Treatment of real yarn dyed wastewater using hybrid electrocoagulation (EC)-ozonation process has been carried out to solve the non biodegradable wastewater. The work aimed to treat the real yarn dyed wastewater under different ozone concentration and agitation speed and to estimate the kinetic parameter of ozonation. The effect of ozone concentration, agitation speed were studied to give the best performance of color and chemical oxygen demand (COD) removal. The result indicated 38.12% of COD removal and 92.53% of color removal using EC with Al/Al electrodes for 10 minutes. The effluent was pumped to ozonation process for further COD removal. The result showed that 1 mg/L ozon was needed to destroy 4.73 mg/L COD. At ozonation process, the COD removal was 87.4% using 5.8% mol ozone at 400 rpm for 60 minutes. The kinetic parameter was estimated based on the experimental data. The reaction rate constant was 173.5 cm3/(g sec).
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Research Article|
August 01 2017
Study on kinetic parameter in real yarn dyed wastewater treatment using electrocoagulation-ozonation process
Lieke Riadi;
Lieke Riadi
*
aDepartment of Chemical Engineering, The University of Surabaya, Surabaya, Indonesia
bCenter for Environmental Studies, The University of Surabaya, Jl.Raya Kalirungkut, Surabaya 60293, Indonesia
*Corresponding author. E-mail: lieke@staff.ubaya.ac.id
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Ali Altway;
Ali Altway
cDepartment of Chemical Engineering, Sepuluh Nopember Institut of Technology, Jl.Raya ITS, Keputih, Sukolili, Surabaya 60111, Indonesia
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Sasmita Mirifica Vania;
Sasmita Mirifica Vania
aDepartment of Chemical Engineering, The University of Surabaya, Surabaya, Indonesia
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Andy Widyasayogo
Andy Widyasayogo
aDepartment of Chemical Engineering, The University of Surabaya, Surabaya, Indonesia
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Water Practice and Technology (2017) 12 (3): 690–697.
Citation
Lieke Riadi, Ali Altway, Sasmita Mirifica Vania, Andy Widyasayogo; Study on kinetic parameter in real yarn dyed wastewater treatment using electrocoagulation-ozonation process. Water Practice and Technology 1 August 2017; 12 (3): 690–697. doi: https://doi.org/10.2166/wpt.2017.073
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