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Recent directions of world hydrogen production

Author

Listed:
  • Momirlan, M.
  • Veziroglu, T.

Abstract

Hydrogen can be produced on a large scale through economically favorable raw materials and processes. Utilization of water as an exhaustible supply of hydrogen is well known. This is very much an area open to research, so that traditional methods can be considered, as well as non-traditional approaches. This paper examines the present status and looks at different approaches for technological advances. The paper reports on some of the new developments in the progress of the recent directions of world hydrogen production, with emphasis on photolytical hydrogen processes. The aim of this article is to inform the reader of new research on hydrogen production.

Suggested Citation

  • Momirlan, M. & Veziroglu, T., 1999. "Recent directions of world hydrogen production," Renewable and Sustainable Energy Reviews, Elsevier, vol. 3(2-3), pages 219-231, June.
  • Handle: RePEc:eee:rensus:v:3:y:1999:i:2-3:p:219-231
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    Citations

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    Cited by:

    1. Yilmaz, Fatih & Balta, M. Tolga & Selbaş, Reşat, 2016. "A review of solar based hydrogen production methods," Renewable and Sustainable Energy Reviews, Elsevier, vol. 56(C), pages 171-178.
    2. Khan, Mohammed N. & Shamim, Tariq, 2016. "Investigation of hydrogen generation in a three reactor chemical looping reforming process," Applied Energy, Elsevier, vol. 162(C), pages 1186-1194.
    3. Koroneos, C. & Dompros, A. & Roumbas, G. & Moussiopoulos, N., 2005. "Advantages of the use of hydrogen fuel as compared to kerosene," Resources, Conservation & Recycling, Elsevier, vol. 44(2), pages 99-113.
    4. Beccali, M. & Brunone, S. & Cellura, M. & Franzitta, V., 2008. "Energy, economic and environmental analysis on RET-hydrogen systems in residential buildings," Renewable Energy, Elsevier, vol. 33(3), pages 366-382.
    5. Zeng Gao & Fei Ji & Dongfeng Cheng & Congxin Yin & Jitai Niu & Josip Brnic, 2021. "Hydrolysis-Based Hydrogen Generation Investigation of Aluminum System Adding Low-Melting Metals," Energies, MDPI, vol. 14(5), pages 1-12, March.
    6. Ma, Yufei & Guan, Guoqing & Hao, Xiaogang & Cao, Ji & Abudula, Abuliti, 2017. "Molybdenum carbide as alternative catalyst for hydrogen production – A review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 75(C), pages 1101-1129.
    7. Yoong, L.S. & Chong, F.K. & Dutta, Binay K., 2009. "Development of copper-doped TiO2 photocatalyst for hydrogen production under visible light," Energy, Elsevier, vol. 34(10), pages 1652-1661.
    8. Midilli, A. & Ay, M. & Dincer, I. & Rosen, M. A., 2005. "On hydrogen and hydrogen energy strategies: I: current status and needs," Renewable and Sustainable Energy Reviews, Elsevier, vol. 9(3), pages 255-271, June.
    9. Saxena, R.C. & Seal, Diptendu & Kumar, Satinder & Goyal, H.B., 2008. "Thermo-chemical routes for hydrogen rich gas from biomass: A review," Renewable and Sustainable Energy Reviews, Elsevier, vol. 12(7), pages 1909-1927, September.

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