251
Liu G, Bracco A, Passow U (2018) The influence of mesoscale and submesoscale circulation
on sinking particles in the northern Gulf of Mexico. Elementa: science of the Anthropocene
6(1):36. https://doi.org/10.1525/elementa.292
McClintic MA, DeMaster DJ, Thomas CJ, Smith CR (2008) Testing the FOODBANCS hypothesis: seasonal variations in near-bottom particle flux, bioturbation intensity, and deposit feeding based on
234 Th measurements. Deep Sea Res Part II: Topical Studies in Oceanography
55(22–23):2425–2437
Milliman JD (1974) Marine carbonates. Springer-Verlag, New York
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 and
effects. Springer, Cham
Passow U (2016) Formation of rapidly-sinking, oil-associated marine snow. Deep Sea Res Part II:
Topical Studies in Oceanography,. The Gulf of Mexico Ecosystem – before, during and after
the Macondo Blowout 129:232–240. https://doi.org/10.1016/j.dsr2.2014.10.001
Passow U, Hetland R (2016) What happened to all of the oil? Oceanography 29:88–95. https://doi.
org/10.5670/oceanog.2016.73
Passow U, Ziervogel K, Asper VL, Diercks AR (2012) Marine snow formation in the aftermath of
the Deepwater horizon oil spill in the Gulf of Mexico. Environ Res Lett 7:035301. https://doi.
org/10.1088/1748-9326/7/3/035301
Pope RH, Demaster JD, Smith CR, Seltmann H (1996) Rapid bioturbation in equatorial Pacific
sediments: evidence from excess
234 Th measurements. Deep-Sea Res II Top Stud Oceanogr
43:1339–1364
Quigg A, Passow U, Hollander DJ, Daly KL, Burd A, Schwing PT, Lee K (2020) Formation and
sinking of MOSSFA (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 and effects. Springer, Cham
Romero IC, Schwing PT, Brooks GR, Larson RA, Hastings DW, Ellis GE, 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
Romero IC, Toro-Farmer G, Diercks AR, Schwing PT, Muller-Karger F, Murawski S, Hollander
DJ (2017) Large scale deposition of weathered oil in the Gulf of Mexico following a Deepwater
oil spill. Environ Pollut 228:179–189. https://doi.org/10.1016/j.envpol.2017.05.019
Romero IC, Chanton JP, Rosenheim BE, Radović J, Schwing PT, Hollander DJ, Larter SR,
Oldenburg TBP (2020) Long-term preservation of oil spill events in sediments: the case for
the Deepwater Horizon Spill in the Northern Gulf of Mexico (Chap. 17). In: Murawski SA,
Ainsworth C, Gilbert S, Hollander D, Paris CB, Schlüter M, Wetzel D (eds) Deep oil spills:
facts, fate and effects. Springer, Cham
Sadler P (1981) Sedimentation rates and the completeness of stratigraphic sections. J Geol
89:569–584
Schwing PT, Machain Castillo ML (2020) Impact and resilience of benthic foraminifera in the
aftermath of the Deepwater Horizon and Ixtoc 1 oil spills (Chap. 23). In: Murawski SA,
Ainsworth C, Gilbert S, Hollander D, Paris CB, Schlüter M, Wetzel D (eds) Deep oil spills:
facts, fate and effects. Springer, Cham
Schwing PT, Romero IC, Larson RA, O'Malley BJ, Fridrik EE, Goddard EA, Brooks GR, Hastings
DW, Rosenheim BE, Hollander DJ, Grant G, Mulhollan J (2016) Sediment Core extrusion
method at millimeter resolution using a calibrated, threaded-rod. J Vis Exp 114:e54363. https://
doi.org/10.3791/54363
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
14 Characterization of the Sedimentation Associated with the Deepwater Horizon…
Liu G, Bracco A, Passow U (2018) The influence of mesoscale and submesoscale circulation
on sinking particles in the northern Gulf of Mexico. Elementa: science of the Anthropocene
6(1):36. https://doi.org/10.1525/elementa.292
McClintic MA, DeMaster DJ, Thomas CJ, Smith CR (2008) Testing the FOODBANCS hypothesis: seasonal variations in near-bottom particle flux, bioturbation intensity, and deposit feeding based on
234 Th measurements. Deep Sea Res Part II: Topical Studies in Oceanography
55(22–23):2425–2437
Milliman JD (1974) Marine carbonates. Springer-Verlag, New York
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 and
effects. Springer, Cham
Passow U (2016) Formation of rapidly-sinking, oil-associated marine snow. Deep Sea Res Part II:
Topical Studies in Oceanography,. The Gulf of Mexico Ecosystem – before, during and after
the Macondo Blowout 129:232–240. https://doi.org/10.1016/j.dsr2.2014.10.001
Passow U, Hetland R (2016) What happened to all of the oil? Oceanography 29:88–95. https://doi.
org/10.5670/oceanog.2016.73
Passow U, Ziervogel K, Asper VL, Diercks AR (2012) Marine snow formation in the aftermath of
the Deepwater horizon oil spill in the Gulf of Mexico. Environ Res Lett 7:035301. https://doi.
org/10.1088/1748-9326/7/3/035301
Pope RH, Demaster JD, Smith CR, Seltmann H (1996) Rapid bioturbation in equatorial Pacific
sediments: evidence from excess
234 Th measurements. Deep-Sea Res II Top Stud Oceanogr
43:1339–1364
Quigg A, Passow U, Hollander DJ, Daly KL, Burd A, Schwing PT, Lee K (2020) Formation and
sinking of MOSSFA (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 and effects. Springer, Cham
Romero IC, Schwing PT, Brooks GR, Larson RA, Hastings DW, Ellis GE, 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
Romero IC, Toro-Farmer G, Diercks AR, Schwing PT, Muller-Karger F, Murawski S, Hollander
DJ (2017) Large scale deposition of weathered oil in the Gulf of Mexico following a Deepwater
oil spill. Environ Pollut 228:179–189. https://doi.org/10.1016/j.envpol.2017.05.019
Romero IC, Chanton JP, Rosenheim BE, Radović J, Schwing PT, Hollander DJ, Larter SR,
Oldenburg TBP (2020) Long-term preservation of oil spill events in sediments: the case for
the Deepwater Horizon Spill in the Northern Gulf of Mexico (Chap. 17). In: Murawski SA,
Ainsworth C, Gilbert S, Hollander D, Paris CB, Schlüter M, Wetzel D (eds) Deep oil spills:
facts, fate and effects. Springer, Cham
Sadler P (1981) Sedimentation rates and the completeness of stratigraphic sections. J Geol
89:569–584
Schwing PT, Machain Castillo ML (2020) Impact and resilience of benthic foraminifera in the
aftermath of the Deepwater Horizon and Ixtoc 1 oil spills (Chap. 23). In: Murawski SA,
Ainsworth C, Gilbert S, Hollander D, Paris CB, Schlüter M, Wetzel D (eds) Deep oil spills:
facts, fate and effects. Springer, Cham
Schwing PT, Romero IC, Larson RA, O'Malley BJ, Fridrik EE, Goddard EA, Brooks GR, Hastings
DW, Rosenheim BE, Hollander DJ, Grant G, Mulhollan J (2016) Sediment Core extrusion
method at millimeter resolution using a calibrated, threaded-rod. J Vis Exp 114:e54363. https://
doi.org/10.3791/54363
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
14 Characterization of the Sedimentation Associated with the Deepwater Horizon…
