218
Remsen A, Daly K, Kramer K (2015) Plankton and particle response during the Deepwater
Horizon oil spill: observations from the SIPPER imaging system. NOAA NRDA Report
Reuscher MG, Baguley JG, Conrad-Forrest N, Cooksey C, Hyland JL, Lewis C, Montagna
PA, Ricker RW, Rohal M, Washburn T (2017) Temporal patterns of the Deepwater Horizon
impacts on the benthic infauna of the northern Gulf of Mexico continental slope. PLoS One
12(6):e0179923. https://doi.org/10.1371/journalpone.0179923
Riley GA (1963) Organic aggregates in seawater and the dynamics of their formation and utilization. Limnol Oceanogr 8:372–381
Romero IC, Toro-Farmer G, Diercks A-R, Schwing P, Muller-Karger F, Murawski S, Hollander DJ
(2017) Large-scale deposition of weathered oil in the Gulf of Mexico following a deep-water
oil spill. Environ Pollut 228:179–189
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
Salazar G, Cornejo-Castillo FM, Borrull E, Díez-Vives C, Lara E, Vaqué D, Arrieta JM, Duarte
CM, Gasol JM, Acinas SG (2015) Particle-association lifestyle is a phylogenetically conserved
trait in bathypelagic prokaryotes. Mol Ecol 24:5692–5706
Schwing PT, O’Malley BJ, Hollander DJ (2018) Resilience of Benthic Foraminifera in the
Northern Gulf of Mexico following the Deepwater Horizon event (2011–2015). Ecol Indic
84:753–764. https://doi.org/10.1016/j.ecolind.2017.09.044
Schwing PT, Brooks GR, Larson RA, Holmes CW, O’Malley BJ, Hollander DJ (2017) Constraining
the spatial extent of the Marine Oil Snow Sedimentation and Accumulation (MOSSFA) following the DWH event using a
210 Pb xs inventory approach. Environ Sci Technol 51:5962–5968.
https://doi.org/10.1021/acs.est.7b00450
Schwing PT, Romero IC, Brooks GR, Hastings DW, Larson RA, Hollander DJ (2015) A decline
in Deep-Sea benthic foraminifera following the Deepwater Horizon event in the Northeastern
Gulf of Mexico. PLOSone 10(3):e0120565. https://doi.org/10.1371/journal.pone.0120565
Silver M (2015) Marine snow: a brief historical sketch. Limnol Oceanogr Bull 24:5–10
Silver MW, Gowing MM (1991) The “particle” flux: origins and biological components. Prog
Oceanogr 26:75–113
Silver MW, Shanks AL, Trent JD (1978) Marine snow: microplankton habitat and source of smallscale patchiness in pelagic populations. Science 201:371–373
Sterling MC, Bonner JS, Ernest ANS, Page CA, Autenrieth RL (2005) Application of fractal flocculation and vertical transport model to aquatic sol– sediment systems. Water Res 39:1818–1830
Sterling MC, Bonner JS, Ernest AN, Page CA, Autenrieth RL (2004) Characterizing aquatic sediment–oil aggregates using in situ instruments. Mar Pollut Bull 48:533–542
Stoffyn-Egli P, Lee K (2003) Formation and characterization of oil-mineral aggregates. Spill Sci
Technol Bull 8:31–44
Stout SA, Payne JR (2016a) Macondo oil in deep-sea sediments: part 1 – sub-sea weathering of oil
deposited on the seafloor. Mar Pollut Bull 108:365–380
Stout SA, Payne JR (2016b) Chemical composition of floating and sunken in-situ burn residues
from the Deepwater Horizon oil spill. Mar Pollut Bull 111:186–202
Stout SA, German CR (2015) Characterization and Flux of Marine Oil Snow in the Viosca
Knoll (Lophelia Reef) Area Due to the Deepwater Horizon Oil Spill Newfields, Rockland
Massachusetts
Suja LD, Summers S, Gutierrez T (2017) Role of EPS, dispersant and nutrients on the microbial response and MOS formation in the subarctic Northeast Atlantic. Front Microbiol 8:676.
https://doi.org/10.3389/fmicb.2017.00676
Sun J, Khelifa A, Zhao C, Zhao D, Wang Z (2014) Laboratory investigation of oil–suspended particulate matter aggregation under different mixing conditions. Sci Total Environ 473:742–749
Sun J, Zhao D, Zhao C, Liu F, Zheng X (2013) Investigation of the kinetics of oil–suspended
particulate matter aggregation. Mar Pollut Bull 76:250–257. https://doi.org/10.1016/j.
