Li Chengcai, Shi Minghui, Xu Dan, Liao Qiqi, Liu Guojin, Guo Yuhai, Zhang Hang, Zhu Hailin
Zhejiang Provincial Key Laboratory of Fiber Materials and Manufacturing Technology, Zhejiang Sci-Tech University Hangzhou 310018 China
Zhejiang Sci-Tech University Huzhou Research Institute Co., Ltd Huzhou 313000 China.
RSC Adv. 2022 Dec 12;12(55):35543-35555. doi: 10.1039/d2ra07116a.
The anti-fouling performance of membranes is an important performance in the separation of oil/water. However, the membrane with anti-fouling performance will also have surface scaling phenomenon when it runs for a long time. Therefore, there is still a great demand for stain-resistant membranes with good self-cleaning ability and high flux recovery rate. Based on this, this paper firstly prepared a hydrophilic membrane with carboxyl group and carboxyl ion by blending poly(ethylene--maleic anhydride) (PEMA) and polyvinylidene fluoride (PVDF), and then prepared a self-cleaning composite membrane by mineralization of β-FeOOH particles on the surface of the membrane for efficient oil-in-water emulsion separation. A large number of -COOH/COO and β-FeOOH particles on the membrane surface make the composite membrane have strong hydrophilic properties (WCA = 20.34°) and underwater superoleophobicity (UOCA = 155.10°). These composite membranes have high separation efficiency (98.8%) and high flux (694.56 L m h bar) for soybean oil-in-water emulsion. Importantly, the as-prepared membrane shows excellent flux recovery rate (over 99.93%) attributed to the robust photo-Fenton catalytic activity of β-FeOOH, and the β-FeOOH is chemically bonded to the as-prepared membrane, which makes the as-prepared membrane have good reusability. This work provides hope for the application of self-cleaning membranes in the construction of anti-fouling membranes for wastewater remediation.
膜的抗污染性能是油水分离中的一项重要性能。然而,具有抗污染性能的膜在长期运行时也会出现表面结垢现象。因此,对于具有良好自清洁能力和高通量回收率的抗污膜仍有很大需求。基于此,本文首先通过共混聚(乙烯-马来酸酐)(PEMA)和聚偏氟乙烯(PVDF)制备了具有羧基和羧基离子的亲水性膜,然后通过在膜表面矿化β-FeOOH颗粒制备了自清洁复合膜,用于高效的水包油乳液分离。膜表面大量的-COOH/COO和β-FeOOH颗粒使复合膜具有强亲水性(水接触角WCA = 20.34°)和水下超疏油性(水下接触角UOCA = 155.10°)。这些复合膜对大豆水包油乳液具有高分离效率(98.8%)和高通量(694.56 L m h bar)。重要的是,所制备的膜由于β-FeOOH的强大光芬顿催化活性而表现出优异的通量回收率(超过99.93%),并且β-FeOOH与所制备的膜化学键合,这使得所制备的膜具有良好的可重复使用性。这项工作为自清洁膜在构建用于废水修复的抗污膜中的应用提供了希望。