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首页> 外文期刊>The American mineralogist >Reduced As components in highly oxidized environments: Evidence from full spectral XANES imaging using the Maia massively parallel detector
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Reduced As components in highly oxidized environments: Evidence from full spectral XANES imaging using the Maia massively parallel detector

机译:在高氧化环境中还原成As成分:使用Maia大规模并行探测器进行全光谱XANES成像的证据

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Synchrotron X-ray fluorescence (SXRF) and X-ray absorption spectroscopy (XAS) have become standard tools to measure element concentration, distribution at micrometer- to nanometer-scale, and speciation (e.g., nature of host phase; oxidation state) in inhomogeneous geomaterials. The new Maia X-ray detector system provides a quantum leap for the method in terms of data acquisition rate. It is now possible to rapidly collect fully quantitative maps of the distribution of major and trace elements at micrometer spatial resolution over areas as large as 1 × 5 cm2. Fast data acquisition rates also open the way to X-ray absorption near-edge structure (XANES) imaging, in which spectroscopic information is available at each pixel in the map. These capabilities are critical for studying inhomogeneous Earth materials. Using a 96-element prototype Maia detector, we imaged thin sections of an oxidized pisolitic regolith (2 × 4.5 mm2 at 2.5 × 2.5 μm2 pixel size) and a metamorphosed, sedimentary exhalative Mn-Fe ore (3.3 × 4 mm2 at 1.25 × 5 μm2). In both cases, As K-edge XANES imaging reveals localized occurrence of reduced As in parts of these oxidized samples, which would have been difficult to recognize using traditional approaches.
机译:同步加速器X射线荧光(SXRF)和X射线吸收光谱(XAS)已成为标准工具,可用于测量元素浓度,微米至纳米级的分布以及不均匀的形态(例如主体相的性质;氧化态)土工材料。新的Maia X射线探测器系统在数据采集速率方面为该方法提供了巨大的飞跃。现在有可能以微米的空间分辨率在1×5 cm2的大面积上快速收集主要和微量元素分布的完全定量图。快速的数据采集速率也为X射线吸收近边缘结构(XANES)成像开辟了道路,在该成像中,地图中每个像素处都提供了光谱信息。这些功能对于研究非均质地球材料至关重要。使用96元素原型Maia检测器,我们对氧化的蛇绿岩块岩(2.5×2.5μm2像素大小时为2×4.5 mm2)和变质的沉积呼气性Mn-Fe矿石(1.25×5时为3.3×4 mm2)的薄片进行了成像μm2)。在这两种情况下,As K边缘XANES成像都揭示了在这些氧化样品的部分区域中还原性As的局部发生,而使用传统方法很难识别。

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