Joseph M. Suflita
Joseph M. Suflita
E-mail megerősítve itt: ou.edu
Hivatkozott rá
Hivatkozott rá
Desulfomonile tiedjei gen. nov. and sp. nov., a novel anaerobic, dehalogenating, sulfate-reducing bacterium
KA DeWeerd, L Mandelco, RS Tanner, CR Woese, JM Suflita
Archives of Microbiology 154 (1), 23-30, 1990
Dehalogenation: a novel pathway for the anaerobic biodegradation of haloaromatic compounds
JM Suflita, A Horowitz, DR Shelton, JM Tiedje
Science 218 (4577), 1115-1117, 1982
In-Situ Evidence for Uranium Immobilization and Remobilization
JM Senko, JD Istok, JM Suflita, LR Krumholz
Environmental science & technology 36 (7), 1491-1496, 2002
Influence of surfactants on microbial degradation of organic compounds
JD Rouse, DA Sabatini, JM Suflita, JH Harwell
Critical Reviews in Environmental Science and Technology 24 (4), 325-370, 1994
Confined subsurface microbial communities in Cretaceous rock
LR Krumholz, JP McKinley, GA Ulrich, JM Suflita
Nature 386 (6620), 64-66, 1997
Anaerobic biodegradation of known and potential gasoline oxygenates in the terrestrial subsurface
JM Suflita, MR Mormile
Environmental Science & Technology 27 (5), 976-978, 1993
Anaerobic degradation of benzene in diverse anoxic environments
J Kazumi, ME Caldwell, JM Suflita, DR Lovley, LY Young
Environmental Science & Technology 31 (3), 813-818, 1997
Anaerobic biodegradation of gasoline oxygenates: extrapolation of information to multiple sites and redox conditions
MR Mormile, S Liu, JM Suflita
Environmental science & technology 28 (9), 1727-1732, 1994
Extrapolation of biodegradation results to groundwater aquifers: reductive dehalogenation of aromatic compounds
SA Gibson, JM Suflita
Applied and Environmental Microbiology 52 (4), 681-688, 1986
Metagenomic analysis and metabolite profiling of deep–sea sediments from the Gulf of Mexico following the Deepwater Horizon oil spill
NE Kimes, AV Callaghan, DF Aktas, WL Smith, J Sunner, BT Golding, ...
Frontiers in microbiology 4, 50, 2013
Bioenergy production via microbial conversion of residual oil to natural gas
LM Gieg, KE Duncan, JM Suflita
Applied and environmental microbiology 74 (10), 3022-3029, 2008
Pore‐size constraints on the activity and survival of subsurface bacteria in a late cretaceous shale‐sandstone sequence, northwestern New Mexico
JK Fredrickson, JP McKinley, BN Bjornstad, PE Long, DB Ringelberg, ...
Geomicrobiology Journal 14 (3), 183-202, 1997
Biocorrosive thermophilic microbial communities in Alaskan North Slope oil facilities
KE Duncan, LM Gieg, VA Parisi, RS Tanner, SG Tringe, J Bristow, ...
Environmental science & technology 43 (20), 7977-7984, 2009
Anaerobic oxidation of crude oil hydrocarbons by the resident microorganisms of a contaminated anoxic aquifer
GT Townsend, RC Prince, JM Suflita
Environmental Science & Technology 37 (22), 5213-5218, 2003
The roles of photooxidation and biodegradation in long-term weathering of crude and heavy fuel oils
RC Prince, RM Garrett, RE Bare, MJ Grossman, T Townsend, JM Suflita, ...
Spill Science & Technology Bulletin 8 (2), 145-156, 2003
Anaerobic Oxidation of n-Dodecane by an Addition Reaction in a Sulfate-Reducing Bacterial Enrichment Culture
KG Kropp, IA Davidova, JM Suflita
Applied and environmental microbiology 66 (12), 5393-5398, 2000
Anaerobic Biodegradation of Long-Chain n-Alkanes under Sulfate-Reducing Conditions
ME Caldwell, RM Garrett, RC Prince, JM Suflita
Environmental science & technology 32 (14), 2191-2195, 1998
Methanogenesis, sulfate reduction and crude oil biodegradation in hot Alaskan oilfields
LM Gieg, IA Davidova, KE Duncan, JM Suflita
Environmental microbiology 12 (11), 3074-3086, 2010
A rapid and simple method for estimating sulfate reduction activity and quantifying inorganic sulfides
GA Ulrich, LR Krumholz, JM Suflita
Applied and Environmental Microbiology 63 (4), 1627-1630, 1997
Reductive dehalogenations of halobenzoates by anaerobic lake sediment microorganisms
A Horowitz, JM Suflita, JM Tiedje
Applied and Environmental Microbiology 45 (5), 1459-1465, 1983
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