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Original Articles

An overview of mechanisms by which sulphate‐reducing bacteria influence corrosion of steel in marine environments

Pages 37-47 | Received 30 Jun 1999, Accepted 30 Sep 1999, Published online: 10 Jan 2009

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Ini-Ibehe Nabuk Etim, Jie Wei, Junhua Dong, Dake Xu, Nan Chen, Xin Wei, Mingzhong Su & Wei Ke. (2018) Mitigation of the corrosion-causing Desulfovibrio desulfuricans biofilm using an organic silicon quaternary ammonium salt in alkaline media simulated concrete pore solutions. Biofouling 34:10, pages 1121-1137.
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R. K. Singh Raman, R. Javaherdashti, C. Panter & E. V. Pereloma. (2005) Hydrogen embrittlement of a low carbon steel during slow strain testing in chloride solutions containing sulphate reducing bacteria. Materials Science and Technology 21:9, pages 1094-1098.
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Articles from other publishers (34)

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Ini-Ibehe Nabuk Etim, Junhua Dong, Jie Wei, Chen Nan, Enobong Felix Daniel, Dhruba Babu Subedi, Dake Xu, Amar Prasad Yadav, Mingzhong Su & Wei Ke. (2020) Mitigation of sulphate-reducing bacteria attack on the corrosion of 20SiMn steel rebar in sulphoaluminate concrete using organic silicon quaternary ammonium salt. Construction and Building Materials 257, pages 119047.
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Leslie K. Daille, Javiera Aguirre, Diego Fischer, Carlos Galarce, Francisco Armijo, Gonzalo E. Pizarro, Magdalena Walczak, Rodrigo De la Iglesia & Ignacio T. Vargas. (2020) Effect of Tidal Cycles on Bacterial Biofilm Formation and Biocorrosion of Stainless Steel AISI 316L. Journal of Marine Science and Engineering 8:2, pages 124.
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Xiaoyan He, Yi Liu, Jing Huang, Xiuyong Chen, Kun Ren & Hua Li. (2015) Adsorption of alginate and albumin on aluminum coatings inhibits adhesion of Escherichia coli and enhances the anti-corrosion performances of the coatings. Applied Surface Science 332, pages 89-96.
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Rashmi R. Nair, Célia M. Silveira, Mário S. Diniz, Maria G. Almeida, Jose J. G. Moura & Maria G. Rivas. (2014) Changes in metabolic pathways of Desulfovibrio alaskensis G20 cells induced by molybdate excess. JBIC Journal of Biological Inorganic Chemistry 20:2, pages 311-322.
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Qi Bao, Dun Zhang, Dandan Lv & Peng Wang. (2012) Effects of two main metabolites of sulphate-reducing bacteria on the corrosion of Q235 steels in 3.5 wt.% NaCl media. Corrosion Science 65, pages 405-413.
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Ze Hua Dong, Wei Shi, Hong Mei Ruan & Guo An Zhang. (2011) Heterogeneous corrosion of mild steel under SRB-biofilm characterised by electrochemical mapping technique. Corrosion Science 53:9, pages 2978-2987.
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K. G. Neoh & E. T. Kang. (2011) Combating Bacterial Colonization on Metals via Polymer Coatings: Relevance to Marine and Medical Applications. ACS Applied Materials & Interfaces 3:8, pages 2808-2819.
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R. Stadler, L. Wei, W. Fürbeth, M. Grooters & A. Kuklinski. (2010) Influence of bacterial exopolymers on cell adhesion of Desulfovibrio vulgaris on high alloyed steel: Corrosion inhibition by extracellular polymeric substances (EPS) . Materials and Corrosion 61:12, pages 1008-1016.
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Michael C. FlickingerPatrizia Perego & Bruno Fabiano. 2009. Encyclopedia of Industrial Biotechnology. Encyclopedia of Industrial Biotechnology.
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S. J. Yuan, F. J. Xu, S. O. Pehkonen, Y. P. Ting, E. T. Kang & K. G. Neoh. (2008) Biocorrosion Behavior of Titanium Oxide/Butoxide-Coated Stainless Steel. Journal of The Electrochemical Society 155:5, pages C196.
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Xiutong Wang, Jizhou Duan, Yan Li, Jie Zhang, Shide Ma & Baorong Hou. (2005) Corrosion of steel structures in sea-bed sediment. Bulletin of Materials Science 28:2, pages 81-85.
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Guangtuan Huang, Kwong-Yu Chan & Herbert H. P. Fang. (2004) Microbiologically Induced Corrosion of 70Cu-30Ni Alloy in Anaerobic Seawater. Journal of The Electrochemical Society 151:7, pages B434.
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