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Biofouling and microbially influenced corrosion of stainless steels

机译:生物污染和微生物影响不锈钢的腐蚀

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Stainless steels are among the most investigated materials on biofouling and microbially-influenced corrosion (MIC). Although, generally corrosion-resistant owing to tenacious and passive surface film due to chromium, stainless steels are susceptible to extensive biofouling in subsoil, fresh water and sea water and chemical process environments. Biofilms influence their corrosion behavior due to corrosion potential ennoblement and sub-surface pitting. Both aerobic and anaerobic microorganisms catalyse microbial corrosion of stainless steels through biotic and abiotic mechanisms. MIC of stainless steels is common adjacent to welds at the heat-affected zone. Both austenite and delta ferrite phases may be susceptible. Even super stainless steels are found to be amenable to biofouling and MIC. Microbiological, electrochemical as well as physicochemical aspects of MIC pertaining to stainless steels in different environments are analyzed.
机译:不锈钢是生物污染和微生物影响的腐蚀(MIC)中最多调查的材料之一。虽然由于铬由于铬,不锈钢导致的顽固和被动表面膜而耐腐蚀,但不锈钢易受诸如底土,淡水和海水和化学过程环境中的广泛生物污垢。生物膜由于腐蚀潜在的膨胀和亚表面蚀地影响其腐蚀行为。有氧和厌氧微生物均通过生物和非生物机制催化不锈钢的微生物腐蚀。不锈钢的MIC在热影响区域的焊缝附近是常见的。奥氏体和三角形铁氧体相可以易感。甚至发现超级不锈钢甚至可以适用于生物纺纱和麦克风。分析了微生物,电化学以及不同环境中与不锈钢有关的MIC的物理化学方面。

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