104
Loh A, Shim WJ, Ha SY, Yim UH (2014) Oil-suspended particulate matter aggregates: Formation
mechanism and fate in the marine environment. Ocean Sci J 49(4):329–341
MacDonald IR, Garcia-Pineda O, Beet A, Asl SD, Feng L, Graettinger G, French-McCay D,
Holmes J, Hu C, Huffer F (2015) Natural and unnatural oil slicks in the Gulf of Mexico.
J Geophys Res Oceans 120(12):8364–8380
Maltrud M, Peacock S, Visbeck M (2010) On the possible long-term fate of oil released in the
Deepwater Horizon incident, estimated using ensembles of dye release simulations. Environ
Res Lett 5(3):035301
Marietou A, Chastain R, Scoma A, Hazen TC, Bartlett DH (2018) The effect of hydrostatic pressure on enrichments of hydrocarbon degrading microbes from the Gulf of Mexico following
the Deepwater Horizon oil spill. Front Microbiol 9:808
McDonnell AM, Buesseler KO (2010) Variability in the average sinking velocity of marine particles. Limnol Oceanogr 55(5):2085–2096
McFarlin KM, Perkins MJ, Field JA, Leigh MB (2018) Biodegradation of crude oil and Corexit
9500 in arctic seawater. Front Microbiol 9:1788
Mille G, Munoz D, Jacquot F, Rivet L, Bertrand J-C (1998) The Amoco Cadiz oil spill: evolution
of petroleum hydrocarbons in the Ile Grande salt marshes (Brittany) after a 13-year period.
Estuar Coast Shelf Sci 47(5):547–559
Murray KJ, Boehm PD (2017) Towards an understanding of the evolution (Fate and Transport) of
the 2010 Deepwater Horizon oil spill. In: International oil spill conference proceedings, 2017.
International oil spill conference, pp 536–555
Murray KJ, Brown JS, Cook LL, Boehm PD (2017) Fingerprinting of weathered oil residues
from the Deepwater Horizon oil spill: the importance of multiple lines of investigation.
In: International oil spill conference proceedings, 2017. International oil spill conference,
pp 3051–3070
Neff JM, Bence AE, Parker KR, Page DS, Brown JS, Boehm PD (2006) Bioavailability of polycyclic aromatic hydrocarbons from buried shoreline oil residues thirteen years after the Exxon
Valdez oil spill: a multispecies assessment. Environ Toxicol Chem 25(4):947–961
Nguyen UT, Lincoln SA, Juárez AGV, Schedler M, Macalady JL, Müller R, Freeman KH (2018)
The influence of pressure on crude oil biodegradation in shallow and deep Gulf of Mexico sediments. PLoS One 13(7):e0199784
NOAA (2018a) Ekofisk Bravo oil field. https://incidentnews.noaa.gov/incident/6237. Accessed 19
Aug 2018
NOAA (2018b) Santa Barbara well blowout. https://incidentnews.noaa.gov/incident/6206#!513759.
Accessed 19 Aug 2018
Owens EH, Sergy GA (2003) The development of the SCAT process for the assessment of oiled
shorelines. Mar Pollut Bull 47(9–12):415–422
Page DS, Foster JC, Fickett PM, Gilfillan ES (1989) Long-term weathering of Amoco Cadiz oil
in soft intertidal sediments. In: International oil spill conference, 1989. American Petroleum
Institute, pp 401–405
Passow U (2016) Formation of rapidly-sinking, oil-associated marine snow. Deep Sea Res Part II
Top Stud Oceanogr 129:232–240. https://doi.org/10.1016/j.dsr2.2014.10.001
Poulsen M, Lemon L, Barker JF (1992) Dissolution of monoaromatic hydrocarbons into groundwater from gasoline-oxygenate mixtures. Environ Sci Technol 26(12):2483–2489
Prince RC (2015) Oil spill dispersants: boon or bane? Environ Sci Technol 49(11):6376–6384
Prince RC, Elmendorf DL, Lute JR, Hsu CS, Haith CE, Senius JD, Dechert GJ, Douglas GS,
Butler EL (1994) 17. alpha.(H)-21. beta.(H)-hopane as a conserved internal marker for estimating the biodegradation of crude oil. Environ Sci Technol 28(1):142–145
Prince RC, Garrett RM, Bare RE, Grossman MJ, Townsend T, Suflita JM, Lee K, Owens EH,
Sergy GA, Braddock JF (2003) The roles of photooxidation and biodegradation in long-term
weathering of crude and heavy fuel oils. Spill Sci Technol Bull 8(2):145–156
Prince RC, McFarlin KM, Butler JD, Febbo EJ, Wang FC, Nedwed TJ (2013) The primary biodegradation of dispersed crude oil in the sea. Chemosphere 90(2):521–526
K. J. Murray et al.
Loh A, Shim WJ, Ha SY, Yim UH (2014) Oil-suspended particulate matter aggregates: Formation
mechanism and fate in the marine environment. Ocean Sci J 49(4):329–341
MacDonald IR, Garcia-Pineda O, Beet A, Asl SD, Feng L, Graettinger G, French-McCay D,
Holmes J, Hu C, Huffer F (2015) Natural and unnatural oil slicks in the Gulf of Mexico.
