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Submicrometer Hyperspectral X-ray Imaging of Heterogeneous Rocks and Geomaterials: Applications at the Fe K-Edge

机译:非均质岩石和地球材料的亚微米高光谱X射线成像:Fe K边缘的应用

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摘要

Because of their complex genesis, rocks and geomaterials are commonly polycrystalline heterogeneous systems, with various scale-level chemical and structural heterogeneities. Like most other mu-analytical techniques relying on scanning instruments with pencil-beam, the X-ray absorption near edge structure (XANES) technique allows elemental oxidation states to be probed with high spatial resolution but suffers from long acquisition times, imposing practical limits on the field of view. Now, regions of interest of sample are generally several orders of magnitude larger than the beam size. Here, we show the potential of coupling XANES and full-field absorption radiographies with a large hard X-ray beam. Thanks to a new setup, which allows both the acquisition of a XANES image stack and the execution of polarization contrast imaging, 1 to 4 mega-pixel crystallographic orientations and Fe oxidation state mapping corrected from polarization effects are obtained in a couple of hours on polycrystalline materials with submicrometric resolution. The demonstration is first carried out on complex metamorphic rocks, where Fe~(3+)/Fe_(total) images reveal subtle redox variations within single mineralogical phases. A second application concerns a bentonite analogue considered for nuclear waste and CO_(2) storage. Proportion mappings of finely mixed phases are extracted from hyperspectral data, imaging the spatial progress of reaction processes essential for the safety of such storage systems.
机译:由于其复杂的成因,岩石和岩土材料通常是多晶异质系统,具有各种规模的化学和结构异质性。与大多数其他依靠铅笔束扫描仪器的mu分析技术一样,X射线吸收近边缘结构(XANES)技术允许以高空间分辨率探测元素的氧化态,但由于采集时间长,对实际操作施加了限制视野。现在,样品的感兴趣区域通常比光束尺寸大几个数量级。在这里,我们展示了将XANES和全场吸收射线照相与大型硬X射线束耦合的潜力。得益于新的设置,该设备既可以获取XANES图像堆栈,也可以执行偏振对比成像,因此在几个小时内就可以在多晶硅上获得1到4兆像素的晶体学取向以及根据偏振效应校正的Fe氧化态映射。具有亚微米分辨率的材料。该演示首先在复杂的变质岩上进行,其中Fe〜(3 +)/ Fe_(总)图像显示出单个矿物相内的细微氧化还原变化。第二个应用涉及考虑用于核废料和CO_(2)储存的膨润土类似物。从高光谱数据中提取出精细混合相的比例映射图,对这种存储系统的安全性至关重要的反应过程进行了空间成像。

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