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    Thermochemical and Catalytic Conversion Technologies for Future Biorefineries: Volume 2

    Thermochemical and Catalytic Conversion Technologies for Future Biorefineries by Verma, Pradeep;

    Volume 2

    Series: Clean Energy Production Technologies;

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      • Publisher's listprice EUR 160.49
      • The price is estimated because at the time of ordering we do not know what conversion rates will apply to HUF / product currency when the book arrives. In case HUF is weaker, the price increases slightly, in case HUF is stronger, the price goes lower slightly.

        68 079 Ft (64 837 Ft + 5% VAT)
      • Discount 20% (cc. 13 616 Ft off)
      • Discounted price 54 463 Ft (51 870 Ft + 5% VAT)

    68 079 Ft

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    Estimated delivery time: In stock at the publisher, but not at Prospero's office. Delivery time approx. 3-5 weeks.
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    Delivery time is estimated on our previous experiences. We give estimations only, because we order from outside Hungary, and the delivery time mainly depends on how quickly the publisher supplies the book. Faster or slower deliveries both happen, but we do our best to supply as quickly as possible.

    Product details:

    • Edition number 1st ed. 2022
    • Publisher Springer
    • Date of Publication 11 October 2022
    • Number of Volumes 1 pieces, Book

    • ISBN 9789811943157
    • Binding Hardback
    • No. of pages285 pages
    • Size 235x155 mm
    • Weight 678 g
    • Language English
    • Illustrations 1 Illustrations, black & white
    • 445

    Categories

    Short description:

    This book is an attempt to provide an account of biomass recalcitrance and available physical and chemical methods for biomass pretreatment and hydrolysis. Its focuses on understanding the critical role of enzymes in the development of integrated biorefinery. The book also presents an overview of the utilization of waste biomass as a support system for enzyme immobilization for easy recovery and reuse for multiple cycles. strategies where enzymes can be used. The book also attempts to understand how enzymes can play a vital role in waste valorization for energy and biomaterial production. Further, the book will present an overview of how advanced technologies such as omics and in-silico approaches can help in understanding the chemistry affecting recalcitrance and the mechanism of enzyme catalysts in their bioconversion. An understanding of the life cycle assessment of waste biomass biorefinery will be needed before its implementation. The book will serve as additional reading material for undergraduate and graduate students of energy studies, chemical engineering, applied biotechnology, and environmental sciences. This book is of interest to academicians, scientists, environmentalists, and policymakers.


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    Long description:

    This book is an attempt to provide an account of biomass recalcitrance and available physical and chemical methods for biomass pretreatment and hydrolysis. Its focuses on understanding the critical role of enzymes in the development of integrated biorefinery. The book also presents an overview of the utilization of waste biomass as a support system for enzyme immobilization for easy recovery and reuse for multiple cycles. strategies where enzymes can be used. The book also attempts to understand how enzymes can play a vital role in waste valorization for energy and biomaterial production. Further, the book will present an overview of how advanced technologies such as omics and in-silico approaches can help in understanding the chemistry affecting recalcitrance and the mechanism of enzyme catalysts in their bioconversion. An understanding of the life cycle assessment of waste biomass biorefinery will be needed before its implementation. The book will serve as additional reading material for undergraduate and graduate students of energy studies, chemical engineering, applied biotechnology, and environmental sciences. This book is of interest to academicians, scientists, environmentalists, and policymakers. 

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    Table of Contents:

    Chapter 1. Lignocellulosic Biomass Valorisation and Fate of Recalcitrant.- Chapter 2. Insight into various conventional physical and chemical methods for the pretreatment of lignocellulosic biomass.- Chapter 3. Physical and chemical hydrolysis methods for breaking down the complex waste biomass to the fermentable sugars and value added products.- Chapter 4. Critical Evaluation of the role of Enzymes in the Integrated Biorefinery.- Chapter 5. Process efficacy in Cassava based Biorefinery: Scalable Process technology for the development of Green Monomer D-lactic acid.- Chapter 6. Synthesis of supports for lipase immobilisation using wastes for enhancing efficiency and reusability of enzymes.- Chapter 7. Valorization of Dairy Industry Waste into Functional Food using Lactase.- Chapter 8. Biorefineries: An Integrated Approach for Sustainable Energy Production.- Chapter 9. Biomass recalcitrance and omics approaches for understanding the chemistry affecting recalcitrance.- Chapter 10. Demonstration of application of Fungal xylanase in Fruit juice and Paper deinking and validation of its mechanism via in-silico investigation.- Chapter 11. Life Cycle Assessment of Thermochemical Conversion of Agro-residues.

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    Thermochemical and Catalytic Conversion Technologies for Future Biorefineries: Volume 2

    Thermochemical and Catalytic Conversion Technologies for Future Biorefineries: Volume 2

    Verma, Pradeep; (ed.)

    68 079 HUF

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