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Application of atomic force microscopy in the study of microbiologically influenced corrosion

机译:原子力显微镜在微生物影响腐蚀研究中的应用

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摘要

This paper demonstrates the use of the atomic force microscope in high-resolution topographical imaging of bacteria, biofilm, and corroded steel surfaces, and in the quantification of localized corrosion. The nanometric physicochemical and mechanical properties of a single cell and bacterial biofilm surface are characterized by force mapping. The corrosion results in two different sulfate-reducing bacteria cultures showed that the patterns of pitting and the degree of corrosion of mild steed were related to the bacterial isolates. Results from measurement of the tip-biofilm and the tip-cell adhesion forces indicated that the extracellular polymeric substances were mainly distributed in the cell-substratum periphery or the cell-cell interface in the biofilm.
机译:本文证明了原子力显微镜在细菌,生物膜和腐蚀的钢表面的高分辨率地形成像中以及在局部腐蚀定量中的应用。单细胞和细菌生物膜表面的纳米物理化学和机械性能通过力图表征。两种不同的硫酸盐还原菌培养物的腐蚀结果表明,蚀斑的模式和轻度马的腐蚀程度与细菌分离物有关。尖端生物膜和尖端细胞粘附力的测量结果表明,细胞外聚合物主要分布在生物膜的细胞-基质外围或细胞-细胞界面中。

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