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Intrinsic and bioaugmented aerobic trichloroethene degradation at seven sites
Anna Willmann
, Anna Lena Trautmann
,
Ariel Kushmaro
, Andreas Tiehm
Department of Biotechnology Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
6
Scopus citations
Overview
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Keyphrases
Aerobic
100%
Trichloroethene
100%
Groundwater
30%
Enrichment Culture
30%
Bioaugmentation
20%
Microcosm
20%
Groundwater Samples
20%
Inoculum
20%
Metabolic
10%
Groundwater Pollution
10%
One Field
10%
Liquid Culture
10%
Slow Growth
10%
Doubling Time
10%
Groundwater Remediation
10%
Mineral Salt Medium
10%
Contaminated Sites
10%
Degrading Microorganism
10%
Metabolic Degradation
10%
Oxygen Demand
10%
Microcosm Experiment
10%
Degradation Potential
10%
Silica Sand
10%
Chloroethenes
10%
Adaptation Time
10%
Immobilized Culture
10%
Aerobic Cometabolism
10%
Intrinsic Degradation
10%
Active Electric Field
10%
Inoculation Strategies
10%
Earth and Planetary Sciences
Bioaugmentation
100%
Groundwater Remediation
50%
Metabolism
50%
Groundwater Pollution
50%
Bacterium
50%
Chemical Engineering
Trichloroethylene
100%
Auxiliaries
10%
Groundwater Remediation
10%
Microorganism
10%