216
Lee K, Lunel T, Wood P, Swannell R, Stoffyn-Egli P (1997) Shoreline cleanup by acceleration of
clay-oil flocculation processes. In International oil spill conference (1997, No. 1, pp 235–240).
American Petroleum Institute, Washington, DC
Lee K, Wong CS, Cretney WJ, Whitney FA, Parsons TR, Lalli C, Wu J (1985) Microbial response
to crude oil and Corexit 9527: SEAFLUXES enclosure study. Microb Ecol 11:337–351
Lee RF, Gardner WS, Anderson JW, Blaylock JW, Barwell-Clarke J (1978) Fate of polycyclic
aromatic hydrocarbons in controlled ecosystem enclosures. Environ Sci Technol 12:832–838
Lee RF, Anderson JW (1977) Fate and effect of naphthalenes: controlled ecosystem pollution
experiment. Bull Mar Sci 27:127–134
Le Floch S, Guyomarch J, Merlin FX, Stoffyn-Egli P, Dixon J, Lee K (2002) The influence of
salinity on oil–mineral aggregate formation. Spill Sci Technol Bull 8:65–71
Levine S, Bowen BD, Partridge SJ (1989) Stabilization of emulsions by fine particles II. capillary
and van der Waals forces between particles. Colloids Surf 38:345–364
Li Z, Lee K, King KT, Boufadel M, Venosa AD (2008) Assessment of chemical dispersant effectiveness in a wave tank under regular non-breaking and breaking wave conditions. Mar Pollut
Bull 56:903–912
Logan BE, Passow U, Alldredge AL, Grossart H-P, Simon M (1995) Rapid formation and sedimentation of large aggregates is predictable from coagulation rates (half-lives) of transparent
exopolymer particles (TEP). Deep-Sea Res II 42:203–214
Logan BE, Alldredge AL (1989) Potential for increased nutrient uptake by flocculating diatoms.
Mar Biol 101:443–450
Loh A, Shim WJ, Ha SY, Yim UH (2014) Oil-suspended particulate matter aggregates: formation
mechanism and fate in the marine environment. OSJ 49:329–341
Lunel T, Lee K, Swannell R, Wood P, Rusin J, Bailey N, Halliwell C, Davies L, Sommerville
M, Dobie A, Mitchell D, McDonagh M (1996) Shoreline clean up during the Sea Empress
Incident: the role of surf washing (clay- M. oil flocculation), dispersants and bioremediation.
Proceedings of the 19th Arctic and Marine Oilspill Program (AMOP) Technical Seminar, June
12–14, 1996, Calgary, Alberta, Canada, pp 1521–1540
Ma X, Cogswell A, Li Z, Lee K (2008) Particle size analysis of dispersed oil and oil-mineral aggregates with an automated epifluorescence microscopy system. Environ Technol 29:739–748
Mari XS, Passow U, Migon C, Burd AB, Legendre L (2017) Transparent exopolymer particles:
effects on carbon cycling in the ocean. Prog Oceanogr 151:13–37
Mason OU, Scott NM, Gonzalez A, Robbins-Pianka A, Baelum J, Kimbrel J, Bouskill NJ, Prestat
E, Borglin S, Joyner DC, Fortney JL, Jurelevicius D, Stringfellow WT, Alvarez-Cohen L,
Hazen TC, Knight R, Gilbert JA, Jansson JK (2014) Metagenomics reveals sediment microbial
community response to Deepwater Horizon oil spill. Int Soc Microbiol/Ecol J 8:1464–1475
McGenity T, Folwell B, McKew B, Sanni G (2012) Marine crude-oil biodegradation: a central role
for interspecies interactions. Aquat Biosyst 16:10. https://doi.org/10.1186/2046-9063-8-10
Menon VB, Nagarajan R, Wasan DT (1987) Separation of fine particles from non-aqueous media:
free energy analysis and oil loss estimation. Sep Sci Technol 22:2295–2322
Mitra S, Kimmel DG, Snyder J, Scalise K, McGlaughon BD, Roman MR, Jahn GL, Pierson
JJ, Brandt SB, Montoya JP, Rosenbauer RJ, Lorenson TD, Wong FL, Campbell PL (2012)
Macondo-1 well oil-derived polycyclic aromatic hydrocarbons in mesozooplankton from the
northern Gulf of Mexico. Geophys Res Lett 39:L01605. https://doi.org/10.1029/2011GL049505
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
Nishizawa S, Fukuda M, Inoue N (1954) Photographic study of suspended matter and plankton in
the sea. Bull Fac Fish, Hokkaido Univ 5:36–40
Niu H, Lee K (2013) Study the transport of oil-mineral-aggregates (OMAs) in marine environment
and assessment of their potential risks to benthic organisms. Int J Environ Pollut 52:32–51.
https://doi.org/10.1504/IJEP.2013.056356
A. Quigg et al.
Lee K, Lunel T, Wood P, Swannell R, Stoffyn-Egli P (1997) Shoreline cleanup by acceleration of
clay-oil flocculation processes. In International oil spill conference (1997, No. 1, pp 235–240).
