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High temperature solid oxide fuel cells : fundamentals, design, and applications

Author: Subhash C Singhal; Kevin Kendall; Elsevier Science Publishers.
Publisher: Oxford ; New York : Elsevier, ©2003.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
The growing interest in fuel cells as a sustainable source of energy is pulling with it the need for new books which provide comprehensive and practical information on specific types of fuel cell and their application. This landmark volume on solid oxide fuel cells contains contributions from experts of international repute, and provides a single source of the latest knowledge on this topic.
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Genre/Form: Electronic books
Additional Physical Format: Print version:
High temperature solid oxide fuel cells.
Oxford ; New York : Elsevier, ©2003
(DLC) 2002040761
(OCoLC)50841596
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Subhash C Singhal; Kevin Kendall; Elsevier Science Publishers.
ISBN: 1856173879 9781856173872 0080508081 9780080508085 1281078417 9781281078414
OCLC Number: 57238488
Description: 1 online resource (xvi, 405 pages) : illustrations
Contents: Cover --
High Temperature Solid Oxide Fuel Cells: Fundamentals, Design and Applications --
Copyright Page --
Contents --
List of Contributors --
Preface --
Chapter 1. Introduction to SOFCs --
1.1 Background --
1.2 Historical Summary --
1.3 Zirconia Sensors for Oxygen Measurement --
1.4 Zirconia Availability and Production --
1.5 High-Quality Electrolyte Fabrication Processes --
1.6 Electrode Materials and Reactions --
1.7 Interconnection for Electrically Connecting the Cells --
1.8 Cell and Stack Designs --
1.9 SOFC Power Generation Systems --
1.10 Fuel Considerations --
1.11 Competition and Combination with Heat Engines --
1.12 Application Areas and Relation to Polymer Electrolyte Fuel Cells --
1.13 SOFC-Related Publications --
References --
Chapter 2. History --
2.1 The Path to the First Solid Electrolyte Gas Cells --
2.2 From Solid Electrolyte Gas Cells to Solid Oxide Fuel Cells --
2.3 First Detailed Investigations of Solid Oxide Fuel Cells --
2.4 Progress in the 1960s --
2.5 On the Path to Practical Solid Oxide Fuel Cells --
References --
Chapter 3. Thermodynamics --
3.1 Introduction --
3.2 The Ideal Reversible SOFC --
3.3. Voltage Losses by Ohmic Resistance and by Mixing Effects by Fuel Utilisation --
3.4 Thermodynamic Definition of a Fuel Cell Producing Electricity and Heat --
3.5 Thermodynamic Theory of SOFC Hybrid Systems --
3.6 Design Principles of SOFC Hybrid Systems --
3.7 Summary --
References --
Chapter 4. Electrolytes --
4.1 Introduction --
4.2 Fluorite-Structured Electrolytes --
4.3 Zirconia-Based Oxide Ion Conductors --
4.4 Ceria-Based Oxide Ion Conductors --
4.5 Fabrication of ZrO2- and CeO2-Based Electrolyte Films --
4.6 Perovskite-Structured Electrolytes --
4.7 Oxides with Other Structures --
4.8 Proton-Conducting Oxides --
4.9 Summary --
References --
Chapter 5. Cathodes --
5.1 Introduction --
5.2 Physical and Physicochemical Properties of Perovskite Cathode Materials --
5.3 Reactivity of Perovskite Cathodes with ZrO2 --
5.4 Compatibility of Perovskite Cathodes with Interconnects --
5.5 Fabrication of Cathodes --
5.6 Summary --
References --
Chapter 6. Anodes --
6.1 Introduction --
6.2 Requirements for an Anode --
6.3 Choice of Cermet Anode Components --
6.4 Cermet Fabrication --
6.5 Anode Behaviour Under Steady-State Conditions --
6.6 Anode Behaviour Under Transients Near Equilibrium --
6.7 Behaviour of Anodes Under Current Loading --
6.8 Operation of Anodes with Fuels other than Hydrogen --
6.9 Anodes for Direct Oxidation of Hydrocarbons --
6.10 Summary --
References --
Chapter 7. Interconnects --
7.1 Introduction --
7.2 Ceramic Interconnects (Lanthanum and Yttrium Chromites) --
7.3 Metallic Interconnects --
7.4 Protective Coatings and Contact Materials for Metallic Interconnects --
7.5 Summary --
References --
Chapter 8. Cell and Stack Designs --
8.1 Introduction --
8.2 Planar SOFC Design --
8.3 Tubular SOFC Design --
8.4 Microtubular SOFC Design --
8.5 Summary --
Refe.
Responsibility: edited by Subhash C. Singhal and Kevin Kendall.
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Abstract:

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