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Lead isotopic analysis of infant bone tissue dating from the Roman era via multicollector ICP–mass spectrometry

机译:通过多收集器ICP-质谱法对罗马时期的婴儿骨骼组织进行铅同位素分析

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摘要

Archaeological samples originating from a cemetery of a Roman settlement, Pretorium Agrippinae (1st–3rd century A.D.), excavated near Valkenburg (The Netherlands) have been subjected to Pb isotopic analysis. The set of samples analysed consisted of infant bone tissue and possible sources of bone lead, such as the surrounding soil, garum, and lead objects (e.g., water pipes). After sample digestion with quantitative Pb recovery and subsequent quantitative and pure isolation of lead, the Pb isotopic composition was determined via multicollector ICP–mass spectrometry. The Pb isotope ratio results allowed distinction of three groups: bone, soil, and lead objects + garum. The 208Pb/206Pb ratio ranges were between 2.059 and 2.081 for the soils, between 2.067 and 2.085 for the bones, and between 2.087 and 2.088 for the lead objects. The garum sample is characterised by a 208Pb/206Pb ratio of 2.085. The bone group is situated on the mixing line between the soil and lead object groups, allowing the statement that diagenesis is not the main cause of the Pb found in the bones.
机译:来自法尔肯堡(荷兰)附近的罗马定居者公墓(公元一世纪至三世纪)的墓地的考古样品已进行了铅同位素分析。分析的样本集由婴儿骨骼组织和可能的骨铅来源组成,例如周围的土壤,牙龈和铅物体(例如水管)。样品消解并定量回收铅后,随后进行定量和纯铅分离,通过多收集器ICP-质谱法测定了铅同位素组成。铅同位素比结果允许区分三类:骨骼,土壤和铅物体+ garum。 208 Ps / Pb / 206 Ps的比率范围在土壤中为2.059至2.081,在骨骼中为2.067至2.085,对于铅物体为2.087至2.088。 garum样品的特征在于208 Pb / 206 Pb比为2.085。骨骼组位于土壤和铅对象组之间的混合线上,这说明成岩作用不是骨骼中发现Pb的主要原因。

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  • 来源
    《Analytical and Bioanalytical Chemistry》 |2008年第2期|477-486|共10页
  • 作者单位

    Department of Analytical Chemistry Ghent University Krijgslaan 281–S12 9000 Ghent Belgium;

    Department of Analytical Chemistry Ghent University Krijgslaan 281–S12 9000 Ghent Belgium;

    Amsterdam Archaeological Center University of Amsterdam Turfdraagsterpad 9 1012 XT Amsterdam The Netherlands;

    Toxicology Laboratory Leiden University Medical Center L1-P P.O. Box 9600 2300 RC Leiden The Netherlands;

    Institute for Isotope Geomistry and Mineral Resources ETH Zürich Clausiusstrasse 25 8092 Zürich Switzerland;

    Department of Analytical Chemistry Ghent University Krijgslaan 281–S12 9000 Ghent Belgium;

    Department of Analytical Chemistry Ghent University Krijgslaan 281–S12 9000 Ghent Belgium;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Multicollector ICP–MS; Pb isotopic analysis; Bone tissue; Soil; Roman era;

    机译:ICP-MS;原子同位素分析;骨组织;土壤;罗马时代;

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