Jiangsu Key Laboratory of Anaerobic Biotechnology, School of Environment and Civil Engineering, Jiangnan University, Wuxi, China; Wuxi Municipal Design and Research Institute Co. Ld., Wuxi, China.
Jiangsu Key Laboratory of Anaerobic Biotechnology, School of Environment and Civil Engineering, Jiangnan University, Wuxi, China.
Sci Total Environ. 2021 Feb 1;754:142219. doi: 10.1016/j.scitotenv.2020.142219. Epub 2020 Sep 6.
The kinetic and pathway of meta-cresol (m-cresol) degradation were studied by persulfate oxidation through UV/ozone activation (UV/O-NaSO) to improve m-cresol removal to eliminate ecological risks. Experimental results showed that the degradation effect of m-cresol with an initial concentration of 50 mg/L was 99.8% in 30 min under the optimization conditions. The reaction kinetic model in the UV/O-NaSO system shows that the initial pH value, the respective ozone, and the persulfate dosage were positively correlated with the degradation rate constant value (k). The apparent degradation rate of m-cresol in the UV/O-NaSO system was 0.2216 min, and the synergy factor (f) was larger than 1, thereby demonstrating a synergistic effect of UV, ozone, and persulfate. The dominant free radicals in the system were sulfate radical (SO- 4·) and hydroxyl radical (·OH), and the contribution ratio of SO- 4· to m-cresol degradation was higher than ·OH. The degradation process of m-cresol by UV/O - NaSO was mainly through the electrophilic addition reaction to substitute the ortho- and para-positions of the hydroxyl group on the benzene ring, followed by the ring-opening reaction and mineralization of the aliphatic compound to achieve the complete degradation of m-cresol.
通过过硫酸盐氧化与 UV/臭氧协同作用(UV/O-NaSO)研究间甲酚(m-cresol)的动力学和途径,以提高 m-cresol 的去除率,消除生态风险。实验结果表明,在优化条件下,初始浓度为 50mg/L 的间甲酚在 30min 内的降解效果达到 99.8%。在 UV/O-NaSO 体系中的反应动力学模型表明,初始 pH 值、单独的臭氧和过硫酸盐剂量与降解速率常数(k)值呈正相关。UV/O-NaSO 体系中 m-cresol 的表观降解速率为 0.2216min,协同因子(f)大于 1,表明 UV、臭氧和过硫酸盐具有协同效应。体系中的主要自由基为硫酸根自由基(SO- 4·)和羟基自由基(·OH),SO- 4·对 m-cresol 降解的贡献比例高于·OH。UV/O-NaSO 降解 m-cresol 的过程主要是通过亲电加成反应取代苯环上羟基的邻位和对位,然后进行开环反应和脂肪族化合物的矿化,从而实现 m-cresol 的完全降解。