Composition and fate of gas and oil released to the water column during the Deepwater Horizon oil spill
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Open Access
- 18 July 2011
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 109 (50) , 20229-20234
- https://doi.org/10.1073/pnas.1101242108
Abstract
Quantitative information regarding the endmember composition of the gas and oil that flowed from the Macondo well during the Deepwater Horizon oil spill is essential for determining the oil flow rate, total oil volume released, and trajectories and fates of hydrocarbon components in the marine environment. Using isobaric gas-tight samplers, we collected discrete samples directly above the Macondo well on June 21, 2010, and analyzed the gas and oil. We found that the fluids flowing from the Macondo well had a gas-to-oil ratio of 1,600 standard cubic feet per petroleum barrel. Based on the measured endmember gas-to-oil ratio and the Federally estimated net liquid oil release of 4.1 million barrels, the total amount of C1-C5 hydrocarbons released to the water column was 1.7 × 1011 g. The endmember gas and oil compositions then enabled us to study the fractionation of petroleum hydrocarbons in discrete water samples collected in June 2010 within a southwest trending hydrocarbon-enriched plume of neutrally buoyant water at a water depth of 1,100 m. The most abundant petroleum hydrocarbons larger than C1-C5 were benzene, toluene, ethylbenzene, and total xylenes at concentrations up to 78 μg L-1. Comparison of the endmember gas and oil composition with the composition of water column samples showed that the plume was preferentially enriched with water-soluble components, indicating that aqueous dissolution played a major role in plume formation, whereas the fates of relatively insoluble petroleum components were initially controlled by other processes.Keywords
This publication has 23 references indexed in Scilit:
- Acoustic measurement of the Deepwater Horizon Macondo well flow rateProceedings of the National Academy of Sciences, 2011
- Atmospheric emissions from the Deepwater Horizon spill constrain air-water partitioning, hydrocarbon fate, and leak rateGeophysical Research Letters, 2011
- Magnitude and oxidation potential of hydrocarbon gases released from the BP oil well blowoutNature Geoscience, 2011
- Fate of Dispersants Associated with the Deepwater Horizon Oil SpillEnvironmental Science & Technology, 2011
- Methane flux to the atmosphere from the Deepwater Horizon oil disasterGeophysical Research Letters, 2011
- Propane Respiration Jump-Starts Microbial Response to a Deep Oil SpillScience, 2010
- Abiogenic formation of alkanes in the Earth's crust as a minor source for global hydrocarbon reservoirsNature, 2002
- Study of 22-Year-Old Arrow Oil Samples Using Biomarker Compounds by GC/MSEnvironmental Science & Technology, 1994
- Evaluating a mass transfer model for the dissolution of organics from oil films into waterWater Research, 1983
- Physical-chemical weathering of petroleum hydrocarbons from the IXTOC I blowout: chemical measurements and a weathering modelEnvironmental Science & Technology, 1982