同的阴影(蓝绿色,深蓝色和浅蓝色) )。 X射线粉末衍射分析揭示了红色和橙色雀斑中分别存在金属铜(Cu0)和Cu2O颗粒(铁氧体)。这些结果证实了帝国时代的玻璃制造商达到了很高的技术水平。

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