Chen Xinxin, Boffa Vittorio, Ma Xianzheng, Magnacca Giuliana, Calza Paola, Wang Deyong, Meng Fanpeng, Nielsen Asbjørn Haaning, Deganello Francesca, Li Kang, Yue Yuanzheng
Department of Chemistry and Bioscience, Aalborg University, Aalborg 9220, Denmark.
Dipartimento di Chimica, Università di Torino, Torino 10125, Italy.
ACS Appl Mater Interfaces. 2024 Mar 6;16(9):11835-11848. doi: 10.1021/acsami.3c19559. Epub 2024 Feb 21.
Metal-organic frameworks (MOFs) are emerging as promising materials for water purification membranes, owing to their uniform microporous structures and chemical functionalities. Here, we report a simple procedure for depositing MOF-based nanofiltration membranes on commercial TiO ceramic tubular supports, completely avoiding the use of dispersants or binders. Zeolite imidazolate frameworks-8 (ZIF-8) nanocrystals were synthesized in methanol at room temperature and subsequently coated with an amorphous SiO-ZrO gel to generate a dispersion of ZIF-8@SiO-ZrO core-shell nanoparticles. The amorphous SiO-ZrO gel served as a binding agent for the ZIF-8 nanocrystals, thus forming a defect-free continuous membrane layer. After repeating the coating twice, the active layer had a thickness of 0.96 μm, presenting a rejection rate >90% for the total organic carbon in an aquaculture effluent and in a wastewater treatment plant, while reducing the concentration of trimethoprim, here used as a target pollutant. Moreover, the oxide gel provided the MOF-based active layer with good adhesion to the support and enhanced its hydrophilicity, resulting in a membrane with excellent mechanical stability and resistance to fouling during the crossflow filtration of the real wastewater samples. These results implied the high potential of the MOF-based nanocomposite membrane for effective treatment of actual wastewater streams.
金属有机框架材料(MOFs)因其均匀的微孔结构和化学功能,正成为用于水净化膜的有前景的材料。在此,我们报道了一种在商用TiO陶瓷管状载体上沉积基于MOF的纳滤膜的简单方法,完全避免使用分散剂或粘合剂。在室温下于甲醇中合成了沸石咪唑酯框架材料-8(ZIF-8)纳米晶体,随后用无定形SiO-ZrO凝胶包覆,以生成ZIF-8@SiO-ZrO核壳纳米颗粒的分散体。无定形SiO-ZrO凝胶充当ZIF-8纳米晶体的粘合剂,从而形成无缺陷的连续膜层。重复包覆两次后,活性层厚度为0.96μm,对水产养殖废水和污水处理厂中的总有机碳的截留率>90%,同时降低了用作目标污染物的甲氧苄啶的浓度。此外,氧化物凝胶使基于MOF的活性层与载体具有良好的附着力,并增强了其亲水性,从而在实际废水样品的错流过滤过程中形成了具有优异机械稳定性和抗污染性的膜。这些结果表明基于MOF的纳米复合膜在有效处理实际废水流方面具有很高的潜力。