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Biohydrogen Production from Organic Wastes

Biohydrogen Production from Organic Wastes

Autorzy
Wydawnictwo Springer Nature Customer Service Center GmbH
Data wydania 01/01/2018
Wydanie Pierwsze
Liczba stron 433
Forma publikacji książka w miękkiej oprawie
Język angielski
ISBN 9789811351983
Kategorie Technologia źródła energii alternatywnej i odnawialnej
768.00 PLN (z VAT)
$172.76 / €164.66 / £142.94 /
Produkt dostępny
Dostawa 2 dni
Ilość
Do schowka

Opis książki

This book comprehensively introduces fundamentals and applications of fermentative hydrogen production from organic wastes, consisting of eight chapters, covering the microbiology, biochemistry and enzymology of hydrogen production, the enrichment of hydrogen-producing microorganisms, the pretreatment of various organic wastes for hydrogen production, the influence of different physicochemical factors on hydrogen production, the kinetic models and simulation of biological process of fermentative hydrogen production, the optimization of biological hydrogen production process and the fermentative hydrogen production from sewage sludge. The book summarizes the most recent advances that have been made in this field and discusses bottlenecks of further development. This book gives a holistic picture of this technology and details the knowledge through illustrative diagrams, flow charts, and comprehensive tables. It is intended for undergraduate and graduate students who are interested in bioenergy and wastes management, researchers exploring microbial fermentation process, and engineers working on system optimization or other bioenergy applications.

Biohydrogen Production from Organic Wastes

Spis treści

Characterization of organic wastes used for biohydrogen production.- Pretreatment of organic wastes for biohydrogen production.- Hydrogen-producing microorganisms.- Influencing factors for biohydrogen production.- Kinetics of biohydrogen production.- Optimization of process for biohydrogen production.- Bioreactors for biohydrogen production.- Microbial community analysis during biohydrogen production.

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