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首页> 外文期刊>SN Applied Sciences >Nondestructive identification of gemstones by using a portable XRF–XRD system: an illuminating study for expanding its application in museums
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Nondestructive identification of gemstones by using a portable XRF–XRD system: an illuminating study for expanding its application in museums

机译:使用便携式XRF-XRD系统对宝石进行非破坏性鉴定:一项具有启发性的研究,旨在扩大其在博物馆中的应用

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摘要

Nine gemstone samples were analysed by using a portable X-ray fluorescence–X-ray diffraction (XRF–XRD) system without any destructive preparation processes. The samples were measured by groups based on the transparency and the complexity of molecular structure. The XRF and the XRD measurements for each sample were performed simultaneously. The key experimental parameters were optimized in order to obtain XRD patterns acceptable for phase identification in a limited time. The XRF spectrum of each sample was analysed first to acquire the elemental composition qualitatively, and the information was then applied to refining possible phases. The phase analysis process of each sample was described in detail and the most likely phases were determined. Normal XRD experiments were conducted in order to verify the results. Advantages, disadvantages and applicable range of the system were analysed. The results indicate that the portable XRF–XRD system can be applied to identifying particular gemstones effectively, while single-crystal gems may not be identified very well. Wider recognition and application of the portable XRF–XRD system in cultural heritage and gemological fields call for hardware development, software updating and more real application cases.
机译:使用便携式X射线荧光– X射线衍射(XRF–XRD)系统分析了9个宝石样品,而没有进行任何破坏性的制备过程。基于透明度和分子结构的复杂性,按组对样品进行测量。每个样品的XRF和XRD测量同时进行。对关键实验参数进行了优化,以便在有限的时间内获得可用于相识别的XRD图谱。首先分析每个样品的XRF光谱,以定性获得元素组成,然后将该信息应用于精炼可能的相。详细描述了每个样品的相分析过程,并确定了最可能的相。为了验证结果,进行了正常的XRD实验。分析了该系统的优缺点和适用范围。结果表明,便携式XRF-XRD系统可以有效地识别特定宝石,而单晶宝石可能无法很好地识别。便携式XRF-XRD系统在文化遗产和宝石学领域的广泛认可和应用要求硬件开发,软件更新和更多实际应用案例。

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