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Micro energy dispersive X-ray fluorescence analysis of polychrome lead-glazed Portuguese faiences

机译:彩色铅釉葡萄牙彩陶的微能量色散X射线荧光分析

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Several glazed ceramic pieces, originally produced in Coimbra (Portugal), were submitted to elemental analysis, having as premise the pigment manufacture production recognition. Although having been produced in Coimbra, their location changed as time passed due to historical reasons. A recent exhibition in Coimbra brought together a great number of these pieces and in situ micro Energy Dispersive X-ray Fluorescence (μ-EDXRF) analyses were performed in order to achieve some chemical and physical data on the manufacture of faiences in Coimbra. A non-commercial μ-EDXRF equipment for in situ analysis was employed in this work, carrying some important improvements when compared to the conventional ones, namely, analyzing spot sizes of about 100 μm diameter. The combination of a capillary X-ray lens with a new generation of low power microfocus X-ray tube and a drift chamber detector enabled a portable unit for micro-XRF with a few tens of μm lateral resolution. The advantages in using a portable system emphasized with polycapillary optics enabled to distinguish proximal different pigmented areas, as well as the glaze itself. These first scientific results on the pigment analysis of the collection of faiences seem to point to a unique production center with own techniques and raw materials. This conclusion arose with identification of the blue pigments having in its constitution Mn, Fe Co and As and the yellows as a result of the combination between Pb and Sb. A statistical treatment was used to reveal groups of similarities on the pigments elemental profile.
机译:最初在科英布拉(葡萄牙)生产的几块釉面陶瓷作品已接受了元素分析,并以颜料制造的生产认可为前提。尽管是在科英布拉生产的,但由于历史原因,它们的位置随着时间的流逝而发生了变化。最近在科英布拉(Coimbra)举行的一次展览将大量此类物品放在一起,并进行了原位微能量色散X射线荧光(μ-EDXRF)分析,以获取有关在科英布拉制造陶瓷的一些化学和物理数据。在这项工作中使用了一种非商业性的用于原位分析的μ-EDXRF设备,与传统设备相比,它进行了一些重要的改进,即分析了直径约100μm的光斑。毛细管X射线透镜与新一代低功率微焦点X射线管和漂移室检测器的结合,使便携式X-XRF装置的横向分辨率达到了几十微米。使用强调了多毛细管光学特性的便携式系统的优势在于可以区分近端的不同色素区域以及釉料本身。这些关于彩陶的颜料分析的第一批科学结果似乎指向了一个拥有自己技术和原材料的独特生产中心。得出这一结论的原因是,鉴定出具有组成Mn,Fe Co和As的蓝色颜料,以及由于Pb和Sb结合而产生的黄色。统计处理用于揭示颜料元素轮廓上的相似性组。

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