Journal Article

·2018 OPEN ACCESS

Decolorization of Reactive Yellow 17 in aqueous solution by ozonation in a semi-batch bubble column reactor

Kadir Turhan YTU

Journal of the Turkish Chemical Society Section A Chemistry

Abstract

In this study, the factors influencing the rate of chemical oxygen demand (COD) of a synthetic waste solutions containing water soluble reactive dye [Reactive Yellow 17 (RY17)] by ozone gas was investigated. The research was conducted using a semi-batch bubble column to take the advantage of the intensive back-mixing that prevails in bubble columns. As a result, the COD of disperse dyestuff wastewater was reduced to 78.58%, and decolorization was remarkable under the basic condition of pH 12, complete each dye degradation occurs in 12 min, ozone consumption goes on for a further 30 min after which time most degradation reaction is completed. Kinetic studies were exhibited that direct ozonation of the aqueous dyes were a pseudo-first-order reaction with respect to the dyes. The apparent rate constant increased with both applied ozone dose and higher pH values, declined logarithmically with the initial dye concentration.

Keywords

Chemistry Ozone Chemical oxygen demand Aqueous solution Bubble column reactor Wastewater Reaction rate constant Bubble Reactive dye Batch reactor Degradation (telecommunications) Chromatography Oxygen Reaction rate Kinetics Organic chemistry Catalysis Environmental engineering

Subject Areas

Advanced oxidation water treatment ·Water Science and Technology ·Physical Sciences
Environmental remediation with nanomaterials ·Biomedical Engineering ·Physical Sciences
Advanced Photocatalysis Techniques ·Renewable Energy, Sustainability and the Environment ·Physical Sciences

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