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首页> 外文期刊>European Physical Journal Plus >Elemental characterisation of a collection of metallic oil lamps from South-Western al-Andalus using EDXRF and Monte Carlo simulation(star)
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Elemental characterisation of a collection of metallic oil lamps from South-Western al-Andalus using EDXRF and Monte Carlo simulation(star)

机译:EDXRF和Monte Carlo Simulation South-Wase-Andalus中西南南部南部南部的金属油灯集合的元素特征(明星)

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.This study is part of a wide-scale research on metal production in South-Western al-Andalus during the Islamic period, under the project DE RE METALLICA - DEfining and REdiscovering MEtallurgy and Trade in AL-Andalus (8th-13th centuries AD): Leaping into Innovative Comprehensive Archaeometric Approaches. In particular, this paper presents the results of the elemental analysis carried out on a group of six Islamic oil lamps found at different sites in Southern Portugal, spanning from the 10th to the 13th centuries AD. Due to the exceptional historical value of these artefacts, the analyses were carried out according to a completely non-destructive approach that combines Energy Dispersive X-ray Fluorescence Spectrometry (EDXRF) with a Monte Carlo (MC) simulation code named X-ray Monte Carlo (XRMC). This novel and ground-breaking approach has proven to be especially suitable for non-destructive analysis of artefacts with a multi-layered structure, such as archaeological metals, being able to estimate the composition of the original alloys and to characterise the structure and composition of each layer superimposed to the bulk with no need of removing samples or cleaning the artefacts' surface from corrosion compounds. The application of the EDXRF/MC analytical protocol revealed that the six oil lamps selected for this paper are covered by a structure composed of three different layers (protective layer + corrosion patina + alloy). The bulk metal is a copper-based alloy with a great variability in terms of Fe, Zn, Sn, As, and Pb, likely suggesting either the use of scrap metals as raw material or the indiscriminate addition of different kind of minerals. With regard to the objectives of this paper, EDXRF/MC protocol successfully allowed to estimate the chemical composition of the six oil lamps in a completely non-destructive way, thus representing a viable compromise between the necessity to ensure their physical integrity and the need to obtain reliable analytical data able to address historical issues.
机译:。这项研究是伊斯兰地区伊斯兰地区南部西南南部的金属生产研究的一部分,下,在项目De Metallica,在Al-Andalus(8号世纪AD)的冶金和贸易中定义和重新发现冶金和贸易:进入创新的全面的综合性原型方法。特别是,本文提出了在葡萄牙南部不同地点的一组六个伊斯兰油灯上进行的元素分析的结果,从10世纪广告跨越。由于这些人工制品的卓越历史价值,根据一种完全非破坏性的方法进行分析,该方法将能量分散X射线荧光光谱法(EDXRF)与Monte Carlo(MC)仿真代码组合在一起而命名为X射线Monte Carlo (XRMC)。这种新颖和地面断裂方法已经证明,特别适用于具有多层结构的人工制品的非破坏性分析,例如考古金属,能够估计原始合金的组成和表征结构和组成每层叠加到体积的体积,无需去除样品或清洁废物表面的样品或清洁伪饼表面。 EDXRF / MC分析协议的应用揭示了本文选择的六个油灯由三个不同层组成的结构(保护层+腐蚀铜+合金)覆盖。散装金属是一种铜基合金,在Fe,Zn,Sn,AS和Pb方面具有很大的变化,可能暗示使用废金属作为原料或不分青红皂白种的不同种类矿物质的添加。关于本文的目的,EDXRF / MC协议成功地允许以完全非破坏性的方式估计六个油灯的化学成分,从而代表了确保其身体完整性和需要的必要性之间的可行妥协获得能够解决历史问题的可靠的分析数据。

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  • 来源
    《European Physical Journal Plus》 |2019年第7期|共9页
  • 作者单位

    Univ Evora HERCULES Lab Largo Marques de Marialva 8 P-7000809 Evora Portugal;

    Univ Evora HERCULES Lab Largo Marques de Marialva 8 P-7000809 Evora Portugal;

    Univ Evora HERCULES Lab Largo Marques de Marialva 8 P-7000809 Evora Portugal;

    Inst Arqueol FLUC CEAACP P-3000 Coimbra Portugal;

    Univ Nova Lisboa Fac Ciencias &

    Tecnol CENIMAT I3N P-2829516 Quinta Da Torre Caparica Portugal;

    Univ Sassari Dipartimento Chim &

    Farm Piazza Univ 21 I-07100 Sassari Italy;

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  • 正文语种 eng
  • 中图分类 物理学;
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