Zhang Jianguo, Li Gaotian, Yuan Xingcheng, Li Panpan, Yu Yongfa, Yang Weihua, Zhao Shuang
School of Chemistry and Materials Science, Jiangsu Normal University, Xuzhou 221116, China.
School of Mechanics and Civil Engineering, China University of Mining and Technology, Xuzhou 221116, China.
Membranes (Basel). 2023 Jan 8;13(1):77. doi: 10.3390/membranes13010077.
Ultrafiltration (UF) processes exhibit high removal efficiencies for suspended solids and organic macromolecules, while UF membrane fouling is the biggest obstacle affecting the wide application of UF technology. To solve this problem, various pretreatment measures, including coagulation, adsorption, and advanced oxidation, for application prior to UF processes have been proposed and applied in actual water treatment processes. Previously, researchers mainly focused on the contribution of natural macromolecular pollutants to UF membrane fouling, while the mechanisms of the influence of emerging pollutants (EPs) in UF processes (such as antibiotics, microplastics, antibiotic resistance genes, etc.) on membrane fouling still need to be determined. This review introduces the removal efficiency and separation mechanism for EPs for pretreatments combined with UF membrane separation technology and evaluates the degree of membrane fouling based on the UF membrane's materials/pores and the structural characteristics of the cake layer. This paper shows that the current membrane separation process should be actively developed with the aim of overcoming specific problems in order to meet the technical requirements for the efficient separation of EPs.
超滤(UF)工艺对悬浮固体和有机大分子具有较高的去除效率,而超滤膜污染是影响超滤技术广泛应用的最大障碍。为解决这一问题,人们提出了包括混凝、吸附和高级氧化等在内的各种预处理措施,以便在超滤工艺之前应用,并已在实际水处理工艺中得到应用。此前,研究人员主要关注天然大分子污染物对超滤膜污染的影响,而新兴污染物(如抗生素、微塑料、抗生素抗性基因等)在超滤过程中对膜污染的影响机制仍有待确定。本综述介绍了结合超滤膜分离技术的预处理对新兴污染物的去除效率和分离机制,并基于超滤膜的材料/孔径以及滤饼层的结构特征评估膜污染程度。本文表明,当前应积极开发膜分离工艺,以克服特定问题,从而满足高效分离新兴污染物的技术要求。