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14Veröffentlicht 1984UnknownFormat
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16Intro -- Title Page -- Copyright -- Table of Contents -- Contributors -- Chapter 1 Waste to energy: an overview by global perspective -- Abstract -- 1.1 Introduction -- 1.2 Potential waste biomass -- 1.3 Biofuels from waste -- 1.4 Socioeconomic perspective -- 1.5 Environmental perspective -- 1.6 Integrated approaches of biofuel from waste -- 1.7 Conclusion -- References -- Chapter 2 Potential of advanced photocatalytic technology for biodiesel production from waste oil -- Abstract -- 2.1 Introduction -- 2.2 Reaction process to produce biodiesel -- 2.3 Catalyst for biodiesel production -- 2.4 Photocatalyst -- 2.5 Fundamental of photocatalyst in biodiesel production -- 2.6 Parameters affecting on photocatalytic esterification -- 2.7 Conclusion -- Acknowledgments -- References -- Chapter 3 Biofuel production from food waste biomass and application of machine learning for process management -- Abstract -- 3.1 Introduction -- 3.2 Growing concern for food loss waste (FLW) -- 3.3 Conversion techniques -- 3.4 Thermochemical technology -- 3.5 Sustainable management of FW with machine learning -- 3.6 Prediction of energy demand and biofuel production from FW -- 3.7 Conclusion -- References -- Chapter 4 Biological conversion of lignocellulosic waste in the renewable energy -- Abstract -- 4.1 Introduction -- 4.2 Lignocellulosic biomass and technical benefits -- 4.3 The role of bacteria in the decomposition of plant biomass and the production of RE -- 4.4 The future of RE and the challenges -- 4.5 Conclusion -- References -- Chapter 5 The potential of sustainable biogas production from animal waste -- Abstract -- 5.1 Introduction -- 5.2 Biogas components -- 5.3 Factors affecting biogas production -- 5.4 Anaerobic fermentation -- 5.5 Environmental and economic benefits from biogas generation -- 5.6 The properties of the different gases compared to the biogas.UnknownFormat
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18Veröffentlicht 1984UnknownFormat