J Geophys Res Oceans 120(12):8364–8380
Maltrud M, Peacock S, Visbeck M (2010) On the possible long-term fate of oil released in the
Deepwater Horizon incident, estimated using ensembles of dye release simulations. Environ
Res Lett 5(3):035301
Marietou A, Chastain R, Scoma A, Hazen TC, Bartlett DH (2018) The effect of hydrostatic pressure on enrichments of hydrocarbon degrading microbes from the Gulf of Mexico following
the Deepwater Horizon oil spill. Front Microbiol 9:808
McDonnell AM, Buesseler KO (2010) Variability in the average sinking velocity of marine particles. Limnol Oceanogr 55(5):2085–2096
McFarlin KM, Perkins MJ, Field JA, Leigh MB (2018) Biodegradation of crude oil and Corexit
9500 in arctic seawater. Front Microbiol 9:1788
Mille G, Munoz D, Jacquot F, Rivet L, Bertrand J-C (1998) The Amoco Cadiz oil spill: evolution
of petroleum hydrocarbons in the Ile Grande salt marshes (Brittany) after a 13-year period.
Estuar Coast Shelf Sci 47(5):547–559
Murray KJ, Boehm PD (2017) Towards an understanding of the evolution (Fate and Transport) of
the 2010 Deepwater Horizon oil spill. In: International oil spill conference proceedings, 2017.
International oil spill conference, pp 536–555
Murray KJ, Brown JS, Cook LL, Boehm PD (2017) Fingerprinting of weathered oil residues
from the Deepwater Horizon oil spill: the importance of multiple lines of investigation.
In: International oil spill conference proceedings, 2017. International oil spill conference,
pp 3051–3070
Neff JM, Bence AE, Parker KR, Page DS, Brown JS, Boehm PD (2006) Bioavailability of polycyclic aromatic hydrocarbons from buried shoreline oil residues thirteen years after the Exxon
Valdez oil spill: a multispecies assessment. Environ Toxicol Chem 25(4):947–961
Nguyen UT, Lincoln SA, Juárez AGV, Schedler M, Macalady JL, Müller R, Freeman KH (2018)
The influence of pressure on crude oil biodegradation in shallow and deep Gulf of Mexico sediments. PLoS One 13(7):e0199784
NOAA (2018a) Ekofisk Bravo oil field. https://incidentnews.noaa.gov/incident/6237. Accessed 19
Aug 2018
NOAA (2018b) Santa Barbara well blowout. https://incidentnews.noaa.gov/incident/6206#!513759.
Accessed 19 Aug 2018
Owens EH, Sergy GA (2003) The development of the SCAT process for the assessment of oiled
shorelines. Mar Pollut Bull 47(9–12):415–422
Page DS, Foster JC, Fickett PM, Gilfillan ES (1989) Long-term weathering of Amoco Cadiz oil
in soft intertidal sediments. In: International oil spill conference, 1989. American Petroleum
Institute, pp 401–405
Passow U (2016) Formation of rapidly-sinking, oil-associated marine snow. Deep Sea Res Part II
Top Stud Oceanogr 129:232–240. https://doi.org/10.1016/j.dsr2.2014.10.001
Poulsen M, Lemon L, Barker JF (1992) Dissolution of monoaromatic hydrocarbons into groundwater from gasoline-oxygenate mixtures. Environ Sci Technol 26(12):2483–2489
Prince RC (2015) Oil spill dispersants: boon or bane? Environ Sci Technol 49(11):6376–6384
Prince RC, Elmendorf DL, Lute JR, Hsu CS, Haith CE, Senius JD, Dechert GJ, Douglas GS,
Butler EL (1994) 17. alpha.(H)-21. beta.(H)-hopane as a conserved internal marker for estimating the biodegradation of crude oil. Environ Sci Technol 28(1):142–145
Prince RC, Garrett RM, Bare RE, Grossman MJ, Townsend T, Suflita JM, Lee K, Owens EH,
Sergy GA, Braddock JF (2003) The roles of photooxidation and biodegradation in long-term
weathering of crude and heavy fuel oils. Spill Sci Technol Bull 8(2):145–156
Prince RC, McFarlin KM, Butler JD, Febbo EJ, Wang FC, Nedwed TJ (2013) The primary biodegradation of dispersed crude oil in the sea. Chemosphere 90(2):521–526
K. J. Murray et al.
