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一种用于古代陶瓷原位多元素分析的便携式微X射线荧光光谱法的开发与优化

Development and optimisation of a portable micro-XRF method for in situ multi-element analysis of ancient ceramics.

作者信息

Papadopoulou D N, Zachariadis G A, Anthemidis A N, Tsirliganis N C, Stratis J A

机构信息

Laboratory of Analytical Chemistry, Faculty of Chemistry, Aristotle University, GR-54124 Thessaloniki, Greece.

出版信息

Talanta. 2006 Feb 28;68(5):1692-9. doi: 10.1016/j.talanta.2005.08.051. Epub 2005 Sep 19.

Abstract

Non-destructive analysis of cultural objects by micro-XRF spectrometry is an advantageous multi-element technique that has rapidly developed during the past few years. Portable instruments contribute significantly to the in situ analysis of valuable cultural objects, which cannot be transported to the laboratory. Ancient ceramics are the most common archaeological findings and they carry a significant historical content. Their analysis often presents certain particularities due to surface irregularities and heterogeneity problems. In the present work, the analytical characteristics (beam spot size, geometry effect and detection limits) of a compact and portable micro-XRF instrument with a monocapillary lens are presented in details. The standard reference materials SARM 69, SRM 620, NCS DC 73332 and the reference materials AWI-1 and PRI-1 were analysed for the determination of the detection limits (DL's) and the evaluation of the accuracy of the micro-XRF. Emphasis is given on the critical parameters, which should be monitored during measurements and influence the final results in the analysis of ancient ceramics. A quantitative analysis of ancient ceramic samples from Abdera (North Greece) is also presented.

摘要

利用微X射线荧光光谱法对文物进行无损分析是一项颇具优势的多元素分析技术,在过去几年中发展迅速。便携式仪器对无法运往实验室的珍贵文物进行现场分析有很大帮助。古代陶瓷是最常见的考古发现物,承载着重要的历史内涵。由于表面不规则和异质性问题,对其进行分析往往存在某些特殊性。在本工作中,详细介绍了配备单毛细管透镜的紧凑型便携式微X射线荧光仪器的分析特性(束斑尺寸、几何效应和检测限)。分析了标准参考物质SARM 69、SRM 620、NCS DC 73332以及参考物质AWI - 1和PRI - 1,以确定检测限并评估微X射线荧光分析的准确性。重点关注了在测量过程中应监测的关键参数,这些参数会影响古代陶瓷分析的最终结果。还对来自希腊北部阿夫季拉的古代陶瓷样品进行了定量分析。

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