Автор |
Kogelschatz, U. |
Автор |
Eliasson, B. |
Автор |
Hirth, M. |
Дата выпуска |
1988 |
dc.description |
AbstractIndustrial ozone generation uses a special high pressure, low temperature electrical discharge which is referred to as the dielectric barrier discharge or silent discharge. The filamentary structure of this discharge and the properties of individual microdischarges are discussed. The main reaction paths for the excited atomic and molecular species in oxygen and air are identified. Possible approaches to obtain high power densities, high ozone generating efficiencies or high ozone concentrations are discussed. |
Формат |
application.pdf |
Издатель |
Taylor & Francis Group |
Копирайт |
Copyright Taylor and Francis Group, LLC |
Тема |
Ozone |
Тема |
Ozone Generation From Oxygen & Air |
Тема |
Discharge Physics of Ozone Generation |
Тема |
Reaction Mechanisms of Ozone Generation |
Тема |
Generation of Nitrogen Oxides During Ozone Generation From Air |
Тема |
Engineering Aspects of Ozone Generation |
Название |
Ozone Generation from Oxygen and Air: Discharge Physics and Reaction Mechanisms |
Тип |
research-article |
DOI |
10.1080/01919518808552391 |
Electronic ISSN |
1547-6545 |
Print ISSN |
0191-9512 |
Журнал |
Ozone: Science & Engineering |
Том |
10 |
Первая страница |
367 |
Последняя страница |
377 |
Выпуск |
4 |
Библиографическая ссылка |
Eliasson, B., Kogelschatz, U. and Baessler, P. 1984. “Dissociation of O<sub>2</sub> <sub>2</sub> <sub>2</sub> Mixtures”. J. Phys. B: At. Mol. Phys., 17: L797–L801. |
Библиографическая ссылка |
Eliasson, B., Hirth, M. and Kogelschatz, U. 1986b. “Ozone Synthesis From Oxygen in Dielectric Barrier Discharges”. J. Phys. D: Appl. Phys, 20: 1421–1437. BBC Research Report No KLR–86–140C 1987 |
Библиографическая ссылка |
Eliasson, B. and Kogelschatz, U. 1986c. “N<sub>2</sub>O Formation in Ozonizers”. J. Chem. Phys, 83: 279–282. |
Библиографическая ссылка |
Gibalov, V.I., Samoilovich, V.G. and Philippov, Y.V. 1981. “Physical Chemistry of Electrosynthesis of Ozone. The Results of Numerical Experiments”. Russ. J. Phys. Chem, 55: 471–479. |
Библиографическая ссылка |
Gobrecht, O., Meinhardt, H. and Hein, F. 1964. “Über die Stille Entladung in Ozonisatoren”. Ber. d. Bunsenges. f. phys. Chem., 68: 55–63. |
Библиографическая ссылка |
Hirth, M. 1981. “Teilprozesse bei der Ozonerzeugung Mittels Stiller Elektrischer Entladung”. Beitr. Plasmaphys, 20: 1–27. |
Библиографическая ссылка |
Honda, K. and Naito, Y. 1955. “On the Nature of Silent Electrical Discharge”. J. Phys. Soc, 10: 1007–1011. Japan |
Библиографическая ссылка |
Okazaki, S., Kubo, S., Niwa, H., Kogoma, M., Sugimitsu, H., Moriwaki, T. and Inomata, T. 1988. “Ozone Formation From the Reactions of O<sub>2</sub> <sub>2</sub> Molecules and a New Type Ozone Generator With Fine Wire Electrode”. Ozone: Sci. Engrg, 10(2): 137–151. |
Библиографическая ссылка |
Samoilvich, V. G. and Gibalov, V. I. 1986. Kinetics of the Synthesis of Ozone and Nitrogen Oxides in a Barrier Discharge, Russ. J. Phys. Chem, 60: 1107–1116. |
Библиографическая ссылка |
Tanaka, M., Yagi, S. and Tabata, N. 1978. “The Observation of Silent Discharge by Image Intensifier (in Japanese)”. Trans. IEE of Japan, 98: 57–62. |
Библиографическая ссылка |
Yagi, S., Tanaka, M. and Tabata, N. 1979a. “Generation of NOX in Ozonizers”. Trans. IEE of Japan, 99: 41–48. |
Библиографическая ссылка |
Yagi, S. and Tanaka, M. 1979b. “Mechanism of Ozone Generation in Air-Fed Ozonizers”. J. Phys. D: Appl. Phys, 12: 1509–1520. |