Solid Oxide Fuel Cells 12 Sofc Xii
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Solid Oxide Fuel Cells 12 SOFC XII
Author | : S. C. Singhal,Electrochemical Society Battery Division,Electrochemical Society Energy Technology Division,Electrochemical Society High Temperature Materials Division |
Publsiher | : Unknown |
Total Pages | : 811 |
Release | : 2011 |
Genre | : Electronic Book |
ISBN | : OCLC:838903480 |
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Solid Oxide Fuel Cells 12 SOFC XII
Author | : K. Eguchi,Subhash C. Singhal |
Publsiher | : Unknown |
Total Pages | : 3007 |
Release | : 2011 |
Genre | : Electrolytes |
ISBN | : 1607682125 |
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Solid Oxide Fuel Cells 12 SOFC XII
Author | : S. C. Singhal,K. Eguchi |
Publsiher | : The Electrochemical Society |
Total Pages | : 3058 |
Release | : 2011-04-25 |
Genre | : Science |
ISBN | : 9781566778626 |
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This issue of ECS Transactions contains papers from the Twelfth International Symposium on Solid Oxide Fuel Cells (SOFC-XII),a continuing biennial series of symposia. The papers deal with materials for cell components and fabrication methods for components and complete cells. Also contained are papers on cell electrochemical performance and its modelling, stacks and systems, and prototype testing of SOFC demonstration units for different applications.
Science and Technology of Ceramic Fuel Cells
Author | : N.Q. Minh,T. Takahashi |
Publsiher | : Elsevier |
Total Pages | : 366 |
Release | : 1995-08-15 |
Genre | : Technology & Engineering |
ISBN | : 0080540767 |
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Ceramic fuel cells, commonly known as solid oxide fuel cells (SOFCs), have been under development for a broad range of electric power generation applications. The most attractive feature of the SOFC is its clean and efficient production of electricity from a variety of fuels. The SOFC has the potential to be manufactured and operated cost-effectively. The widening interest in this technology, thus, arises from the continuing need to develop cleaner and more efficient means of converting energy sources into useful forms. This topical book provides a comprehensive treatise on solid oxide fuel cells and succeeds successfully in filling the gap in the market for a reference book in this field. Directed towards scientists, engineers, and technical managers working with SOFCs as well as ceramic devices based on conducting materials, and in related fields, the book will also be invaluable as a textbook for science and engineering courses.
Solid Oxide Fuel Cells
Author | : Bin Zhu,Rizwan Raza,Liangdong Fan,Chunwen Sun |
Publsiher | : John Wiley & Sons |
Total Pages | : 486 |
Release | : 2020-06-02 |
Genre | : Technology & Engineering |
ISBN | : 9783527344116 |
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Presents innovative approaches towards affordable, highly efficient, and reliable sustainable energy systems Written by leading experts on the subject, this book provides not only a basic introduction and understanding of conventional fuel cell principle, but also an updated view of the most recent developments in this field. It focuses on the new energy conversion technologies based on both electrolyte and electrolyte-free fuel cells?from advanced novel ceria-based composite electrolyte low temperature solid oxide fuel cells to non-electrolyte fuel cells as advanced fuel-to-electricity conversion technology. Solid Oxide Fuel Cells: From Electrolyte-Based to Electrolyte-Free Devices is divided into three parts. Part I covers the latest developments of anode, electrolyte, and cathode materials as well as the SOFC technologies. Part II discusses the non-electrolyte or semiconductor-based membrane fuel cells. Part III focuses on engineering efforts on materials, technology, devices and stack developments, and looks at various applications and new opportunities of SOFC using both the electrolyte and non-electrolyte principles, including integrated fuel cell systems with electrolysis, solar energy, and more. -Offers knowledge on how to realize highly efficient fuel cells with novel device structures -Shows the opportunity to transform the future fuel cell markets and the possibility to commercialize fuel cells in an extended range of applications -Presents a unique collection of contributions on the development of solid oxide fuel cells from electrolyte based to non-electrolyte-based technology -Provides a more comprehensive understanding of the advances in fuel cells and bridges the knowledge from traditional SOFC to the new concept -Allows readers to track the development from the conventional SOFC to the non-electrolyte or single-component fuel cell Solid Oxide Fuel Cells: From Electrolyte-Based to Electrolyte-Free Devices will serve as an important reference work to students, scientists, engineers, researchers, and technology developers in the fuel cell field.
Proceedings of the Fifth International Symposium on Solid Oxide Fuel Cells SOFC V
Author | : U. Stimming |
Publsiher | : The Electrochemical Society |
Total Pages | : 1428 |
Release | : 1997 |
Genre | : Congresses and conventions |
ISBN | : 1566771455 |
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Solid Oxide Fuel Cell Technology
Author | : K Huang,J B Goodenough |
Publsiher | : Elsevier |
Total Pages | : 340 |
Release | : 2009-07-30 |
Genre | : Technology & Engineering |
ISBN | : 9781845696511 |
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High temperature solid oxide fuel cell (SOFC) technology is a promising power generation option that features high electrical efficiency and low emissions of environmentally polluting gases such as CO2, NOox and SOx. It is ideal for distributed stationary power generation applications where both high-efficiency electricity and high-quality heat are in strong demand. For the past few decades, SOFC technology has attracted intense worldwide R&D effort and, along with polymer electrolyte membrane fuel cell (PEMFC) technology, has undergone extensive commercialization development. This book presents a systematic and in-depth narrative of the technology from the perspective of fundamentals, providing comprehensive theoretical analysis and innovative characterization techniques for SOFC technology. The book initially deals with the basics and development of SOFC technology from cell materials to fundamental thermodynamics, electronic properties of solids and charged particle transport. This coverage is extended with a thorough analysis of such operational features as current flow and energy balance, and on to voltage losses and electrical efficiency. Furthermore, the book also covers the important issues of fuel cell stability and durability with chapters on performance characterization, fuel processing, and electrode poisoning. Finally, the book provides a comprehensive review for SOFC materials and fabrication techniques. A series of useful scientific appendices rounds off the book. Solid oxide fuel cell technology is a standard reference for all those researching this important field as well as those working in the power industry. Provides a comprehensive review of solid oxide fuel cells from history and design to chemistry and materials development Presents analysis of operational features including current flow, energy balance, voltage losses and electrical efficiency Explores fuel cell stability and durability with specific chapters examining performance characterization, fuel processing and electrode poisoning
Intermediate Temperature Solid Oxide Fuel Cells
Author | : Zongping Shao,Moses O. Tadé |
Publsiher | : Springer |
Total Pages | : 266 |
Release | : 2016-09-12 |
Genre | : Technology & Engineering |
ISBN | : 9783662529362 |
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This book discusses recent advances in intermediate-temperature solid oxide fuel cells (IT-SOFCs), focusing on material development and design, mechanism study, reaction kinetics and practical applications. It consists of five chapters presenting different types of reactions and materials employed in electrolytes, cathodes, anodes, interconnects and sealants for IT-SOFCs. It also includes two chapters highlighting new aspects of these solid oxide fuel cells and exploring their practical applications. This insightful and useful book appeals to a wide readership in various fields, including solid oxide fuel cells, electrochemistry, membranes and ceramics. Zongping Shao is a Professor at the State Key Laboratory of Materials-Oriented Chemical Engineering and the College of Energy, Nanjing University of Technology, China. Moses O. Tade is a Professor at the Department of Chemical Engineering, Curtin University, Australia.