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Potential for in situ reductive dehalogenation of chloroethylenes
Päivi H-M. Kauppi
*
, Jaakko A. Puhakka
*
Corresponding author for this work
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peer-review
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Keyphrases
Electron Donor
100%
In Situ
100%
Reductive Dehalogenation
100%
Chloroethylene
100%
Aquifer
66%
Trichloroethylene
66%
Dense Non-aqueous Phase Liquid (DNAPL)
66%
Finland
33%
Ethanol
33%
Design Criteria
33%
Groundwater
33%
Lactate
33%
In Situ Bioremediation
33%
Contaminated Water
33%
Continuous Source
33%
Anaerobic Microcosms
33%
Groundwater Contamination
33%
Reductive Dechlorination
33%
Redox Conditions
33%
Groundwater Conditions
33%
NaN3
33%
Tetrachloroethylene
33%
Chlorinated Ethylenes
33%
Mineral Medium
33%
Earth and Planetary Sciences
Dense Non-Aqueous Phase Liquid
100%
Chloroethylene
100%
Finland
50%
In Situ Bioremediation
50%
Dechlorination
50%
Redox Condition
50%
Groundwater Contamination
50%
Agricultural and Biological Sciences
Trichloroethylene
100%
Ethylene
50%
Groundwater Contamination
50%
Bioremediation
50%
Chemical Engineering
Trichloroethylene
100%