Subramani / Basile | Compendium of Hydrogen Energy | Buch | 978-1-78242-361-4 | www.sack.de

Buch, Englisch, 550 Seiten, Format (B × H): 239 mm x 160 mm, Gewicht: 1000 g

Reihe: Woodhead Publishing Series in Energy

Subramani / Basile

Compendium of Hydrogen Energy

Hydrogen Production and Purification
Erscheinungsjahr 2015
ISBN: 978-1-78242-361-4
Verlag: Elsevier Science & Technology

Hydrogen Production and Purification

Buch, Englisch, 550 Seiten, Format (B × H): 239 mm x 160 mm, Gewicht: 1000 g

Reihe: Woodhead Publishing Series in Energy

ISBN: 978-1-78242-361-4
Verlag: Elsevier Science & Technology


Compendium of Hydrogen Energy: Hydrogen Production and Purification, the first text in a four-volume series, focuses on the production of hydrogen. As many experts believe that the hydrogen economy will eventually replace the fossil fuel economy as our primary source of energy, the text provides a timely discussion on this interesting topic.

The text details the methods of hydrogen production using fossil fuels, also exploring sustainable extraction methods of hydrogen production from water and hydrogen purification processes.

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Zielgruppe


<p>1) academic researchers and postgraduate students working in the area of the hydrogen production </p> <p>2) R&D managers in power generation companies studying next generation fuels</p> <p>3) academic researchers and postgraduate students working in the wider area of the hydrogen economy</p>

Weitere Infos & Material


Part One - Introduction to hydrogen 1. Introduction to hydrogen and its properties Velu Subramani, BP Products North America, Inc, USA 2. Introduction to hydrogen production José Luis García Fierro, CSIC, Spain 3. Economics of hydrogen production Paul Dodds, University College London, UK

Part Two - Conventional hydrogen production methods 4. Hydrogen production by steam reforming of natural gas and other non-renewable feedstocks Lucia Garcia, Universidad de Zaragoza, Spain 5. Hydrogen production by reforming of bio-alcohols Francesco Frusteri, ITAE-CNR, Italy 6. Hydrogen production by gasification of biomass and opportunity fuels Paul A. Charpentier, The University of Western Ontario, Canada

Part Three - Production of hydrogen through electrolysis 7. Hydrogen production using high pressure electrolyzers Richard Hanke-Rauschenbach, Max Planck Institute for Dynamics of Complex Technical Systems, Germany 8. Hydrogen production by high temperature steam electrolysis Julie Mougin, CEA, Feance 9. Hydrogen production by polymer electrolyte membrane water electrolysis Pierre Millet, University of Paris, France

Part Four - Emerging methods for the production of hydrogen 10. Hydrogen production using photobiological methods Suleyman I. Allakhverdiev, Russian Academy of Sciences, Russia 11. Hydrogen production via thermochemical water-splitting Martin Roeb, Christian Sattler and Christos Agrafiotis, DLR, Germany 12. Hydrogen production via the Kværner process and plasma reforming Dae-Hoon Lee, Korea Institute of Machinery & Materials

Part Five - Hydrogen purification and low-carbon hydrogen production 13. Hydrogen purification methods: reduction and oxidation reactions, metal hydrides and adsorption Esther Acha, Engineering Faculty of Bilbao (UPV/EHU), Spain 14. Polymeric membranes for the purification of hydrogen John Jansen 15. Single-stage hydrogen production and separation from fossil fuels using micro and macro-membrane reactors Angelo Basile 16. Chemical and calcium looping reforming for hydrogen production and carbon dioxide capture Ben Anthony, Cranfield University 17. Low-carbon production of hydrogen from fossil fuels Nazim Muradov, University of Central Florida, USA


Basile, Angelo
Angelo Basile is a Full Professor and a leading authority in membrane science and technology. Since 2014, he has served as Full Professor in Systems, Methods and Technologies of Chemical Engineering Processes at CNR-ITM in Rende, Italy. His work covers hydrogen purification and production using membrane reactors, CO2 capture, process intensification, and the treatment of industrial effluents with advanced membrane operations. Basile has edited many scientific books and authored numerous book chapters, bridging complex research with clear knowledge for engineers and scientists. Motivated by the role of AI/ML in accelerating membrane process design and automation, he supports integrating data-driven methods for smart plants and reaction–separation optimisation.



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