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新疆天山北路墓地发展阶段研究
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作者 佟建一 马健 常喜恩 《考古与文物》 北大核心 2024年第8期59-70,共12页
本文在整理天山北路墓地资料的基础上,结合墓葬地层关系、器物组合与新获碳十四测年数据,对墓地出土典型陶器进行类型学分析,进而对墓地的发展阶段进行了重新划分。研究结果表明天山北路墓地物质文化在近千年的发展过程中一脉相承,并与... 本文在整理天山北路墓地资料的基础上,结合墓葬地层关系、器物组合与新获碳十四测年数据,对墓地出土典型陶器进行类型学分析,进而对墓地的发展阶段进行了重新划分。研究结果表明天山北路墓地物质文化在近千年的发展过程中一脉相承,并与河西走廊西部人群保持密切联系,不断吸纳、融合了西城驿文化、四坝文化等文化因素,形成了哈密绿洲独特的青铜时代文化。 展开更多
关键词 新疆 天山北路墓地 青铜时代 发展阶段
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Metallurgy at the Crossroads: New Analyses of Copper-based Objects at Tianshanbeilu, Eastern Xinjiang, China 被引量:1
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作者 LIU Cheng LIU Ruiliang +9 位作者 ZHOU Pengcheng LU Chun YANG Zengxin A.Mark POLLARD Peter HOMMEL MA Jian CUI Jianfeng Peter BRAY tong jianyi Jessica RAWSON 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2020年第3期594-602,共9页
Tianshanbeilu is the largest Bronze Age site in eastern Xinjiang, China. Stretching across the entire second millennium BC, it performed a prominent role in connecting the Hexi corridor, Central China and the steppe. ... Tianshanbeilu is the largest Bronze Age site in eastern Xinjiang, China. Stretching across the entire second millennium BC, it performed a prominent role in connecting the Hexi corridor, Central China and the steppe. A further insight into the metallurgical tradition and the metal supply network is of vital importance to improve our understanding of its multi-connected nature. This paper offers a new set of chemical and isotopic data on the copper-based objects at Tianshanbeilu, including alloying elements, trace elements(impurities) and lead isotopes. Combining the concentrations of arsenic and antimony reveals that arsenic was introduced to copper partially due to the use of specific minerals tethrahedrite-tennantite. Lead isotopes demonstrate that multiple sources of copper were employed at Tianshanbeilu and a majority of them are characterized by common lead, which appears rather different from those of the Central Plains and the Hexi corridor, but highly consistent with local ores. Surprisingly, one object at Tianshanbeilu contains the well-known highly radiogenic lead. This object undoubtedly marks the westernmost boundary of the distribution of the highly radiogenic lead. We also anticipate that more lead isotopic analyses in NW China will further contribute to the study of the highly radiogenic lead in Central China. 展开更多
关键词 highly radiogenic lead chemical and isotopic analysis METALLURGY Tianshanbeilu
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