MITIGATION OF MICROBIOLOGICALLY INDUCED CORROSION DUE TO SULPHATE REDUCING BACTERIA BY CHEMICALS, COATINGS, AND CATHODIC PROTECTION
Keywords:
Microbiologically induced corrosion, mitigation, chemical protection, coating, cathodic protectionAbstract
Microbiologically induced corrosion (MIC) causes significant damages in industries. Combating MIC, in particular the one caused by sulphate reducing bacteria, can be a huge challenge to corrosion engineers due to complexity of behavior and nature of the bacteria. Over the past five decades, extensive research and development have led to new discovery of mitigating MIC and to growing consciousness from various industries. This article offers brief review on recent progress or development in research on combating MIC using chemicals or biocides, coatings, and cathodic protectionReferences
Javaherdashti, R. (2008). Microbiologically Influenced Corrosion: An Engineering Insight. Perth: Springer-Verlag London Ltd.
Janak, K. E. and Ludensky, M. (2012). Biofilm Prevention and MIC Control via the Use of a Novel Film-Forming Quaternary Amine. NACE Corrosion 2012 .
De Paula, R. M., Keasler, V., Bennett, B., Keller, C., Adams, R. C., Vaksman, Z., et al. (2012). Optimization of a Microbial Control Program in an Aging Gulf of Mexico Asset to Minimize
the Risk of Corrosion. NACE Conference 2012 .
Jinying, H., Weiping, W., and Minxu, L. (2012). Inhibition Effect of MDHTD for Corrosion by Sulfide-Reducing Bacteria Biofilm. NACE Corrosion 2012 .
San, N. O., Nazir, H., and Dönmez, G. (2012). Evaluation of Microbiologically Influenced Corrosion Inhibition on Ni-Co Alloy Coatings by Aeromonas Salmonicida and Clavibacter Michiganensis. Corrosion Science 65, 113-118.
Yuan, L., Pengtao, H., Jiexin, W., and Jian-Feng, C. (2010). Controlled Release Active Antimicrobial Corrosion Coatings with Ag/SiO2 Core-Shell Nanoparticles. Materials Chemistry and Physics 120, 351-355.
Akram, D., Sharmin, E., and Ahmad, S. (2012). Biohybrid Silver Nanocomposites as Antimicrobial Corrosion Protective Coating Materials. NACE Conference 2012 .
Katariya, M. N., Jana, A. K., and Parikh, P. A. (2013). Corrosion Inhibition Effectiveness of Zeolite ZSM-5 Coating on Mild Steel Against Various Organic Acids and Its Antimicrobial
Activity. Journal of Industrial and Engineering Chemistry 19, 286-291.
Haile, T., Nakhla, G., Allouche, E., and Vaidya, S. (2010). Evaluation fo Bactericidal Characteristics of Nano-Copper Oxide or Functionalized Zeolite Coating for Bio-Corrosion Control in Concrete Sewer Pipes. Corrosion Science 52, 45-53.
Xiaofan, Z., Myamina, M., Jizhou, D., and Baorong, H. (2013). Microbial Corrosion Resistance of Galvanized Coatings with 4,5-dichloro-2-n-octyl-4-isothiazolin-3-one as a Biocidal Ingredient in Electrolytes. Corrosion Science 72, 99-107.
Medihala, P., Lawrence, J., Swerhone, G., & Korber, D. (2013). Transient Response of Microbial Communities in Water Well Field to Application of an Impressed Current. Water Research 47, 672-682.
Sun, C., Xu, J., Wang, F., & Yu, C. (2010). Effects of SRB on Cathodic Protection of Q235 Steel in Soils. Materials and Corrosion 61, 762-767.
Yaro, A. S., Al-Jendeel, H., & Khadom, A. A. (2011). Cathodic Protection System of CopperZinc-Saline Water in the Presence of Bacteria. Desalination 270, 193-198.
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