Efficient degradation of tetracycline by singlet oxygen-dominated peroxymonosulfate activation with magnetic nitrogen-doped porous carbon

被引:8
|
作者
Shaohua Wu [1 ,2 ,3 ]
Chunping Yang [1 ,2 ,3 ,4 ]
Yan Lin [1 ,2 ]
Jay J.Cheng [1 ,5 ]
机构
[1] Guangdong Provincial Key Laboratory of Petrochemcial Pollution Processes and Control, School of Environmental Science and Engineering, Guangdong University of Petrochemical Technology
[2] College of Environmental Science and Engineering, Hunan University and Key Laboratory of Environmental Biology and Pollution Control (Hunan University), Ministry of Education
[3] Maoming Engineering Research Center for Organic Pollution Control, Academy of Environmental and Resource Sciences, Guangdong University of Petrochemical Technology
[4] Hunan Provincial Environmental Protection Engineering Center for Organic Pollution Control of Urban Water and Wastewater
[5] Department of Biological and Agricultural Engineering, North Carolina State University
基金
中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
X703 [废水的处理与利用]; TQ127.11 [];
学科分类号
0817 ; 083002 ;
摘要
Nonradical reaction driven by peroxymonosulfate(PMS) based advanced oxidation processes has drawn widespread attention in water treatment due to their inherent advantages,but the degradation behavior and mechanism of organic pollutants are still unclear. In this study, the performance, intermediates, mechanism and toxicity of tetracycline(TC) degradation were thoroughly examined in the constructed magnetic nitrogen-doped porous carbon/peroxymonosulfate(Co-N/C-PMS) system. The results showed that 85.4% of TC could be removed within 15 min when Co-N/C and PMS was simultaneously added and the degradation rate was enhanced by 3.4 and 14.7 folds compared with Co-N/C or PMS alone, respectively. Moreover, the performance of Co-N/C was superior to that of most previously reported catalysts. Many lines of evidence indicated that Co-N/C-PMS system was a singlet oxygen-dominated nonradical reaction, which was less interfered by p H and water components, and displayed high adaptability to actual water bodies. Subsequently, the degradation process was elaborated on the basis of three-dimensional excitation-emission matrix spectra and liquid chromatography-mass spectrometry. At last, the toxicity of treated TC was greatly reduced by using microalgae Coelastrella sp. as ecological indicator. This study provides a promising approach based on singlet oxygen-dominated nonradical reaction for eliminating TC in water treatment.
引用
收藏
页码:330 / 340
页数:11
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