Xu Hao, Xiao Kang, Wang Xiaomao, Liang Shuai, Wei Chunhai, Wen Xianghua, Huang Xia
School of Civil Engineering, Guangzhou University, Guangzhou, China.
College of Resources and Environment, University of Chinese Academy of Sciences, Beijing, China.
Front Chem. 2020 Jun 3;8:417. doi: 10.3389/fchem.2020.00417. eCollection 2020.
Membrane fouling remains a notorious problem in microfiltration (MF) and ultrafiltration (UF), and a systematic understanding of the fouling mechanisms is fundamental for solving this problem. Given a wide assortment of fouling studies in the literature, it is essential that the numerous pieces of information on this topic could be clearly compiled. In this review, we outline the roles of membrane-foulant and foulant-foulant intermolecular interactions in MF/UF organic fouling. The membrane-foulant interactions govern the initial pore blocking and adsorption stage, whereas the foulant-foulant interactions prevail in the subsequent build-up of a surface foulant layer (e.g., a gel layer). We classify the interactions into non-covalent interactions (e.g., hydrophobic and electrostatic interactions), covalent interactions (e.g., metal-organic complexation), and spatial effects (related to pore structure, surface morphology, and foulants size for instance). They have either short- or long-range influences on the transportation and immobilization of the foulant toward the membrane. Specifically, we profile the individual impacts and interplay between the different interactions along the fouling stages. Finally, anti-fouling strategies are discussed for a targeted control of the membrane-foulant and foulant-foulant interactions.
膜污染仍然是微滤(MF)和超滤(UF)中一个臭名昭著的问题,系统地理解污染机制是解决该问题的基础。鉴于文献中有各种各样的污染研究,至关重要的是能够清晰地汇编关于这个主题的大量信息。在这篇综述中,我们概述了膜-污染物和污染物-污染物分子间相互作用在微滤/超滤有机污染中的作用。膜-污染物相互作用控制着初始的孔堵塞和吸附阶段,而污染物-污染物相互作用在随后表面污染物层(如凝胶层)的形成过程中占主导地位。我们将这些相互作用分为非共价相互作用(如疏水和静电相互作用)、共价相互作用(如金属-有机络合)和空间效应(例如与孔结构、表面形态和污染物尺寸有关)。它们对污染物向膜的传输和固定具有短期或长期影响。具体而言,我们描述了不同相互作用在污染阶段的各自影响和相互作用。最后,讨论了针对膜-污染物和污染物-污染物相互作用进行靶向控制的抗污染策略。