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Managing Microbial Corrosion in Canadian Offshore & Onshore Oil Production Operations

    Project Details

    Description

    What humans make, can disintegrate. Corrosion eats away at infrastructure, slowly but inexorably. In the oil and gas industry, corrosion is estimated to cost as much as US$3-7 billion each year. Corrosion due to microbial activity, or Microbiologically Influenced Corrosion (MIC), accounts for a large percentage of this. Not enough is known about how MIC occurs, primarily because it has been monitored by approaches that target only about 1 per cent of select microbial groups and because researchers have tended to study it in isolated disciplines, without integrating their findings.

    Genomics allow for a deeper understanding and a more holistic examination of MIC processes across disciplines, leading to better understanding and management of MIC in the oil and gas industry. The team has expertise in genomics, electrochemistry, degradation modeling, risk assessment and management. The project is developing practical applications to produce knowledge about MIC leading to the development of devices and assays, degradation and risk models, and management strategies to predict when, where and why MIC occurs.

    By integrating these deliverables into corrosion management frameworks and standards, their use will become widespread, leading to reduced oil spills (by helping to minimize pipeline leaks, for instance) and improved asset integrity worker safety and environmental compliance. They will also extend the productive life of Canada’s oil and gas infrastructure, reducing operating costs and allowing potential capital savings of some $300-500 million, or 10 per cent.

    More: https://wpsites.ucalgary.ca/microbial-corrosion/

    Layman's description

    Studies on biocorrosion in the Oil and Gas Industry and how to prevent it.
    Short titleGeno-MIC
    StatusFinished
    Effective start/end date01/01/1730/09/22

    Collaborative partners

    • VIA (lead)
    • University of Calgary (Project partner)
    • University of Alberta (Project partner)
    • Memorial University (Project partner)
    • OU Biocorrosion Center, Univeristy of Oklahoma (Project partner)
    • Alberta Innovates Technology Futures (Project partner)
    • Dalhousie University (Project partner)
    • Canmet Materials, NRCan (Project partner)
    • OSPMicrocheck (Project partner)
    • Enbridge (Project partner)
    • Suncor (offshore) (Project partner)
    • Dow (Project partner)
    • DNV GL (Project partner)
    • LuminUltra (Project partner)
    • PeroxyChem (Project partner)
    • GeromeCanada (Project partner)

    Keywords

    • technology, engineering and IT
    • MIC
    • biocorrosion
    • biokorrosion
    • biodegradation
    • energy systems
    • critical infrastructure

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