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Microbial Iron Respiration Can Protect Steel from Corrosion

机译:微生物铁呼吸可以保护钢免遭腐蚀

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摘要

Microbiologically influenced corrosion (MC) of steel has been attributed to the activity of biofilms that include anaerobic microorganisms such as iron-respiring bacteria, yet the mechanisms by which these organisms influence corrosion have been unclear. To study this process, we generated mutants of the iron-respiring bacterium Shewanella oneidensis strain MR-1 that were defective in biofilm formation and/or iron reduction. Electrochemical impedance spectroscopy was used to determine changes in the corrosion rate and corrosion potential as a function of time for these mutants in comparison to the wild type. Counter to prevailing theories of MC, our results indicate that biofilms comprising iron-respiring bacteria may reduce rather than accelerate the corrosion rate of steel. Corrosion inhibition appears to be due to reduction of ferric ions to ferrous ions and increased consumption of oxygen, both of which are direct consequences of microbial respiration.
机译:钢的微生物影响腐蚀(MC)归因于生物膜的活性,其中包括厌氧微生物,例如铁呼吸细菌,但这些生物影响腐蚀的机理尚不清楚。为了研究该过程,我们产生了铁呼吸细菌希瓦氏菌oneidensis菌株MR-1的突变体,这些突变体在生物膜形成和/或铁还原方面存在缺陷。与野生型相比,使用电化学阻抗光谱法确定这些突变体的腐蚀速率和腐蚀电位随时间的变化。与MC的流行理论相反,我们的结果表明,包含铁呼吸细菌的生物膜可能会降低而不是加速钢的腐蚀速率。腐蚀抑制似乎是由于三价铁离子还原为亚铁离子并增加了氧气的消耗,这两者都是微生物呼吸的直接后果。

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