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Biomass Biofuels Biochemicals by Hu Li, Paperback | Indigo Chapters
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Biomass Biofuels Biochemicals by Hu Li, Paperback | Indigo Chapters in Ottawa, ON
From Hu Li
Current price: $340.50

From Hu Li
Biomass Biofuels Biochemicals by Hu Li, Paperback | Indigo Chapters in Ottawa, ON
Current price: $340.50
Loading Inventory...
Size: 1 x 9.25 x 1
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Biochemicals and Materials Production from Sustainable Biomass Resourcesprovides a detailed overview of the experimentally developed approaches and strategies that facilitate carbon-based materials and fine chemicals derivation from biomass feedstocks with robust catalyst systems and renewed conversion routes. In addition, the book highlights theoretical methods like techno-economic analysis of biobutanol synthesis. As academia and industry are now striving to substitute fossil-based chemicals with alternative renewable resources, second-generation lignocellulosic biomass which does not depend on the food cycle has become increasingly important. Lignocellulosic biomass is composed of three major polymeric components - lignin, cellulose and hemicellulose. The polymers can be degraded into monomeric counterparts through selective conversion routes like hydrolysis of cellulose to glucose and of hemicellulose to xylose. Includes the recent development of biomass-derived high-value chemicals and functional materialsDescribes theoretical and technical details of specific conversion routes and preparation methodsCovers jointly organic transformations, catalytic synthesis, reaction mechanisms, thermal stability, reaction parameters and solvent effects | Biomass Biofuels Biochemicals by Hu Li, Paperback | Indigo Chapters
Biochemicals and Materials Production from Sustainable Biomass Resourcesprovides a detailed overview of the experimentally developed approaches and strategies that facilitate carbon-based materials and fine chemicals derivation from biomass feedstocks with robust catalyst systems and renewed conversion routes. In addition, the book highlights theoretical methods like techno-economic analysis of biobutanol synthesis. As academia and industry are now striving to substitute fossil-based chemicals with alternative renewable resources, second-generation lignocellulosic biomass which does not depend on the food cycle has become increasingly important. Lignocellulosic biomass is composed of three major polymeric components - lignin, cellulose and hemicellulose. The polymers can be degraded into monomeric counterparts through selective conversion routes like hydrolysis of cellulose to glucose and of hemicellulose to xylose. Includes the recent development of biomass-derived high-value chemicals and functional materialsDescribes theoretical and technical details of specific conversion routes and preparation methodsCovers jointly organic transformations, catalytic synthesis, reaction mechanisms, thermal stability, reaction parameters and solvent effects | Biomass Biofuels Biochemicals by Hu Li, Paperback | Indigo Chapters

















