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A New Method For Combining Lead Isotope and Lead Abundance Data to Characterize Archaeological Copper Alloys*

机译:一种结合主要同位素和引出丰度数据的新方法,以表征考古铜合金*

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We present a new methodology for interpreting lead isotope data from archaeological copper alloy objects. It is not based on the conventional isotope ratio biplots, which were originally devised to allow the calculation of the geological age of the lead mineralization, but is derived from isotope mixing models, more often used for presenting strontium isotope data. We illustrate the method by reworking published data on Sardinian Nuragic oxhide ingots and copper alloy artefacts. While we confirm the consensus assumption that the oxhide ingot fragments found on Sardinia are isotopically consistent with Cypriot copper ores (although we see no isotopic reason to favour only Apliki, as originally suggested), we also show that there is evidence for mixing between local and ingot copper in some objects, which was previously not detected. More broadly, we suspect that the apparent mismatch between some source allocations for copper drawn from isotope geochemistry and the rest of the archaeological data in some cases might be due to mixed isotopic signals being incorrectly assigned to a specific source, and suggest that the method presented here will reduce the chances of this happening.
机译:我们提出了一种从考古铜合金物体解释铅同位素数据的新方法。它不是基于传统的同位素比例,原始设计,以允许计算铅矿化的地质年龄,但是衍生自同位素混合模型,更常用于呈现锶同位素数据。我们通过在撒丁岛Nuragic oxhide锭和铜合金伪造上重新加工公布的数据来说明该方法。虽然我们确认了撒丁岛上发现的牛锭锭碎片与塞克利亚铜矿石同位素一致(虽然我们认为只有最初建议的),但我们认为只有同位素的原因只能偏爱APLiki),我们还表明有证据表明当地之间混合在某些物体中的锭铜,之前未检测到。更广泛地,我们怀疑,在某些情况下,来自同位素地球化学的铜的一些源分配之间的表观不匹配可能是由于混合同位素信号被错误地分配给特定来源,并表明所呈现的方法这里将减少这种情况的机会。

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