American Petroleum Institute, Washington, DC
Lee K, Wong CS, Cretney WJ, Whitney FA, Parsons TR, Lalli C, Wu J (1985) Microbial response
to crude oil and Corexit 9527: SEAFLUXES enclosure study. Microb Ecol 11:337–351
Lee RF, Gardner WS, Anderson JW, Blaylock JW, Barwell-Clarke J (1978) Fate of polycyclic
aromatic hydrocarbons in controlled ecosystem enclosures. Environ Sci Technol 12:832–838
Lee RF, Anderson JW (1977) Fate and effect of naphthalenes: controlled ecosystem pollution
experiment. Bull Mar Sci 27:127–134
Le Floch S, Guyomarch J, Merlin FX, Stoffyn-Egli P, Dixon J, Lee K (2002) The influence of
salinity on oil–mineral aggregate formation. Spill Sci Technol Bull 8:65–71
Levine S, Bowen BD, Partridge SJ (1989) Stabilization of emulsions by fine particles II. capillary
and van der Waals forces between particles. Colloids Surf 38:345–364
Li Z, Lee K, King KT, Boufadel M, Venosa AD (2008) Assessment of chemical dispersant effectiveness in a wave tank under regular non-breaking and breaking wave conditions. Mar Pollut
Bull 56:903–912
Logan BE, Passow U, Alldredge AL, Grossart H-P, Simon M (1995) Rapid formation and sedimentation of large aggregates is predictable from coagulation rates (half-lives) of transparent
exopolymer particles (TEP). Deep-Sea Res II 42:203–214
Logan BE, Alldredge AL (1989) Potential for increased nutrient uptake by flocculating diatoms.
Mar Biol 101:443–450
Loh A, Shim WJ, Ha SY, Yim UH (2014) Oil-suspended particulate matter aggregates: formation
mechanism and fate in the marine environment. OSJ 49:329–341
Lunel T, Lee K, Swannell R, Wood P, Rusin J, Bailey N, Halliwell C, Davies L, Sommerville
M, Dobie A, Mitchell D, McDonagh M (1996) Shoreline clean up during the Sea Empress
Incident: the role of surf washing (clay- M. oil flocculation), dispersants and bioremediation.
Proceedings of the 19th Arctic and Marine Oilspill Program (AMOP) Technical Seminar, June
12–14, 1996, Calgary, Alberta, Canada, pp 1521–1540
Ma X, Cogswell A, Li Z, Lee K (2008) Particle size analysis of dispersed oil and oil-mineral aggregates with an automated epifluorescence microscopy system. Environ Technol 29:739–748
Mari XS, Passow U, Migon C, Burd AB, Legendre L (2017) Transparent exopolymer particles:
effects on carbon cycling in the ocean. Prog Oceanogr 151:13–37
Mason OU, Scott NM, Gonzalez A, Robbins-Pianka A, Baelum J, Kimbrel J, Bouskill NJ, Prestat
E, Borglin S, Joyner DC, Fortney JL, Jurelevicius D, Stringfellow WT, Alvarez-Cohen L,
Hazen TC, Knight R, Gilbert JA, Jansson JK (2014) Metagenomics reveals sediment microbial
community response to Deepwater Horizon oil spill. Int Soc Microbiol/Ecol J 8:1464–1475
McGenity T, Folwell B, McKew B, Sanni G (2012) Marine crude-oil biodegradation: a central role
for interspecies interactions. Aquat Biosyst 16:10. https://doi.org/10.1186/2046-9063-8-10
Menon VB, Nagarajan R, Wasan DT (1987) Separation of fine particles from non-aqueous media:
free energy analysis and oil loss estimation. Sep Sci Technol 22:2295–2322
Mitra S, Kimmel DG, Snyder J, Scalise K, McGlaughon BD, Roman MR, Jahn GL, Pierson
JJ, Brandt SB, Montoya JP, Rosenbauer RJ, Lorenson TD, Wong FL, Campbell PL (2012)
Macondo-1 well oil-derived polycyclic aromatic hydrocarbons in mesozooplankton from the
northern Gulf of Mexico. Geophys Res Lett 39:L01605. https://doi.org/10.1029/2011GL049505
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
Nishizawa S, Fukuda M, Inoue N (1954) Photographic study of suspended matter and plankton in
the sea. Bull Fac Fish, Hokkaido Univ 5:36–40
Niu H, Lee K (2013) Study the transport of oil-mineral-aggregates (OMAs) in marine environment
and assessment of their potential risks to benthic organisms. Int J Environ Pollut 52:32–51.
https://doi.org/10.1504/IJEP.2013.056356
A. Quigg et al.
