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Microbial Transformations of Minerals and Metals: Recent Advances in Geomicrobiology Derived from Synchrotron-Based X-Ray Spectroscopy and X-Ray Microscopy

机译:矿物和金属的微生物转化:基于同步加速器的X射线光谱学和X射线显微镜学在地球微生物学方面的最新进展

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摘要

The field of geomicrobiology has embraced efforts to define and quantify the role of microbial organisms in low-temperature geochemical processes. However, any mechanistic understanding of the interactions between microbial organisms and minerals of metals requires analytical tools with the appropriate chemical sensitivity and spatial resolution. In the past several years, increasing application of nanometer-, micron-, and bulk-scale synchrotron-based X-ray techniques has provided new insights regarding the feedbacks among microbial growth, mineral dissolution, redox transformation, and biomineralization processes. In this review, recent findings derived from X-ray absorption spectroscopy, X-ray microprobe mapping, and X-ray microscopy studies are integrated to provide a new view of the dynamic biogeochemistry occuring at at the microbe-mineral interface.
机译:地球微生物学领域已经做出努力,以定义和量化微生物在低温地球化学过程中的作用。但是,对微生物和金属矿物质之间相互作用的任何机械理解都需要具有适当化学敏感性和空间分辨率的分析工具。在过去的几年中,基于纳米,微米和整体规模的同步加速器X射线技术的越来越多的应用提供了有关微生物生长,矿物质溶解,氧化还原转化和生物矿化过程之间反馈的新见解。在这篇综述中,来自X射线吸收光谱法,X射线微探针作图和X射线显微镜研究的最新发现被整合起来,以提供关于微生物-矿物界面处发生的动态生物地球化学的新观点。

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