Guangdong Provincial Key Laboratory of Agricultural & Rural Pollution Abatement and Environmental Safety, College of Natural Resources and Environment, South China Agricultural University, 483 Wushan St., Guangzhou 510642, China.
Guangdong Provincial Key Laboratory of Agricultural & Rural Pollution Abatement and Environmental Safety, College of Natural Resources and Environment, South China Agricultural University, 483 Wushan St., Guangzhou 510642, China; Guangdong Laboratory for Lingnan Modern Agriculture, College of Natural Resources and Environment, South China Agricultural University, 483 Wushan St., Guangzhou 510642, China.
J Hazard Mater. 2022 Mar 15;426:127803. doi: 10.1016/j.jhazmat.2021.127803. Epub 2021 Nov 19.
The advanced oxidation process of peroxymonosulfate activated by solid catalyst is one of the main technologies to solve the pollution of antibiotics in water environment.In this work, a series of composites (MCW) containing Mn, Co, and W were synthesized using green ball milling, which does not produce the three wastes (waste gas, waste water and industrial residue). It shows a unique and high catalytic activity for peroxymonosulfate-based degradation of doxycycline (DC) under the pH condition between 4 and 9, and it can be reused five times. MCW composites remove DC using singlet oxygen and superoxide free radicals, as well as a large number of oxygen vacancies for electron storage. The formation rate of free radicals is determined by the conversion rates of Mn/Mn and Co/Co. In addition, there are three ways to degrade DC to form 18 kinds of intermediates, and the toxicity of all the intermediates were predicted by ECOSAR program. The highly active catalysts obtained using a green synthetic route for the activation of peroxymonosulfate show a great potential for decontamination of antibiotics wastewater.
过一硫酸盐在固体催化剂作用下的高级氧化过程是解决水环境中抗生素污染的主要技术之一。在这项工作中,使用绿色球磨法合成了一系列含有 Mn、Co 和 W 的复合材料(MCW),该方法不会产生三废(废气、废水和工业废渣)。在 pH 值在 4 到 9 之间的条件下,MCW 复合材料对基于过一硫酸盐的强力霉素(DC)的降解表现出独特的、高催化活性,并且可以重复使用五次。MCW 复合材料通过单线态氧和超氧自由基以及大量的电子存储氧空位去除 DC。自由基的形成速率由 Mn/Mn 和 Co/Co 的转化速率决定。此外,有三种方式可以降解 DC 形成 18 种中间体,并通过 ECOSAR 程序预测所有中间体的毒性。使用绿色合成路线获得的高活性催化剂对于过一硫酸盐的活化显示出了对抗生素废水进行去污的巨大潜力。