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Abstract
Oilfield systems are a multifaceted ecological niche, which consistently experiences microbiologically influenced corrosion. However, simulating the environmental conditions of an offshore system within the laboratory is notoriously difficult. A novel dual anaerobic biofilm reactor protocol allowed a complex mixed-species marine biofilm to be studied. Interestingly, electroactive corrosive bacteria and fermentative electroactive bacteria growth was supported within the biofilm microenvironment. Critically, the biotic condition exhibited pits with a greater average area, which is characteristic of microbiologically influenced corrosion. This research seeks to bridge the gap between experimental and real-world scenarios, ultimately enhancing the reliability of biofilm management strategies in the industry.
| Original language | English |
|---|---|
| Journal | Applied and Environmental Microbiology |
| Volume | 91 |
| Issue number | 6 |
| Number of pages | 25 |
| ISSN | 0099-2240 |
| DOIs | |
| Publication status | Published - 24 May 2025 |
Keywords
- construction, environment and energy
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Dive into the research topics of 'Toward simulating offshore oilfield conditions: insights into microbiologically influenced corrosion from a dual anaerobic biofilm reactor'. Together they form a unique fingerprint.Projects
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PHD: Co-Supervision PhD student Liam Jones with University of Southampton
Jones, L. (Principle researcher), Skovhus, T. L. (Co-researcher), Salta, M. (Co-researcher), Thomas, K. (Co-researcher), Wharton, J. (Co-researcher), Illison, T. (Co-researcher) & Webb, J. (Co-researcher)
01/10/20 → 30/09/24
Project: Research
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