Comparative study of advanced oxidation treatment of tannery effluent in Multi-orifice Oscillatory Baffled Column with sono-catalytic treatment using Titanium Dioxide

Saravanan Jegnanthan, Kannan Kandasamy
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Abstract

Treatment of tannery effluent is a key issue that requires novel research. The presented work is an attempt to carry out advanced oxidation process in a Multi-orifice Oscillatory Baffled Column using ozone as oxidizer and compare the extent of treatment with sono-catalytic treatment with TiO2 as catalyst. Studies have been carried out to understand the effect of treatment time, concentration of effluent and oscillation frequency upon ozonation and the effect of power of ultrasound, time of treatment and catalyst loading for sono-catalytic treatment. For ozonation the COD, BOD and TDS reduction obtained are 88.8%, 84.01%, 90.73% respectively and for sono-TiO2 treatment the reduction of COD, BOD and TDS obtained are 91.2%, 91.5%, 94%. Optimization and analysis of variables is carried out to identify the effective factors for treatment.
多孔振荡褶皱柱对制革废水的高级氧化处理与使用二氧化钛进行声催化处理的比较研究
制革废水的处理是一个需要新颖研究的关键问题。本研究尝试在多孔振荡褶皱柱中使用臭氧作为氧化剂进行高级氧化处理,并将处理程度与使用 TiO2 作为催化剂的超声催化处理进行比较。研究了解了处理时间、污水浓度和振荡频率对臭氧处理的影响,以及超声催化处理中超声功率、处理时间和催化剂负载的影响。臭氧处理的 COD、BOD 和 TDS 降低率分别为 88.8%、84.01% 和 90.73%,超声催化处理的 COD、BOD 和 TDS 降低率分别为 91.2%、91.5% 和 94%。对变量进行了优化和分析,以确定有效的处理因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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