<p><p>S.C. Singhal and X.-D. Zhou: Solid Oxide Fuel Cells.- H. Wang and H.D. AbruΓ±a: Electrocatalysis of Direct Alcohol Fuel Cells: Quantitative DEMS Studies.- J. Benziger, A. Bocarsly, M.J. Cheah, P.Majsztrik, B. Satterfield and Q. Zhao: Mechanical and Transport Properties of Nafion: Effects of Tem
Fuel Cells and Hydrogen Production
β Scribed by Timothy E. Lipman, Adam Z. Weber
- Publisher
- Springer New York
- Year
- 2019
- Tongue
- English
- Leaves
- 1182
- Series
- Encyclopedia of Sustainability Science and Technology Series
- Edition
- 1st ed.
- Category
- Library
No coin nor oath required. For personal study only.
β¦ Subjects
Energy; Energy Storage; Electrochemistry; Energy Technology; Physics of Energy Technology; Catalysis
π SIMILAR VOLUMES
<p><i>Hydrogen, Batteries and Fuel Cells</i> 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 i
<p><p>S.C. Singhal and X.-D. Zhou: Solid Oxide Fuel Cells.- H. Wang and H.D. AbruΓ±a: Electrocatalysis of Direct Alcohol Fuel Cells: Quantitative DEMS Studies.- J. Benziger, A. Bocarsly, M.J. Cheah, P.Majsztrik, B. Satterfield and Q. Zhao: Mechanical and Transport Properties of Nafion: Effects of Tem
EU-funded research in the area of fuel cell systems is aimed at reducing the cost and improving the performance, durability and safety of fuel cell systems for stationary and transport applications, to enable them to compete with conventional combustion technologies. This will include materials and
Annotation<span class='showMoreLessContentElement' style='display: none;'><p>Energy security, economic prosperity and environmental protection are challenges for all countries. They are particularly pressing in the transportation sector which still relies almost exclusively on oil. The use of hydr