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Extremophilic enzymatic processing o...
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Krishnaraj, R. Navanietha.
Extremophilic enzymatic processing of lignocellulosic feedstocks to bioenergy
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Extremophilic enzymatic processing of lignocellulosic feedstocks to bioenergyedited by Rajesh K. Sani, R. Navanietha Krishnaraj.
其他作者:
Sani, Rajesh K.
出版者:
Cham :Springer International Publishing :2017.
面頁冊數:
xvi, 308 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
標題:
ExtremozymesBiotechnology.
電子資源:
http://dx.doi.org/10.1007/978-3-319-54684-1
ISBN:
9783319546841$q(electronic bk.)
Extremophilic enzymatic processing of lignocellulosic feedstocks to bioenergy
Extremophilic enzymatic processing of lignocellulosic feedstocks to bioenergy
[electronic resource] /edited by Rajesh K. Sani, R. Navanietha Krishnaraj. - Cham :Springer International Publishing :2017. - xvi, 308 p. :ill., digital ;24 cm.
Introduction -- Fundamentals of enzymatic processes -- Pretreatment of lignocellulosic feedstocks -- Approaches for bioprospecting cellulases -- Extremophilic xylanases -- Lytic polysaccharide monooxygensases -- Recent advances in extremophilic α-amylases -- Extremophilic ligninolytic enzymes -- Extremophilic pectinases -- An overview on extremophilic esterases -- Extremophilic esterases for bioprocessing of lignocellulosic feedstocks -- An overview on extremophilic chitinases -- Extremophilic lipases -- Bioprospection of extremozymes for conversion of lignocellulosic feedstocks to bio-ethanol and other biochemicals.
This book introduces fundamentals of enzymatic processes, various renewable energy resources and their pretreatment processes. It presents in-depth review of extremophilic enzymes (e.g., Cellulases, Xylanases, Lytic Polysaccharide Monooxygenases, Amylases, Ligninases, Pectinases, Esterases, and Chitinases) which can be used in several biotechnological processes. In addition, the authors present expert knowledge on how to engineer enzymes for enhanced conversion of lignocellulosic feedstocks to biofuels. Extremozymes play important roles in many kinds of bioprocessing e.g., in conversion of non-food biomass into usable power. Existing enzymatic technologies, including hydrolysis of lignocellulose into sugars, have several limitations such as they have very slow enzymatic hydrolysis rates, yields low products, requires high dosages of enzymes, and are sensitive to microbial contamination problems. These limitations could be overcome using extremophilic enzymes.
ISBN: 9783319546841$q(electronic bk.)
Standard No.: 10.1007/978-3-319-54684-1doiSubjects--Topical Terms:
713312
Extremozymes
--Biotechnology.
LC Class. No.: TP248.27.M53
Dewey Class. No.: 660.62
Extremophilic enzymatic processing of lignocellulosic feedstocks to bioenergy
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Introduction -- Fundamentals of enzymatic processes -- Pretreatment of lignocellulosic feedstocks -- Approaches for bioprospecting cellulases -- Extremophilic xylanases -- Lytic polysaccharide monooxygensases -- Recent advances in extremophilic α-amylases -- Extremophilic ligninolytic enzymes -- Extremophilic pectinases -- An overview on extremophilic esterases -- Extremophilic esterases for bioprocessing of lignocellulosic feedstocks -- An overview on extremophilic chitinases -- Extremophilic lipases -- Bioprospection of extremozymes for conversion of lignocellulosic feedstocks to bio-ethanol and other biochemicals.
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This book introduces fundamentals of enzymatic processes, various renewable energy resources and their pretreatment processes. It presents in-depth review of extremophilic enzymes (e.g., Cellulases, Xylanases, Lytic Polysaccharide Monooxygenases, Amylases, Ligninases, Pectinases, Esterases, and Chitinases) which can be used in several biotechnological processes. In addition, the authors present expert knowledge on how to engineer enzymes for enhanced conversion of lignocellulosic feedstocks to biofuels. Extremozymes play important roles in many kinds of bioprocessing e.g., in conversion of non-food biomass into usable power. Existing enzymatic technologies, including hydrolysis of lignocellulose into sugars, have several limitations such as they have very slow enzymatic hydrolysis rates, yields low products, requires high dosages of enzymes, and are sensitive to microbial contamination problems. These limitations could be overcome using extremophilic enzymes.
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