232
Langenhoff AM, Rahsepar S, van Eenennaam JS, Radović JR, Oldenburg TBP, Foekema E, Murk
AJ (2020) Effect of marine snow on microbial oil degradation (Chap. 18). In: Murawski SA,
Ainsworth C, Gilbert S, Hollander D, Paris CB, Schlüter M, Wetzel D (eds) Deep oil spills:
facts, fate, effects. Springer, Cham
Larson RA, Brooks GR, Schwing PT, Diercks AR, Holmes CW, Chanton JP, Diaz-Asencio M,
Hollander DJ (2020) Characterization of the sedimentation associated with the Deepwater
Horizon blowout: depositional pulse, initial response, and stabilization (Chap. 14). In:
Murawski SA, Ainsworth C, Gilbert S, Hollander D, Paris CB, Schlüter M, Wetzel D (eds)
Deep oil spills: facts, fate, effects. Springer, Cham
Larson RA, Brooks GR, Schwing PT, Carter S, Hollander DJ (2018) High resolution investigation of event-driven sedimentation: Northeastern Gulf of Mexico. Anthropocene, 24, 40–50,
10.1016/j.ancene.2018.11.002.
Lee JJ, Schwing PT, Romero IC, Brooks GR, Larson RA, Overholt WA, Kostka JE, Hollander DJ
(2018) Elevated rates of biogenic silica deposition during the Deepwater Horizon oil spill, Gulf
of Mexico. In: Proceedings of the Gulf of Mexico oil spill and ecosystem science conference,
New Orleans
Lincoln SA, Radović JR, Gracia A, Jaggi A, Oldenburg TBP, Larter SR, Freeman KH (2020)
Molecular legacy of the 1979 Ixtoc 1 oil spill in deep-sea sediments of the southern Gulf of
Mexico (Chap. 19). In: Murawski SA, Ainsworth C, Gilbert S, Hollander D, Paris CB, Schlüter
M, Wetzel D (eds) Deep oil spills: facts, fate, effects. Springer, Cham
Mason OU, Scott NM, Gonzalez A, Robbins-Pianka A, Bælum J, Kimbrel J, Bouskill NJ, Prestat
E, Borglin S, Joyner DC, Fortney JL, Jurelevicius D, Stringfellow WT, Alvarex-Cohen L,
Hazen TC, Knight R, Gilbert JA, Jansson JK (2014) Metagenomics reveals sediment microbial community response to Deepwater Horizon oil spill. ISME J 8(7):1464–1475. https://doi.
org/10.1038/ismej.2013.254
McNutt MK, Camilli R, Crone TJ, Guthrie GD, Hsieh PA, Ryerson TB, Savas O, Shaffer F
(2012) Review of flow rate estimates of the Deepwater Horizon oil spill. Proc Natl Acad Sci
109:20260–20267. https://doi.org/10.1073/pnas.1112139108
Montagna PA, Girard F (2020) Deep-sea benthic faunal impacts and community evolution before,
during and after the Deepwater Horizon event (Chap. 22). In: Murawski SA, Ainsworth C,
Gilbert S, Hollander D, Paris CB, Schlüter M, Wetzel D (eds) Deep oil spills: facts, fate,
effects. Springer, Cham
Montagna PA, Baguley JG, Cooksey C, Hartwell I, Hyde LJ, Hyland JL, Kalke RD, Kracker LM,
Reuscher M, Rhodes ACE (2013) Deep-Sea benthic footprint of the Deepwater Horizon blowout. PLoS One 8(8):e70540. https://doi.org/10.1371/journal.pone.0070540
Passow U (2014) Formation of rapidly-sinking, oil-associated marine snow. Deep-Sea Res II
129:232–240. https://doi.org/10.1016/j.dsr2.2014.10.001
Passow U, Ziervogel K (2016) Marine snow sedimented oil released during the Deepwater Horizon
spill. Oceanography 29(3):118–125. https://doi.org/10.5670/oceanog.2016.76
Passow U, Ziervogel K, Asper V, Diercks A (2012) Marine snow formation in the aftermath of the
Deepwater Horizon oil spill in the Gulf of Mexico. Environ Res Lett 7:035301
Quigg A, Passow U, Daly KL, Burd A, Hollander DJ, Schwing PT, Lee K (2020) (Marine oil snow
sedimentation and flocculent accumulation) events: past and present (Chap. 12). In: Murawski
SA, Ainsworth C, Gilbert S, Hollander D, Paris CB, Schlüter M, Wetzel D (eds) Deep oil spills:
facts, fate, effects. Springer, Cham
Radović JR, Jaggi A, Silva RC, Snowdon R, Waggoner DC, Hatcher PG, Larter SR, Oldenburg
TBP (2020) Applications of FTICR-MS in oil spill studies (Chap. 15). In: Murawski SA,
Ainsworth C, Gilbert S, Hollander D, Paris CB, Schlüter M, Wetzel D (eds) Deep oil spills:
facts, fate, effects. Springer, Cham
Romero IC, Schwing PT, Brooks GR, Larson RA, Hastings DW, Ellis G, Goddard EA, Hollander
DJ (2015) Hydrocarbons in Deep-Sea sediments following the 2010 Deepwater Horizon
blowout in the Northeast Gulf of Mexico. PLoS One 10(5):e0128371. https://doi.org/10.1371/
