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Biorefineries in circular bioeconomy...
~
Chandel, Anuj Kumar.
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Biorefineries in circular bioeconomy = reactor configurations analysis /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Biorefineries in circular bioeconomy/ edited by Anuj K. Chandel, Suresh Sundaramurthy.
Reminder of title:
reactor configurations analysis /
other author:
Chandel, Anuj Kumar.
Published:
Singapore :Springer Nature Singapore : : 2025.,
Description:
xiii, 405 p. :ill. (chiefly col.), digital ;24 cm.
[NT 15003449]:
Feedstock composition variation and availability in various geographical regions in the world -- Biomass collection and storage and successful supply chain from farm to factory -- Fruit and vegetable waste chitin DDGs bread waste broken rice beet root Unexplored feedstock for biorefineries -- Process parameters governing effective biomass pretreatment on oligosaccharides and hemicellulosic monomeric sugars recovery -- Process parameters governing effective enzymatic hydrolysis and cellulosic sugars recovery.
Contained By:
Springer Nature eBook
Subject:
Biomass energy. -
Online resource:
https://doi.org/10.1007/978-981-95-3913-0
ISBN:
9789819539130
Biorefineries in circular bioeconomy = reactor configurations analysis /
Biorefineries in circular bioeconomy
reactor configurations analysis /[electronic resource] :edited by Anuj K. Chandel, Suresh Sundaramurthy. - Singapore :Springer Nature Singapore :2025. - xiii, 405 p. :ill. (chiefly col.), digital ;24 cm. - Green energy and technology,1865-3537. - Green energy and technology..
Feedstock composition variation and availability in various geographical regions in the world -- Biomass collection and storage and successful supply chain from farm to factory -- Fruit and vegetable waste chitin DDGs bread waste broken rice beet root Unexplored feedstock for biorefineries -- Process parameters governing effective biomass pretreatment on oligosaccharides and hemicellulosic monomeric sugars recovery -- Process parameters governing effective enzymatic hydrolysis and cellulosic sugars recovery.
This book includes fifteen chapters in the field of bioenergy, agriculture, energy systems, and waste from environment using reactor configurations analysis for biorefinery processes. It discusses recent biorefineries for 1G, 1.5G, 2G, and 3G sugars or ethanol from lignocellulose biomass and some unexplored feedstocks. Different process parameters governing effective biomass pretreatment and production through different bioreactors configuration such as counter-current, percolation, plug-flow, and shrinking bed in enzymatic biomass hydrolysis and fuels and chemical production. In extend to production, life cycle assessment and circular economy in biorefinery process will be getting chapters from authors. It concludes with the latest topics on biorefineries, including reactor configurations prediction through AL/ML and optimizing through AI-driven simulations and Government regulations and policies to support circular economic initiatives from strategies for the transition to advanced bioethanol production.
ISBN: 9789819539130
Standard No.: 10.1007/978-981-95-3913-0doiSubjects--Topical Terms:
683849
Biomass energy.
LC Class. No.: TP339
Dewey Class. No.: 662.88
Biorefineries in circular bioeconomy = reactor configurations analysis /
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This book includes fifteen chapters in the field of bioenergy, agriculture, energy systems, and waste from environment using reactor configurations analysis for biorefinery processes. It discusses recent biorefineries for 1G, 1.5G, 2G, and 3G sugars or ethanol from lignocellulose biomass and some unexplored feedstocks. Different process parameters governing effective biomass pretreatment and production through different bioreactors configuration such as counter-current, percolation, plug-flow, and shrinking bed in enzymatic biomass hydrolysis and fuels and chemical production. In extend to production, life cycle assessment and circular economy in biorefinery process will be getting chapters from authors. It concludes with the latest topics on biorefineries, including reactor configurations prediction through AL/ML and optimizing through AI-driven simulations and Government regulations and policies to support circular economic initiatives from strategies for the transition to advanced bioethanol production.
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