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Clean Hydrogen: From Production to Mobility

Autor Medhat A. Nemitallah
en Limba Engleză Paperback – mar 2027
Clean Hydrogen: From Production to Mobility serves as an authoritative reference for researchers, engineers, technology developers, and decision‑makers involved in advancing hydrogen technologies. The book responds to the growing need for integrated, engineering‑focused knowledge by providing an in‑depth examination of low‑carbon hydrogen production pathways, storage solutions, and transportation systems. It covers both established and emerging methods, including sorption‑enhanced reforming, bio‑hydrogen generation from microalgae, and subsurface in‑situ hydrogen production with integrated CO₂ sequestration, while emphasizing process intensification, system integration, and techno‑economic evaluation to support scalable and commercially viable deployment. Drawing on fundamental principles, advanced process designs, modeling and simulation approaches, and environmental considerations, the book equips readers with a systems‑level perspective essential for optimizing hydrogen supply chains and reducing lifecycle emissions. The detailed table of contents spans hydrogen color classifications, material‑ and physical‑based storage technologies, transport infrastructure, and next‑generation production routes. Each chapter incorporates practical applications, case studies, and analytical techniques, enhancing the book’s utility for both academic research and industrial practice. Aligned with the UN Sustainable Development Goals, including Affordable and Clean Energy (SDG 7), Industry, Innovation and Infrastructure (SDG 9), Responsible Consumption and Production (SDG 12), and Climate Action (SDG 13)—this reference empowers professionals to evaluate, innovate, and implement low‑carbon hydrogen solutions. By combining scientific rigor with practical engineering insights, the volume offers a vital resource for advancing hydrogen’s role in the global energy transition and supporting the development of sustainable, climate‑aligned energy systems.

  • Delivers a unified, engineering‑driven treatment of advanced hydrogen production pathways, covering sorption‑enhanced processes, in‑well hydrogen generation, microalgae systems, and process‑intensified technologies to provide a state‑of‑the‑art view of low‑carbon hydrogen production
  • Offers rigorous quantitative analysis including thermodynamics, kinetics, reactor modeling, and techno‑economics to enable evidence‑based comparison, design, and scale‑up of hydrogen production routes
  • Presents an end‑to‑end systems framework that links hydrogen production with storage, transportation, and utilization, supporting holistic planning across the entire hydrogen value chain
  • Showcases cutting‑edge innovations such as microalgae‑based bio‑hydrogen, photobiological systems, and in‑situ CO₂‑integrated subsurface hydrogen generation, positioning readers at the forefront of emerging hydrogen technologies
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Specificații

ISBN-13: 9780443493737
ISBN-10: 0443493731
Pagini: 450
Dimensiuni: 152 x 229 mm
Editura: ELSEVIER SCIENCE

Cuprins

1. Hydrogen energy processes from production to mobility
2. Sorption-enhanced steam reforming for clean hydrogen production
3. Clean hydrogen production via sorption enhanced water gas shift reaction
4. In-well hydrogen production with integrated in-situ CO2 sequestration
5. Hydrogen production via microalgae
6. Techno-economics of hydrogen production using current and emerging processes
7. Hydrogen mobility in gas turbines and internal combustion engines

Notă biografică

Dr. Medhat A. Nemitallah is an experienced Faculty and researcher with a demonstrated history of working in higher education and industry. Currently, he is an Associate Professor IN Aerospace Engineering Department at King Fahd University of Petroleum & Minerals (KFUPM) - KSA. He is an experienced Faculty in terms of students' advising and teaching a wide range of undergraduate/graduate courses in different Universities with students' evaluations above all standards. He acted as an Associate Editor, ASME Journal of Energy Resources Technology, from 2021-2024. He had a strong education and professionally graduated from Alexandria University - Egypt, Massachusetts Institute of Technology (MIT) - USA, and KFUPM - KSA. He specializes mainly in experimental and numerical combustion, clean combustion technologies, hydrogen mobility, hydrogen production, and carbon capture techniques for the control of global warming. In this regard, he performed extensive research on the above topics with an incredible number of publications, including three textbooks, two book chapters, over 20 issued patents, and about 200 journal/conference publications. He has been involved in research projects with the industrial sector in Saudi Arabia including Saudi Aramco and SABIC companies. He was assigned through an official committee created by the department chairman to develop a PhD program for the Aerospace Engineering Department at KFUPM. He had the chance to have international collaboration with international institutions including MIT, University of Rostock, Air products, US-DOE, NETL, Baker Hughes, Cranfield University, and Newcastle University.