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Ryszard Kłos

B ibliography 1. Kłos R. Life sustaining systems in a submarine. Gdynia : Polskie Towarzystwo Medycyny i Techniki Hiperbarycznej, 2008. p. 163. ISBN 978-83-924989-4-0; 2. Morfin F., Sabroux J-C, Renouprez A. 2004. Catalytic combustion of hydrogen for mitigating hydrogen risk in case of a severe accident in a nuclear power plant: study of catalysts poisoning in a representative atmosphere. Applied Catalysis B: Environmental. 2004, Vol. 47, pp. 47-58; 3. Amrousse R., Batonneau Y., Kappenstein Ch. 25 - 28 July 2010. Catalytic Combustion of Hydrogen

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Andrzej Rusin and Katarzyna Stolecka

References Buczek B., Czepirski L., Ziętkiewicz J., 2007. Optimization of hydrogen volumetric storage capacity for microporous carbon materials, Chem. Process Eng. , 28, 47-55. EC Regulation, 2009. Regulation (EC) No 79/2009 of the European Parliament and of the Council of 14 January 2009 on type-approval of hydrogen-powered motor vehicles, and amending Directive 2007/46/EC , available at: http://eur-lex.europa.eu/LexUriServ/LexUriServ.do?uri=CELEX:32009R0079:en:NOT Elvers B

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Jinghua Zhao, Ming Zhang, Yue Li, Zhiheng Zhang, Mingzi Chen, Tao Liu, Jiantao Zhang and Anshan Shan

References 1. Abraini J.H., Gardette-Chauffour M.C., Martinez E., Rostain J.C., Lemaire C.: Psychophysiological reactions in humans during an open sea dive to 500 m with a hydrogen-helium-oxygen mixture. J Appl Physiol 1994, 76, 1113–1118. 2. Aoki T., Nishimura M., Kataoka H., Ishibashi R., Nozaki K., Hashimoto N.: Reactive oxygen species modulate growth of cerebral aneurysms: a study using the free radical scavenger edaravone and p47phox-/-mice. Lab Invest 2009, 89, 730–741. 3. Cai W.W., Zhang M.H., Yu Y.S., Cai J.H.: Treatment with hydrogen

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K. Vrbek, J. Lamut, M. Marolt and M. Knap

References [1] S. Misra, Y. Li, Il. Sohn, Hydrogen and Nitrogen Control in Steelmaking at U. S. Steel. Iron and Steel Technology, 43-52 (2009). [2] R. Dekkers, B. Blanpain, J. Plessers, P. Wollants, Steel cleanli- ness and hydrogen in liquid steel. VII International Conference on Molten Slags Fluxes and Salts, The South African Institute of Mining and Metallurgy, 753-762 (2004). [3] K. Huang, Q. Liu, Blowhole formation during solidification in liquid steel. Steel research, 7, 268-272 (1996). [4] E.T Turkdogan, Fundamentals of Steelmaking, The

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J. Ćwiek

References Y. Archakov, Vodorodoustojchivost stali, Metallurgia, Moskva, 1978. E. Łunarska, O. Czerniajewa, A. Nakonieczny, Influence of surface treatments on 40HM steel resistance to general, pitting and stress corrosion, Surface Engineering 4 (2000) 12-19, (in Polish). E. Łunarska, J. Michalski, Hydrogen behavior in the iron surface layer modified by plasma nitriding and ion boronising, Werkstoffe und Korrosion 51 (2000) 1-9. P. Kula, The comparison

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A. Szoka, G. Gajowiec, A. Zieliński, W. Serbiński, J.-M. Olive and A. Ossowska

References 1. Steinbrück M., Böttcher M., Air oxidation of Zircaloy-4, M5_ and ZIRLO™ cladding alloys at high temperatures. J Nucl Mater 2011; 414:276-85. 2. Zielinski A., Sobieszczyk S., Hydrogen-enhanced degradation and oxide effects in zirconium alloys for nuclear applications. Intl J Hydrogen Energy 2011;36:8619-29. 3. Lelièvre G., Fruchart D., Convert P., Lefè`vre-Joud F., Characterisation by neutron diffraction in high temperature pressurized water of the surface corrosion and hydrogen embrittlement of

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Bogdan Żółtowski and Mariusz Żółtowski

References 1. Delucchi A., Micheals P., McArdle P., Singh M., Marland G., Lindzen R., Edgerton S.: Alternatives to Traditional Transportation Fuels. Greenhouse Gas Emissions; Vol.2, 1996. 2. Doppler M.: Development of and prospects for hybride -hydrogen drive for cars (in Polish). Akademia Górniczo-Hutnicza im. Stanisława Staszica, Kraków (Staszic Mining and Metallurgy Academy of Cracow), 2005. 3. Dzida M., Olszewski W.: Comparing combined gas tubrine/steam turbine and marine low speed piston engine/steam turbine systems in naval applications. Polish

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Joop Schoonman and Dana Perniu

.N. Rao, and D.A. Tryk, J. Phys. Chem. Photobiology C: Photochemistry Reviews 1, 1 (2000). [16]. R. van de Krol and M. Grätzel eds. Photoelectrochemical Hydrogen Production, Electronic Materials: Science and Technology 102. Springer New York, Dordrecht, Heidelberg, London, 2012. ISBN 978-1-4614-1379-0. [17]. M.F. Weber and M.J. Dignam, Int. J. Hydrogen Energy 11, 225 (1986). [18]. R.J. Bolton, S.J. Strickler, and J.S. Connoly, Nature 316, 495 (1985). [19]. A.B. Murphy, P.F.R. Barnes, L.K. Randeniya, I

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Beata Zielińska, Joanna Sreńscek-Nazzal and Ryszard Kaleńczuk

.jhazmat.2007.09.071. Ji, S. M., Jun, H., Jang, J. S., Son, H. Ch., Borse, P. H. & Lee, J. S. (2007). Photocatalytic hydrogen production from natural seawater. J. Photochem. Photobiol. A. 189, 141-144. DOI: 10.1016/j.jphotochem.2007.01.011. Ikeda, M., Kusumoto, Y., Somekawa, S., Ngweniform, P. & Ahmmad, B. (2006). Effect of graphite silica on TiO 2 photocatalysis in hydrogen production from water-methanol solution. J. Photochem. Photobiol. A. 184, 306-312. DOI: 10.1016/j.jphotochem.2006

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P. Pokorný, M. Kouřil, M. Martínek and S. Eriksen

. Lyon, S. B. Corrosion of Tantalum and Niobium and their Alloys. Shreir's Corrosion.   2009 , 3 , 2135-2150. Šušic, M.; et al. Absorption of Hydrogen by Palladium-coated Tantalum Powder. Int. J. Hydrogen Energy.   1994 , 19 (9), 751-755. Herlach, D. The Hydrogen Embrittlement of Metals. Phys. Rev. B: Condens. Matter.   2000 , 289 , 443-446. Spulak, R. G.; et al. X-Ray Difraction Study of Phase Transition in Tantalum Hydride Films. J. Less-Common Met.   1990 , 166 , 95