Fuel cell engines / Matthew M. Mench.

By: Mench, Matthew MMaterial type: TextTextPublisher: Hoboken, N.J. : John Wiley & Sons, c2008Description: xi, 515 p. : ill. ; 25 cmISBN: 9780471689584 (cloth); 0471689580 (cloth)Subject(s): Fuel cellsDDC classification: 621.312429 LOC classification: TK2931 | .M46 2008Online resources: Contributor biographical information | Publisher description | Table of contents only
Contents:
1. Introduction to Fuel Cells -- Preliminary remarks -- Fuel cells as electrochemical engines -- Generic fuel cell and stack -- Classification of fuel cells -- Potential fuel cell applications and markets -- History of fuel cell development -- Summary -- 2. Basic Electrochemical Principles -- Electrochemical versus chemical reactions -- Electrochemical reaction -- Scientific units, constants, and basic laws -- Faraday's Laws: consumption and production of species -- Measures of reactant utilization efficiency -- The generic fuel cell -- Summary -- 3. Thermodynamics of Fuel Cell Systems -- Physical nature of thermodynamic variables -- Heat of formation, sensible enthalpy, and latent heat -- Determination of change in enthalpy for nonreacting species and mixtures -- Determination of change in enthalpy for reacting species and mixtures -- Psychrometrics: thermodynamics of moist air mixtures -- Thermodynamic efficiency of a fuel cell -- Maximum expected open-circuit voltage: Nernst voltage -- Summary -- 4. Performance Characterization of Fuel Cell Systems -- Polarization curve -- Region I: activation polarization -- Region II: ohmic polarization -- Region III: concentration polarization -- Region IV: other polarization losses -- Polarization curve model summary -- Summary -- 5. Transport in Fuel Cell Systems -- Ion transport in an electrolyte -- Electron transport -- Gas-phase mass transport -- Single-phase flow in channels -- Multiphase mass transport in channels and porous media -- Heat generation and transport -- Summary -- 6. Polymer Electrolyte Fuel Cells -- Hydrogen PEFC -- Water balance in PEFC -- PEFC flow field configurations and stack design -- Direct alcohol polymer electrolyte cells -- PEFC degradation -- Multidimensional effects -- Summary -- 7. Other Fuel Cells -- Solid oxide fuel cells -- Molten carbonate fuel cells -- Phosphoric acid fuel cells -- Alkaline fuel cells -- Biological and other fuel cells -- Summary -- 8. Hydrogen Storage, Generation, and Delivery -- Modes of storage -- Modes of generation -- Hydrogen delivery -- Overall hydrogen infrastructure development -- Summary -- 9. Experimental Diagnostics and Diagnosis -- Electrochemical methods to understand polarization curve losses -- Physical probes and visualization -- Degradation measurements -- Summary.
Dissertation note: 0
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Item type Current location Home library Collection Shelving location Call number Copy number Status Date due Barcode Item holds
Book Book US-Pakistan Center for Advanced Studies in Energy (USPCAS-E)
US-Pakistan Center for Advanced Studies in Energy (USPCAS-E)
NFIC General Stacks 621.312429 MEN 2008 (Browse shelf) Available CAS-E0000483
Book Book US-Pakistan Center for Advanced Studies in Energy (USPCAS-E)
US-Pakistan Center for Advanced Studies in Energy (USPCAS-E)
NFIC 621.312429 MEN-F 2008 (Browse shelf) C.2 Available CAS-E0001122
Book Book US-Pakistan Center for Advanced Studies in Energy (USPCAS-E)
US-Pakistan Center for Advanced Studies in Energy (USPCAS-E)
NFIC 621.312429 MEN-F 2008 (Browse shelf) C.3 Available CAS-E0001123
Book Book US-Pakistan Center for Advanced Studies in Energy (USPCAS-E)
US-Pakistan Center for Advanced Studies in Energy (USPCAS-E)
NFIC 621.312429 MEN-F 2008 (Browse shelf) C.4 Available CAS-E0001124
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621.312429 LOG 2008 Microbial fuel cells / 621.312429 MAT 2008 Materials for fuel cells / 621.312429 MAT 2008 Materials for fuel cells / 621.312429 MEN 2008 Fuel cell engines / 621.312429 RAY Fuel cell fundamentals / 621.312429 RAY Fuel cell fundamentals / 621.312429 RAY Fuel cell fundamentals /

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Includes bibliographical references and index.

1. Introduction to Fuel Cells -- Preliminary remarks -- Fuel cells as electrochemical engines -- Generic fuel cell and stack -- Classification of fuel cells -- Potential fuel cell applications and markets -- History of fuel cell development -- Summary -- 2. Basic Electrochemical Principles -- Electrochemical versus chemical reactions -- Electrochemical reaction -- Scientific units, constants, and basic laws -- Faraday's Laws: consumption and production of species -- Measures of reactant utilization efficiency -- The generic fuel cell -- Summary -- 3. Thermodynamics of Fuel Cell Systems -- Physical nature of thermodynamic variables -- Heat of formation, sensible enthalpy, and latent heat -- Determination of change in enthalpy for nonreacting species and mixtures -- Determination of change in enthalpy for reacting species and mixtures -- Psychrometrics: thermodynamics of moist air mixtures -- Thermodynamic efficiency of a fuel cell -- Maximum expected open-circuit voltage: Nernst voltage -- Summary -- 4. Performance Characterization of Fuel Cell Systems -- Polarization curve -- Region I: activation polarization -- Region II: ohmic polarization -- Region III: concentration polarization -- Region IV: other polarization losses -- Polarization curve model summary -- Summary -- 5. Transport in Fuel Cell Systems -- Ion transport in an electrolyte -- Electron transport -- Gas-phase mass transport -- Single-phase flow in channels -- Multiphase mass transport in channels and porous media -- Heat generation and transport -- Summary -- 6. Polymer Electrolyte Fuel Cells -- Hydrogen PEFC -- Water balance in PEFC -- PEFC flow field configurations and stack design -- Direct alcohol polymer electrolyte cells -- PEFC degradation -- Multidimensional effects -- Summary -- 7. Other Fuel Cells -- Solid oxide fuel cells -- Molten carbonate fuel cells -- Phosphoric acid fuel cells -- Alkaline fuel cells -- Biological and other fuel cells -- Summary -- 8. Hydrogen Storage, Generation, and Delivery -- Modes of storage -- Modes of generation -- Hydrogen delivery -- Overall hydrogen infrastructure development -- Summary -- 9. Experimental Diagnostics and Diagnosis -- Electrochemical methods to understand polarization curve losses -- Physical probes and visualization -- Degradation measurements -- Summary.

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