Obogaćivanje niskokaloričnih gasovitih goriva vodonikom

##plugins.themes.bootstrap3.article.main##

Aleksandar Milivojević Miroljub Adžić Mirjana Stamenić Vuk Adžić

##plugins.themes.bootstrap3.article.details##

Kako citirati
MILIVOJEVIĆ, Aleksandar et al. Obogaćivanje niskokaloričnih gasovitih goriva vodonikom. Procesna tehnika, [S.l.], v. 35, n. 1, p. 24-28, sep. 2023. ISSN 2217-2319. Dostupno na: <https://izdanja.smeits.rs/index.php/procteh/article/view/6967>. Datum pristupa: 04 dec. 2023
Sekcija
Procesne tehnologije

Reference

[1] Rigas, F and Amyotte, P (2013), Hydrogen safety. Boca Raton: CRC press. Taylor and Francis Group.
[2] Rigas, F and Amyotte, P (2013), Myths and facts about hydrogen hazards, Chemical Engineering Transactions, Vol. 31
[3] Effects of CH4, H2 and CO2 Mixtures on SI Gas Engine. S. Chuayboon, S. Prasertsan, T. Theppaya, K. Maliwan and P. Prasertsan, International Conference on Alternative Energy in Developing Countries and Emerging Economies, ScienceDirect, Energy Procedia 52 ( 2014 ), pp. 659 – 665, © 2014 Elsevier Ltd.
(http://creativecommons.org/licenses/by-nc-nd/3.0/)
[4] ISO/TR 15916 (2004), Basic considerations for the safety of hydrogen systems. International Organization for Standardization, ISO Technical Committee 197 Hydrogen Technologies, International Organization for Standardization, Geneva
[5] AIAA standard G-095-2004 (2004), Guide to safety of hydrogen and hydrogen systems, American Institute of Aeronautics and Astronautics, Reston, VA, USA
[6] McCarty, RD, Hord, J, and Roder, HM (1981), Selected Properties of Hydrogen, NBS Monograph 168, National Bureau of Standards, Boulder, CO, February 1981
[7] Kalghatgi, GT (1981), Blow-out stability of gaseous jet diffusion flames. Part I: In still air, Combustion Science and Technology, 26(5), pp. 233-239