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PRODUCTION TECHNOLOGY OF ROMAN LEAD-GLAZEDPOTTERY AND ITS CONTINUANCE INTO LATE ANTIQUITY

机译:罗马铅锌矿的生产技术及其在后期的连续性

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A broad selection of Roman lead-glazed pottery dating from the first century AD through the fifth century AD was studied to establish locations of workshops and to address their technol-ogy of production. The ceramic bodies were analysed by ICP—AES. In addition, lead isotope analysis was undertaken on a selection of glazes. These findings suggested that there were several regions responsible for the production of lead-glazed ceramics in the western Roman - world, including central Gaul, Italy and, probably, Serbia and Romania. Using the body compositions as a starting point, the glazing techniques employed by each of the potential workshops were examined using electron probe microanalysis. It was determined that there were two primary methods of glazing. The first method used lead oxide by itself applied to non-calcareous clay bodies, and the second method used a lead oxide-plus-quartz mixture applied to calcareous clay bodies. Based on these data for clay composition and glazing method, transfer of technology from the Hellenistic east to the western Roman world was proposed. Likewise, the inheritance of lead-glazing technology into late antiquity was estab-lished by making comparisons to lead-glazed ceramics dating to the seventh to ninth centuries from Italy, the Byzantine world and Tang Dynasty China.
机译:研究了从公元一世纪到公元五世纪的各种各样的罗马铅釉陶器,以建立生产车间的位置并解决其生产技术。通过ICP-AES分析陶瓷体。此外,对多种釉料进行了铅同位素分析。这些发现表明,在西罗马世界中,有几个地区负责铅釉陶瓷的生产,包括高卢中部,意大利,也许还有塞尔维亚和罗马尼亚。以人体成分为起点,使用电子探针显微分析法检查了每个潜在车间所采用的上光技术。已确定有两种主要的上釉方法。第一种方法是将氧化铅本身应用于非钙质粘土体,第二种方法是将氧化铅加石英混合物应用于钙质粘土体。基于这些有关粘土成分和上光方法的数据,提出了将技术从希腊化的东方向西方罗马世界的转移。同样,通过与意大利,拜占庭世界和唐朝中国七至九世纪的铅釉陶瓷进行比较,可以确定铅釉技术向古代晚期的继承。

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