Sunlight-driven dissolution is a major fate of oil at sea

Author:

Freeman Danielle Haas12ORCID,Ward Collin P.1ORCID

Affiliation:

1. Department of Marine Chemistry and Geochemistry, Woods Hole Oceanographic Institution, Woods Hole, MA 02543, USA.

2. Department of Civil and Environmental Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

Abstract

Oxygenation reactions initiated by sunlight can transform insoluble components of crude oil at sea into water-soluble products, a process called photo-dissolution. First reported a half century ago, photo-dissolution has never been included in spill models because key parameters required for rate modeling were unknown, including the wavelength and photon dose dependence. Here, we experimentally quantified photo-dissolution as a function of wavelength and photon dose, making possible a sensitivity analysis of environmental variables in hypothetical spill scenarios and a mass balance assessment for the 2010 Deepwater Horizon (DwH) spill. The sensitivity analysis revealed that rates were most sensitive to oil slick thickness, season/latitude, and wavelength and less sensitive to photon dose. We estimate that 3 to 17% (best estimate 8%) of DwH surface oil was subject to photo-dissolution, comparable in magnitude to other widely recognized fate processes. Our findings invite a critical reevaluation of surface oil budgets for both DwH and future spills at sea.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

Reference72 articles.

1. Photochemistry of petroleum in water

2. How the 2010 Deepwater Horizon spill reshaped our understanding of crude oil photochemical weathering at sea: A past, present, and future perspective;Ward C. P.;Environ. Sci.,2020

3. Photochemistry of Petroleum

4. E. B. Overton J. L. Laseter S. W. Mascarella C. Raschke I. Nuiry J. W. Farrington Photo-chemical oxidation of IXTOC-I oil. In: Proceedings of a Symposium on Preliminary Results from the September 1979 Researcher/Pierce IXTOC I Cruise. Key Biscayne Florida June 9–10 1980 (Office of Marine Pollution Assessment National Oceanic and Atmospheric Administration U.S. Dept. of Commerce 1980) pp. 341–383.

5. Partial Photochemical Oxidation Was a Dominant Fate of Deepwater Horizon Surface Oil

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