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Advances in fuel cells. Vol. 1

Author: T S Zhao; K -D Kreuer; Trung Van Nguyen
Publisher: Amsterdam ; San Diego, CA ; Oxford : Elsevier, 2007.
Edition/Format:   eBook : Document : EnglishView all editions and formats
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Advances in fuel cells. Vol. 1.
Amsterdam ; San Diego, CA ; Oxford : Elsevier, 2007
(OCoLC)76850818
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: T S Zhao; K -D Kreuer; Trung Van Nguyen
ISBN: 9780080471006 0080471005
OCLC Number: 122274356
Description: 1 online resource (xi, 483 pages) : illustrations
Contents: Cover --
Front Cover --
Advances in Fuel Cells --
Copyright Page --
Contents --
Contributors --
Preface --
Chapter 1. Thermodynamic Performance of Fuel Cells and Comparison with Heat Engines --
1.1. Introduction --
1.2. Reversible Cell Potential --
1.3. The Effect of Operating Conditions on Reversible Cell Potential --
1.4. Energy Conversion Efficiency --
1.5. Practical Fuel Cell Efficiency and Energy Loss Mechanisms --
1.6. Concluding Remarks --
1.7. Nomenclature --
References --
Chapter 2. Macroscopic Modeling of Polymer-Electrolyte Membranes --
2.1. Introduction --
2.2. Background --
2.3. Governing Equations and Treatments --
2.4. Membrane-Property Models --
2.5. Special Topics --
2.6. Summary --
2.7. Notation --
Acknowledgments --
References --
Chapter 3. On the Prospects for Phosphonated Polymers as Proton-Exchange Fuel Cell Membranes --
3.1. Introduction --
3.2. General Characteristics of Phosphonic Acids --
3.3. Synthetic Approaches to Polymers Containing Phosphonic Acid Groups --
3.4. Properties of Membranes Based on Phosphonated Polymers --
3.5. Phosphonated Polymers for Proton Conduction Under Low-Humidity Conditions --
3.6. Summary and Outlook --
Acknowledgments --
References --
Chapter 4. Polymer Electrolyte Membranes for Direct Methanol Fuel Cells --
4.1. Introduction --
4.2. Background --
4.3. Characterization of PEMs --
4.4. Polymer Electrolytes for DMFC --
4.5. Evaluation Criteria for DMFC Electrolytes --
4.6. Future Research Direction --
References --
Chapter 5. Materials for State-of-the-Art PEM Fuel Cells, and Their Suitability for Operation Above 100C --
5.1. General Introduction --
5.2. The Impact of Materials Properties On Fuel Cell System Design --
5.3. Membranes --
5.4. Electrodes --
5.5. Bipolar Plates --
5.6. General Conclusions --
References --
Chapter 6. Analytical Models of a Direct Methanol Fuel Cell --
6.1. Introduction --
6.2. 1D Model of a DMFC --
6.3. 1D+1D Model: The Nature of Mixed Potential --
6.4. DMFC with Gaseous Bubbles in the Anode Channel --
6.5. DMFC with Bubbles: Asymptotic Solutions --
6.6. Kinetics of Methonol Oxidation and Cell Performance --
6.7. List of Symbols --
Appendix A: Equation for Local Current Density --
Appendix B --
Acknowledgments --
References --
Chapter 7. Methanol Reforming Processes --
7.1. Introduction --
7.2. Steam Reforming of Methanol --
7.3. Fuel Cell Operation with Methanol Reforming Process --
7.4. Concluding Remarks --
Acknowledgment --
References --
Index --
A --
B --
C --
D --
E --
F --
G --
H --
I --
J --
K --
L --
M --
N --
O --
P --
Q --
R --
S --
T --
U --
V --
W --
X --
Y --
Z --
Last Page.
Responsibility: edited by T.S. Zhao, K.-D. Kreuer, Trung Van Nguyen.

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