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The influence of a high voltage electrode design on electrical parameters of the ozone generator

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The application of high-voltage electrode of an altered design to cylindrical ozonizer creates new potential for obtaining higher efficiency of an ozone formation process. It has been found that the new design of an inner high-voltage electrode brings a change to the discharge character and influences the rate of an ozone synthesis process. The shape of Lissajou's curves obtained, indicates the mixed character of the discharges in an ozonizer with a new design at helix electrodes. This type of electrodes had a various number of windings per unit length and per diameters. Experiments have been performed within the range of voltage values of 4.0 - 8.5 kV, (50 Hz and 150 Hz), the discharge gap was 2 mm or 4.5 mm and within the range of inlet gas flow of 30 - 100 dcmYh. It have been shown that application of a high-voltage electrode with a mean number of windings per unit length and oxygen as inlet gas yields the highest ozone concentration at the same value of specific energy.
Rocznik
Strony
8--11
Opis fizyczny
Bibliogr. 11 poz., rys., tab.
Twórcy
  • Department of Chemical Technology, Technical University of Lublin, Nadbystrzycka
autor
  • Department of Chemical Technology, Technical University of Lublin, Nadbystrzycka
Bibliografia
  • (1) Kazunori Hakiai, N.Taniguchi, Satoshi Ihara, Ch.Yamabe, Charactcristics of ozone generation with glow discharge using a double discharge method. Proceedings. 13th Ozone World Congres Kyoto, Japan, 1997, 2.
  • (2) Samoiłowicz V., The possibility of increasing efficiency of an ozonizer. Proc. International Ozone Symposium :" Application of ozone in water and wastewater treatment". Warsaw , Poland, 1994, 235 - 242.
  • (3) Schmidt-Szałowski K., Zarębski W., J. Chim. Phys., 1991, 88, 1849.
  • (4 ) Schmidt-Szałowski K. Catalityc properties of silica packings under ozone synthesis conditions. Proc. International Ozone Symposium: „Application of ozone in water and wastewater treatment." Warsaw, Poland, 1994, 243 - 252.
  • (5) Rzączyńska M., Polio J., Szymański W., Ozone synthesis in all-metal generator for semi-corona discharges with a polyester dielectric, Plasma Chemistry VI, ed. by Politechnika Lubelska, 1997, 91 - 96.
  • (6) Okazaki S., Uchiyama H., Polio I., Ozonek J., Investigation into carbon containing multilayer electrodes for ozonizers. Proc. 13th Ozone World Congress, Kyoto, Japan., 1997, 2.
  • (7) Okazaki S., Kogoma M.,Uehara M. and Kimura Y., 4th Internationa! Symposium on High Pressure Low Temperature Plasma Chemistry, Bratislava, 1993, 1 - 6.
  • (8) Pollo l.,Wroński M., Ozonek J., Wolińska J., Dielectric thickness and rate of ozone production, Polish Journal of Applied Chemistry, 1995, 39, 503 - 510.
  • (9) Pollo I., Thin-layer dielectrics for ozonizers, Ozone Synthesis and Properties. Prace Naukowe Politechniki Lubelskiej, Lublin 1993, 85 - 91.
  • (10) Okazaki S., Uchiyama H., Pollo I., Ozonek J., Invstigation into carbon containing multilayer electrodes for ozonizers. Proc. of 13th Ozone World Congress, Kyoto 1997, 841 - 846.
  • (11) Wroński M., Pollo I., Ozone formation depending on different cooling water temperatures, Polish Journal of Applied Chemistry, 1998, 42, 119 - 124.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPS3-0002-0027
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