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Energy dispersive X-ray diffraction and fluorescence portable system for cultural heritage applications

机译:用于文化遗产应用的能量色散X射线衍射和荧光便携式系统

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A portable X-ray diffraction (XRD) and X-ray fluorescence (XRF) system, based on energy dispersive detection in reflection geometry, has been developed for the non-invasive study of cultural heritage materials. This analytical system is an open-work platform based on a low-power miniaturized X-ray tube (Ag anode), a single Si-drift detector, and a set of collimators that have been mounted on a compact and versatile manual or motorized stage, which allows independent and precise angular positioning of both source and detector and the study of complex geometry objects. The design of two instruments and experimental setups, and their advantages are discussed. The XRF and XRD analytical performance has been tested through the analysis of standard reference materials and some applications, including provenance study of obsidian and green stone' artifacts, identification of pigments in a model of fresco painting, and chemical element analysis of bones. The main advantages of portable energy dispersive X-ray diffraction systems compared with commonly used angle dispersive X-ray diffraction (ADXRD) instruments are shorter measurement times and compactness. Moreover, optimum XRF spectra can be collected because a polychromatic beam is used instead of a (quasi) monochromatic beam as in an angle dispersive X-ray diffraction-X-ray fluorescence portable system. Results demonstrate that it is possible to identify the main crystalline phases in a measurement time of 100s-600s and the system is sensible enough for answering common questions, as the ones presented, in the cultural heritage field. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:基于反射几何学中的能量色散检测的便携式X射线衍射(XRD)和X射线荧光(XRF)系统已开发用于文化遗产材料的非侵入性研究。该分析系统是基于低功率微型X射线管(Ag阳极),单个Si漂移检测器和一组准直仪的开放式平台,这些准直仪已安装在紧凑而通用的手动或电动平台上,它允许对源和探测器进行独立且精确的角度定位,并研究复杂的几何对象。讨论了两种仪器的设计和实验装置,以及它们的优点。 XRF和XRD分析性能已经通过标准参考材料的分析和一些应用进行了测试,包括黑曜石和绿宝石制品的来源研究,壁画模型中的颜料鉴定以及骨骼的化学元素分析。与常用的角度色散X射线衍射(ADXRD)仪器相比,便携式能量色散X射线衍射系统的主要优点是测量时间更短,结构更紧凑。而且,因为在角度色散X射线衍射-X射线荧光便携式系统中使用多色光束代替(准)单色光束,所以可以收集最佳的XRF光谱。结果表明,可以在100s-600s的测量时间内确定主要的结晶相,并且该系统足够合理,可以回答文化遗产领域中常见的问题。版权所有(c)2015 John Wiley&Sons,Ltd.

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