Photocatalytic degradation of malachite green using TiO2 and O2/UV
Endah Mutiara Marhaeni Putri, M. Rachimoellah, Chandra Suryani Rahendaputri, Yusnaya Adisti, Yulfi Zetra
Abstract
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Endah Mutiara Marhaeni Putri, M. Rachimoellah, Chandra Suryani Rahendaputri, Yusnaya Adisti, Yulfi Zetra
Abstract
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The kinetic of the photocatalytic degradation of malachite green carried out by a semiconductor catalyst TiO2 and O2/UV has been observed in this research. The photocatalytic degradation of malachite green followed a 0.4th order of reaction with a rate constant of 0.015 ppm/min. Initial maximum concentration of 20 ppm under the 6 watt UV light in 360 minutes showed maximum degradation percentage of 60.02%, whereas the optimum pH of 7 showed that 60.02% of this color was degraded in the initial concentration of 40 ppm. The major degradation compound resulted from the photocatalytic degradation of malachite green was 4-N-N-dimetilaminobenzofenon.
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The kinetic of the photocatalytic degradation of malachite green carried out by a semiconductor catalyst TiO2 and O2/UV has been observed in this research. The photocatalytic degradation of malachite green followed a 0.4th order of reaction with a rate constant of 0.015 ppm/min. Initial maximum concentration of 20 ppm under the 6 watt UV light in 360 minutes showed maximum degradation percentage of 60.02%, whereas the optimum pH of 7 showed that 60.02% of this color was degraded in the initial concentration of 40 ppm. The major degradation compound resulted from the photocatalytic degradation of malachite green was 4-N-N-dimetilaminobenzofenon.
Key concepts: Malachite green, Photocatalysis, Degradation (telecommunications), Malachite, Catalysis, Reaction rate constant, Nuclear chemistry, Chemistry