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Evaluation of metabolism using stoichiometry in fermentative biohydrogen
Hyung Sool Lee,
Bruce Rittmann
Civil and Environmental Engineering
Environmental Biotechnology, Swette Center for (EB)
Biodesign Institute
Research output
:
Contribution to journal
›
Article
›
peer-review
109
Scopus citations
Overview
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Engineering & Materials Science
Stoichiometry
100%
Metabolism
94%
Glucose
84%
Adenosinetriphosphate
48%
Fermentation
31%
Electrons
28%
Biomass
25%
Protons
11%
Bacteria
10%
Ethanol
9%
Conservation
8%
Acids
8%
Substrates
6%
Chemical Compounds
Reaction Stoichiometry
60%
Pharmacological Metabolism
57%
Butyrate
34%
Glucose
34%
Acetate
32%
pH Value
31%
Fermentation
26%
Lactate
18%
Reduced Ferredoxin
15%
Reaction Yield
15%
Catabolic
12%
Propionate
10%
Electron Particle
10%
Error
6%
Red
6%
Proton
6%
Ethanol
6%
Energy
4%
Reduction
4%
Medicine & Life Sciences
Glucose
47%
Acetates
46%
Butyrates
35%
Biomass
34%
Fermentation
29%
Adenosine Triphosphate
29%
Electrons
22%
Lactic Acid
16%
Ferredoxins
14%
Propionates
12%
Protons
9%
Ethanol
7%
Acids
7%
Bacteria
6%