首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Nanoscale environments associated with bioweathering of a Mg-Fe-pyroxene.
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Nanoscale environments associated with bioweathering of a Mg-Fe-pyroxene.

机译:与Mg-Fe-吡咯的生物风化有关的纳米级环境。

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摘要

Microorganisms are believed to create microenvironments leading to reaction products not predictable from equilibrium thermodynamics and to unique biomineral morphologies. Unambiguous evidence for such environments is, however, rare in natural samples. We have used scanning transmission x-ray microscopy and spectromicroscopy at the sub-40-nm scale, coupled with transmission electron microscopy, to examine bioweathering products on a meteoritic Fe-Mg-orthopyroxene colonized by a filamentous microorganism. Our measurements reveal an amorphous Al-rich layer beneath the microorganism, calcium carbonates of unique morphology intimately associated with polysaccharides adjacent to the microorganism, and regions surrounding the microorganism with different iron oxidation states. Our results confirm the presence of different microenvironments at this microorganism-mineral interface and provide unique nanometer-scale views of microbially controlled pyroxene weathering products.
机译:据信微生物会产生微环境,导致无法通过平衡热力学预测到的反应产物以及独特的生物矿物形态。但是,在自然样本中很少有此类环境的明确证据。我们已经使用了小于40 nm规模的扫描透射X射线显微镜和光谱显微镜,以及透射电子显微镜,来检查由丝状微生物定居的陨铁Fe-Mg-邻二甲苯上的生物风化产物。我们的测量揭示了微生物下面的非晶态富铝层,与微生物相邻的多糖紧密相关的独特形态的碳酸钙以及微生物周围具有不同铁氧化态的区域。我们的结果证实了在这种微生物-矿物界面处存在不同的微环境,并提供了微生物控制的辉石风化产物的独特纳米级视图。

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