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Pengaruh Induksi Elektromagnetik Pada Pembangkit Generator Ozon Koaksial
The use of ozone in various sectors continues to be developed because ozone gas has strong oxidizing properties. one way to produce ozone is to use the dielectric barrier discharge (DBD) method which is supplied with high voltage at a certain value and will produce plasma. In this study, the testing of coaxial ozone generators was carried out under two conditions, the first was testing the input flow rate of 2.5 L / min and 5 L / min without the influence of electromagnetic induction, the second testing of input flow rates of 2.5 L / min and 5 L / min with the influence of electromagnetic induction. ozone production produced at flow rates of 2.5 L /min and 5 L / min without the influence of electromagnetic induction has values of 26.8 ppm and 19.5 ppm while the influence of electromagnetic induction with a flow rate of 2.5 L / min with an induction value of 0.1028 mT / m2 is 33 ppm, induction of 0.1031 mT / m2 is 35 ppm, induction of 0.1039 mT / m2 is 35.1 ppm, 0.1048 mT/m2 induction is 35.4 ppm, and 0.1054 mT/m2 induction is 36.5 ppm and at a flow rate of 5 L/min 0.1028 mT/m2 induction is 19.5 ppm, 0.1031 mT/m2 induction is 16.5 ppm, 0.1039 mT/m2 induction is 19 ppm, 0.1048 mT/m2 induction is 21 ppm and 0.1054 mT/m2 induction is 22 ppm. The results show that the plasma form without electromagnetic induction has a rough shape and distances while with the influence of electromagnetic induction it has a dense and smooth plasma form. Then the flow rate of 2.5 L / min has a higher ozone production value than the flow rate of 5 L / min. The influence of electromagnetic induction on the coaxial ozone generator makes the increase in ozone production at a flow rate of 2.5 L / min with induction of 0.1054 mT / m2 has a value of 36.5 ppm and at a flow rate of 5 L / min with the installation of 0.1054 mT / m2 has a value of 22 ppm.
Keywords : Ozone, DBD, Plasma, Induction, Electromagnetic
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