Biomass Fractionation Technologies for a Lignocellulosic Feedstock Based Biorefinery

Forfatter: info mangler
Bog
  • Format
  • Bog, hardback
  • Engelsk

Beskrivelse

Biomass Fractionation Technologies for a Lignocellulosic Feedstock-based Biorefinery reviews the extensive research and tremendous scientific and technological developments that have occurred in the area of biorefinering, including industrial processes and product development using ‘green technologies’, often referred as white biotechnology. As there is a huge need for new design concepts for modern biorefineries as an alternative and amendment to industrial crude oil and gas refineries, this book presents the most important topics related to biomass fractionation, including advances, challenges, and perspectives, all with references to current literature for further study. Presented in 26 chapters by international field specialists, each chapter consists of review text that comprises the most recent advances, challenges, and perspectives for each fractionation technique. The book is an indispensable reference for all professionals, students, and workers involved in biomass biorefinery, assisting them in establishing efficient and economically viable process technologies for biomass fractionation.

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Detaljer
Størrelse og vægt
  • Vægt1610 g
  • coffee cup img
    10 cm
    book img
    19,1 cm
    23,5 cm

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    Biogas Ethanol Logistics Biodiversity Oligosaccharides Catalysis Carbon dioxide Fermentation Hydrogen peroxide Cavitation Water use Modeling Lignocellulose Surface chemistry Ozone Extraction Cellulose Biomass Hemicellulose Intensification Lignin Xylans Furfural Cellulase Food security Polysaccharide Biofuels Torque Furans Pretreatment GHG emissions Anaerobic digestion Capex Biofuel Ultrasound Hemicelluloses Bioeconomy Woody Biomass Land Use Change Online Monitoring Lignocellulosic biomass Microwave Irradiation Biorefinery Bioenergy Bioconversion Bioethanol Plant material Opex Biological Pretreatment Optimal design Biomass Pretreatment Bio-based Products Severity Mechanochemistry Energy Use Biorefineries Fractionation Particle Size Enzymatic hydrolysis Soil quality Biochemical conversion Ethanol Production Oxalic acid Xylanase Moisture content Lignocelluloses Delignification Enzymatic saccharification Acid pretreatment of lignocellulosics Acid pretreatment Agricultural residues Alkaline conditions Alkaline pretreatment Ammonia pretreatment Autohydrolysis Bacterial pretreatment Barrel temperature Cellulase stabilization Cellulase binding Cellulose retention Cellulose Hydrolysis Chemical pretreatment Enzymatic digestibility Fungal pretreatment Hydrothermal Pretreatment Hydrolysis of biomass Hydrothermal Reaction Mechanical pretreatment Ligninolytic enzymes Fermentation inhibitors lignocellulosic feedstock NMMO Metal salts N-methylmorpholine N-oxide Hydrolysis reactor Hydrotropic technology Pretreatment severity Reactor designs Pulsed electric energy process conditions Product inhibition Screw configuration Screw Speed Lignin degradation Lignosulfonate Hemicellulosic hydrolysate Hemicellulosic sugars Sub/supercritical water hydrolysis Sugar degradation slurry Sulfite pretreatment Technoeconomic evaluation Sugar recovery Sustainable fractionation supramolecular structure Sustainable biorefineries Integral sustainability Lignin removal Liquid hot water treatment Product applications Membrane reactor Organosolv pretreatment Pyrolysis mechanisms Reactivity of solids Sugarcane Bagasse White Rot Fungi Supercritical carbon dioxide explosion Screw compression ratio Vegetable biomass biorefinery Wet explosion

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