首页|基于碳材料电增强吸附全氟化合物和抗生素的研究进展

基于碳材料电增强吸附全氟化合物和抗生素的研究进展

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新污染物以其持久性和生物富集性在环境中积累和迁移,对自然生态系统和人类健康造成巨大风险。电增强吸附可以通过控制外部施加不同电压有效吸附去除水体中的新污染物,并且再生简单、无二次污染,因此在去除新污染物等领域,电增强吸附技术有巨大的应用前景。碳材料具有比表面积大、导电性好、成本低等优点,是良好的电增强吸附电极材料。文章综述了近些年碳电极在电增强吸附部分重要新污染物(全氟化合物和抗生素)的研究进展,并探讨水环境条件对电增强吸附性能的影响。
Research Progress on Electro-Enhanced Adsorption of Perfluorinated Compounds and Antibiotics Based on Carbon Materials
Emerging contaminants migrate and accumulate in the environment due to their bioaccumulation and persistence,posing significant risks to natural ecosystems and human health.Electro-enhanced adsorption technology can effectively adsorb and remove emerging contaminants in water by controlling the external bias,and has simple regeneration and no secondary pollution.Therefore,electro-enhanced adsorption technology has great application prospects in removing emerging contaminants.Carbon materials have the advantages of large specific surface area,good conductivity,and low cost,making them excellent electro-enhanced adsorption electrode materials.This paper reviews the research progress of carbon electrodes in the electro-enhanced adsorption of important emerging contaminants(perfluorinated compounds and antibiotics)in recent years,and discusses the impact of water environmental conditions on electro-enhanced adsorption.

electro-enhanced adsorptionemerging contaminantperfluorinated compounds(PFCs)antibioticscarbon material

徐坤坤、邢加建、陈硕

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大连理工大学环境学院,辽宁大连 116024

电增强吸附 新污染物 全氟化合物 抗生素 碳材料

2024

净水技术
上海市净水技术学会,上海市城乡建设和交通委员会科学技术委员会办公室

净水技术

CSTPCD
影响因子:0.643
ISSN:1009-0177
年,卷(期):2024.43(9)