电芬顿降解抗生素废水研究进展  被引量:2

Research Progress of Electro-Fenton Degradation of Antibiotic Containing Wastewater

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作  者:杨军 陈泽鹏 郭雅茹 徐宝田 张祥海 安格尔 周永恒 付志敏 YANG Jun;CHEN Ze-peng;GUO Ya-ru;XV Bao-tian;ZHANG Xiang-hai;AN Ge-er;ZHOU Yong-heng;FU Zhi-min(School of Ecology and Environment,Inner Mongolia University,Hohhot Inner Mongolia 010021,China;Inner Mongolia Jinhe Environmental Protection Technology Co.,Ltd.,Hohhot Inner Mongolia010200,China)

机构地区:[1]内蒙古大学生态与环境学院,内蒙古呼和浩特010021 [2]内蒙古金河环保科技股份有限公司,内蒙古呼和浩特010200

出  处:《当代化工》2023年第10期2427-2433,共7页Contemporary Chemical Industry

基  金:内蒙古自治区科技计划项目,园区集中治理精细化工废水零排放高效预处理关键技术与装备研究开发(项目编号:2020GG0114)。

摘  要:电芬顿技术因其对污染物降解率高而受到关注,可用于降解含抗生素废水,但仍然存在很多不足之处。研究人员从选择或制备成本适宜、性能良好的阳极,增加阴极比表面积和提高H2O2产量,拓宽反应的p H范围,探究不同污染物的最适电解质,制备或添加助催化剂促进Fe^(2+)再生,调节运行方式减少H2O2无效分解、降低电能消耗、使电芬顿技术与微生物处理联合应用降低成本等方面进行了改进,为实际应用于含抗生素废水的处理提供了参考。Electro Fenton technology has attracted attention because of its high degradation rate of pollutants.It can be used to degrade antibiotic containing wastewater,but there are still many shortcomings.Researchers have made improvements in some aspects,including selecting or preparing anodes with appropriate cost and good performance,increasing the specific surface area of the cathode and increasing the yield of H2O2,broadening the pH range of the reaction,exploring the optimal electrolyte for different pollutants,preparing or adding cocatalysts to promote the regeneration of Fe^(2+),adjusting the operation mode to reduce the ineffective decomposition of H2O2,reducing power consumption,and reducing the cost of the combined application of electro-Fenton technology and microbial treatment,which can provide some reference for practical application in the treatment of antibiotic containing wastewater.

关 键 词:电芬顿 抗生素废水 降解效果提升 影响因素和方式 

分 类 号:X52[环境科学与工程—环境工程]

 

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