Оценки пользователей:
80%
20%
150
38

Описание Bioprocessing Technologies in Biorefinery for Sustainable Production of Fuels, Chemicals, and Polymers

Sets the stage for large-scale production of biofuels and bio-based chemicals In response to diminishing supplies as well as the environmental hazards posed by fossil fuels and petrochemicals, interest and demand for green, sustainable biofuels and bio-based chemicals are soaring. Biomass may be the solution. It is an abundant carbon-neutral renewable feedstock that can be used for the production of fuels and chemicals. Currently, biorefineries use corn, soybeans, and sugarcane for bioethanol and biodiesel production; however, there are many challenges facing biorefineries, preventing biomass from reaching its full potential. This book provides a comprehensive review of bioprocessing technologies that use lignocellulosic biomass for the production of biofuels, biochemicals, and biopolymers. It begins with an overview of integrated biorefineries. Next, it covers: Biomass feedstocks, including sugar, starch, oil, and energy crops as well as microalgae Pretreatment technologies for lignocellulosic biomass Hydrolytic enzymes used in biorefineries for the hydrolysis of starch and lignocelluloses Bioconversion technologies for current and future biofuels such as ethanol, biodiesel, butanol, hydrogen, and biogas Specialty chemicals, building block chemicals, and biopolymers produced via fermentation Phytochemicals and functional food ingredients extracted from plant materials All the chapters have been written and edited by leading experts in bioprocessing and biorefining technologies. Contributions are based on a thorough review of the literature as well as the authors' firsthand experience developing and working with bioprocessing technologies. By setting forth the current state of the technology and pointing to promising new directions in research, Bioprocessing Technologies in Biorefinery for Sustainable Production of Fuels, Chemicals, and Polymers will enable readers to move towards large-scale, sustainable, and economical production of biofuels and bio-based chemicals.

Рекомендуем к прочтению

Практикум по общей химической технологии полимеров. Часть 2 - Р. А. Ахмедьянова
Практикум по общей химической технологии полимеров. Часть 2
Р. А. Ахмедьянова
Практикум по общей химической технологии полимеров. Часть 1 - Е. И. Григорьев
Практикум по общей химической технологии полимеров. Часть 1
Е. И. Григорьев
Проведение научных исследований в области инноваций и высоких технологий нефтехимического комплекса - Коллектив авторов
Проведение научных исследований в области инноваций и высоких технологий нефтехимического комплекса
Коллектив авторов
Химия и технология продуктов тонкого органического синтеза - С. Бухаров
Химия и технология продуктов тонкого органического синтеза
С. Бухаров
Получение и свойства динамически вулканизованных термоэластопластичных материалов - С. Вольфсон
Получение и свойства динамически вулканизованных термоэластопластичных материалов
С. Вольфсон
Нанокомпозиты на основе полиолефинов и каучуков со слоистыми силикатами - М. А. Ибрагимов
Нанокомпозиты на основе полиолефинов и каучуков со слоистыми силикатами
М. А. Ибрагимов
Технология склеивания изделий из композиционных материалов - Н. А. Алексеева
Технология склеивания изделий из композиционных материалов
Н. А. Алексеева
Химия и физика полимеров. Часть 1. Химия - Л. Закирова
Химия и физика полимеров. Часть 1. Химия
Л. Закирова