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Speciation and Quantitative Mapping of Metal Species in Microbial Biofilms Using Scanning Transmission X-ray Microscopy

机译:微生物生物膜中金属物种的形态和定量定位扫描透射X射线显微镜

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摘要

A scanning transmission X-ray microscope illuminated with synchrotron light was used to investigate the speciation and spatial distributions of metals in a microbial biofilm cultivated from river water. Metal 2p absorption edge signals were used to provide metal speciation (through shapes of the absorption spectra) and quantitative spatial distributions of the metal species. This paper presents sample data and describes methods for extracting quantitative maps of metal species from image sequences recorded in the region of the metal 2p edges. Comparisons were made with biochemical characterization of the same region using images recorded at the C 1s and O 1s edges. The method is applied to detailed quantitative analysis of ferrous and ferric iron in a river biofilm, in concert with mapping Ni- (II) and Mn(II) species in the same region. The distributions of the metal species are discussed in the context of the biofilm structure. These results demonstrate that soft X-ray STXM measurements at the metal 2p absorption edges can be used to speciate metals and to provide quantitative spatial distribution maps for metal species in environmental samples with 50 nm spatial resolution.
机译:使用用同步加速器光照射的扫描透射X射线显微镜研究河水中培养的微生物生物膜中金属的形态和空间分布。金属2p吸收边缘信号用于提供金属形态(通过吸收光谱的形状)和金属种类的定量空间分布。本文介绍了样本数据,并描述了从记录在金属2p边缘区域中的图像序列中提取金属物种定量图的方法。使用在C 1s和O 1s边缘记录的图像对同一区域的生化特征进行了比较。该方法与在同一地区绘制Ni-(II)和Mn(II)种类的图谱相结合,可用于河流生物膜中亚铁和三价铁的详细定量分析。在生物膜结构的背景下讨论了金属种类的分布。这些结果表明,在金属2p吸收边缘处的软X射线STXM测量可用于指定金属,并提供具有50 nm空间分辨率的环境样品中金属物种的定量空间分布图。

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