298
Louvado A, Gomes NCM, Simões MMQ, Almeida A, Cleary DFR, Cunha A (2015) Polycyclic
aromatic hydrocarbons in deep sea sediments : microbe – pollutant interactions in a remote
environment. Sci Total Environ 526:312–328. https://doi.org/10.1016/j.scitotenv.2015.04.048
McNichol AP, Aluwihare LI (2007) The power of radiocarbon in biogeochemical studies of the
marine carbon cycle: insights from studies of dissolved and particulate organic carbon (DOC
and POC). Chem Rev 107:443–466. https://doi.org/10.1021/cr050374g
Nomaki H, Heinz P, Nakatsuka T, Shimanaga M, Ohkouchi N, Ogawa NO, Kogure K, Ikemoto
E, Kitazato H (2006) Different ingestion patterns of 13C-labeled bacteria and algae by deepsea benthic foraminifera. Mar Ecol Prog Ser 310:95–108. https://doi.org/10.3354/meps310095
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. https://doi.
org/10.1088/1748-9326/7/3/035301
Pearson A, Ingalls AE (2013) Assessing the use of archaeal lipids as marine environmental proxies. Annu Rev Earth Planet Sci 41:359–384
Pendergraft MA, Rosenheim BE (2014) Varying relative degradation rates of oil in different forms
and environments revealed by ramped pyrolysis. Environ Sci Technol 48:10966–10974. https://
doi.org/10.1021/es501354c
Pendergraft MA, Dincer Z, Sericano JL, Wade TL, Kolasinski J, Rosenheim BE (2013) Linking
ramped pyrolysis isotope data to oil content through PAH analysis. Environ Res Lett 8(4):1–11.
https://doi.org/10.1088/1748-9326/8/4/044038
Radović JR, Silva RC, Snowdon R, Larter SR, Oldenburg TBP (2016a) Rapid screening of glycerol ether lipid biomarkers in recent marine sediment using atmospheric pressure photoionization in positive mode fourier transform ion cyclotron resonance mass spectrometry. Anal Chem
88:1128–1137. https://doi.org/10.1021/acs.analchem.5b02571
Radović JR, Silva RC, Snowdon RW, Brown M, Larter S, Oldenburg TBP (2016b) A rapid method
to assess a broad inventory of organic species in marine sediments using ultra-high resolution
mass spectrometry. Rapid Commun Mass Spectrom 30:1273–1282. https://doi.org/10.1002/
rcm.7556
Romero IC, Schwing PT, Brooks GR, Larson RA, Hastings DW, Flower BP, Goddard EA,
Hollander DJ (2015) Hydrocarbons in deep-sea sediments following the 2010 Deepwater
Horizon Blowout in the Northeast Gulf of Mexico. PLoS One 10:1–23. https://doi.org/10.1371/
journal.pone.0128371
Romero IC, Toro-Farmer G, Diercks A, 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. https://doi.org/10.1016/j.envpol.2017.05.019
Rosenheim BE, Day MB, Domack E, Schrum H, Benthien A, Hayes JM (2008) Antarctic sediment
chronology by programmed-temperature pyrolysis: methodology and data treatment. Geochem
Geophys Geosyst 9:1–16. https://doi.org/10.1029/2007GC001816
Rosenheim BE, Pendergraft MA, Flowers GC, Carney R, Sericano JL, Amer RM, Chanton J,
Dincer Z, Wade TL (2014) Employing extant stable carbon isotope data in Gulf of Mexico sedimentary organic matter for oil spill studies. Deep-Sea Res II Top Stud Oceanogr Elsevier:1–10.
https://doi.org/10.1016/j.dsr2.2014.03.020
Rosenheim BE, Pendergraft MA, Flowers GC, Carney R, Sericano JL, Amer RM, Chanton J,
Dincer Z, Wade TL (2016) Employing extant stable carbon isotope data in Gulf of Mexico
sedimentary organic matter for oil spill studies. Deep-Sea Res II Top Stud Oceanogr 129:249–
258. https://doi.org/10.1016/j.dsr2.2014.03.020
Ruddy BM, Huettel M, Kostka JE, Lobodin VV, Bythell BJ, McKenna AM, Aeppli C, Reddy CM,
Nelson RK, Marshall AG, Rodgers RP (2014) Targeted petroleomics: analytical investigation
of Macondo well oil oxidation products from Pensacola Beach. Energy Fuel 28:4043–4050.
https://doi.org/10.1021/ef500427n
Ryerson TB, Camilli R, Kessler JD, Kujawinski EB, Reddy CM, Valentine DL, Atlas E, Blake DR,
de Gouw J, Meinardi S, Parrish DD, Peischl J, Seewald JS, Warneke C (2012) Chemical data
quantify Deepwater Horizon hydrocarbon flow rate and environmental distribution. Proc Natl
Acad Sci U S A 109:20246–20253. https://doi.org/10.1073/pnas.1110564109
I. C. Romero et al.
Précédent

- 308/617

Suivant