Fuel Cell Science and Engineering, 2 Volume Set: Materials, Processes, Systems and Technology

Fuel Cell Science and Engineering, 2 Volume Set: Materials, Processes, Systems and Technology book cover

Fuel Cell Science and Engineering, 2 Volume Set: Materials, Processes, Systems and Technology

Author(s): Detlef Stolten (Editor), Bernd Emonts

  • Publisher: Wiley-VCH
  • Publication Date: 18 April 2012
  • Edition: 1st
  • Language: English
  • Print length: 1268 pages
  • ISBN-10: 3527330127
  • ISBN-13: 9783527330126

Book Description

Fuel cells are expected to play a major role in the future power supply that will transform to renewable, decentralized and fluctuating primary energies. At the same time the share of electric power will continually increase at the expense of thermal and mechanical energy not just in transportation, but also in households. Hydrogen as a perfect fuel for fuel cells and an outstanding and efficient means of bulk storage for renewable energy will spearhead this development together with fuel cells. Moreover, small fuel cells hold great potential for portable devices such as gadgets and medical applications such as pacemakers.

This handbook will explore specific fuel cells within and beyond the mainstream development and focuses on materials and production processes for both SOFC and lowtemperature fuel cells, analytics and diagnostics for fuel cells, modeling and simulation as well as balance of plant design and components. As fuel cells are getting increasingly sophisticated and industrially developed the issues of quality assurance and methodology of development are included in this handbook. The contributions to this book come from an international panel of experts from academia, industry, institutions and government.

This handbook is oriented toward people looking for detailed information on specific fuel cell types, their materials, production processes,
modeling and analytics. Overview information on the contrary on mainstream fuel cells and applications are provided in the book
‘Hydrogen and Fuel Cells’, published in 2010.

Editorial Reviews

Review

“For researchers who already have some history with fuel cells and want to maintain their knowledge of the general progress of fuel cell research this could be a useful addition to one’s personal library. For those specifically
interested in pgm catalysis for fuel cells, I would recommend the book “Catalysis in Electrochemistry: From Fundamentals to Strategies for Fuel Cell Development” (5).” (
Platinum Metals Review, 1 January 2013)

“Rechtzeitig zur Hannover Messe hat der Wiley-VCH Verlag das neue Buch von Prof. Dr. Detlef Stolten herausgebracht: Fuel Cell Science und Engineering. Nach Stoltens im Juli 2010 erschienenem Erstlingswerk Hydrogen und Fuel Cells – Fundamentals, Technologies und Applications (Hardcover, 880 S., 249 EUR) ist dies bereits sein zweites englisch-sprachiges Fachbuch zum Thema Wasserstoff und Brennstoffzelle. Auf 1.268 Seiten kommen in diesem zweibändigen Werk 50 ausgewiesene Experten aus aller Welt zu Wort und beleuchten das gesamte Brennstoffzellenspektrum. Das Handbuch betrachtet die verschiedenen Technologien, Materialien, Produktionsprozesse, Modellierungs- und Simulationsverfahren sowie wirtschaftliche, Umwelt- und Sicherheitsaspekte.”
Hzwei – Das Magazin für Wasserstoff und Brennstoffzelle, Hydrogeit Verlag, 04/12

From the Inside Flap

Fuel cells are expected to play a major role in the future power supply that will transform to renewable, decentralized and fluctuating primary energies. At the same time the share of electric power will continually increase at the expense of thermal and mechanical energy not just in transportation, but also in households. Hydrogen as a perfect fuel for fuel cells and an outstanding and efficient means of bulk storage for renewable energy will spearhead this development together with fuel cells. Moreover, small fuel cells hold great potential for portable devices such as gadgets and medical applications such as pacemakers.

This handbook will explore specific fuel cells within and beyond the mainstream development and focuses on materials and production processes for both SOFC and lowtemperature fuel cells, analytics and diagnostics for fuel cells, modeling and simulation as well as balance of plant design and components. As fuel cells are getting increasingly sophisticated and industrially developed the issues of quality assurance and methodology of development are included in this handbook. The contributions to this book come from an international panel of experts from academia, industry, institutions and government.

This handbook is oriented toward people looking for detailed information on specific fuel cell types, their materials, production processes,
modeling and analytics. Overview information on the contrary on mainstream fuel cells and applications are provided in the book
‘Hydrogen and Fuel Cells’, published in 2010.

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