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Biogenic methane production in formation waters from a large gas field in the North Sea
Authors:Neil D. Gray  Angela Sherry  Stephen R. Larter  Michael Erdmann  Juliette Leyris  Turid Liengen  Janiche Beeder  Ian M. Head
Affiliation:(1) School of Civil Engineering and Geosciences, Newcastle University, Newcastle upon Tyne, NE1 7RU, UK;(2) Institute for Research on Environment and Sustainability, Newcastle University, Newcastle upon Tyne, NE1 7RU, UK;(3) Geology and Geophysics, University of Calgary, 844 Campus Place, NW, Calgary, AB, T2N 1N4, Canada;(4) StatoilHydro, Research Centre Bergen, P.O. 7200, 5020 Bergen, Norway;(5) StatoilHydro, Research Centre Porsgrunn, P. O. Box 2560, 3907 Porsgrunn, Norway
Abstract:Methanogenesis was investigated in formation waters from a North Sea oil rimmed gas accumulation containing biodegraded oil, which has not been subject to seawater injection. Activity and growth of hydrogenotrophic methanogens was measured but acetoclastic methanogenesis was not detected. Hydrogenotrophic methanogens showed activity between 40 and 80°C with a temperature optimum (ca. 70°C) consistent with in situ reservoir temperatures. They were also active over a broad salinity range, up to and consistent with the high salinity of the waters (90 g l−1). These findings suggest the methanogens are indigenous to the reservoir. The conversion of H2 and CO2 to CH4 in methanogenic enrichments was enhanced by the addition of inorganic nutrients and was correlated with cell growth. Addition of yeast extract also stimulated methanogenesis. Archaeal 16S rRNA gene sequences recovered from enrichment cultures were closely related to Methanothermobacter spp. which have been identified in other high-temperature petroleum reservoirs. It has recently been suggested that methanogenic oil degradation may be a major factor in the development of the world’s heavy oils and represent a significant and ongoing process in conventional deposits. Although an oil-degrading methanogenic consortium was not enriched from these samples the presence and activity of communities of fermentative bacteria and methanogenic archaea was demonstrated. Stimulation of methanogenesis by addition of nutrients suggests that in situ methanogenic biodegradation of oil could be harnessed to enhance recovery of stranded energy assets from such petroleum systems.
Keywords:(Extreme) thermophilic microorganisms and their enzymology  Thermophile ecology  Anaerobic bacteria  Archaea  Methanogens  Marine thermophiles and hyperthermophiles  Metabolism  Methanogenesis
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