Springer, 2016. – 560 p. – ISBN: 9784431559498This book, edited by members of the Committee of Future Energy and Social Systems, The Society of Chemical Engineers, Japan, describes energy technology roadmaps for Japan post-Fukushima. In this work, energy technology experts show quantitatively the advantages and disadvantages of major energy technologies with which they are involved, in a unified chapter structure with figures illustrating the technology development perspectives. The future energy vision for Japan together with the pathway is quantitatively discussed, explicitly considering the contributions of individual energy technology by referring to the technology roadmaps. The pathways for future energy vision thus derived will be useful not only for all energy researchers but also for graduate students in the field to grasp the potential of the technologies and future energy system of Japan.Introduction to Future Energy Systems Based on Feasible Technologies Beyond 2030 Future Energy System and Executive Summaries of the Parts Roadmap of Energy Technologies for Envisioning Future Energy Systems Multiple Aspects of Energy Systems in Japan: Present and Future Perspectives Present Status of Japan’s Energy Sustainable Production and Stable Transportation of Energy Resources: Measures Toward 2050 Fukushima Nuclear Power Plant Accident and Thereafter Energy Policy and Perspectives Advanced Use of Secondary Energy Media Large-Scale Electrical Energy Storage Systems Heat Storage, Transportation, and Transfer Hydrogen Production Concept of Energy Carrier, Candidate Materials, and Reactions Energy Supply Infrastructur Electricity Grid Infrastructure Gas Supply Infrastructure Infrastructure for Next-Generation Vehicles Electric Power Generation and Its Backend Technology Thermal Power Generation Nuclear Power Generation Nuclear Waste and Power Generation Hydropower Generation Geothermal Power Generation Wind Power Generation Photovoltaic Power Generation CO2 Capture, Transportation, and Storage Technology Topic: Compressed Air Energy Storage (CAES) Topic: Distributed Cooperative Heat Supply System as a Measure Against Fluctuating Renewable Electricity Output Primary and Secondary Sectors of Industry Yasuhiro Fukushima Chemical Industry Area-Wide Energy Saving in Heavy Chemical Complexes Using Area-Wide Pinch Technology Forestry and Wood Industry Agriculture Waste-Derived Energy Topic: CO2 Breakthrough Program by COURSE50 in Japanese Steel Industry Sector Topic: Hybrid Steel Works Topic: Utilization of Heat and Energy by Small- to Medium-Sized Manufacturers: Case of the Molding Industry Topic: Regional Utilization of Unused Agricultural Waste Topic: Energy Recovery from Mushroom Culture Waste and the Use of Its Ash as Fertilizer Topic: Organic Hydride for Hydrogen Energy Carrier Topic: Liquid Biofuel Production Commercial and Residential Energy Utilization Commercial and Residential Buildings Smart Community Fuel Cell Combined Heat and Power Systems in Residential Sector Nanoelectronics with Low Power Consumption Topic: Thermally Driven Heat Pumps Topic: Materials for Thermochemical Energy Storage Transportation Automotive Internal Combustion Engines Secondary Batteries and Fuel Cell Systems for Next-Generation Vehicles Power Electronics for Vehicles and Energy Systems Effective Thermal Energy Utilization for Automobile
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