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Hydrogen, Batteries and Fuel Cells

Autor Bengt Sundén
en Limba Engleză Paperback – 2 iul 2019
Hydrogen, Batteries and Fuel Cells provides the science necessary to understand these important areas, considering theory and practice, practical problem-solving, descriptions of bottlenecks, and future energy system applications. The title covers hydrogen as an energy carrier, including its production and storage; the application and analysis of electrochemical devices, such as batteries, fuel cells and electrolyzers; and the modeling and thermal management of momentum, heat, mass and charge transport phenomena. This book offers fundamental and integrated coverage on these topics that is critical to the development of future energy systems.


  • Combines coverage of hydrogen, batteries and fuel cells in the context of future energy systems
  • Provides the fundamental science needed to understand future energy systems in theory and practice
  • Gives examples of problems and solutions in the use of hydrogen, batteries and fuel cells
  • Considers basic issues in understanding hydrogen and electrochemical devices
  • Describes methods for modeling and thermal management in future energy systems
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Specificații

ISBN-13: 9780128169506
ISBN-10: 0128169508
Pagini: 244
Ilustrații: Approx. 100 illustrations
Dimensiuni: 191 x 235 x 14 mm
Greutate: 0.44 kg
Editura: ELSEVIER SCIENCE

Public țintă

Researchers, practicing scientists and engineers in energy, working on hydrogen, battery, and fuel cell technologies; graduate students interested in future energy systems; specialists and researchers into energy systems involved in transport technology.

Cuprins

1. General Introduction2. Description of methods for production and storage of hydrogen especially based on renewable energy like solar and wind power3. Introduction/repetition of thermodynamics4. Introduction to electrochemistry5. Introduction to porous media6. Explanation of the principles of various fuel cells including electrolyzers but main focus on PEMFC and SOFC7. Material properties, transport properties for fuel cells8. Electrochemical kinetics, heat and mass transfer, charge and water transport in fuel cells9. The basic governing equations for all transport phenomena and methods for modeling, especially thermal management of batteries and fuel cells10. Setting up models for estimation of performance of electrochemical devices11. Engineering aspects of fuel cells in vehicles