过氧乙酸
化学
动力学
环境修复
高级氧化法
催化作用
环境化学
污染
矿化(土壤科学)
化学工程
过氧化氢
有机化学
物理
工程类
生物
量子力学
氮气
生态学
作者
Jianqing Wu,Xiaoshan Zheng,Yingfei Wang,Haijin Liu,Yuliang Wu,Xiaoyu Jin,Ping Chen,Wenying Lv,Guoguang Liu
标识
DOI:10.1016/j.jhazmat.2022.128579
摘要
Sulfonamides (SAs) have been of ecotoxicological concern for ambient ecosystems due to their widespread application in the veterinary industry. Herein, we developed a powerful advanced oxidation peracetic acid (PAA) activation process for the remediation of SAs by Co3O4 with double-layered hollow structures (Co3O4 DLHSs). Systematic characterization results revealed that the polyporous hollow hierarchical structure endows Co3O4 DLHSs with abundant active reaction sites and enhanced mass transfer rate, which were conducive for improving the PAA activation efficiency. Laser flash photolysis experiment and mechanism studies indicated that organic radical species were dominant reactive species for SAs removal. The present system is also highly effective under natural water matrices and trace SAs concentration (20 μg/L) condition. More importantly, the chlorella acute toxicity of the SAs solution was eliminated during mineralization process, supporting this catalytic system may be efficaciously applied for the remediation of SAs contamination in ambient waterways.
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