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    Fuel cell systems explained / Yazar: Dicks, Andrew, Rand, D. A. J. (David Anthony James), 1942-

    Baskı/Yayın Bilgisi Wiley, [2018]
    İçindekiler: “…Intro -- Title Page -- Copyright Page -- Contents -- Brief Biographies -- Preface -- Acknowledgments -- Acronyms and Initialisms -- Symbols and Units -- Chapter 1 Introducing Fuel Cells -- 1.1 Historical Perspective -- 1.2 Fuel-Cell Basics -- 1.3 Electrode Reaction Rates -- 1.4 Stack Design -- 1.5 Gas Supply and Cooling -- 1.6 Principal Technologies -- 1.7 Mechanically Rechargeable Batteries and Other Fuel Cells -- 1.7.1 Metal-Air Cells -- 1.7.2 Redox Flow Cells -- 1.7.3 Biological Fuel Cells -- 1.8 Balance-of-Plant Components -- 1.9 Fuel-Cell Systems: Key Parameters -- 1.10 Advantages and Applications -- Further Reading -- Chapter 2 Efficiency and Open-Circuit Voltage -- 2.1 Open-Circuit Voltage: Hydrogen Fuel Cell -- 2.2 Open-Circuit Voltage: Other Fuel Cells and Batteries -- 2.3 Efficiency and Its Limits -- 2.4 Efficiency and Voltage -- 2.5 Influence of Pressure and Gas Concentration -- 2.5.1 Nernst Equation -- 2.5.2 Hydrogen Partial Pressure -- 2.5.3 Fuel and Oxidant Utilization -- 2.5.4 System Pressure -- 2.6 Summary -- Further Reading -- Chapter 3 Operational Fuel-Cell Voltages -- 3.1 Fundamental Voltage: Current Behaviour -- 3.2 Terminology -- 3.3 Fuel-Cell Irreversibilities -- 3.4 Activation Losses -- 3.4.1 The Tafel Equation -- 3.4.2 The Constants in the Tafel Equation -- 3.4.3 Reducing the Activation Overpotential -- 3.5 Internal Currents and Fuel Crossover -- 3.6 Ohmic Losses -- 3.7 Mass-Transport Losses -- 3.8 Combining the Irreversibilities -- 3.9 The Electrical Double-Layer -- 3.10 Techniques for Distinguishing Irreversibilities -- 3.10.1 Cyclic Voltammetry -- 3.10.2 AC Impedance Spectroscopy -- 3.10.3 Current Interruption -- Further Reading -- Chapter 4 Proton-Exchange Membrane Fuel Cells -- 4.1 Overview -- 4.2 Polymer Electrolyte: Principles of Operation -- 4.2.1 Perfluorinated Sulfonic Acid Membrane.…”
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