Insights into highly effective catalytic persulfate activation on oxygen-functionalized mesoporous carbon for ciprofloxacin degradation

被引:0
作者
Ying Xiong
Xiaolei Dai
Yuanyuan Liu
Chunyan Du
Guanlong Yu
Yan Xia
机构
[1] Changsha University of Science & Technology,School of Hydraulic and Environmental Engineering
[2] Key Laboratory of Dongting Lake Aquatic Eco-Environmental Control and Restoration of Hunan Province,Research Center of Resource Environment and Urban Planning
[3] Changsha University of Science and Technology,undefined
[4] Engineering and Technical Center of Hunan Provincial Environmental Protection for River-Lake Dredging Pollution Control,undefined
来源
Environmental Science and Pollution Research | 2022年 / 29卷
关键词
Persulfate; Advanced oxidation processes; Oxygen-functionalized mesoporous carbon; Ciprofloxacin; Radical and nonradical;
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摘要
Nanocarbons have been demonstrated as promising carbon catalysts for substituting metal-based catalysts for the green treatment of wastewater. In this study, oxygen-functionalized mesoporous carbon (OCMK-3) was prepared by wet oxidation and exhibited high catalytic performance against ciprofloxacin (CIP) by activation of persulfate. The effects of environmental parameters (pH, temperature, coexisting ions) and process parameters (temperature, sodium persulfate concentration, catalyst agent dosage, initial concentration) on the removal of CIP were investigated. Compared with the pristine ordered mesoporous carbon (CMK-3), the removal efficiency of CIP by OCMK-3 was increased by 32% under optimal conditions. This rise in activity was attributed to the increase in oxygen-containing functional groups, porosity, and specific surface area of OCMK-3 with improved structural defects and electron transfer efficiency. Furthermore, based on active species scavenging experiments, a dual-pathway mechanism of the radical and nonradical pathways was discovered. The rational degradation pathway of CIP was investigated based on liquid chromatography–mass spectrometry (LC–MS). In addition, the OCMK-3/PS system exhibited high decomposition efficiency in pharmaceutical wastewater treatment. This study provides an in-depth mechanism for the degradation of organic pollutants by carbon-based PS-AOPs and provides theoretical support for further studies.
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页码:59013 / 59026
页数:13
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