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Solid oxide fuel cell componentsinte...
~
Kaur, Gurbinder.
Solid oxide fuel cell componentsinterfacial compatibility of SOFC glass seals /
Record Type:
Electronic resources : Monograph/item
Title/Author:
Solid oxide fuel cell componentsby Gurbinder Kaur.
Reminder of title:
interfacial compatibility of SOFC glass seals /
Author:
Kaur, Gurbinder.
Published:
Cham :Springer International Publishing :2016.
Description:
xvii, 408 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
Subject:
Solid oxide fuel cells.
Online resource:
http://dx.doi.org/10.1007/978-3-319-25598-9
ISBN:
9783319255989$q(electronic bk.)
Solid oxide fuel cell componentsinterfacial compatibility of SOFC glass seals /
Kaur, Gurbinder.
Solid oxide fuel cell components
interfacial compatibility of SOFC glass seals /[electronic resource] :by Gurbinder Kaur. - Cham :Springer International Publishing :2016. - xvii, 408 p. :ill., digital ;24 cm.
Introduction to Fuel Cells -- Cell Voltages, Polarisations, and Performances -- SOFCs Technology: ITS Working and Components -- Thermodynamics, Performance and Configurations of SOFC -- Sealing Concepts: Glasses as Sealants -- Interfacial Compatibility of Glasses and Interconnects -- Mixed Alkaline/Composite Glasses and Coated Interconnects -- Interconnection of Glass Seals/Electrodes and Electrolytes -- Fuel Cell Status.
The only resource to focus on solving the challenges of glass seals in SOFCs Provides insight into interaction mechanisms at all the various interfaces within the fuel cell Analyzes basic concepts systematically and clearly, thoroughly explaining more complex topics through plentiful illustrations and diagrams This book examines the various interfacial reactions that take place when glass seals come into contact with components of SOFCs in reducing and oxidizing conditions. In developing an understanding of the structure and function of SOFCs, interfacial compatibility is an imperative criterion. This book addresses the technical challenges of developing sealants to avoid leakage losses at high operating temperatures, which are profoundly impactful to the efficiency of the fuel cell. This resource is important for anyone working with or studying fuel cell design and development, and is a pivotal source of cutting-edge information for research groups actively engaged in developing hermetic and stable seals which show minimum interfacial chemical reaction with interconnect and electrolyte.
ISBN: 9783319255989$q(electronic bk.)
Standard No.: 10.1007/978-3-319-25598-9doiSubjects--Topical Terms:
277615
Solid oxide fuel cells.
LC Class. No.: TK2931
Dewey Class. No.: 621.312429
Solid oxide fuel cell componentsinterfacial compatibility of SOFC glass seals /
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Introduction to Fuel Cells -- Cell Voltages, Polarisations, and Performances -- SOFCs Technology: ITS Working and Components -- Thermodynamics, Performance and Configurations of SOFC -- Sealing Concepts: Glasses as Sealants -- Interfacial Compatibility of Glasses and Interconnects -- Mixed Alkaline/Composite Glasses and Coated Interconnects -- Interconnection of Glass Seals/Electrodes and Electrolytes -- Fuel Cell Status.
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The only resource to focus on solving the challenges of glass seals in SOFCs Provides insight into interaction mechanisms at all the various interfaces within the fuel cell Analyzes basic concepts systematically and clearly, thoroughly explaining more complex topics through plentiful illustrations and diagrams This book examines the various interfacial reactions that take place when glass seals come into contact with components of SOFCs in reducing and oxidizing conditions. In developing an understanding of the structure and function of SOFCs, interfacial compatibility is an imperative criterion. This book addresses the technical challenges of developing sealants to avoid leakage losses at high operating temperatures, which are profoundly impactful to the efficiency of the fuel cell. This resource is important for anyone working with or studying fuel cell design and development, and is a pivotal source of cutting-edge information for research groups actively engaged in developing hermetic and stable seals which show minimum interfacial chemical reaction with interconnect and electrolyte.
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EB TK2931 K21 2016
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1 records • Pages 1 •
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http://dx.doi.org/10.1007/978-3-319-25598-9
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