Affiliation:
1. School of Materials Science and Engineering Beihang University Beijing China
2. PipeChina Institute of Science and Technology Tianjin China
3. National Oil & Gas Pipeline Network Corporation Beijing China
4. State Key Laboratory of Performance and Structural Safety of Petroleum Tubular Goods and Equipment Materials CNPC Tubular Goods Research Institute Xi'an China
Abstract
AbstractMicrobiologically influenced corrosion (MIC) caused by sulfate‐reducing bacteria (SRB) is a major threat to buried pipelines. The crevices beneath disbonded coatings provide the environment for the survival and growth of SRB, accelerating the attachment of SRB and significantly reducing the effectiveness of buried pipelines. In this work, the influence of initial pH values (6.4, 8.0) and SRB concentrations (2.0 × 101, 4.5 × 102, 2.5 × 103 cells/mL) were investigated on the behaviors of L415 carbon steel. The results indicated that the overall uniform corrosion rate of L415 carbon steel decreased while the maximum pitting corrosion rate exhibited an increasing trend with the increasing of initial concentration of SRB. In comparison to the pH 6.4 environment, the overall risk of pitting corrosion in pH 8.0 environment was reduced due to the biomineralization of SRB, enhancing the protection of metal materials.
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1 articles.
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