Biomass Preprocessing and Pretreatments for Production of Biofuels

Biomass Preprocessing and Pretreatments for Production of Biofuels

Mechanical, Chemical and Thermal Methods

Tumuluru, Jaya Shankar

Taylor & Francis Ltd

03/2021

458

Mole

Inglês

9780367781002

15 a 20 dias

870

Descrição não disponível.
Introduction. MECHANICAL PREPROCESSING. Conventional and Advanced Mechanical Preprocessing Methods for Biomass: Performance- Quality Attributes and Cost Analysis. Effects of Mechanical Preprocessing Technologies on Gasification Performance and Economic Value of Syngas. Mechanical Fractionation of Biomass Feedstocks for Enhanced Pretreatment and Conversion. Biomass Gasification and Effect of Physical Properties on Products. The impacts of biomass pretreatment methods on bio-oil production. THERMAL PREPROCESSING. Steam Treatment of Cellulosic Biomass for Pelletization. Hydrothermal Carbonization (HTC) of Biomass for Energy Applications. Thermal Pretreatment of Biomass to make it Suitable for Biopower Application. The Impacts of Thermal Pretreatments on Biomass Gasification and Pyrolysis Processes. Hydrothermal Liquefaction - A Promising Technology for High Moisture Biomass Conversion. CHEMICAL PREPROCESSING. Chemical Preprocessing of Feedstocks for Improved Handling and Conversion to BioFuels. Ammonia fiber expansion and its impact on subsequent densification and enzymatic conversion. Acid Preprocessing Treatments: Benefit for Bioconversion of Biomass for Liquid Fuels and Bioproduct Production. Impacts, Challenges and Economics of Ionic Liquid Pretreatment of Biomass. Compositional and Structural Modification of Lignocellulosic Biomass for Biofuel Production by Alkaline Treatment.
Moisture Content;Ethanol Fermentation;biomass thermal pretreatments;Corn Stover;biomass chemical pretreatments;Energy Density;enzymatic conversions;Hydrothermal Carbonization;pyrolysis;Biomass Feedstock;co-firing, cofiring;Lignocellulosic Biomass;gasification, mechanical separation, densification, thermochemical conversions, biochemical conversions, torrefaction, hydothermal carbonization;Hydrothermal Liquefaction;Jaya Shankar Tumuluru;Bio-oil Yield;Neal Yancey;Raw Biomass;Amit Khanchi;Thermochemical Conversion;Bhavna Sharma;Thermal Pretreatment;Ashokkumar Sharma;Pellets Produced;Ajay Kumar;Dilute Acid Pretreatment;Stuart Birrell;Carbon Conversion Efficiency;Jeffrey A. Lacey;Ionic Liquid Pretreatments;Sushil Adhikari;CGE;Hyungseok Nam;Fast Pyrolysis;Avanti Kulkarni;Steam Explosion;Yang Yue;Steam Explosion Pretreatment;Sudhagar Mani;Entrained Flow Gasification;Shahab Sokhansanj;HTC Process;Hamid Rezaei;Herbaceous Biomass;Pak Sui (Wilson) Lam;Mechanical Preprocessing;Tang Yong;Biomass Gasification;Bahman Ghiasi;Zahra Tooyserkani;S. Kent Hoekman;Amber Leland;Larry Felix;Zixu Yang;Ankita Juneja;Deepak Kumar;John Earl Aston;Nick Nagle;Erik Kuhn;Kingsley L. Iroba;Majid Soleimani;Lope G. Tabil;Jipeng Yan;Ling Liang;Todd R. Pray;Ning Sun;Bryan D. Bals;Timothy J. Campbell