Chemistry Reference
In-Depth Information
7. M.A. Bagirov, N.A. Nuraliev, and M.A. Kurbanov. Discharge in air space bounded
with dielectrics—Methods for determination of partial discharge number. Zh. Tekh.
Fiz. , 17:495-498, 1972.
8. B. Eliasson, M. Hirth, and U. Kogelschatz. Ozone synthesis from oxygen in dielectric
barrier discharges. J. Phys. D Appl. Phys. , 20:1421-1437, 1987.
9. D. Braun, U. Küchler, and G.J. Pietsch. Microdischarges in air-fed ozonizers. J. Phys.
D Appl. Phys. , 24:564-572, 1991.
10. V.I. Gibalov, V.G. Samoilovich, and Yu.V. Filippov. Physicochemistry of ozone
electrosynthesis—The results from numerical experiments. Zh.F.Khim ,
55:830-842, 1981.
11. B. Eliasson, U. Kogelschatz, and M. Hirth. In Proceedings of the XVII International
Conference on Phenomena in Ionized Gases , Budapest, Hungary, pp. 590-592, 1985.
12. K. Yoshida and H. Tagashira. Computer simulation of ozone electrosynthesis in an
N 2 /O 2 mixture-fed ozonizer. Mem. Kitami Inst. Technol. , 18:11-20, 1986.
13. D. Braun, A. Hoffman, and G. Pietsch. Modelling of microdischarges in ozonizers. In
Proceedings of the 9th International Symposium on Plasma Chemistry , Pugnochiuso,
Italy, Vol. 3, pp. 751-756, 1989.
14. D. Braun. Zum Wirkungsgrad von Ozonerzeugern. PhD thesis, RWTH, Aachen,
Germany, 1990.
15. D. Braun, V. Gibalov, and G. Pietsch. Two-dimensional modelling of the dielectric
barrier discharge in air. Plasma Sources Sci. Technol. , 1:166-174, 1992.
16. Y.V. Yurgelenas and H.-E. Wagner. A computational model of a barrier discharge in
air at atmospheric pressure: The role of residual surface charges in microdischarge
formation. J. Phys. D Appl. Phys. , 39:4031-4043, 2006.
17. C. Heuser and G. Pietsch. Prebreakdown phenomena between glass-glass and
glass-metal electrodes. In Proceedings of the 6th International Conference on Gas
Discharges and Their Applications , Edinburgh, U.K., Vol. 1 of IEE Conference
Publication No. 189 , pp. 98-101, 1980.
18. C. Heuser. Zur Ozonerzeugung in Elektrischen Gasentladungen. PhD thesis, RWTH,
Aachen, Germany, 1985.
19. M. Hirth, U. Kogelschatz, and B. Eliasson. The structure of the microdischarges
in ozonizers and their influence on the reaction kinetics. In Proceedings of the 6th
International Symposium on Plasma Chemistry , Montreal, Quebec, Canada, Vol. 3,
pp. 663-668, 1983.
20. K. Kozlov, O. Shepeliuk, and V. Samoilovich. Spatio-temporal evolution of the
dielectric barrier discharge channels in air at atmospheric pressure. In Proceedings
of the 11th International Conference on Gas Discharges and Their Applications ,
Tokyo, Japan, Vol. 2, pp. 142-145, 1995.
21. K.V. Kozlov, V.V. Dobryakov, A.P. Monyakin, V.G. Samoilovich, O.S. Shepeliuk,
H.-E. Wagner, R. Brandenburg, and P. Michel. Cross-correlation spectroscopy
in investigations of filamentary gas discharges at atmospheric pressure. In V.N.
Ochkin, ed., Selected Research Papers on Spectroscopy of Nonequilibrium Plasma at
Elevated Pressures , Vol. 4460, pp. 165-176. Society of photo-optical Instrumentation
Engineers, Bellingham, WA, 2002.
22. K.V. Kozlov, H.-E. Wagner, R. Brandenburg, and P. Michel. Spatio-temporally
resolved spectroscopic diagnostics of the barrier discharge in air at atmospheric
pressure. J. Phys. D Appl. Phys. , 34:3164-3176, 2001.
23. K.V. Kozlov and H.-E. Wagner. Progress in spectroscopic diagnostics of barrier
discharges. Contrib. Plasma Phys. , 47:26-33, 2007.
Search WWH ::




Custom Search