Fuel Cells

Fuel Cells PDF

Author: Bernard C Nalty

Publisher:

Published: 2004-11-01

Total Pages: 66

ISBN-13: 9780756744335

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Field hearing held at Northern Illinois Univ. Witnesses: Dr. Hermann A. Grunder, Dir., Argonne Nat. Lab.; James P. Uihlein, Fuels Project Mgr., BP; Robert N. Culver, Exec. Dir., U.S. Council for Automotive Research (USCAR); Stanley Borys, Exec. V.P. & COO, Gas Technology Institute; Jeffrey A. Serfass, Pres., Nat. Hydrogen Assoc.; & Elias (Lee) H. Camara, V.P., H2Fuel, LLC.

Fuel Cells

Fuel Cells PDF

Author: Klaus-Dieter Kreuer

Publisher: Springer Science & Business Media

Published: 2012-12-14

Total Pages: 795

ISBN-13: 1461457858

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The expected end of the “oil age” will lead to increasing focus and reliance on alternative energy conversion devices, among which fuel cells have the potential to play an important role. Not only can phosphoric acid and solid oxide fuel cells already efficiently convert today’s fossil fuels, including methane, into electricity, but other types of fuel cells, such as polymer electrolyte membrane fuel cells, have the potential to become the cornerstones of a possible future hydrogen economy. Featuring 21 peer-reviewed entries from the Encyclopedia of Sustainability Science and Technology, Fuel Cells offers concise yet comprehensive coverage of the current state of research and identifies key areas for future investigation. Internationally renowned specialists provide authoritative introductions to a wide variety of fuel cell types, and discuss materials, components, and systems for these technologies. The entries also cover sustainability and marketing considerations, including comparisons of fuel cells with alternative technologies.

Fuel Cells: Technologies for Fuel Processing

Fuel Cells: Technologies for Fuel Processing PDF

Author: Dushyant Shekhawat

Publisher: Elsevier

Published: 2011-03-18

Total Pages: 569

ISBN-13: 0444535640

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Fuel Cells: Technologies for Fuel Processing provides an overview of the most important aspects of fuel reforming to the generally interested reader, researcher, technologist, teacher, student, or engineer. The topics covered include all aspects of fuel reforming: fundamental chemistry, different modes of reforming, catalysts, catalyst deactivation, fuel desulfurization, reaction engineering, novel reforming concepts, thermodynamics, heat and mass transfer issues, system design, and recent research and development. While no attempt is made to describe the fuel cell itself, there is sufficient description of the fuel cell to show how it affects the fuel reformer. By focusing on the fundamentals, this book aims to be a source of information now and in the future. By avoiding time-sensitive information/analysis (e.g., economics) it serves as a single source of information for scientists and engineers in fuel processing technology. The material is presented in such a way that this book will serve as a reference for graduate level courses, fuel cell developers, and fuel cell researchers. Chapters written by experts in each area Extensive bibliography supporting each chapter Detailed index Up-to-date diagrams and full colour illustrations

The Hydrogen Economy

The Hydrogen Economy PDF

Author: National Academy of Engineering

Publisher: National Academies Press

Published: 2004-09-05

Total Pages: 257

ISBN-13: 0309091632

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The announcement of a hydrogen fuel initiative in the President's 2003 State of the Union speech substantially increased interest in the potential for hydrogen to play a major role in the nation's long-term energy future. Prior to that event, DOE asked the National Research Council to examine key technical issues about the hydrogen economy to assist in the development of its hydrogen R&D program. Included in the assessment were the current state of technology; future cost estimates; CO2 emissions; distribution, storage, and end use considerations; and the DOE RD&D program. The report provides an assessment of hydrogen as a fuel in the nation's future energy economy and describes a number of important challenges that must be overcome if it is to make a major energy contribution. Topics covered include the hydrogen end-use technologies, transportation, hydrogen production technologies, and transition issues for hydrogen in vehicles.