生物腐蚀研究进展综述

I. Beech, C. Gaylarde
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引用次数: 293

摘要

金属表面的生物腐蚀过程与微生物或其代谢活动的产物有关,包括酶、外聚合物、有机和无机酸,以及挥发性化合物,如氨或硫化氢。这些可以影响阴极和/或阳极反应,从而改变生物膜/金属界面的电化学。生物腐蚀的各种机制反映了不同类型的微生物进行的各种生理活动,并对这些机制的最新见解进行了综述。许多现代研究集中在微生物对铁合金和铜合金腐蚀的影响上,特别感兴趣的微生物是硫酸盐还原细菌和金属(特别是锰)沉积细菌。强调了微生物群落的重要性和胞外聚合物质在生物腐蚀中的作用。讨论了原子力显微镜、俄歇电子、x射线光电子和穆斯堡尔光谱、衰减全反射傅立叶变换红外光谱和微传感器等现代分析技术对生物腐蚀研究的贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recent advances in the study of biocorrosion: an overview
Biocorrosion processes at metal surfaces are associated with microorganisms, or the products of their metabolic activities including enzymes, exopolymers, organic and inorganic acids, as well as volatile compounds such as ammonia or hydrogen sulfide. These can affect cathodic and/or anodic reactions, thus altering electrochemistry at the biofilm/metal interface. Various mechanisms of biocorrosion, reflecting the variety of physiological activities carried out by different types of microorganisms, are identified and recent insights into these mechanisms reviewed. Many modern investigations have centered on the microbially-influenced corrosion of ferrous and copper alloys and particular microorganisms of interest have been the sulfate-reducing bacteria and metal (especially manganese)-depositing bacteria. The importance of microbial consortia and the role of extracellular polymeric substances in biocorrosion are emphasized. The contribution to the study of biocorrosion of modern analytical techniques, such as atomic force microscopy, Auger electron, X-ray photoelectron and Mossbauer spectroscopy, attenuated total reflectance Fourier transform infrared spectroscopy and microsensors, is discussed.
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