Dielectric Barrier Discharge Induced By Permanent Magnet In Attraction And Repulsion Conditions For Ozone Generator
Ozone is used in various area including medicine, drinking water treatment and waste treatment. Ozone can be produced using dielectric barrier discharge which is supplied by high voltage. High voltage occurs in the dielectric barrier discharge such as air gap that it is as a result of the failure of...
Main Authors: | , |
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Format: | Article |
Language: | English |
Published: |
Universitas Riau
2020-02-01
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Series: | International Journal of Electrical, Energy and Power System Engineering |
Subjects: | |
Online Access: | https://ijeepse.id/journal/index.php/ijeepse/article/view/18 |
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author | Fri Murdiya Ivan Saputra |
author_facet | Fri Murdiya Ivan Saputra |
author_sort | Fri Murdiya |
collection | DOAJ |
description | Ozone is used in various area including medicine, drinking water treatment and waste treatment. Ozone can be produced using dielectric barrier discharge which is supplied by high voltage. High voltage occurs in the dielectric barrier discharge such as air gap that it is as a result of the failure of air in maintaining its insulator properties. Power supply used in this study is a parallel resonant push-pull inverter using a fly back transformer. In order to produce good plasma in producing ozone, a magnetic filed is added to dielectric barrier discharge. In this study, a magnet was placed on each anode and cathode electrode with the condition of attraction (model I) and repulsion (model II). The addition of two magnets to each electrode was also carried out under the conditions of attraction (model III) and repulsion (model IV). It is shown that the plasma intensity in the model I and III was higher than model II and IV. The discharge current in the model I and III was higher than model II and IV. The highest ozone concentration was model III and the lowest ozone concentration was in model IV. Model I had a higher ozone concentration than model II. |
first_indexed | 2024-12-12T13:10:58Z |
format | Article |
id | doaj.art-9be8563722844fc08d811bdf3e562594 |
institution | Directory Open Access Journal |
issn | 2654-4644 |
language | English |
last_indexed | 2024-12-12T13:10:58Z |
publishDate | 2020-02-01 |
publisher | Universitas Riau |
record_format | Article |
series | International Journal of Electrical, Energy and Power System Engineering |
spelling | doaj.art-9be8563722844fc08d811bdf3e5625942022-12-22T00:23:31ZengUniversitas RiauInternational Journal of Electrical, Energy and Power System Engineering2654-46442020-02-013161210.31258/ijeepse.3.1.6-1218Dielectric Barrier Discharge Induced By Permanent Magnet In Attraction And Repulsion Conditions For Ozone GeneratorFri Murdiya0Ivan Saputra1Department of Electrical Engineering, Universitas RiauDepartment of Electrical Engineering, Universitas RiauOzone is used in various area including medicine, drinking water treatment and waste treatment. Ozone can be produced using dielectric barrier discharge which is supplied by high voltage. High voltage occurs in the dielectric barrier discharge such as air gap that it is as a result of the failure of air in maintaining its insulator properties. Power supply used in this study is a parallel resonant push-pull inverter using a fly back transformer. In order to produce good plasma in producing ozone, a magnetic filed is added to dielectric barrier discharge. In this study, a magnet was placed on each anode and cathode electrode with the condition of attraction (model I) and repulsion (model II). The addition of two magnets to each electrode was also carried out under the conditions of attraction (model III) and repulsion (model IV). It is shown that the plasma intensity in the model I and III was higher than model II and IV. The discharge current in the model I and III was higher than model II and IV. The highest ozone concentration was model III and the lowest ozone concentration was in model IV. Model I had a higher ozone concentration than model II.https://ijeepse.id/journal/index.php/ijeepse/article/view/18dielectric barrier dischargaozoneplasmahigh voltage generatorceramicsgranite |
spellingShingle | Fri Murdiya Ivan Saputra Dielectric Barrier Discharge Induced By Permanent Magnet In Attraction And Repulsion Conditions For Ozone Generator International Journal of Electrical, Energy and Power System Engineering dielectric barrier discharga ozone plasma high voltage generator ceramics granite |
title | Dielectric Barrier Discharge Induced By Permanent Magnet In Attraction And Repulsion Conditions For Ozone Generator |
title_full | Dielectric Barrier Discharge Induced By Permanent Magnet In Attraction And Repulsion Conditions For Ozone Generator |
title_fullStr | Dielectric Barrier Discharge Induced By Permanent Magnet In Attraction And Repulsion Conditions For Ozone Generator |
title_full_unstemmed | Dielectric Barrier Discharge Induced By Permanent Magnet In Attraction And Repulsion Conditions For Ozone Generator |
title_short | Dielectric Barrier Discharge Induced By Permanent Magnet In Attraction And Repulsion Conditions For Ozone Generator |
title_sort | dielectric barrier discharge induced by permanent magnet in attraction and repulsion conditions for ozone generator |
topic | dielectric barrier discharga ozone plasma high voltage generator ceramics granite |
url | https://ijeepse.id/journal/index.php/ijeepse/article/view/18 |
work_keys_str_mv | AT frimurdiya dielectricbarrierdischargeinducedbypermanentmagnetinattractionandrepulsionconditionsforozonegenerator AT ivansaputra dielectricbarrierdischargeinducedbypermanentmagnetinattractionandrepulsionconditionsforozonegenerator |