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Hemicellulose Biorefinery: A Sustainable Solution for Value Addition to Bio-Based Products and Bioenergy -

Hemicellulose Biorefinery: A Sustainable Solution for Value Addition to Bio-Based Products and Bioenergy (eBook)

Michel Brienzo (Herausgeber)

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2022 | 1st ed. 2022
XI, 507 Seiten
Springer Singapore (Verlag)
978-981-16-3682-0 (ISBN)
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This edited book provides knowledge about hemicelluloses biorefinery approaching production life cycle, circular economy, and valorization by obtaining value-added bioproducts and bioenergy. A special focus is dedicated to chemical and biochemical compounds produced from the hemicelluloses derivatives platform. Hemicelluloses are polysaccharides located into plant cell wall, with diverse chemical structures and properties. It is the second most spread organic polymer on nature and found in vast lignocellulosic materials from agro and industrial wastes, therefore, hemicelluloses are considered as abundant and renewable raw material/feedstock. Biorefinery concept contributes to hemicelluloses production associated with biomass industrial processes. Hemicelluloses are alternative sources of sugars for renewable fuels and as platform for chemicals production. This book reviews chemical processes for sugar production and degradation, obtaining of intermediate and final products, and challenges for pentose fermentation. Aspects of hemicelluloses chain chemical and enzymatic modifications are presented with focus on physicochemical properties improvement for bioplastic and biomaterial approaches. Hemicelluloses are presented as sources for advanced materials in biomedical and pharmaceutical uses, and as hydrogel for chemical and medicine deliveries. An interdisciplinary approach is needed to cover all the processes involving hemicelluloses, its conversion into final and intermediate value-added compounds, and bioenergy production. Covering this context, this book is of interest to teachers, students, researchers, and scientists dedicated to biomass valorization. This book is a knowledge source of basic aspects to advanced processing and application for graduate students, particularly. Besides, the book serves as additional reading material for undergraduate students (from different courses) with a deep interest in biomass and waste conversion, valorization, and chemical products from hemicelluloses

Dr. Michel Brienzo is a researcher at São Paulo State University (Unesp), Institute for Research in Bioenergy (IPBEN), working in Biomass Characterization for Bioenergy and Biorefinery, coordinating the Lab of Characterization and Conversion of Biomass.  Dr. Brienzo holds B.Eng in Biochemical with an emphasis in Biotechnology and a Ph.D. grade in Applied Microbiology Sciences from the University of São Paulo (USP). Dr. Brienzo worked as a researcher for 3 years at the National Institute of Metrology, Quality and Technology (Inmetro), working in the physicochemical characterization of biomass and enzymatic digestibility of lignocellulose (chemistry and enzymology of biomass bioconversion). Dr. Brienzo has a post-doctoral position achieved at Stellenbosch University (South Africa) in the Process Engineering Department studying physicochemical properties of biomass. Dr. Brienzo researches are focused mainly on the biomass chemical and physicochemical properties, polysaccharides extraction, pretreatment, and enzymatic hydrolysis. Hemicellulose has special attention on his projects that study its solubilization, conversion into bioactive compounds, and bioplastic/biomaterials obtaining.
This edited book provides knowledge about hemicelluloses biorefinery approaching production life cycle, circular economy, and valorization by obtaining value-added bioproducts and bioenergy. A special focus is dedicated to chemical and biochemical compounds produced from the hemicelluloses derivatives platform. Hemicelluloses are polysaccharides located into plant cell wall, with diverse chemical structures and properties. It is the second most spread organic polymer on nature and found in vast lignocellulosic materials from agro and industrial wastes, therefore, hemicelluloses are considered as abundant and renewable raw material/feedstock. Biorefinery concept contributes to hemicelluloses production associated with biomass industrial processes. Hemicelluloses are alternative sources of sugars for renewable fuels and as platform for chemicals production. This book reviews chemical processes for sugar production and degradation, obtaining of intermediate and final products, and challenges for pentose fermentation. Aspects of hemicelluloses chain chemical and enzymatic modifications are presented with focus on physicochemical properties improvement for bioplastic and biomaterial approaches. Hemicelluloses are presented as sources for advanced materials in biomedical and pharmaceutical uses, and as hydrogel for chemical and medicine deliveries. An interdisciplinary approach is needed to cover all the processes involving hemicelluloses, its conversion into final and intermediate value-added compounds, and bioenergy production. Covering this context, this book is of interest to teachers, students, researchers, and scientists dedicated to biomass valorization. This book is a knowledge source of basic aspects to advanced processing and application for graduate students, particularly. Besides, the book serves as additional reading material for undergraduate students (from different courses) with a deep interest in biomass and waste conversion, valorization, and chemical products from hemicelluloses
Erscheint lt. Verlag 3.1.2022
Reihe/Serie Clean Energy Production Technologies
Clean Energy Production Technologies
Zusatzinfo XI, 507 p. 1 illus.
Sprache englisch
Themenwelt Naturwissenschaften Biologie Biochemie
Naturwissenschaften Biologie Botanik
Naturwissenschaften Biologie Mikrobiologie / Immunologie
Naturwissenschaften Chemie
Schlagworte Biopackage • enzymes • Hemicellulose • Hemicellulose-based materials • Hemicellulose solubilization • Hydrogels • Polysaccharide film • xylooligosaccharides
ISBN-10 981-16-3682-6 / 9811636826
ISBN-13 978-981-16-3682-0 / 9789811636820
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