Laboratory of Nondestructive Analyses, Institute of Nuclear Physics, N.C.S.R. Demokritos, 15310 Aghia Paraskevi, Athens, Greece.
Anal Bioanal Chem. 2009 Dec;395(7):2199-209. doi: 10.1007/s00216-009-3156-3. Epub 2009 Oct 11.
Ion beam analysis (IBA)- and X-ray fluorescence (XRF)-based techniques have been well adopted in cultural-heritage-related analytical studies covering a wide range of diagnostic role, i.e., from screening purposes up to full quantitative characterization. In this work, a systematic research was carried out towards the identification and evaluation of the advantages and the limitations of laboratory-based (IBA, electron probe microanalyzer) and portable (milli-XRF and micro-XRF) techniques. The study focused on the analysis of an Archaic glass bead collection recently excavated from the city of Thebes (mainland, Greece), in order to suggest an optimized and synergistic analytical methodology for similar studies and to assess the reliability of the quantification procedure of analyses conducted in particular by portable XRF spectrometers. All the employed analytical techniques and methodologies proved efficient to provide in a consistent way characterization of the glass bead composition, with analytical range and sensitivity depending on the particular technique. The obtained compositional data suggest a solid basis for the understanding of the main technological features related to the raw major and minor materials utilized for the manufacture of the Thebian ancient glass bead collection.
离子束分析(IBA)和 X 射线荧光(XRF)等技术已广泛应用于文化遗产相关的分析研究中,具有广泛的诊断作用,从筛选目的到全面定量表征。在这项工作中,我们对基于实验室(IBA、电子探针微分析仪)和便携式(毫微 XRF 和微 XRF)技术的优势和局限性进行了系统的研究。该研究集中于对最近从希腊大陆底比斯市出土的一件古代玻璃珠藏品进行分析,旨在为类似的研究提出优化和协同的分析方法,并评估在特定便携式 XRF 光谱仪上进行的定量分析的可靠性。所有使用的分析技术和方法都被证明能够以一致的方式对玻璃珠成分进行表征,其分析范围和灵敏度取决于特定的技术。获得的成分数据为理解与制造底比斯古代玻璃珠藏品相关的主要原材料和次要材料的主要技术特征提供了坚实的基础。