Publication | Open Access
Transformations of 1- and 2-carbon halogenated aliphatic organic compounds under methanogenic conditions
424
Citations
19
References
1983
Year
EngineeringChemical TransformationDecontaminationMethanolDegradation ReactionAliphatic CompoundsOrganic ChemistryChemistryAliphatic Organic CompoundsWastewater TreatmentChemical EngineeringEnvironmental ChemistryNovel OrganocatalystsBioremediationWater TreatmentMethanogenic ConditionsEnvironmental MicrobiologyDrinking Water TreatmentEcotoxicologyEnvironmental FateEnvironmental EngineeringEnvironmental RemediationHalogenationMicrobiological Degradation
Several 1- and 2-carbon halogenated aliphatic organic compounds present at low concentrations (less than 100 micrograms/liter) were degraded under methanogenic conditions in batch bacterial cultures and in a continuous-flow methanogenic fixed-film laboratory-scale column. Greater than 90% degradation was observed within a 2-day detention time under continuous-flow methanogenic conditions with acetate as a primary substrate. Carbon-14 measurements indicated that chloroform, carbon tetrachloride, and 1,2-dichloroethane were almost completely oxidized to carbon dioxide, confirming removal by biooxidation. The initial step in the transformations of tetrachloroethylene and 1,1,2,2-tetrachloroethane to nonchlorinated end products appeared to be reductive dechlorination to trichloroethylene and 1,1,2-trichloroethane, respectively. Transformations of the brominated aliphatic compounds appear to be the result of both biological and chemical processes. The data suggest that transformations of halogenated aliphatic compounds can occur under methanogenic conditions in the environment.
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