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    1. Naturvetenskap och teknik
    2. Teknik och industri
    3. Energiteknik

    Hydrogen Economy

    Processes, Supply Chain, Life Cycle Analysis and Energy Transition for Sustainability

    AvAntonio Scipioni,Alessandro Manzardo

    Häftad, Engelska, 2023

    1 727 kr

    Beställningsvara. Skickas inom 10-15 vardagar. Fri frakt över 249 kr.

    Beskrivning

    Hydrogen Economy: Supply Chain, Life Cycle Analysis and Energy Transition for Sustainability, Second Edition explores the challenges for the transition into a sustainable hydrogen economy. In this book, experts from various academic backgrounds discuss the tools and methodologies for the analysis, planning, design, and optimization of hydrogen supply chains. They examine the available technologies for hydrogen production, storage, transport, distribution, and energy conversion, providing a cross cutting perspective on their sustainability.

    This second edition of Hydrogen Economy is fully updated with new technologies and tools for design, optimization, assessment, and decision-making, and includes twelve new chapters divided into two new sections. Section III examines advanced hydrogen routines and technologies, including fuel cells and hybrid electric vehicles, new storage technologies, and biohydrogen production from waste, allowing for a more complete life cycle assessment of the entire supply chain. Section IV provides new insights into policy and future developments, discussing the role of Grey, Blue, and Green hydrogen in the energy transition, the application of hydrogen in decarbonization of heavy industry, hydrogen safety, and more, substantially broadening the scope of the 2nd Edition.

    Providing a broad overview of the subject and well-recognized tools to manage hydrogen sustainability, Hydrogen Economy Second Edition is an invaluable resource for engineering researchers and PhD students in energy, environmental and industrial areas, energy economy researchers, practicing hydrogen energy engineers and technicians, energy and environmental consultants, life cycle assessment practitioners and consultants.

    • Provides a broad perspective of the issues related to environmental, social and economic sustainability of hydrogen energy and its future perspectives
    • Presents the current applied research and available tools for managing and assessing hydrogen energy sustainability, such as LCA, optimization, multi-criteria decision making and supply chain optimization
    • Explores how experts in the field handle all issues related to the application of life cycle assessment for hydrogen production, storage, transport, distribution, safety, and end use

    Produktinformation

    • Utgivningsdatum:2023-01-19
    • Mått:152 x 229 x 34 mm
    • Vikt:1 000 g
    • Format:Häftad
    • Språk:Engelska
    • Antal sidor:660
    • Upplaga:2
    • Förlag:Elsevier Science
    • ISBN:9780323995146

    Utforska kategorier

    • Energiteknik inom Naturvetenskap och teknik

    Mer om författaren

    Antonio Scipioni, University of Padova. Professor at the Industrial Engineering Department. He is the Director of CESQA, a leading research group with outstanding research results in the field of environmental and energy management. He is the member of the national committee on environment that approve standards on environmental management issues. He has managed as scientific director several European funded projects for the University of Padova with partners from all over Europe and with a specific focus on Energy issues and sustainability. Alessandro Manzardo is a senior associate researcher in the field of footprint and sustainability assessment in the Department of Industrial Engineering at the University of Padova. He is the chair of the Italian committee at the ISO/TC 207 committee on ISO standards related to environment. He is an active member in several UNEP-Life Cycle Initiative processes on the definition of Life Cycle Assessment and Sustainability methods (e.g. Footprints). He has scored several papers on energy-related topics with specific focus on Hydrogen Energy. Jingzheng Ren is Assistant Professor of Modelling for Energy, Environment and Sustainability at the Department of Industrial and Systems Engineering of Hong Kong Polytechnic University (PolyU). He has also been nominated as adjunct/honorary associate professor of University of Southern Denmark (Denmark) and associated senior research fellow of the Institute for Security & Development Policy (Stockholm, Sweden). Prof. Ren serves as board member of several scientific journals and published more than 150 papers, authored 1 book, edited more than 10 books and published more than 40 book chapters. His research focuses on process system engineering for better sustainability and mathematical models for solving energy and environmental problems and promoting sustainability transition

