首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Non-destructive identification of surface enrichment and trace element fractionation in ancient silver coins
【24h】

Non-destructive identification of surface enrichment and trace element fractionation in ancient silver coins

机译:古代银币表面富集和微量元素分馏的无损鉴定

获取原文
获取原文并翻译 | 示例

摘要

A common issue in non-destructive surface analysis of historical silver coins is depletion of Cu from the near-surface areas, which in turn results in higher Ag content at a coin's surface. This paper reports a non-destructive analytical strategy using μXRF for identification of Ag and Cu surface enrichments and depletions by comparing peak intensity ratios of Ag Kα/Ag Lα, Cu Kα/Ag Kα and Cu Lα/Ag Lα for coins and Ag-Cu standards of similar composition. Our characterization of coins from different contexts and chronologies shows that a multi-standard approach provides the most reliable identification of surface enrichment of Ag and depletion of Cu. Coins possessing Ag surface enrichment were further analysed with LA-ICP-MS to determine any differences in trace element composition between the cores and surface of the coins. We show that the near-surface regions of these coins are enriched in Au and depleted in Co, Ni, As, and Pt relative to their cores. These systematics allow for a more robust assessment of the degree of silver coin surface alteration critically important in measuring the original composition of historical silver coins.
机译:历史银币的非破坏性表面分析中的常见问题是来自近表面区域的Cu的耗尽,从而导致硬币表面上的更高的Ag含量。本文通过比较AgKα/ AgLα,CuKα/ AgKα和CuLα/ AgLα的峰强度比对硬币和Ag-Cu的峰强度比报告使用μXRF的非破坏性分析策略来鉴定Ag和Cu表面富集和耗尽类似组成的标准。我们对不同背景和年核的硬币的特征表明,多标准方法提供了最可靠的Ag和耗尽的表面富集的鉴定。通过La-ICP-MS进一步分析具有AG表面富集的硬币,以确定核心和硬币表面之间的微量元素组成的任何差异。我们表明,这些硬币的近表面区域富含Au并在CO,Ni,As和Pt中耗尽相对于它们的核心。这些系统允许对银币表面改变程度的更强大的评估,这在测量历史银币的原始组成时非常重要。

著录项

  • 来源
  • 作者单位

    Centre for Urban Network Evolutions Department of Archaeology and Heritage Studies School of Culture and Society Aarhus University 8000 Aarhus Denmark;

    Centre for Urban Network Evolutions Department of Archaeology and Heritage Studies School of Culture and Society Aarhus University 8000 Aarhus Denmark The Aarhus Geochemistry and Isotope Research (AGiR) Platform Institute for Geoscience Faculty of Science and Technology Aarhus University 8000 Aarhus Denmark Geological Survey of Norway 7040 Trondheim Norway;

    Centre for Urban Network Evolutions Department of Archaeology and Heritage Studies School of Culture and Society Aarhus University 8000 Aarhus Denmark The Aarhus Geochemistry and Isotope Research (AGiR) Platform Institute for Geoscience Faculty of Science and Technology Aarhus University 8000 Aarhus Denmark;

    Centre for Urban Network Evolutions Department of Archaeology and Heritage Studies School of Culture and Society Aarhus University 8000 Aarhus Denmark The Aarhus Geochemistry and Isotope Research (AGiR) Platform Institute for Geoscience Faculty of Science and Technology Aarhus University 8000 Aarhus Denmark;

    Centre for Urban Network Evolutions Department of Archaeology and Heritage Studies School of Culture and Society Aarhus University 8000 Aarhus Denmark;

    Centre for Urban Network Evolutions Department of Archaeology and Heritage Studies School of Culture and Society Aarhus University 8000 Aarhus Denmark The Aarhus Geochemistry and Isotope Research (AGiR) Platform Institute for Geoscience Faculty of Science and Technology Aarhus University 8000 Aarhus Denmark;

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

    Silver coins; Silver surface enrichment; Trace elements; μXRF; LA-ICP-MS;

    机译:银币;银色表面富集;微量元素;μXRF;La-ICP-MS;

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号