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Hybrid Hydrogen Systems: Stationary and Transportation Applications: Green Energy and Technology

Autor Said Al-Hallaj, Kristofer Kiszynski
en Limba Engleză Paperback – 29 mai 2013
Renewable energy technologies have been used on a small scale for many years now. Issues of intermittency and cost have prevented their widespread use and acceptance. At present, discussion and research is aimed at moving the current global fossil fuels economy to one based on hydrogen as the universal energy carrier, with fuel cells as a means of converting this chemical energy to electrical energy.
Hybrid Hydrogen Systems presents an original and comprehensive approach to hybrid energy system optimization, providing a much-needed systems approach to hydrogen energy applications. This book provides a comprehensive overview of the fundamentals of renewable power generation, conversion and storage, including:
  • wind,
  • solar photovoltaic power,
  • biomass,
  • batteries,
  • fuel cells, and
  • hydrogen.
As well as proposing a unique approach to minimize the cost and maximize the reliability of hybrid energy systems, Hybrid Hydrogen Systems introduces the benefits of hydrogen as an energy carrier in the context of sustainability.
This book will be of interest to researchers and practitioners working with hydrogen and fuel cells, as well as to policy makers and advocates of renewable energy. Hybrid Hydrogen Systems will also be a valuable tool for graduate and advanced undergraduate students studying renewable energy and the design and optimization of hydrogen energy systems, as well as for the lecturers who teach these subjects.
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Specificații

ISBN-13: 9781447126508
ISBN-10: 1447126505
Pagini: 144
Ilustrații: X, 134 p.
Dimensiuni: 155 x 235 x 8 mm
Greutate: 0.22 kg
Ediția:2011
Editura: SPRINGER LONDON
Colecția Springer
Seria Green Energy and Technology

Locul publicării:London, United Kingdom

Public țintă

Research

Cuprins

1. The Role of Renewable Energy in a Sustainable Energy Future.- 2. Renewable Energy Sources and Energy Conversion Devices.- 3. Hydrogen Production, Storage and Fuel Cells.- 4. Operation and Control of Hybrid Energy Systems.- 5. Control of Hybrid Energy Systems.- 6. Case Study: Hybrid PEM Fuel Cell/Li-ion Battery System for a Non-Idling Airport Ground Support Vehicle.- 7. Case Study: A Hybrid Fuel Cell/Desalination System for Caye Caulker.

Notă biografică

Said Al-Hallaj is the Chairman/CEO and co-founder of All Cell Technologies LLC, and an adjunct professor at the Department of Chemical Engineering at the University of Illinois at Chicago (UIC). Prior to All Cell, he was a research professor of chemical engineering and Coordinator for Renewable Energy Programs at the Illinois Institute of Technology (IIT). Professor Al-Hallaj earned his BSc and MSc in Chemical Engineering from Jordan University of Science and Technology in 1994 and his PhD in Chemical Engineering from IIT in 1999. He has published over thirty-five technical journal papers, and co-authored four issued patents and several patent applications in the area of energy storage and conversion with emphasis on renewable energy, hydrogen, batteries and fuel cells for stationary and transportation applications.
 
Kristofer Kiszynski is an energy engineer at Shaw Environmental, Inc., who specializes in building commissioning, retrocommissioning, facility energy audits and consults on LEED building projects. He received his MS in Chemical Engineering from the Illinois Institute of Technology and his BS in Mechanical Engineering from Washington University.

Textul de pe ultima copertă

Renewable energy technologies have been used on a small scale for many years now. Issues of intermittency and cost have prevented their widespread use and acceptance. At present, discussion and research is aimed at moving the current global fossil fuels economy to one based on hydrogen as the universal energy carrier, with fuel cells as a means of converting this chemical energy to electrical energy.
Hybrid Hydrogen Systems presents an original and comprehensive approach to hybrid energy system optimization, providing a much-needed systems approach to hydrogen energy applications. This book provides a comprehensive overview of the fundamentals of renewable power generation, conversion and storage, including:
  • wind,
  • solar photovoltaic power,
  • biomass,
  • batteries,
  • fuel cells, and
  • hydrogen.
As well as proposing a unique approach to minimize the cost and maximize the reliability of hybrid energy systems, Hybrid Hydrogen Systems introduces the benefits of hydrogen as an energy carrier in the context of sustainability.
This book will be of interest to researchers and practitioners working with hydrogen and fuel cells, as well as to policy makers and advocates of renewable energy. Hybrid Hydrogen Systems will also be a valuable tool for graduate and advanced undergraduate students studying renewable energy and the design and optimization of hydrogen energy systems, as well as for the lecturers who teach these subjects.

Caracteristici

Provides a much-needed systems approach to hydrogen energy applications Provides a comprehensive overview of the fundamentals of renewable power generation, conversion and storage Can be used as a course text Addresses key challenges to the hydrogen economy Includes supplementary material: sn.pub/extras