首页> 外文OA文献 >Use of Monte Carlo Simulation as a Tool for the Nondestructive Energy Dispersive X- ray Fluorescence (ED-XRF) Spectroscopy Analysis of Archaeological Copper-Based Artifacts from the Chalcolithic Site of Perdigões, Southern Portugal
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Use of Monte Carlo Simulation as a Tool for the Nondestructive Energy Dispersive X- ray Fluorescence (ED-XRF) Spectroscopy Analysis of Archaeological Copper-Based Artifacts from the Chalcolithic Site of Perdigões, Southern Portugal

机译:使用蒙特卡罗模拟作为工具对葡萄牙南部Perdigões的石器时代遗址的铜基文物进行非破坏性能量色散X射线荧光(ED-XRF)光谱分析

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摘要

This work is part of a broader research line that aims to develop and implement a nondestructive methodology for the chemical characterization of archaeological metals based on a protocol that combines energy dispersive X-ray fluorescence spectrometry (ED-XRF) with a Monte Carlo (MC) simulation algorithm. In this paper, the ED-XRF/MC protocol has been applied to estimate the chemical composition of a selected group of 26 copper-based artifacts and fragments recovered at Perdigões, one of the larger Chalcolithic sites of Southwest Iberia. All the analyzed artifacts have a multilayered structure composed by the alloy substrate and by a superficial layer common in each metal buried for hundreds of years and consisting of the patina mixed with soil. Due to the difficulty in determining the quantitative composition of these alloys in the presence of this complex patina/encrustation layer, the spectrometric.
机译:这项工作是一项更广泛的研究项目的一部分,该项目旨在开发和实施一种基于能量色散X射线荧光光谱(ED-XRF)与蒙特卡洛(MC)结合的协议的考古金属化学表征的非破坏性方法。模拟算法。在本文中,ED-XRF / MC协议已用于估算一组选定的26种铜基伪影和碎片的化学成分,这些伪影和碎片是在西南伊比利亚较大的中石器遗址之一的Perdig recoveredes回收的。所有分析的工件均具有多层结构,该多层结构由合金基底和由埋藏了数百年的每种金属中共有的,由铜绿与土壤混合而成的表层组成。由于在存在这种复杂的古铜色/结壳层的情况下难以确定这些合金的定量组成,因此采用分光光度法。

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