Grantee Research Project Results
Journal Publications Details for Grant Number R825689C041
Effects of Sorption on Biodegradation of Halogenated Organics
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Reference Type | Reference Title | Journal | Author | Citation | Progress Report Year | Document Sources |
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Journal Article | Effects of toxicity, aeration, and reductant supply on trichloroethylene transformation by a mixed methanotrophic culture. | APPLIED AND ENVIRONMENTAL MICROBIOLOGY | Alvarez-Cohen LM, McCarty PL | Alvarez-Cohen L, McCarty PL. Effects of toxicity, aeration, and reductant supply on trichloroethylene transformation by a mixed methanotrophic culture. Applied and Environmental Microbiology 1991;57(1):228-235. |
R825689C041 (Final) |
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Journal Article | Product toxicity and cometabolic competitive inhibition modeling of chloroform and trichloroethylene transformation by methanotrophic resting cells. | APPLIED AND ENVIRONMENTAL MICROBIOLOGY | Alvarez-Cohen L, McCarty PL | Alvarez-Cohen L, McCarty PL. Product toxicity and cometabolic competitive inhibition modeling of chloroform and trichloroethylene transformation by methanotrophic resting cells. Applied and Environmental Microbiology 1991;57(4):1031-1037. |
R825689C041 (Final) |
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Journal Article | A cometabolic biotransformation model for halogenated aliphatic compounds exhibiting product toxicity. | ENVIRONMENTAL SCIENCE & TECHNOLOGY | Alvarez-Cohen L, McCarty PL | Alvarez-Cohen L, McCarty PL. A cometabolic biotransformation model for halogenated aliphatic compounds exhibiting product toxicity. Environmental Science & Technology 1991;25(8):1381-1387. |
R825689C041 (Final) |
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Journal Article | Two-stage dispersed-growth treatment of halogenated aliphatic compounds by cometabolism. | ENVIRONMENTAL SCIENCE & TECHNOLOGY | Alvarez-Cohen L, McCarty PL | Alvarez-Cohen L, McCarty PL. Two-stage dispersed-growth treatment of halogenated aliphatic compounds by cometabolism. Environmental Science & Technology 1991;25(8):1387-1393. |
R825689C041 (Final) |
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Journal Article | Characterization of a methane-utilizing bacterium from a bacterial consortium that rapidly degrades trichloroethylene and chloroform. | APPLIED AND ENVIRONMENTAL MICROBIOLOGY | Alvarez-Cohen L, McCarty PL, Boulygina E, Hanson RS, Brusseau GA, Tsien HC | Alvarez-Cohen L, McCarty PL, Boulygina E, Hanson RS, Brusseau GA, Tsien HC. Characterization of a methane-utilizing bacterium from a bacterial consortium that rapidly degrades trichloroethylene and chloroform. Applied and Environmental Microbiology 1992;58(6):1886-1893. |
R825689C041 (Final) |
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Journal Article | Sorption of trichloroethylene onto a zeolite accompanied by methanotrophic biotransformation. | ENVIRONMENTAL SCIENCE & TECHNOLOGY | Alvarez-Cohen L, McCarty PL, Roberts PV | Alvarez-Cohen L, McCarty PL, Roberts PV. Sorption of trichloroethylene onto a zeolite accompanied by methanotrophic biotransformation. Environmental Science & Technology 1993;27(10):2141-2148. |
R825689C041 (Final) |
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The perspectives, information and conclusions conveyed in research project abstracts, progress reports, final reports, journal abstracts and journal publications convey the viewpoints of the principal investigator and may not represent the views and policies of ORD and EPA. Conclusions drawn by the principal investigators have not been reviewed by the Agency.