    Innehållsförteckning

    • Part I: General1. The role of Hydrogen Energy: Strengths, Weaknesses, Opportunities and ThreatsJingzheng Ren2. Introduction of Hydrogen RoutinesDi Xu3. Critical Factors and Cause-Effect Analysis for Enhancing the Sustainability of Hydrogen Supply ChainJingzheng RenPart II: Design, Optimization, Assessment and Decision-making4. Design and operation of hydrogen supply chains: a review on technology integration and system optimization Catherine Azzaro-Pantel, Tchougoune Moustapha Mai and christian cristofari5. Superstructure-based modelling for hydrogen supply chains: a review for capturing centralized vs. decentralized optionsRenato Luise, Catherine Azzaro-Pantel and Annabelle Brisse6. Life Cycle Cost Analysis of Hydrogen Energy TechnologiesAntonella Petrillo7. Life Cycle Assessment of Solid Oxide Fuel Cells and Polymer Electrolyte Membrane Fuel Cells: A ReviewAlessandro Manzardo8. Comparison of Different Multicriteria Decision-Making Methodologies for Sustainability Decision MakingHanwei Liang9. Sustainability Decision Support Framework for the Prioritization of Hydrogen Energy SystemsJingzheng Ren10. Hydrogen location selection and optimization: advanced models and behavioral evidence Michael Kuby, Scott Kelley, Gil Tal and Andrew Martinez11. Hydrogen production technologies: conventional processesAbdalla Mohamed IbrahimPart III: Advanced hydrogen routines and technologies12. Biohydrogen Production from Waste Substrates and Its Techno-Economic AnalysisSankar Chakma and Pritam Kumar Dikshit13. Proton Exchange Membrane Fuel Cells: Recent Advances, Modeling, and Future TrendsFrancisco Jurado Melguizo, Wilian Paul Arévalo Cordero and Marcos Tostado-Véliz14. Electrolyser Technologies for Hydrogen EconomySarbjit Giddey, Gurpreet Kaur, Mandar Risbud, Nawshad Haque, Dattatray S. Dhawale and Haijin Zhu15. Hydrogen Safety, Risk, and Reliability AnalysisKatrina M. Groth and Ahmad Al-Douri16. Safety of Hydrogen for Large-Scale Energy Deployment in a Decarbonized EconomyChris LaFleur, Chris San Marchi, Ethan Hecht, Joseph Ronevich and Brian Ehrhart17. Opportunities and Future Challenges in Hydrogen Economy for Sustainable DevelopmentYi Dou, Jingzheng Ren, Lu Sun and Liang DongPart IV: Policies and Perspective18. Hydrogen Production Methods: Benefits, Opportunities, Costs, and RisksJinsoo Kim and Minyoung Yang19. Power to hydrogen concepts for 100% renewable and sustainable energy systemsAndreas Poullikkas and Pavlos NikolaidisPart I: General1. The role of Hydrogen Energy: Strengths, Weaknesses, Opportunities and ThreatsJingzheng Ren2. Introduction of Hydrogen RoutinesDi Xu3. Critical Factors and Cause-Effect Analysis for Enhancing the Sustainability of Hydrogen Supply ChainJingzheng RenPart II: Design, Optimization, Assessment and Decision-making4. Design and operation of hydrogen supply chains: a review on technology integration and system optimization Catherine Azzaro-Pantel, Tchougoune Moustapha Mai and christian cristofari5. Superstructure-based modelling for hydrogen supply chains: a review for capturing centralized vs. decentralized optionsRenato Luise, Catherine Azzaro-Pantel and Annabelle Brisse6. Life Cycle Cost Analysis of Hydrogen Energy TechnologiesAntonella Petrillo7. Life Cycle Assessment of Solid Oxide Fuel Cells and Polymer Electrolyte Membrane Fuel Cells: A ReviewAlessandro Manzardo8. Comparison of Different Multicriteria Decision-Making Methodologies for Sustainability Decision MakingHanwei Liang9. Sustainability Decision Support Framework for the Prioritization of Hydrogen Energy SystemsJingzheng Ren10. Hydrogen location selection and optimization: advanced models and behavioral evidence Michael Kuby, Scott Kelley, Gil Tal and Andrew Martinez11. Hydrogen production technologies: conventional processesAbdalla Mohamed IbrahimPart III: Advanced hydrogen routines and technologies12. Biohydrogen Production from Waste Substrates and Its Techno-Economic AnalysisSankar Chakma and Pritam Kumar Dikshit13. Proton Exchange Membrane Fuel Cells: Recent Advances, Modeling, and Future TrendsFrancisco Jurado Melguizo, Wilian Paul Arévalo Cordero and Marcos Tostado-Véliz14. Electrolyser Technologies for Hydrogen EconomySarbjit Giddey, Gurpreet Kaur, Mandar Risbud, Nawshad Haque, Dattatray S. Dhawale and Haijin Zhu15. Hydrogen Safety, Risk, and Reliability AnalysisKatrina M. Groth and Ahmad Al-Douri16. Safety of Hydrogen for Large-Scale Energy Deployment in a Decarbonized EconomyChris LaFleur, Chris San Marchi, Ethan Hecht, Joseph Ronevich and Brian Ehrhart17. Opportunities and Future Challenges in Hydrogen Economy for Sustainable DevelopmentYi Dou, Jingzheng Ren, Lu Sun and Liang DongPart IV: Policies and Perspective18. Hydrogen Production Methods: Benefits, Opportunities, Costs, and RisksJinsoo Kim and Minyoung Yang19. Power to hydrogen concepts for 100% renewable and sustainable energy systemsAndreas Poullikkas and Pavlos Nikolaidis