A Persistent Oxygen Anomaly Reveals the Fate of Spilled Methane in the Deep Gulf of Mexico
Top Cited Papers
- 21 January 2011
- journal article
- other
- Published by American Association for the Advancement of Science (AAAS) in Science
- Vol. 331 (6015) , 312-315
- https://doi.org/10.1126/science.1199697
Abstract
Methane was the most abundant hydrocarbon released during the 2010 Deepwater Horizon oil spill in the Gulf of Mexico. Beyond relevancy to this anthropogenic event, this methane release simulates a rapid and relatively short-term natural release from hydrates into deep water. Based on methane and oxygen distributions measured at 207 stations throughout the affected region, we find that within ~120 days from the onset of release ~3.0 × 1010 to 3.9 × 1010 moles of oxygen were respired, primarily by methanotrophs, and left behind a residual microbial community containing methanotrophic bacteria. We suggest that a vigorous deepwater bacterial bloom respired nearly all the released methane within this time, and that by analogy, large-scale releases of methane from hydrate in the deep ocean are likely to be met by a similarly rapid methanotrophic response.Keywords
Funding Information
- National Science Foundation (OCE 1042650, OCE 0849246, OCE 1042097, OCE 0961725)
- U.S. Department of Energy (DE-NT0005667)
This publication has 19 references indexed in Scilit:
- Methane flux to the atmosphere from the Deepwater Horizon oil disasterGeophysical Research Letters, 2011
- Magnitude of the 2010 Gulf of Mexico Oil LeakScience, 2010
- Tracking Hydrocarbon Plume Transport and Biodegradation at Deepwater HorizonScience, 2010
- Propane Respiration Jump-Starts Microbial Response to a Deep Oil SpillScience, 2010
- Planktonic and Sediment-Associated Aerobic Methanotrophs in Two Seep Systems along the North American MarginApplied and Environmental Microbiology, 2008
- Basin-wide estimates of the input of methane from seeps and clathrates to the Black SeaEarth and Planetary Science Letters, 2006
- The HITRAN 2004 molecular spectroscopic databaseJournal of Quantitative Spectroscopy and Radiative Transfer, 2005
- The Source and Fate of Massive Carbon Input During the Latest Paleocene Thermal MaximumScience, 1999
- Dissociation of oceanic methane hydrate as a cause of the carbon isotope excursion at the end of the PaleocenePaleoceanography and Paleoclimatology, 1995
- Methane oxidation and methane fluxes in the ocean surface layer and deep anoxic watersNature, 1987