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X-ray diffraction studies of Pompeian wall paintings using synchrotron radiation and dedicated laboratory made systems

机译:使用同步加速器辐射和实验室专用系统对庞培壁画进行X射线衍射研究

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The full identification of artwork materials requires not only elemental analysis but also structural information of the compounds as provided by X-ray diffraction (XRD). This is easily done when taking samples (or micro-samples) from artworks. However, there is an increasing interest in performing non-destructive studies that require adapted XRD systems. Comparative study of synchrotron high-resolution X-ray powder diffraction (SR-HRPD) and laboratory non-destructive systems (portable XRD and micro-XRD) is the main objective of this work. There are no qualitative differences among the three systems as for detected phases in the Pompeian wall paintings that were studied, except in the case of minority phases which only were detected by SR-HRPD. The identified pigments were goethite, hematite, cinnabar, glauconite, Pompeian blue, together with calcite, dolomite and aragonite. Synchrotron XRD diagrams show better resolution than the others. In general, the peak widths in the diagrams obtained with the portable XRD system are similar to those obtained by micro-diffraction equipment. Factors such as residual divergence of X-ray sources, incidence angle and slit or collimator size are discussed in relation with the quality of XRD diagrams.
机译:对艺术品材料的全面鉴定不仅需要元素分析,还需要X射线衍射(XRD)提供的化合物的结构信息。从艺术品中抽取样品(或微量样品)时,很容易做到这一点。但是,人们越来越需要进行适应性XRD系统的非破坏性研究。同步加速器高分辨率X射线粉末衍射(SR-HRPD)与实验室无损系统(便携式XRD和微型XRD)的比较研究是这项工作的主要目标。在研究的庞贝壁画中,对于检测到的相,这三个系统之间在质量上没有差异,只有少数相只能通过SR-HRPD检测到。鉴定出的颜料是针铁矿,赤铁矿,朱砂,青灰石,庞贝蓝以及方解石,白云石和文石。同步加速器XRD图显示出比其他图更好的分辨率。通常,使用便携式XRD系统获得的图中的峰宽与通过微衍射设备获得的峰宽相似。结合XRD图的质量,讨论了诸如X射线源的剩余散度,入射角以及狭缝或准直仪尺寸等因素。

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