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Hydrogen Production, Separation and Purification for Energy.

Author: Angelo Basile; Francesco Dalena; Jianhua Tong; T Nejat Veziroğlu
Publisher: Stevenage, Herfordshire : The Institution of Engineering and Technology, 2017.
Series: Energy Engineering.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
Hydrogen can be used for electricity generation, for transportation, as well as, mixed with natural gas, for heating, thus reducing the carbon emissions of all parts of the energy system. This book describes the current techniques for producing hydrogen and discusses the current challenges.
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Basile, Angelo.
Hydrogen Production, Separation and Purification for Energy.
Stevenage, Herfordshire : The Institution of Engineering and Technology, ©2017
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Angelo Basile; Francesco Dalena; Jianhua Tong; T Nejat Veziroğlu
ISBN: 9781785611018 1785611011
OCLC Number: 978625376
Description: 1 online resource (489 pages).
Contents: Preface; About the editors; 1. Structured catalyst for process intensification in hydrogen production by reforming processes --
Vincenzo Palma, Concetta Ruocco, Marco Martino, Eugenio Meloni and Antonio Ricca; 2. Bimetallic supported catalysts for hydrocarbons and alcohols reforming reactions --
Vincenzo Palma, Concetta Ruocco, Marco Martino, Eugenio Meloni and Antonio Ricca; 3. Catalysts for hydrogen production from renewable raw materials, by-products and waste --
Claudio Evangelisti, Filippo Bossola and Vladimiro Dal Santo. 4. Ni- and Cu-based catalysts for methanol and ethanol reforming --
Mika Huuhtanen, Prem Kumar Seelam and Riitta L. Keiski5. Transition metal catalysts for hydrogen production by low-temperature steam reforming of methane --
Antonio Vita; 6. Supercritical water gasification of biomass to produce hydrogen --
C. Cannilla, G. Bonura and F. Frusteri; 7. Biofuels starting materials for hydrogen production --
S. Abramov, M. Shalygin, V. Teplyakov and A. Netrusov. 8. Fixed bed membrane reactors for ultrapure hydrogen production: modeling approach --
Marjan Alavi, Adolfo Iulianelli, Mohammad Reza Rahimpour, Reza Eslamloueyan, Marcello De Falco, Giuseppe Bagnato and Angelo Basile9. Hydrogen production using micro-membrane reactors --
Jianhua Tong; 10. Perovskite membrane reactors --
Kamran Ghasemzadeh, M. Nasiri Nezhad and Angelo Basile; 11. Polymeric membrane materials for hydrogen separation --
Yuri Yampolskii and Victoria Ryzhikh; 12. Industrial membranes for hydrogen separation --
Hamid Reza Rahimpour, Mahshid Nategh and Mohammad Reza Rahimpour. 13. Multifunctional hybrid sorption-enhanced membrane reactor --
P. Ribeirinha, M. Boaventura, José M. Sousa and A. Mendes14. Carbon-based membranes --
Jon Arvid Lie, Xuezhong He, Izumi Kumakiri, Hidetoshi Kita and May-Britt Hägg; 15. Separation of hydrogen isotopes by cryogenic distillation --
Gianluca Valenti; Index.
Series Title: Energy Engineering.

Abstract:

Hydrogen can be used for electricity generation, for transportation, as well as, mixed with natural gas, for heating, thus reducing the carbon emissions of all parts of the energy system. This book describes the current techniques for producing hydrogen and discusses the current challenges.

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