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Brewer's spent grain: Future biorefinery raw material
Katariina Kemppainen
, Katariina Rommi
, C. Gasser
, M. Mucha
, P. Corvini
VTT Technical Research Centre of Finland
University of Applied Sciences Northwestern Switzerland (FHNW)
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Keyphrases
Biorefinery
100%
Brewer's Spent Grain
100%
Grain Futures
100%
Lignin
66%
Carbohydrates
66%
Hydrolysis Yield
66%
Lipids
33%
Hydrolysis
33%
Steam Explosion
33%
Food Industry
33%
Food-feed
33%
Chemical Industry
33%
Monosaccharides
33%
Brewing Industry
33%
Dry Matter Content
33%
Organosolv
33%
Depolymerizing
33%
Enzymatic Digestibility
33%
Over 80
33%
Polymerization Reaction
33%
Reaction Medium
33%
Feed Industry
33%
Food Chemicals
33%
Oxidative Enzymes
33%
Solid Loading
33%
Low Molecular Weight Compounds
33%
Radical Scavenger
33%
Fuel Industry
33%
INIS
hydrolysis
100%
raw materials
100%
lignin
66%
yields
66%
carbohydrates
66%
enzymes
33%
proteins
33%
lipids
33%
fuels
33%
industry
33%
molecular weight
33%
oxidation
33%
loading
33%
solids
33%
steam
33%
cooking
33%
explosions
33%
streams
33%
food industry
33%
polymerization
33%
chemical industry
33%
monosaccharides
33%
Engineering
Biorefineries
100%
Brewers Spent Grain
100%
Side Stream
33%
Organosolv
33%
Reaction Medium
33%
Low-Molecular-Weight Compound
33%
Polymerization
33%
Dry Matter
33%
Food Science
Digestibility
100%
Protein Isolates
100%
Dry Matter Content
100%
Agricultural and Biological Sciences
Spent Grain
100%
Enzymatic Hydrolysis
100%
Monosaccharide
25%
Brewing
25%
Digestibility
25%
Chemical Engineering
Polymerization
100%