|Item||:||Fast Pyrolysis of Biomass: Advances in Science and Technology [Hardcover]|
|Price||:||$226.99 (see below)|
|Publisher||Publisher||:||Royal Society of Chemistry|
Fast pyrolysis and related catalytic pyrolysis are of increasing interest as pathways to advanced drop-in biofuels. This book explores several unresolved, and sometimes controversial, questions about the thermal deconstruction of biomass under conditions of fast pyrolysis and catalytic pyrolysis. It is ideal for researchers and industrialist working in pyrolysis and biofuels, this book stimulates discussion on the various competing theories of thermal deconstruction of plant polymers.
Fast pyrolysis and related catalytic pyrolysis are of increasing interest as pathways to advanced biofuels that closely mimic traditional petroleum products. Research has moved from empirical investigations to more fundamental studies of pyrolysis mechanisms. Theories on the chemical and physical pathways from plant polymers to pyrolysis products have proliferated as a result.
This book brings together the latest developments in pyrolysis science and technology. It examines, reviews and challenges the unresolved and sometimes controversial questions about pyrolysis, helping advance the understanding of this important technology and stimulating discussion on the various competing theories of thermal deconstruction of plant polymers. Beginning with an introduction to the biomass-to-biofuels processviafast pyrolysis and catalytic pyrolysis, chapters address prominent questions such as whether free radicals or concerted reactions dominate deconstruction reactions. Finally, the book concludes with an economic analysis of fast pyrolysisversuscatalytic pyrolysis.
This book will be of interest to advanced students and researchers interested in the science behind renewable fuel technology, and particularly the thermochemical processing of biomass.Introduction; Polysaccharide Depolymerization/Deconstruction Reactions during Fast Pyrolysis; Lignin Depolymerization/Deconstruction Reactions during Fast Pyrolysis; Transport and Secondary Reactions of Depolymerizedlsm
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