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Accelerating the rate of cometabolic degradations requiring an intracellular electron source-model and biofilm application
W. Bae,
B. E. Rittmann
Research output
:
Contribution to journal
›
Article
›
peer-review
3
Scopus citations
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Dive into the research topics of 'Accelerating the rate of cometabolic degradations requiring an intracellular electron source-model and biofilm application'. Together they form a unique fingerprint.
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Engineering & Materials Science
Electron sources
100%
Biofilms
73%
Dehalogenation
67%
Electrons
55%
Degradation
38%
Carbon tetrachloride
18%
Oxygenation
15%
Substrates
15%
Biodegradation
15%
Experiments
7%
Chemical Compounds
Dehalogenation
67%
Electron Donor
50%
Electron Acceptor
34%
Electron Particle
29%
Donor
25%
Oxygenation
20%
Biodegradation
19%
Application
17%
Acetate
12%
Earth & Environmental Sciences
biofilm
49%
electron
38%
degradation
35%
removal
23%
rate
17%
substrate
15%
oxygenation
12%
prediction
10%
acetate
10%
biodegradation
9%
experiment
8%
reactor
7%
cell
6%
kinetics
6%
carbon
6%
modeling
4%
Medicine & Life Sciences
Biofilms
54%
Electrons
44%
NAD
22%
Carbon Tetrachloride
13%
Acetates
10%
Kinetics
7%