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Performance study of power density in PEMFC for power generation from solar energy

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  • Chaurasia, Pramod Behari Lal
  • Panja, Nimai
  • Kendall, Kevin

Abstract

A study has been carried-out on power density in the Proton Exchange Membrane Fuel Cell (PEMFC) for its application for solar power generation. It involves a fuel cell approach assisted with specific electro-catalysts to process special chemical coupling (2-propanol/acetone/H2) for generating the power. This knowledge will be useful for designing the solar power generation system based on this special chemical coupling enabling to use low-grade solar heat (<100 °C). For this purpose, a wide study has been conducted in the PEMFC using different catalytic electrodes at various orientations (0°, 45° and 90°). The investigations were carried-out at different temperatures from 45 °C to 60 °C using liquid oxidant mixtures in different proportions. The maximum power density attained was 1.78 mW cm−2 at 60 °C. The PEMFC based technique for solar power generation may prove to be a promising option to harness this everlasting source of sun’s energy in the coming future.

Suggested Citation

  • Chaurasia, Pramod Behari Lal & Panja, Nimai & Kendall, Kevin, 2011. "Performance study of power density in PEMFC for power generation from solar energy," Renewable Energy, Elsevier, vol. 36(12), pages 3305-3312.
  • Handle: RePEc:eee:renene:v:36:y:2011:i:12:p:3305-3312
    DOI: 10.1016/j.renene.2011.05.001
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    References listed on IDEAS

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    1. Wang, Yun & Chen, Ken S. & Mishler, Jeffrey & Cho, Sung Chan & Adroher, Xavier Cordobes, 2011. "A review of polymer electrolyte membrane fuel cells: Technology, applications, and needs on fundamental research," Applied Energy, Elsevier, vol. 88(4), pages 981-1007, April.
    2. Chaurasia, P.B.L, 2000. "Solar water heaters based on concrete collectors," Energy, Elsevier, vol. 25(8), pages 703-716.
    3. Zahedi, A., 2006. "Solar photovoltaic (PV) energy; latest developments in the building integrated and hybrid PV systems," Renewable Energy, Elsevier, vol. 31(5), pages 711-718.
    4. Hou, Yongping & Yang, Zhihua & Fang, Xue, 2011. "An experimental study on the dynamic process of PEM fuel cell stack voltage," Renewable Energy, Elsevier, vol. 36(1), pages 325-329.
    5. Chow, T.T., 2010. "A review on photovoltaic/thermal hybrid solar technology," Applied Energy, Elsevier, vol. 87(2), pages 365-379, February.
    6. Hu, Eric & Yang, YongPing & Nishimura, Akira & Yilmaz, Ferdi & Kouzani, Abbas, 2010. "Solar thermal aided power generation," Applied Energy, Elsevier, vol. 87(9), pages 2881-2885, September.
    7. Boudghene Stambouli, A. & Traversa, E., 2002. "Fuel cells, an alternative to standard sources of energy," Renewable and Sustainable Energy Reviews, Elsevier, vol. 6(3), pages 295-304, September.
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