A New Ozone Concentration Regulator

Laboratory design of an ozoneconcentration regulator which is build on the theory of continuity equation forgas flow in parallel pipes in conjunction with the ozone elimination potentialsof an ozone destructor is presented. At an initial oxygen flow rate of 33.33 cm3s-1,ozone concentration was  gene...

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Bibliographic Details
Main Authors: David, Michael (Author), En Marcus, Tay Ching (Author), Yaacob, Maslina (Author), Salim, Mohd Rashidi (Author), Hussin, Nabihah (Author), Ibrahim, Mohd Haniff (Author), Idrus, Sevia Mahdaliza (Author), Ngajikin, Nor Hafizah (Author), Azmi, Asrul Izam (Author)
Format: EJournal Article
Published: Institute of Advanced Engineering and Science, 2015-02-01.
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Summary:Laboratory design of an ozoneconcentration regulator which is build on the theory of continuity equation forgas flow in parallel pipes in conjunction with the ozone elimination potentialsof an ozone destructor is presented. At an initial oxygen flow rate of 33.33 cm3s-1,ozone concentration was  generated andvaried between 429.30 parts per million (ppm) to 3826.60 ppm.  Similarly at an initial oxygen flow rate of 25cm3s-1, ozone concentration was  generated and varied between 387.30 ppm to4435.20 ppm. Effect of flow meter when the ozone concentration was set toapproximate 1000 ppm  were investigatedand reported. Fine tuning of the regulator is necessary to ensureconcentration stability for long duration experimental work. DOI: http://dx.doi.org/10.11591/telkomnika.v13i2.6952