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Microscopy and spectroscopy with X-rays for studies in the environmental sciences

机译:用于环境科学研究的X射线显微镜和光谱学

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X-ray spectromicroscopy is a powerful tool for addressing key questions in the environmental sciences due to its high spectral and spatial resolution. It has been used successfully for material research, biology and environmental studies, e.g. in the form of mu-X-ray fluorescence and spectromicroscopy with a spatial resolution of <100 nm. With the combination of high-resolution microscopy and spectroscopy it is possible to determine elemental composition as well as chemical speciation, and also identify trace elements to nm-resolution. Samples from soils and groundwater aquifers have been imaged to visualize the appearance of structures on the nm- and urn-scale. The effect of changing chemical conditions in an aqueous environment on the appearance of these structures has been imaged and evaluated. Clay dispersions, microhabitats and morphological effects of biologically-induced redox changes of humic substances have been imaged tomographically, conveying a detailed three-dimensional presentation of the specimen structure. Using the spectromicroscopy potential, the distribution of organic and inorganic components, as well as different inorganic components, has been studied. Spectra were analysed for major chemical constituents and were used, for example, to assess different sulphur species in an entire soil profile.
机译:X射线光谱显微镜具有高光谱和空间分辨率,是解决环境科学中关键问题的有力工具。它已成功用于材料研究,生物学和环境研究,例如以mu-X射线荧光和光谱显微镜的形式,其空间分辨率小于100 nm。通过高分辨率显微镜和光谱学的结合,可以确定元素组成以及化学形态,还可以鉴定痕量元素至纳米分辨率。已经对来自土壤和地下水含水层的样品进行了成像,以可视化纳米和规模的结构外观。成像和评估了在水性环境中改变化学条件对这些结构的外观的影响。层析成像了粘土分散体,微生境和生物诱导的腐殖质氧化还原变化的形态学效应,传达了标本结构的详细三维表示。利用分光镜的潜力,已经研究了有机和无机成分以及不同无机成分的分布。分析了光谱中的主要化学成分,并用于例如评估整个土壤剖面中的不同硫物种。

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