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Lignocellulose. --- Ligno-cellulose --- Lignocellulosics --- Cellulose --- Lignin
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wood --- renewable materials --- bioeconomy --- business --- lignocellulosics --- forestry
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Solvents. --- Lignocellulose. --- Biomass conversion. --- Microbial biotechnology --- Ligno-cellulose --- Lignocellulosics --- Cellulose --- Lignin --- Fluids --- Plasticizers
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Lignocellulose. --- Composite materials. --- Biomass. --- Composites (Materials) --- Multiphase materials --- Reinforced solids --- Solids, Reinforced --- Two phase materials --- Materials --- Mass (Physics) --- Biology --- Ligno-cellulose --- Lignocellulosics --- Cellulose --- Lignin
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Fibrous composites. --- Lignocellulose. --- Cellulose --- Lignin --- Ligno-cellulose --- Lignocellulosics --- Composite materials --- Fiber composites --- Fiber-reinforced composites --- Filament reinforced composites --- Reinforced fibrous composites --- Fibrous composites.. --- Composite materials.. --- Composites (Materials) --- Multiphase materials --- Reinforced solids --- Solids, Reinforced --- Two phase materials --- Materials
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Fibrous composites.. --- Lignocellulose. --- Composite materials.. --- Composites (Materials) --- Multiphase materials --- Reinforced solids --- Solids, Reinforced --- Two phase materials --- Materials --- Ligno-cellulose --- Lignocellulosics --- Cellulose --- Lignin --- Fiber composites --- Fiber-reinforced composites --- Filament reinforced composites --- Reinforced fibrous composites --- Composite materials --- Fibrous composites. --- Composite materials.
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This book provides important aspects of sustainable degradation of lignocellulosic biomass which has a pivotal role for the economic production of several value-added products and biofuels with safe environment. Different pretreatment techniques and enzymatic hydrolysis process along with the characterization of cell wall components have been discussed broadly. The following features of this book attribute its distinctiveness: This book comprehensively covers the improvement in methodologies for the biomass pretreatment, hemicellulose and cellulose breakdown into fermentable sugars, the analytical methods for biomass characterization, and bioconversion of cellulosics into biofuels. In addition, mechanistic analysis of biomass pretreatment and enzymatic hydrolysis have been discussed in details, highlighting key factors influencing these processes at industrial scale.
Biomass conversion. --- Biomass energy. --- Lignocellulose. --- Ligno-cellulose --- Lignocellulosics --- Cellulose --- Lignin --- Bio-energy (Biomass energy) --- Bioenergy (Biomass energy) --- Biofuels --- Biological fuels --- Energy, Biomass --- Microbial energy conversion --- Energy conversion --- Fuel --- Microbial fuel cells --- Refuse as fuel --- Waste products as fuel --- Microbial biotechnology --- Engineering --- Physical Sciences --- Engineering and Technology --- Bioresource Engineering --- Energy Engineering --- Biomass as fuel --- Renewable fuels --- Renewable energy sources
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Bioethanol is one of the main biofuels currently used as a petroleum-substitute in transport applications. However, conflicts over food supply and land use have made its production and utilisation a controversial topic. Second generation bioalcohol production technology, based on (bio)chemical conversion of non-food lignocellulose, offers potential advantages over existing, energy-intensive bioethanol production processes. Food vs. fuel pressures may be reduced by utilising a wider range of lignocellulosic biomass feedstocks, including energy crops, cellulosic residues, and, particularly, wast
Cellulosic ethanol. --- Biomass energy. --- Lignocellulose. --- Alcohols. --- Organic compounds --- Ligno-cellulose --- Lignocellulosics --- Cellulose --- Lignin --- Bio-energy (Biomass energy) --- Bioenergy (Biomass energy) --- Biofuels --- Biological fuels --- Energy, Biomass --- Microbial energy conversion --- Energy conversion --- Fuel --- Energy crops --- Microbial fuel cells --- Refuse as fuel --- Waste products as fuel --- Biomass energy --- Ethanol --- Environmental Sciences --- Sustainable Development --- Biomass as fuel --- Renewable fuels --- Renewable energy sources
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Lignocellulose --- Biomass chemicals --- Biomass energy --- Biomass chemicals. --- Biomass energy. --- Biotechnology. --- Biomass Energy. --- Bio-energy (Biomass energy) --- Bioenergy (Biomass energy) --- Biofuels --- Biological fuels --- Energy, Biomass --- Microbial energy conversion --- Energy conversion --- Fuel --- Energy crops --- Microbial fuel cells --- Refuse as fuel --- Waste products as fuel --- Biomass-based chemicals --- Biomass-derived chemicals --- Biomass feedstocks --- Chemicals --- Ligno-cellulose --- Lignocellulosics --- Cellulose --- Lignin --- Biotechnology --- biotechnologie --- Chemistry --- Chemical Engineering --- lignocellulose --- pulp and paper --- biofuels --- wood products
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Biotechnologie --- Biotechnology --- Fermentation --- Lignocellulose --- Bioconversion --- bioconversion --- 66.098 --- 661.728 --- 663.1 --- 547.458.84 --- Biological processes. Biotechnology --- Cellulose. Cellulose derivatives --- Microbiological industries. Science and technique of applied microbiology. Applied mycology --- Lignocellulose. Other crude natural celluloses --- 547.458.84 Lignocellulose. Other crude natural celluloses --- 663.1 Microbiological industries. Science and technique of applied microbiology. Applied mycology --- 661.728 Cellulose. Cellulose derivatives --- 66.098 Biological processes. Biotechnology --- Ligno-cellulose --- Lignocellulosics --- Cellulose --- Lignin --- Biotechnology&delete& --- Congresses --- bioconversion. --- Cost
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