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Hydrogen safety

Bossel, U., Eliasson, B. and Taylor, G. (2005). The Future of the Hydrogen Economy Bright or Bleak Report E08, 26 February 2005, European Fuel Cell Forum, www.efcf.com/reports. [Pg.320]

DWV (2007). Vergleichstabelle fur physikalische und chemische Eigenschaften von Wasserstoff und anderen Stojfen (Gasen, Energietragern). Deutscher Wasserstoff-und Brennstoffzellen-Verband e.V. (German Hydrogen and Fuel Cell Association), www.dwv-info.de/wissen/tabellen/wiss vgl.html. [Pg.320]

Eberle, U., Arnold, G. and von Helmolt, R. (2006). Hydrogen storage in metal-hydrogen systems and their derivatives. Journal of Power Sources, 154 (2), 456 60. [Pg.321]

Hirose, K. and Mori, D. (2006). Toyota s vision of the development of hydrogen storage materials for vehicular applications. MH2006 International Symposium on Metal-Hydrogen Systems Fundamentals and Applications, Lahaina, Maui, Hawaii, 1-6 October, 2006. [Pg.321]

International Energy Agency (IEA) (2007). Medium Term Oil Market Report - July 2007. Paris OECD/IEA. [Pg.321]

Alcock, J. L. Compilation of existing safety data on hydrogen and comparative fuels. Report EIHP2—Contract N° ENK6-CT2000-00442, WP N° 5, 2001. [Pg.611]

Besenbruch, G. E. General atomic sulfur-iodine thermochemical water-splitting process. American Chemical Society, Division of Petroleum Chemistry 271 48-53, 1982. [Pg.611]

Butler, M. S., C. W. Moran, R B. Sunderland and R. L. Axelbaum. Limits for hydrogen leaks that can support stable flames. International Journal of Hydrogen Energy 34 5174-5182,2009. [Pg.612]

Khanna and T. J. Nejat Veziroglu. Recent developments in biological hydrogen production processes. Chemical Industry Chemical Engineering Quarterly 14 57-67, 2008. [Pg.612]

Gregory, E D. Safety standard for hydrogen and hydrogen systems, February 12, 1997. Available at http //www.hq.nasa.gov/office/codeq/doctree/can celedZ871916.pdf (accessed March 21, 2013). [Pg.612]


Hydrogen Safety Manual, Report TM-X-52454, National Aeronautics and Space Administration, Washkigton, D.C., 1968. [Pg.436]

W. Balthasar and J. P. Schoedel, Hydrogen Safety Manual, Comm. European Communities, Luxembourg, 1983. [Pg.436]

Hydrogen Safety Manual, Balthasar, W. et al., Luxembourg, Comm. Euro. Commun., 1983... [Pg.1610]

DOE. Hydrogen Safety Fact Sheet, DOE Hydrogen Program, November 2006. [Pg.377]

Ohi, J.M., Moen, C., Keller, J., Cox, R., Risk Assessment for Hydrogen Codes and Standards, Proceedings of the HySafe International Conference on Hydrogen Safety, Pisa, Italy, September 8-10, 2005. [Pg.493]

Such hydrogen sensors must be rugged, hydrogen specific, must not saturate at hydrogen safety levels, and must have a long and stable lifetime (>12 months) they must not... [Pg.523]

Conclusively, hydrogen has been used and stored safely in the industry for quite a long time as compressed gas or liquefied hydrogen, and it seems that metal hydride storage will be equally safe or even safer. Consideration of future hydrogen applications reveals no safety problems in the industrial and commercial markets. Although hydrogen safety... [Pg.561]

Federal Institute for Materials Research and Testing, Hydrogen Safety, German Hydrogen Association, Brussels, 2002, p. 18. [Pg.566]

Joseck, F. and Davis, P. (2006). Hydrogen safety, codes and standards overview of US DOE program. HarmonHy Final Conference. Brussels, www.harmonhy.com/ harmonhydocs/HarmonHyFin-005.pdf. [Pg.269]


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