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กก ก ก!

=">?@ % * 1) AB B=CDE@ "=F" 2)

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*1) "ก\กDccQ, LCกadde, S"=Q"Q%]B$I=กX=$XK?NกBF, กF=] 10520, Corresponding Author, I=@: [email protected]

2) IF$%@, LCกadde, S"=Q"Q%]B$I=กX=$XK?NกBF,

กF=] 10520, I=@: [email protected]

(2)

The Study of Temperature Effect in Electrode Rods for Ozone Generation Sanae Sathalalai*1) and Werachet Khan-ngern 2)

Abstract

This research presents the study of temperature effect in electrode rods of the ozone generator which can affect the productivity of ozone in ozone generator that using high voltage high frequency corona discharge technique at 15 kV 25 kHz . The electrode rods are the common core cylinders and two insulator layers. These electrode rods can produce ozone with maximum rate of 50 g/hr. In order to determine the suitable temperature for production of maximum ozone amount, the study of temperature effects ranging from 15 °C until the break down temperature point occurs, by minimize other variable factors. The temperature on electrode at 25 °C can generate ozone at highest capacity at 50 g/hr. The relationship of temperature occurs in electrode rods and generating efficiency of ozone can be shown in mathematic polynomial equation.

This equation can predict the effectiveness of the resulted on ozone generation amount due to the temperature occur in producing process of ozone generators in manufacturing.

Keywords: Temperature Effect in Electrode Rods, Corona Discharge, Ozone

*1) Post Graduated Students, Department of Electrical Engineering, King Mongkut{s Institute of Technology Ladkrabang, Bangkok, 10520, Corresponding Author, E-mail: [email protected]

2) Associate Professor, Department of Electrical Engineering, King Mongkut{s Institute of Technology

Ladkrabang, Bangkok, 10520, E-mail: [email protected]

(3)

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(8)

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(9)

ก'T

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Bruno Langlias, et. al. Ozone in Water Treatment.

2nd Ed. Lewis Publishers. 1991.

C. Boonseng, V. Kinnares, P. Apriratikul ŒHarmonic Analysis of Corona Discharge Ozone Generator Using Brush Electrode Configuration IEEE 2000. pp. 404-408 E. Kuffel, M. Abdulah. High - Voltage Engineering.

Oxford : Pergamon Press. 1977.

J. A. Dorsey. Et al, ŒOzone Production in

Electrostatic Air Cleaners with Contaminated Electrodes, IEEE Trans.

Ind. Applicat., vol. 30, no. 2, March/April 1994.

J. A. Robinson, el al, ŒA New Type of Ozone Generator Using Taylor Cones on Water Surfaces,{{ IEEE Trans. Id Applicat.. vol.

30 no. 2, July/August 1998 .

J. Dararash , S. Sathalalai, N. Saengtarong, P.Kerdonfag and W.Khan-ngern, ŒThe study of ozone generation using electric field with variation of air flow rate and electrode tube length ICEMC July 2005.

pp.1A-1

J. Marcos Alonso, Jesus Cardesin, Emilio Lopez Corominas, Manuel Rico-Secedes and Jorge Garcia,Œ Low -Power High-Voltage High Frequency Power Supply for Ozone Generation, IEEE Transection on Industry Application, March/April 2004. Vol.40, No,2,pp.414-421

J. Moom, et al, Œ Discharge and Ozone Generation Characteristics of a Ferroelectric-

BalVMica-Sheet Barrier, IEEE Tram. Ind, Apphcot., vol.34 no. 6, 1998.

L. L. Alston , High Voltage Technology, Oxford University Press,London, 1968.

M. Th. El - Mohandes, et.al.ŒOzone Production in Corona Discharge in Air in a Multi-Needle to Plane Configuration. Conference Record of the IEEE Industry Applications Society Annual Meeting, vol.2. 1992.

pp.1567-1569.

S. Potivejkul,V. Kinnares, P. Rattanavichien, Design of Ozone Generator using Solar Energy,

IEEE IAPCCAS, 24-27 Nov 1998, pp. 217- 220

W. J. M. Samaranayake, R. Hackam, H. Akiyama

ŒOzone synthesis in oxygen using a pulse discharge  IEEE, pp. 449-452, 2001.

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