marpolbul.2013.08.030
A. Quigg et al.
Remsen A, Daly K, Kramer K (2015) Plankton and particle response during the Deepwater
Horizon oil spill: observations from the SIPPER imaging system. NOAA NRDA Report
Reuscher MG, Baguley JG, Conrad-Forrest N, Cooksey C, Hyland JL, Lewis C, Montagna
PA, Ricker RW, Rohal M, Washburn T (2017) Temporal patterns of the Deepwater Horizon
impacts on the benthic infauna of the northern Gulf of Mexico continental slope. PLoS One
12(6):e0179923. https://doi.org/10.1371/journalpone.0179923
Riley GA (1963) Organic aggregates in seawater and the dynamics of their formation and utilization. Limnol Oceanogr 8:372–381
Romero IC, Toro-Farmer G, Diercks A-R, Schwing P, Muller-Karger F, Murawski S, Hollander DJ
(2017) Large-scale deposition of weathered oil in the Gulf of Mexico following a deep-water
oil spill. Environ Pollut 228:179–189
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
Salazar G, Cornejo-Castillo FM, Borrull E, Díez-Vives C, Lara E, Vaqué D, Arrieta JM, Duarte
CM, Gasol JM, Acinas SG (2015) Particle-association lifestyle is a phylogenetically conserved
trait in bathypelagic prokaryotes. Mol Ecol 24:5692–5706
Schwing PT, O’Malley BJ, Hollander DJ (2018) Resilience of Benthic Foraminifera in the
Northern Gulf of Mexico following the Deepwater Horizon event (2011–2015). Ecol Indic
84:753–764. https://doi.org/10.1016/j.ecolind.2017.09.044
Schwing PT, Brooks GR, Larson RA, Holmes CW, O’Malley BJ, Hollander DJ (2017) Constraining
the spatial extent of the Marine Oil Snow Sedimentation and Accumulation (MOSSFA) following the DWH event using a
210 Pb xs inventory approach. Environ Sci Technol 51:5962–5968.
https://doi.org/10.1021/acs.est.7b00450
Schwing PT, Romero IC, Brooks GR, Hastings DW, Larson RA, Hollander DJ (2015) A decline
in Deep-Sea benthic foraminifera following the Deepwater Horizon event in the Northeastern
Gulf of Mexico. PLOSone 10(3):e0120565. https://doi.org/10.1371/journal.pone.0120565
Silver M (2015) Marine snow: a brief historical sketch. Limnol Oceanogr Bull 24:5–10
Silver MW, Gowing MM (1991) The “particle” flux: origins and biological components. Prog
Oceanogr 26:75–113
Silver MW, Shanks AL, Trent JD (1978) Marine snow: microplankton habitat and source of smallscale patchiness in pelagic populations. Science 201:371–373
Sterling MC, Bonner JS, Ernest ANS, Page CA, Autenrieth RL (2005) Application of fractal flocculation and vertical transport model to aquatic sol– sediment systems. Water Res 39:1818–1830
Sterling MC, Bonner JS, Ernest AN, Page CA, Autenrieth RL (2004) Characterizing aquatic sediment–oil aggregates using in situ instruments. Mar Pollut Bull 48:533–542
Stoffyn-Egli P, Lee K (2003) Formation and characterization of oil-mineral aggregates. Spill Sci
Technol Bull 8:31–44
Stout SA, Payne JR (2016a) Macondo oil in deep-sea sediments: part 1 – sub-sea weathering of oil
deposited on the seafloor. Mar Pollut Bull 108:365–380
Stout SA, Payne JR (2016b) Chemical composition of floating and sunken in-situ burn residues
from the Deepwater Horizon oil spill. Mar Pollut Bull 111:186–202
Stout SA, German CR (2015) Characterization and Flux of Marine Oil Snow in the Viosca
Knoll (Lophelia Reef) Area Due to the Deepwater Horizon Oil Spill Newfields, Rockland
Massachusetts
Suja LD, Summers S, Gutierrez T (2017) Role of EPS, dispersant and nutrients on the microbial response and MOS formation in the subarctic Northeast Atlantic. Front Microbiol 8:676.
https://doi.org/10.3389/fmicb.2017.00676
Sun J, Khelifa A, Zhao C, Zhao D, Wang Z (2014) Laboratory investigation of oil–suspended particulate matter aggregation under different mixing conditions. Sci Total Environ 473:742–749
Sun J, Zhao D, Zhao C, Liu F, Zheng X (2013) Investigation of the kinetics of oil–suspended
particulate matter aggregation. Mar Pollut Bull 76:250–257. https://doi.org/10.1016/j.
marpolbul.2013.08.030
A. Quigg et al.
