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Analysis of Ozone Generation with Effect of Voltage, Frequency, (Temperature) and Flow Rate Using Corona Discharge


Affiliations
1 Dr. Mahalingam College of Engineering and Technology, Pollachi, India
2 KCG College of Engineering and Technology, Chennai, TN, India
     

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This paper rationale a high voltage power supply which varies of (0-5) kV with the variable frequency of 50 Hz-5 kHz. The power supply is used in the dielectric barrier discharge tube for the ionization process to yield concentration of ozone.This setup points the development of small and high efficient ozone generators using corona discharge method. Ozone generation was carried out by varying parameters including voltage, frequency, flow rate and temperature to yield high concentration of ozone. The feeding gas composition greatly affected the ozone generation rate, which was increased in order of ambient air to dry air. With increase in temperature, ozone concentration is increased while ozone generation rate is enhanced. In the experiments, a maximum ozone concentration of approximately 83 ppm is obtained, the peak value of applied voltage of about 5kV and gap of electrode is 4.3mm respectively. Dry air is used as feeding gas with residence time of 10.58 sec.

Keywords

Ferrite Core Transformer, Temperature Sensor (LM35), Ozone Analyzer & Air Compressor.
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  • Analysis of Ozone Generation with Effect of Voltage, Frequency, (Temperature) and Flow Rate Using Corona Discharge

Abstract Views: 240  |  PDF Views: 1

Authors

V. Lakshminarayanan
Dr. Mahalingam College of Engineering and Technology, Pollachi, India
P. A. Balakrishnan
KCG College of Engineering and Technology, Chennai, TN, India
T. Karthick Kumar
Dr. Mahalingam College of Engineering and Technology, Pollachi, India

Abstract


This paper rationale a high voltage power supply which varies of (0-5) kV with the variable frequency of 50 Hz-5 kHz. The power supply is used in the dielectric barrier discharge tube for the ionization process to yield concentration of ozone.This setup points the development of small and high efficient ozone generators using corona discharge method. Ozone generation was carried out by varying parameters including voltage, frequency, flow rate and temperature to yield high concentration of ozone. The feeding gas composition greatly affected the ozone generation rate, which was increased in order of ambient air to dry air. With increase in temperature, ozone concentration is increased while ozone generation rate is enhanced. In the experiments, a maximum ozone concentration of approximately 83 ppm is obtained, the peak value of applied voltage of about 5kV and gap of electrode is 4.3mm respectively. Dry air is used as feeding gas with residence time of 10.58 sec.

Keywords


Ferrite Core Transformer, Temperature Sensor (LM35), Ozone Analyzer & Air Compressor.