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Biofouling
The Journal of Bioadhesion and Biofilm Research
Volume 8, 1995 - Issue 4
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Original Articles

Oxygen and pH microprofiles above corroding mild steel covered with a biofilm

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Pages 273-280 | Received 15 Jun 1994, Accepted 15 Oct 1994, Published online: 10 Jan 2009

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Read on this site (6)

Jerome Babauta, Ryan Renslow, Zbigniew Lewandowski & Haluk Beyenal. (2012) Electrochemically active biofilms: facts and fiction. A review. Biofouling 28:8, pages 789-812.
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B.B. Kjellerup, K.U. Kjeldsen, F. Lopes, L. Abildgaard, K. Ingvorsen, B. Frølund, K.R. Sowers & P.H. Nielsen. (2009) Biocorrosion and biofilm formation in a nutrient limited heating system subjected to alternating microaerophilic conditions. Biofouling 25:8, pages 727-737.
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Hans‐Peter Volkland, Hauke Harms, Karl Knopf, Oskar Wanner & AlexanderJ B Zehnder. (2000) Corrosion inhibition of mild steel by bacteria. Biofouling 15:4, pages 287-297.
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D M Goeres, P H Nielsen, H D Smidt & B Frølund. (1998) The effect of alkaline pH conditions on a sulphate reducing consortium from a Danish district heating plant. Biofouling 12:4, pages 273-286.
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Bowen Yang, Pan Lu, Qiufeng An & Chao Zhu. (2023) Protective effect of silicone-modified epoxy resin coating on iron-based materials against sulfate-reducing bacteria-induced corrosion. Progress in Organic Coatings 174, pages 107241.
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M. Shahabuddin, M. Mofijur, Md. Bengir Ahmed Shuvho, M. A. K. Chowdhury, M. A. Kalam, H. H. Masjuki & M. A. Chowdhury. (2021) A Study on the Corrosion Characteristics of Internal Combustion Engine Materials in Second-Generation Jatropha Curcas Biodiesel. Energies 14:14, pages 4352.
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Tien Tran Thi Thuy, Krishnan Kannoorpatti, Anna Padovan & Suresh Thennadil. (2020) Effect of Alkaline Artificial Seawater Environment on the Corrosion Behaviour of Duplex Stainless Steel 2205. Applied Sciences 10:15, pages 5043.
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László Trif, Abdul Shaban & Judit Telegdi. (2018) Electrochemical and surface analytical techniques applied to microbiologically influenced corrosion investigation. Corrosion Reviews 36:4, pages 349-363.
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Tong Li, Bastian Piltz, Björn Podola, Anthony Dron, Dirk de Beer & Michael Melkonian. (2016) Microscale profiling of photosynthesis-related variables in a highly productive biofilm photobioreactor. Biotechnology and Bioengineering 113:5, pages 1046-1055.
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Deniz F. Aktas, Jason S. Lee, Brenda J. Little, Kathleen E. Duncan, B. Monica Perez-Ibarra & Joseph M. Suflita. (2013) Effects of oxygen on biodegradation of fuels in a corroding environment. International Biodeterioration & Biodegradation 81, pages 114-126.
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S.J. Yuan & S.O. Pehkonen. (2009) AFM study of microbial colonization and its deleterious effect on 304 stainless steel by Pseudomonas NCIMB 2021 and Desulfovibrio desulfuricans in simulated seawater. Corrosion Science 51:6, pages 1372-1385.
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R.C.B. Da Silva & T.R. Pontes Filho. (2008) Corrosão do aço carbono em meio sulfato na presença da bactéria Salmonella anatum. Matéria (Rio de Janeiro) 13:2, pages 282-293.
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Carsten U. Schwermer, Gaute Lavik, Raeid M. M. Abed, Braden Dunsmore, Timothy G. Ferdelman, Paul Stoodley, Armin Gieseke & Dirk de Beer. (2008) Impact of Nitrate on the Structure and Function of Bacterial Biofilm Communities in Pipelines Used for Injection of Seawater into Oil Fields. Applied and Environmental Microbiology 74:9, pages 2841-2851.
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Iwona B. Beech & Jan A. Sunner. 2009. Sulphate-Reducing Bacteria. Sulphate-Reducing Bacteria 459 482 .
Dirk De Beer & Paul Stoodley. 2006. The Prokaryotes. The Prokaryotes 904 937 .
M. M. Al-Darbi, K. Agha & M. R. Islam. (2008) Comprehensive Modelling of the Pitting Biocorrosion of Steel. The Canadian Journal of Chemical Engineering 83:5, pages 872-881.
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S. Mohanan,S. Maruthamuthu,S. Ponmariappan,G. Venkatachari,N. Palaniswamy,. (2005) MICROBIOLOGICALLY INDUCED CORROSION OF COPPER. Corrosion Reviews 23:2-3, pages 233-245.
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B. V. Kjellerup, B. H. Olesen, B. Frølund & P. H. Nielsen. (2004) Potential of biocorrosion in Danish district heatings sytems. Materials and Corrosion 55:7, pages 543-547.
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. 2003. Corrosion: Fundamentals, Testing, and Protection. Corrosion: Fundamentals, Testing, and Protection 478 486 .
Li-Chong Xu, Kwong-Yu Chan & Herbert H.P Fang. (2002) Application of atomic force microscopy in the study of microbiologically influenced corrosion. Materials Characterization 48:2-3, pages 195-203.
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Brenda J. Little & Patricia A. Wagner. 2002. Modern Aspects of Electrochemistry. Modern Aspects of Electrochemistry 205 246 .
Hans-Peter Volkland, Hauke Harms, Karin Kaufmann, Oskar Wanner & Alexander J.B Zehnder. (2001) Repair of damaged vivianite coatings on mild steel using bacteria. Corrosion Science 43:11, pages 2135-2146.
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Hans-Peter Volkland, Hauke Harms, Beat Müller, Gernot Repphun, Oskar Wanner & Alexander J. B. Zehnder. (2000) Bacterial Phosphating of Mild (Unalloyed) Steel. Applied and Environmental Microbiology 66:10, pages 4389-4395.
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J. Iwan Jones, John W. Eaton & Keith Hardwick. (2000) The influence of periphyton on boundary layer conditions: a pH microelectrode investigation. Aquatic Botany 67:3, pages 191-206.
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Iwona B. Beech & Christine C. Gaylarde. (1999) Recent advances in the study of biocorrosion: an overview. Revista de Microbiologia 30:3, pages 117-190.
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Par Iwona B. Beech. (1999) La corrosion microbienne. Biofutur 1999:186, pages 36-41.
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