INFORMAZIONI SU QUESTO ARTICOLO

Cita

1. Zychová M., Růžičková M., Macák J. Vlastnosti a použití superkritické vody. Chemické listy, 2013, 107, 126-135.Search in Google Scholar

2. CoopEUs - Ocean observatories, http://www.coopeus.eu.Search in Google Scholar

3. Guzonas D.A.,Cook W.G. Cycle chemistry and its effect on materials in a supercritical water-cooled reactor: A synthesis of current understanding. Corrosion Science, 2012, 65, 48-66.10.1016/j.corsci.2012.08.006Search in Google Scholar

4. Guzonas, D., Materials and Chemistry for a Supercritical Water-cooled Reactor. 5th International Symposium onSupercritical Water-Cooled Reactors. 2011, Vancouver, Canada.Search in Google Scholar

5. Eliaz N., Mitton D. B., Latanision R. M. Review of Materials Issues in Supercritical Water Oxidation Systems and the Need for corrosion control. 2003, 56(3): p. 10.Search in Google Scholar

6. Kysela J., Zychová M. Water Coolant Technology for SCWR. ISSCWR-5, 2011, Vancouver, Can ada.Search in Google Scholar

7. Guzonas D., Tremaine P., Brosseau F. Predicting Activity Transport in a Supercritical Water Cooled Pressure Tube Reactor. ISSCWR-4, 2009, Heidelberg, Germany, p. 10.Search in Google Scholar

8. Starflinger J., Schulenberg T., Marsault P., Bittermann D., Maraczy C., Laurien E., Lycklama J.A., Anglart H., Aksan N., Růžičková M., Heikinheimo L. Paper 714. ICAPP2008, Nice, France.Search in Google Scholar

9. Heikinheimo L., Aaltonen P., Toivonen A. in EnergyMaterials, 2007. p. 72.10.1179/174892407X266635Search in Google Scholar

10. Teysseyre S., McKinley J., Jiao G., Was G. S. in SCWRInformation Exchange Meeting, 2004, Washington DC, USA.Search in Google Scholar

11. Zhang, L. Material Requirements for SCWRs. 3rd Courseson Science and Technology of SCWRs, 2013, Shanghai, China.Search in Google Scholar

12. Zhang, L. Water Chemistry and Corros ion of SCWR Candidate Materials. 3rd Courses on Science and Technology ofSCWRs. 2013, Shanghai, China.Search in Google Scholar

13. Pentillä S., Toivonen A., Heikinheimo L., Novotný R. Paper 8163. ICAPP, 2008, Anaheim, CA USA.Search in Google Scholar

14. Guzonas D., Tremaine P., Brosseau F. Paper No. 67. 4thInte rnational Symposium on Supercritical Water-CooledReactors, 2009, Heidelberg, Germany.Search in Google Scholar

15. Kritzer, P., Corrosion in high-temperature and supercritical water and aqueous solutions: a review. The J ournal ofSupercritical Fluids, 2004, 29, 1-29.10.1016/S0896-8446(03)00031-7Search in Google Scholar

16. Galkin A.A., Lunin V.V. Ru ss. Chem. Rev., 2005, 74(21).10.1070/RC2005v074n01ABEH001167Search in Google Scholar

17. Li J., Guzonas D., Zheng W., Wills J., Dole H., Michel J., Woo O.T. Paper No. 56 . 4th International Symposium onSupercritical Water-Cooled Reactors, 2009, Heidelberg, Germany.Search in Google Scholar

18. GIF (Generation I V International Forum), www.gen-4.org.Search in Google Scholar

19. Burill, K.A. Chemistry of Nuclear Reactor Systems 8.2000, BNES.Search in Google Scholar

20. Guzonas, D.A., NPC 2010, 2010, Q uebec, Canada.Search in Google Scholar

21. Yurmanov V.A., Belous V.N., Vasina V.N., Yurmanov E.V. NPC 2010, 2010, Quebec, Can ada.Search in Google Scholar

22. Sisikin M., Katritzky A.R. Journal of Analytical andApplied Pyrolysis, 2000, 54, 193 - 214.10.1016/S0165-2370(99)00081-9Search in Google Scholar

23. Kritzer P., Dinjus E. Chemical Engineering J ournal, 2001, 83, 207 - 214. 10.1016/S1385-8947(00)00255-2Search in Google Scholar

eISSN:
1804-1213
ISSN:
0452-599X
Lingua:
Inglese
Frequenza di pubblicazione:
4 volte all'anno
Argomenti della rivista:
Industrial Chemistry, Chemical Engineering, Materials Sciences, Ceramics and Glass