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Microcosm and In situ Field Studies of Enhanced Biotransformation ofTrichloroethylene by Phenol-Utilizing Microorganisms

机译:微生物利用微生物增强生物转化三氯乙烯的微观世界和原位研究

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The ability of different aerobic groundwater microorganisms to cometabolicallydegrade trichloroethylene (TCE), 1,2-cis-dichloroethylene (c-DCE), and 1,2-trans-dichloroethylene (t-DCE) was evaluated both in groundwater-fed microcosms and in situ in a shallow aquifer. Microcosms amended with phenol or toluene were equally effective in removing c-DCE (>90%) followed by TCE (60 to 70%), while the microcosm fed methane was most effective in removing t-DCE (>90%). At the Moffett Field groundwater test site, in situ removal of c-DCE and TCE coincided with biostimulation through phenol and oxygen injection and utilization, with c-DCE removed more rapidly than TCE. Greater TCE and c-DCE removal was observed when the phenol concentration was increased. Over 90% removal of c-DCE and TCE was observed in the 2-m biostimulated zone. This compares with 40 to 50% removal of c-DCE and 15 to 25% removal of TCE achieved by methane-grown microorganisms previously evaluated in an adjacent in situ test zone. (Copyright (c) 1993, American Society for Microbiology.)

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