Efficient microwave degradation of humic acids in water using persulfate and activated carbon

被引:1
|
作者
Xianbing Zhang
Zhaoxia Ding
Juan Yang
Leslie Cizmas
Eric Lichtfouse
Virender K. Sharma
机构
[1] Chongqing Jiaotong University,National Engineering Research Center for Inland Waterway Regulation and Key Laboratory of Hydraulic and Waterway Engineering of the Ministry of Education
[2] Army Logistics University of People Liberation Army,Department of Environmental and Occupational Health, School of Public Health
[3] Texas A&M University,Cerege
[4] Aix-Marseille Univ,undefined
[5] CNRS,undefined
[6] Coll France,undefined
[7] CNRS,undefined
[8] INRA,undefined
[9] IRD,undefined
来源
关键词
Microwave; Sulfate radical; Granular activated carbon; Organic matter;
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学科分类号
摘要
Humic acids are complex mixtures of organic molecules of different sizes, molecular weights and functional groups such as phenols, carboxyls, quinones and amino acids. Humic acids occur ubiquitously in media where organic matter is decomposing, such as waters, soils, sediments and organic wastes. The presence of humic acids in untreated water inhibits the oxidation of target pollutants through competing reactions and generates toxic disinfection by-products during the classical disinfection method of chlorination. There is therefore a need for alternative methods that remove humic acids. Here, degradation of humic acids at 10 mg/L was tested using 1000 W microwave irradiation assisted by 0.25–1.2 mM persulfate, with granular activated carbon at 10–50 g/L, at pH 3.0–12.0. In 90s, the highest removal of humic acids, of 75%, and humic acids mineralization, of 41%, was obtained using 1000 W microwave, 50 g/L granular activated carbon and 0.5 mM persulfate at pH 8.0. Under the same conditions without persulfate, removal was only 42% and mineralization 24%. Removal was lower than 7% using either persulfate or microwave alone. High removal with microwave, persulfate and granular activated carbon may be explained by enhanced generation of SO4·− and ·OH radicals and also by better trapping/encapsulation/binding of humic acids in the granular activated carbon matrix.
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页码:1069 / 1075
页数:6
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