1989Journal of Environmental Science and Health Part A Environmental Science and EngineeringRequires access

Biodegradation of trichloroethylene by bacteria indigenous to a contaminated site

Kristen L. McCIellen, Netty Buras, Roger C. Bales

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Abstract

Bacteria indigenous to a trichloroethylene (TCE) contaminated site were exposed to 0.56 and 6.7 mg L‐1 TCE. Under the aerobic, oligotrophic conditions of the microcosms, the populations were able to degrade TCE and to increase their numbers by two orders of magnitude within one week. No other substrate was added. The average TCE disappearances were 47 percent and 33 percent for initial TCE concentrations of 0.56 and 6.7 mg L‐1, respectively. No TCE disappearance was observed in controls. Results of individual microcosms suggest that bacteria degraded TCE to levels as low as 1–2 percent of the initial concentration. Lag times of 14 and 18 days were observed for the 0.56 and 6.7 mg L‐1 concentration microcosms, respectively. Bacterial population shifts were noted throughout the experiment. None of the isomers of a dehalogenation reaction were found.

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What this paper is about

Bacteria indigenous to a trichloroethylene (TCE) contaminated site were exposed to 0.56 and 6.7 mg L‐1 TCE. Under the aerobic, oligotrophic conditions of the microcosms, the populations were able to degrade TCE and to increase their numbers by two orders of magnitude within one week. No other substrate was added. The average TCE disappearances were 47 percent and 33 percent for initial TCE concentrations of 0.56 and 6.7 mg L‐1, respectively. No TCE disappearance was observed in controls. Results of individual microcosms suggest that bacteria degraded TCE to levels as low as 1–2 percent of the initial concentration. Lag times of 14 and 18 days were observed for the 0.56 and 6.7 mg L‐1 concentration microcosms, respectively. Bacterial population shifts were noted throughout the experiment. None of the isomers of a dehalogenation reaction were found.

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Available abstract

Bacteria indigenous to a trichloroethylene (TCE) contaminated site were exposed to 0.56 and 6.7 mg L‐1 TCE. Under the aerobic, oligotrophic conditions of the microcosms, the populations were able to degrade TCE and to increase their numbers by two orders of magnitude within one week. No other substrate was added. The average TCE disappearances were 47 percent and 33 percent for initial TCE concentrations of 0.56 and 6.7 mg L‐1, respectively. No TCE disappearance was observed in controls. Results of individual microcosms suggest that bacteria degraded TCE to levels as low as 1–2 percent of the initial concentration. Lag times of 14 and 18 days were observed for the 0.56 and 6.7 mg L‐1 concentration microcosms, respectively. Bacterial population shifts were noted throughout the experiment. None of the isomers of a dehalogenation reaction were found.

Key concepts: Microcosm, Trichloroethylene, Biodegradation, Contamination, Environmental chemistry, Bacteria, Chemistry, Substrate (aquarium)

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