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Investigation of Under-Deposit Microbial Corrosion and its Inhibition Using a Multi-Electrode Array System. | LitMetric

Investigation of Under-Deposit Microbial Corrosion and its Inhibition Using a Multi-Electrode Array System.

Front Bioeng Biotechnol

Curtin Corrosion Centre (CCC), Western Australia School of Mines: Minerals, Energy and Chemical Engineering, Curtin University, Perth, WA, Australia.

Published: January 2022

AI Article Synopsis

  • Carbon steel pipelines in the oil and gas industry can experience under-deposit microbial corrosion (UDMC) due to the presence of deposits and microorganisms, which create a complex corrosion issue.
  • A multi-electrode array (MEA) system was utilized to study UDMC in real-time, allowing for detailed mapping of corrosion rates and behaviors on the steel surface, particularly under anaerobic conditions with specific marine bacteria.
  • The study emphasizes the need to consider microbial influences when evaluating corrosion inhibitors, as tested inhibitors showed limitations in preventing pitting corrosion when microbes were present, indicating the importance of a comprehensive approach to corrosion management.

Article Abstract

Carbon steel pipelines used in the oil and gas industry can be susceptible to the combined presence of deposits and microorganisms, which can result in a complex phenomenon, recently termed under-deposit microbial corrosion (UDMC). UDMC and its inhibition in CO ambiance were investigated in real-time using a multi-electrode array (MEA) system and surface profilometry analysis. Maps from corrosion rates, galvanic currents, and corrosion potentials recorded at each microelectrode allowed the visualization of local corrosion events on the steel surface. A marine bacterium , an iron-oxidizing, nitrate-reducing microorganism, generated iron deposits on the surface that resulted in pitting corrosion under anaerobic conditions. Areas under deposits displayed anodic behavior, more negative potentials, higher corrosion rates, and pitting compared to areas outside deposits. In the presence of the organic film-forming corrosion inhibitor, 2-Mercaptopyrimidine, the marine bacterium induced local breakdown of the protective inhibitor film and subsequent pitting corrosion of carbon steel. The ability of the MEA system to locally measure self-corrosion processes, galvanic effects and, corrosion potentials across the surface demonstrated its suitability to detect, evaluate and monitor the UDMC process as well as the efficiency of corrosion inhibitors to prevent this corrosion phenomenon. This research highlights the importance of incorporating the microbial component to corrosion inhibitors evaluation to ensure chemical effectiveness in the likely scenario of deposit formation and microbial contamination in oil and gas production equipment.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8784807PMC
http://dx.doi.org/10.3389/fbioe.2021.803610DOI Listing

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