Fuel Cells and Hydrogen

- From Fundamentals to Applied Research

Forfatter: info mangler
Bog
  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

Fuel Cells and Hydrogen: From Fundamentals to Applied Research provides an overview of the basic principles of fuel cell and hydrogen technology, which subsequently allows the reader to delve more deeply into applied research. In addition to covering the basic principles of fuel cells and hydrogen technologies, the book examines the principles and methods to develop and test fuel cells, the evaluation of the performance and lifetime of fuel cells and the concepts of hydrogen production. Fuel Cells and Hydrogen: From Fundamentals to Applied Research acts as an invaluable reference book for fuel cell developers and students, researchers in industry entering the area of fuel cells and lecturers teaching fuel cells and hydrogen technology.

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Detaljer
Størrelse og vægt
  • Vægt680 g
  • coffee cup img
    10 cm
    book img
    19,1 cm
    23,5 cm

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    Transport Fuel cells Infrared spectroscopy Raman spectroscopy. Production Upgrading Atomic force microscopy Surface Costs Scanning electron microscopy Modeling Structure Morphology Purification Transmission electron microscopy Hydrogen Curve fitting Conditioning Electrolysis Water cycle X-ray photoelectron spectroscopy Chemical looping Heat transport Polymer electrolyte membrane fuel cell Direct alcohol fuel cells Oxygen reduction reaction Electrochemical Impedance Spectroscopy Diffusion limitation Cathode Liquid water CFD Simulation Entropy Production Potential Percolation Membrane Electrode Assembly Membrane degradation Energy system Electrochemical systems Anode Hydrogen Storage Self-regulating systems Carbon cycle Polarization curve Cyclic Voltammetry Electrode materials Counter electrode Flow field Preparation method Carbon corrosion Catalyst Layer Bipolar Plates Chemical energy carriers Fuel Cell Performance Diffusion layer Direct borohydride fuel cells Direct hydrazine fuel cells hydrogen distribution High-temperature polymer electrolyte fuel cells energy conversion efficiency Electro-osmosis Membrane transport model Ohmic resistance Materials circulation Membrane degradation model PEFC durability Impurities/contaminants Open circuit voltage (OCV) Open system Platinum dissolution Polymer Electrolyte Membranes Proton Conductivity Reformer sponge iron cycle (RESC) Hydrogen energy system Tafel Slope Synthesis methods of electrocatalysts Tafel equation Water diffusion Methane reformer Working Electrode Reference Electrode Polymer electrolyte fuel cell components voltage

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