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Degradation of azo dye Acid black 1 using low concentration iron of Fenton process facilitated by ultrasonic irradiation
Authors:Sun Jian-Hui  Sun Sheng-Peng  Sun Jing-Yu  Sun Rui-Xia  Qiao Li-Ping  Guo Hui-Qin  Fan Mao-Hong
Institution:

aCollege of Chemistry and Environmental Sciences, Henan Normal University, Henan Key Laboratory for Environmental Pollution Control, Xinxiang, Henan 453007, PR China

bState Key Laboratory of Organic Geochemistry, Guangzhou Institute of Geochemistry, the Chinese Academic of Sciences, Guangzhou 510640, PR China

cSchool of Ke-Zhen Zhu, Zhejiang University, Hangzhou 310058, PR China

dSchool of Materials Science and Engineering, Georgia Institute of Technology, Atlanta, GA 30332, USA

Abstract:A combination of ultrasonic and low concentration iron (<3 mgL(-1)) of Fenton process (US/Fenton) has been used to treat wastewater containing Acid black 1 (AB1). The results show that the oxidation power of low concentration iron of Fenton could be significantly enhanced by ultrasonic irradiation. The degradation of AB1 in aqueous solution by US/Fenton can receive better results compared with either Fenton oxidation or ultrasonic alone. Many operational parameters, such as ultrasonic power density, the pH value, the Fe(2+) dosage, the H(2)O(2) dosage, AB1 concentration and the temperature, affecting the degradation efficiency were investigated. Also, the effects of various inorganic anions (such as Cl(-), NO(3)(-), CO(3)(2-), etc.) on the oxidation efficiency of US/Fenton were studied. Under the given test conditions, 98.83% degradation efficiency was achieved after 30 min reaction by US/Fenton. The effect of various inorganic anions was in the following decreasing order: SO(3)(2-)>CH(3)COO(-)>Cl(-)>CO(3)(2-)>HCO(3)(-)>SO(4)(2-)>NO(3)(-). The results show that the US/Fenton can be an effective technology for the treatment of organic dyes in wastewater.
Keywords:Azo dye  Fenton  Ultrasonic  Advanced oxidation processes  Hydroxyl radicals
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