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Production of Biofuels and Chemicals with Microwave / edited by Zhen Fang, Richard L. Smith, Jr., Xinhua Qi.

Contributor(s): Fang, Zhen, editor literario | Smith, Jr., Richard L., editor literario | Qi, Xinhua, editor literario | SpringerLink (Online service)
Series: Biofuels and Biorefineries; 33Publisher: Dordrecht, Netherlands : Springer, 2015Description: 1 recurso en línea (XVI, 271 p.) : 105 ilustraciones, 65 ilustraciones en color.ISBN: 9789401796125.Subject: Energía eléctrica | Recursos energéticos renovables | BiotecnologíaDDC classification: Online resources: Acceso a este recurso digital (usuarios Universidad Europea de Madrid)Digital Resources
Contents:
Microwave Theory and Reactor Design -- Microwave-assisted Conversions and Syntheses -- Pretreatment Strategies and Techno-Economics.Â{u2802}Â{uE024}
Summary: Conversion of biomass into chemicals and biofuels is an active research and development area as trends move to replace traditional fossil fuels with renewable resources. By integrating processing methods with microwave and ultrasound irradiation into biorefineries, the time-scale of many operations can be greatly reduced while the efficiency of the reactions can be remarkably increased so that process intensification can be achieved. “Production of Biofuels and Chemicals with Microwaveâ€{u086E}d “Production of Biofuels and Chemicals with Ultrasoundâ€{u0872}e two independent volumes in the Biofuels and Biorefineries series that take different, but complementary approaches for the pretreatment and chemical transformation of biomass into chemicals and biofuels. The volume “Microwaveâ€{u0C32}ovides current research advances and prospects in theoretical and practical aspects of microwave irradiation including properties, effects and temperature monitoring, design of chemical reactors, synergistic effects on combining microwave, ultrasound, hydrodynamic cavitation and high-shear mixing into processes, chemical and catalytic conversion of lignin into chemicals, pyrolysis and gasification, syngas production from wastes, platform chemicals, algal biodiesel, cellulose-based nanocomposites, lignocellulosic biomass pretreatment, green chemistry metrics and energy consumption and techno-economic analysis for a catalytic pyrolysis facility that processes pellets into aromatics.šch of the 12 chapters has been peer-reviewed and edited to improve both the quality of the text and the scope and coverage of the topics.Â{u00AF}th volumes “Microwaveâ€{u086E}d “Ultrasoundâ€{u0872}e references designed for students, researchers, academicians and industrialists in the fields of chemistry and chemical engineering and include introductory chapters to highlight present concepts of the fundamental technologies and their application. Dr. Zhen Fang is Professor in Bioenergy, Leader and founder of biomass group, Chinese Academy of Sciences, Xishuangbanna Tropical Botanical Garden and is also adjunct Professor of Life Sciences, University of Science and Technology of China. Dr. Richard L Smith, Jr. is Professor of Chemical Engineering, Graduate School of Environmental Studies, Research Center of Supercritical Fluid Technology, Tohoku University, Japan. Dr. Xinhua Qi is Professor of Environmental Science, Nankai University, China.
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Holdings
Item type Current library Collection Call number Copy number Status Date due Barcode Item holds
LIBRO-E NO PRÉSTAMO LIBRO-E NO PRÉSTAMO Madrid Digital Acceso Electrónico (UEM) Ciencias e Ingeniería TP248.B55 P763 2015 EB (Browse shelf(Opens below)) .i11572590 Acceso electrónico eBOOK .i11572590
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Microwave Theory and Reactor Design -- Microwave-assisted Conversions and Syntheses -- Pretreatment Strategies and Techno-Economics.Â{u2802}Â{uE024}

Conversion of biomass into chemicals and biofuels is an active research and development area as trends move to replace traditional fossil fuels with renewable resources. By integrating processing methods with microwave and ultrasound irradiation into biorefineries, the time-scale of many operations can be greatly reduced while the efficiency of the reactions can be remarkably increased so that process intensification can be achieved. “Production of Biofuels and Chemicals with Microwaveâ€{u086E}d “Production of Biofuels and Chemicals with Ultrasoundâ€{u0872}e two independent volumes in the Biofuels and Biorefineries series that take different, but complementary approaches for the pretreatment and chemical transformation of biomass into chemicals and biofuels. The volume “Microwaveâ€{u0C32}ovides current research advances and prospects in theoretical and practical aspects of microwave irradiation including properties, effects and temperature monitoring, design of chemical reactors, synergistic effects on combining microwave, ultrasound, hydrodynamic cavitation and high-shear mixing into processes, chemical and catalytic conversion of lignin into chemicals, pyrolysis and gasification, syngas production from wastes, platform chemicals, algal biodiesel, cellulose-based nanocomposites, lignocellulosic biomass pretreatment, green chemistry metrics and energy consumption and techno-economic analysis for a catalytic pyrolysis facility that processes pellets into aromatics.šch of the 12 chapters has been peer-reviewed and edited to improve both the quality of the text and the scope and coverage of the topics.Â{u00AF}th volumes “Microwaveâ€{u086E}d “Ultrasoundâ€{u0872}e references designed for students, researchers, academicians and industrialists in the fields of chemistry and chemical engineering and include introductory chapters to highlight present concepts of the fundamental technologies and their application. Dr. Zhen Fang is Professor in Bioenergy, Leader and founder of biomass group, Chinese Academy of Sciences, Xishuangbanna Tropical Botanical Garden and is also adjunct Professor of Life Sciences, University of Science and Technology of China. Dr. Richard L Smith, Jr. is Professor of Chemical Engineering, Graduate School of Environmental Studies, Research Center of Supercritical Fluid Technology, Tohoku University, Japan. Dr. Xinhua Qi is Professor of Environmental Science, Nankai University, China.

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