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Cellulase Inhibition by High Concentrations of Monosaccharides
Chia-Wen Hsieh, David Cannella, Henning Jørgensen, Claus Felby,
Lisbeth Garbrecht Thygesen
Forest, Nature and Biomass
86
Citations (Scopus)
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Dive into the research topics of 'Cellulase Inhibition by High Concentrations of Monosaccharides'. Together they form a unique fingerprint.
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Medicine & Life Sciences
Cellulase
100%
Monosaccharides
89%
Glucose
43%
Cellulases
36%
Hydrolysis
32%
Cellulose
27%
Cellobiose
17%
Glucosidases
17%
Stereoisomerism
16%
Biomass
14%
Mannose
13%
Galactose
12%
Adsorption
12%
Water
7%
Enzymes
6%
Proteins
4%
Agriculture & Biology
monosaccharides
72%
endo-1,4-beta-glucanase
64%
glucose
41%
hydrolysis
25%
cellulases
25%
cellulose
16%
stereoisomers
15%
glucosidases
14%
cellobiose
13%
biodegradation
11%
mannose
11%
galactose
10%
adsorption
10%
liquids
7%
biomass
7%
enzymes
5%
water
4%
proteins
3%
Chemical Compounds
Monosaccharide
73%
Glucose
51%
Hydrolysis
21%
Biological Degradation
17%
Cellobiose
14%
Mannose
12%
Galactose
11%
Stereoisomer
11%
Reaction Yield
9%
Liquid
6%
Adsorption
5%
Protein
4%