Provides a comprehensive guide to hydrogen technologies for sustainable energy production and practical deployment
With the growing urgency to reduce greenhouse gas emissions, decarbonize heavy industries, and diversify energy sources, hydrogen stands out as a versatile, clean energy carrier. Next-Generation Hydrogen Economy: Production, Storage, and Fuel Cell Technologies serves as an interdisciplinary roadmap for understanding and leveraging hydrogen's vast potential. This timely volume meets the pressing need for a unified, research-informed resource that integrates hydrogen science, engineering, and policy--addressing both theoretical foundations and real-world implementation.
Written by experts in material science and energy research, Next-Generation Hydrogen Economy thoroughly examines hydrogen's role in modern and future energy systems. The authors explore advanced production methods such as electrolysis, photocatalysis, and biological synthesis, while also detailing innovative storage technologies including metal hydrides, metal-organic frameworks (MOFs), and liquid organic hydrogen carriers (LOHCs). Practical chapters on hydrogen fuel cells highlight applications in transportation, grid storage, and heavy industry, with in-depth discussions on commercialization, economic feasibility, infrastructure challenges, and safety standards. Bridging research and practice, the book also delves into AI-driven catalyst development, smart hydrogen cities, and other emerging areas in the fields.
Equipping readers with the knowledge to drive innovation and make informed decisions in the rapidly evolving hydrogen economy, Next-Generation Hydrogen Economy:
Emphasizing cross-sectoral integration of hydrogen, Next-Generation Hydrogen Economy: Production, Storage, and Fuel Cell Technologies is ideal for graduate and postgraduate students in courses such as Renewable Energy Systems, Energy Materials, and Sustainable Engineering within physics, chemistry, and energy engineering programs. It also serves as a valuable reference for professionals in electrochemistry, clean energy R&D, and energy policy analysis.
Les informations fournies dans la section « Synopsis » peuvent faire référence à une autre édition de ce titre.
Dr. Peeyush Phogat is a Project Associate at CSIR-National Institute of Science Communication and Policy Research (NIScPR). He has extensive research expertise in energy materials, particularly solar energy and capacitor technologies.
Dr. Shreya Sharma is a Project Associate at CSIR-NIScPR, India. Her research focuses on nanomaterials and their electrochemical properties, with an emphasis on transition metal dichalcogenides and other 2D materials.
Satyam Rawat is currently pursuing an M.Sc. in Physics at Netaji Subhas University of Technology. His research interests include nanocomposite development for energy storage devices such as supercapacitors and photodetectors.
Les informations fournies dans la section « A propos du livre » peuvent faire référence à une autre édition de ce titre.
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Buch. Etat : Neu. Neuware -This book offers a thorough exploration of hydrogen technologies, emphasizing their production, storage, and fuel cell applications. It delves into innovative hydrogen generation methods, including electrolysis, photocatalysis, and biological techniques. Additionally, it covers advanced storage solutions such as metal hydrides, MOFs, LOHCs, and cryogenic storage, and details how hydrogen can be integrated into fuel cells for use in transportation, industry, and grid applications. By bridging the gap between fundamental hydrogen science and practical applications, the book incorporates insights from material science, engineering, and policy-making to provide a comprehensive view of hydrogen s role in the global energy transition. 384 pp. Englisch. N° de réf. du vendeur 9783527356010
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Buch. Etat : Neu. Neuware -This book offers a thorough exploration of hydrogen technologies, emphasizing their production, storage, and fuel cell applications. It delves into innovative hydrogen generation methods, including electrolysis, photocatalysis, and biological techniques. Additionally, it covers advanced storage solutions such as metal hydrides, MOFs, LOHCs, and cryogenic storage, and details how hydrogen can be integrated into fuel cells for use in transportation, industry, and grid applications. By bridging the gap between fundamental hydrogen science and practical applications, the book incorporates insights from material science, engineering, and policy-making to provide a comprehensive view of hydrogen s role in the global energy transition. 384 pp. Englisch. N° de réf. du vendeur 9783527356010
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