journal.pone.0128371
P. T. Schwing et al.
Langenhoff AM, Rahsepar S, van Eenennaam JS, Radović JR, Oldenburg TBP, Foekema E, Murk
AJ (2020) Effect of marine snow on microbial oil degradation (Chap. 18). In: Murawski SA,
Ainsworth C, Gilbert S, Hollander D, Paris CB, Schlüter M, Wetzel D (eds) Deep oil spills:
facts, fate, effects. Springer, Cham
Larson RA, Brooks GR, Schwing PT, Diercks AR, Holmes CW, Chanton JP, Diaz-Asencio M,
Hollander DJ (2020) Characterization of the sedimentation associated with the Deepwater
Horizon blowout: depositional pulse, initial response, and stabilization (Chap. 14). In:
Murawski SA, Ainsworth C, Gilbert S, Hollander D, Paris CB, Schlüter M, Wetzel D (eds)
Deep oil spills: facts, fate, effects. Springer, Cham
Larson RA, Brooks GR, Schwing PT, Carter S, Hollander DJ (2018) High resolution investigation of event-driven sedimentation: Northeastern Gulf of Mexico. Anthropocene, 24, 40–50,
10.1016/j.ancene.2018.11.002.
Lee JJ, Schwing PT, Romero IC, Brooks GR, Larson RA, Overholt WA, Kostka JE, Hollander DJ
(2018) Elevated rates of biogenic silica deposition during the Deepwater Horizon oil spill, Gulf
of Mexico. In: Proceedings of the Gulf of Mexico oil spill and ecosystem science conference,
New Orleans
Lincoln SA, Radović JR, Gracia A, Jaggi A, Oldenburg TBP, Larter SR, Freeman KH (2020)
Molecular legacy of the 1979 Ixtoc 1 oil spill in deep-sea sediments of the southern Gulf of
Mexico (Chap. 19). In: Murawski SA, Ainsworth C, Gilbert S, Hollander D, Paris CB, Schlüter
M, Wetzel D (eds) Deep oil spills: facts, fate, effects. Springer, Cham
Mason OU, Scott NM, Gonzalez A, Robbins-Pianka A, Bælum J, Kimbrel J, Bouskill NJ, Prestat
E, Borglin S, Joyner DC, Fortney JL, Jurelevicius D, Stringfellow WT, Alvarex-Cohen L,
Hazen TC, Knight R, Gilbert JA, Jansson JK (2014) Metagenomics reveals sediment microbial community response to Deepwater Horizon oil spill. ISME J 8(7):1464–1475. https://doi.
org/10.1038/ismej.2013.254
McNutt MK, Camilli R, Crone TJ, Guthrie GD, Hsieh PA, Ryerson TB, Savas O, Shaffer F
(2012) Review of flow rate estimates of the Deepwater Horizon oil spill. Proc Natl Acad Sci
109:20260–20267. https://doi.org/10.1073/pnas.1112139108
Montagna PA, Girard F (2020) Deep-sea benthic faunal impacts and community evolution before,
during and after the Deepwater Horizon event (Chap. 22). In: Murawski SA, Ainsworth C,
Gilbert S, Hollander D, Paris CB, Schlüter M, Wetzel D (eds) Deep oil spills: facts, fate,
effects. Springer, Cham
Montagna PA, Baguley JG, Cooksey C, Hartwell I, Hyde LJ, Hyland JL, Kalke RD, Kracker LM,
Reuscher M, Rhodes ACE (2013) Deep-Sea benthic footprint of the Deepwater Horizon blowout. PLoS One 8(8):e70540. https://doi.org/10.1371/journal.pone.0070540
Passow U (2014) Formation of rapidly-sinking, oil-associated marine snow. Deep-Sea Res II
129:232–240. https://doi.org/10.1016/j.dsr2.2014.10.001
Passow U, Ziervogel K (2016) Marine snow sedimented oil released during the Deepwater Horizon
spill. Oceanography 29(3):118–125. https://doi.org/10.5670/oceanog.2016.76
Passow U, Ziervogel K, Asper V, Diercks A (2012) Marine snow formation in the aftermath of the
Deepwater Horizon oil spill in the Gulf of Mexico. Environ Res Lett 7:035301
Quigg A, Passow U, Daly KL, Burd A, Hollander DJ, Schwing PT, Lee K (2020) (Marine oil snow
sedimentation and flocculent accumulation) events: past and present (Chap. 12). In: Murawski
SA, Ainsworth C, Gilbert S, Hollander D, Paris CB, Schlüter M, Wetzel D (eds) Deep oil spills:
facts, fate, effects. Springer, Cham
Radović JR, Jaggi A, Silva RC, Snowdon R, Waggoner DC, Hatcher PG, Larter SR, Oldenburg
TBP (2020) Applications of FTICR-MS in oil spill studies (Chap. 15). In: Murawski SA,
Ainsworth C, Gilbert S, Hollander D, Paris CB, Schlüter M, Wetzel D (eds) Deep oil spills:
facts, fate, effects. Springer, Cham
Romero IC, Schwing PT, Brooks GR, Larson RA, Hastings DW, Ellis G, Goddard EA, Hollander
DJ (2015) Hydrocarbons in Deep-Sea sediments following the 2010 Deepwater Horizon
blowout in the Northeast Gulf of Mexico. PLoS One 10(5):e0128371. https://doi.org/10.1371/
journal.pone.0128371
P. T. Schwing et al.
