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X-Ray micro-Computed Tomography and micro X-ray Fluorescence mapping of synthetic emerald by using a laboratory polycapillary optics X-ray tube layout

机译:使用实验室多毛细管光学X射线管布局对合成祖母绿进行X射线微计算机断层扫描和微X射线荧光成像

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This paper relates the X-ray micro-Computed Tomography and micro X-ray Fluorescence 2D mapping of a synthetic emerald performed by a conventional X-ray source matched with polycapillary optics. The investigated crystals were synthesized in 1888 by Hautefeuille and Perrey starting from a stochiometric oxide mixture and using LiMoO4 as a flux; Cr was added to the system to give the green-color to the resulting crystals. Preliminary scanning electron microscope-backscattered electron images, coupled with wavelength-dispersive spectrometry microanalyses, showed a peculiar 'hourglass' distribution of Cr across the beryl crystals. In this contribution, we show the capability of a laboratory polycapillary lenses/X-ray tubes layout to characterize at the micrometric scale; the 3D spatial distribution of Cr in these emerald crystals. Actually, this technique offers many opportunities to characterize natural and technological materials where zoning of particular chemical elements occur at the micron or sub-micron scale. Copyright (C) 2015 JohnWiley & Sons, Ltd.
机译:本文介绍了由传统的X射线源与多毛细管光学器件相匹配的合成祖母绿的X射线微计算机断层扫描和微X射线荧光2D映射。 1888年,Hautefeuille和Perrey从化学计量的氧化物混合物开始,使用LiMoO4作为助熔剂,合成了所研究的晶体。将Cr添加到系统中,使所得晶体呈绿色。初步扫描电子显微镜向后散射的电子图像,再加上波长分散光谱显微分析,显示出整个绿柱石晶体中Cr的特殊“沙漏”分布。在这项贡献中,我们展示了实验室多毛细管透镜/ X射线管布局在微米级进行表征的能力;这些祖母绿晶体中Cr的3D空间分布。实际上,这项技术为表征天然和技术材料提供了许多机会,其中特定化学元素的分区以微米或亚微米为单位。版权所有(C)2015 JohnWiley&Sons,Ltd.

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