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The use of electrochemical techniques for the investigation and monitoring of microbiologically influenced corrosion and its inhibition - a review

机译:电化学技术在微生物影响的腐蚀及其抑制作用的研究和监测中的应用-综述

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摘要

The background of several electrochemical techniques - recording of the corrosion potential E{sub}(corr), electrochemical impedance spectroscopy (EIS), electrochemical noise analysis (ENA) and recording of potentiodynamic polarization curves - has been discussed and examples of the use of these techniques in studies of microbiologically influenced corrosion (MIC) and MIC inhibition have been presented. These examples range from the use of the polarization resistance R{sub}p and the noise resistance R{sub}n in corrosion monitoring in a sewer environment and a gas production field, respectively, to the application of EIS and ENA in the evaluation of the interaction of bacteria with protective coatings on steel exposed to natural seawater (NS). A more detailed analysis based on FIS and ENA of Corrosion protection of Al 2024 mild steel and brass in artificial seawater (AS) by bacteria such as B. sublilis, B. licheniformis, E. coli and Shewanella has been presented. Determination of the changes of R{sub}p and R{sub}n as well as E{sub}(corr) allows to propose appropriate mechanisms of MIC inhibition. These mechanisms have been confirmed in the case of S. algae by recording of anodic and cathodic potentiodynamic polarization curves after exposure to AS containing the bacteria for extended time periods.
机译:讨论了几种电化学技术的背景-腐蚀电位E {sub}(corr)的记录,电化学阻抗谱(EIS),电化学噪声分析(ENA)以及电势极化曲线的记录-以及使用这些方法的示例已经提出了研究微生物影响腐蚀(MIC)和抑制MIC的技术。这些示例包括:在下水道环境和产气场的腐蚀监测中分别使用极化电阻R {sub} p和噪声电阻R {sub} n,以及EIS和ENA在评估环境中的应用。细菌与暴露于天然海水(NS)的钢上保护涂层的相互作用。提出了基于FIS和ENA的人工细菌(sub.lililis),地衣芽孢杆菌(B. licheniformis),大肠杆菌和希瓦氏菌(Shewanella)等细菌在人工海水(AS)中腐蚀Al 2024低碳钢和黄铜的详细分析。确定R {sub} p和R {sub} n以及E {sub}(corr)的变化可以提出适当的MIC抑制机制。在藻类链球菌的情况下,通过记录暴露于含有细菌的AS长时间后的阳极和阴极电位动力学极化曲线,已证实了这些机制。

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