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Through the use of MC–ICP–MS, this study analyses the lead isotope ratios of 19 Tang Sancai pottery glazes unearthed from the Gongyi and Huangbao kiln sites. According to their different lead isotope ratios, the two kilns can be grouped separately. The research also suggests that the Gongyi and Huangbao kilns are independent production centres of Tang Sancai in the Tang Dynasty. The data from the Huangbao kiln indicates that the lead in the glazes originates from the Northern China geochemical province, while the data from Gongyi kiln suggests its source as the Yangtze geochemical province. Furthermore, the results obtained for the Tang Sancai pottery indicate that the lead sources for glaze making of these two kilns were very consistent, which suggests that lead isotope analysis could be a helpful method to identify the kilns producing Tang Sancai artefacts. 相似文献
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Michel De Boüard 《Medieval archaeology》2013,57(1):64-81
RECOGNITION IN THE Castle Museum, Nottingham, of a ‘lost’ sword from a Viking-age warrior's grave excavated at Donnybrook, Co. Dublin, in 1879, has prompted a reassessment of the burial, which is discussed in relation to other Viking-age burials in the ‘Irish Sea province’. Detailed metallurgical analysis of the sword, undertaken during conservation, has provided important information about the techniques of its construction, and has demonstrated the potential of a variety of analytical approaches. 相似文献
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Y. FernndezJalvo B. SnchezChilln P. Andrews S. FernndezLpez L. Alcal Martínez 《Archaeometry》2002,44(3):353-361
The aim of this paper is to provide a summary of structural or surface modifications of vertebrate bone remains in continental palaeoenvironments that may have repercussions on their chemical composition. Both before and after burial, a different set of physical, chemical and biological agencies may produce modifications of the bone morphological structure and/or bone chemical composition. Several of these morphological modifications are diagnostic of particular agents, which otherwise may not be noticed or identified in a fossil association. In order to understand diagenesis, those events that occurred before final burial have to be considered, as they may strongly modify the bone morphological structure and influence post–burial changes. 相似文献
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