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|a 665.81
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|a TXAM
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|a Hosseini, Seyed Ehsan.
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|a Fundamentals of Hydrogen Production and Utilization in Fuel Cell Systems.
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|a San Diego :
|b Elsevier,
|c 2023.
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|a 1 online resource (378 p.)
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|a text
|b txt
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|a Front Cover -- Fundamentals of Hydrogen Production and Utilization in Fuel Cell Systems -- Copyright Page -- Dedication -- Contents -- Preface -- Acknowledgments -- 1 Hydrogen, a green energy carrier -- Abbreviation -- 1.1 Global energy demand and environmental issues -- 1.2 Hydrogen, a green energy carrier -- 1.2.1 Hydrogen properties -- 1.2.1.1 Hydrogen physical properties -- 1.2.1.2 Hydrogen chemical properties -- 1.2.2 Hydrogen safety -- 1.2.2.1 Hydrogen explosion -- 1.2.2.2 Safety in hydrogen production processes -- 1.2.2.3 Safety in hydrogen storage
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|a 1.2.2.4 Safety in hydrogen delivery -- 1.2.3 Hydrogen and policy -- 1.2.4 Hydrogen supply chain -- 1.2.4.1 Feedstocks and production technologies -- 1.2.4.2 Hydrogen fuel distribution -- 1.3 Public acceptance of hydrogen as the fuel of the future -- 1.4 Summary -- 1.5 Review questions -- References -- 2 Hydrogen fuel production methods -- 2.1 Introduction -- 2.2 Hydrocarbon reforming -- 2.2.1 Steam reforming -- 2.2.2 Partial oxidation method -- 2.2.3 Autothermal reforming method -- 2.3 Hydrogen from hydrocarbon pyrolysis -- 2.3.1 Catalyst development in CH4 thermocatalytic dissociation
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|a 2.3.1.1 Metal-based catalyst -- 2.3.1.1.1 Nonsupported metal catalysts -- 2.3.1.1.2 Metal supported catalysts -- 2.3.1.1.3 Metal oxide-supported catalysts -- 2.3.1.1.4 Ceramic-based catalyst -- 2.3.1.1.5 Thin layer catalysts -- 2.3.1.1.6 Effects of various parameters on the catalyst stability and activity -- 2.3.1.2 Carbon-based catalyst -- 2.3.1.2.1 Carbon-based catalytic activity boosted by metal doping -- 2.3.1.2.2 Effects of various parameters on the activity of the carbon-based catalysts -- 2.3.1.2.3 Carbon-based catalytic deactivation -- 2.3.1.3 Comparing metal and carbon-based catalysts
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|a 2.3.1.4 Enhancing catalyst stability by cofeeding -- 2.3.1.4.1 Ethylene as cofeed -- 2.3.1.4.2 Alkanes as cofeed -- 2.3.1.4.3 Ethanol as cofeed -- 2.3.1.4.4 CO2 as cofeed -- 2.3.1.4.5 H2S as cofeed -- 2.3.1.4.6 Propylene as cofeed -- 2.3.2 Catalyst regeneration -- 2.3.3 Separation and purification -- 2.4 Summary -- References -- 3 Hydrogen production methods based on the primary energy sources -- Abbreviations -- 3.1 Introduction -- 3.2 Hydrogen colors -- 3.3 Pink hydrogen (nuclear hydrogen) -- 3.3.1 Nuclear hydrogen production via thermochemical cycles -- 3.3.1.1 S-I cycle -- 3.3.1.2 HyS cycle
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|a 3.3.1.3 Cu-Cl cycle -- 3.3.1.4 Mg-Cl cycle -- 3.3.1.5 Ca-Br cycle -- 3.3.1.6 Other cycles -- 3.3.2 Economics, safety, and environmental aspects of nuclear hydrogen -- 3.4 Biomass to hydrogen (green hydrogen) -- 3.4.1 Thermochemical processes -- 3.4.1.1 Biomass pyrolysis -- 3.4.1.2 Biomass gasification -- 3.4.2 Hydrogen production via biological processes -- 3.4.2.1 Direct biophotolysis -- 3.4.2.2 Indirect biophotolysis -- 3.4.2.3 Biological WGSR -- 3.4.2.4 Dark fermentation -- 3.4.2.5 Photo-fermentation -- 3.5 Coal to hydrogen (black/brown hydrogen)
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|a 3.5.1 Water gas shift reactors in the coal gasification process
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|a Includes bibliographical references and index.
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|a Fundamentals of Hydrogen Production and Utilization in Fuel Cell Systems provides a comprehensive overview of the complex and interdisciplinary issues surrounding the use of hydrogen fuel cells in the global transportation system. With a particular emphasis on the commercialization and implementation of hydrogen fuel cells, the book deals with production, utilization, storage and safety, and addresses the application of fuel cells in the road, rail, maritime and aviation sectors. For each sector, the book discusses the fundamentals of fuel cells, the current technical, environmental, safety, and economic performance, the main barriers to implementation and how to address themThis book is an invaluable reference for researchers, graduate students and industry engineers across the fuel cells and transportation sector, but is also ideal for policymakers involved in the energy transition.
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| 532 |
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|3 EBSCOhost
|a "EBSCO evaluates our products based on the Web Content Accessibility Guidelines (WCAG) and the related Section 508 and EN 301 549 regulations in the US and EU. Most EBSCO products are substantially conformant with WCAG 2.2 level AA." Source: https://connect.ebsco.com/s/article/EBSCO-VPATs?language=en_US. Last accessed April 22, 2025.
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| 650 |
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|a Hydrogen as fuel.
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|a Fuel cells.
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|a Hydrogène (Combustible)
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|a Fuel cells
|2 fast
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|a Hydrogen as fuel
|2 fast
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|a Electronic books.
|2 local
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|a ScienceDirect (Online service)
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|i Print version:
|a Hosseini, Seyed Ehsan Ehsan
|t Fundamentals of Hydrogen Production and Utilization in Fuel Cell Systems
|d San Diego : Elsevier,c2023
|z 9780323886710
|
| 776 |
0 |
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|i ebook version :
|z 9780323884228
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|z 032388671X
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|z Connect to the full text of this electronic book
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|a Elsevier ScienceDirect 2026-2027
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|a Texas A&M University
|b College Station
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|e TP359.H8 H67 2023
|h Library of Congress classification
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| 998 |
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|a TP359.H8 H67 2023
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