Veisi Payam, Seyed Dorraji Mir Saeed, Rasoulifard Mohammad Hossein, Vatanpour Vahid
Applied Chemistry Research Laboratory, Department of Chemistry, Faculty of Science, University of Zanjan, Zanjan, Iran.
Applied Chemistry Research Laboratory, Department of Chemistry, Faculty of Science, University of Zanjan, Zanjan, Iran.
Chemosphere. 2024 Mar;352:141526. doi: 10.1016/j.chemosphere.2024.141526. Epub 2024 Feb 22.
Reducing irreversible fouling in polymer membranes by integrating photocatalytic and membrane processes as the self-cleaning photocatalytic membrane is a promising candidate for improving membrane filtration performance. In this study, mixed matrix photocatalytic membranes were prepared from the combination of different morphologies ZnO-g-CN heterostructure in the polymer matrix by the phase-separation method. To investigate the self-cleaning and performance properties of mixed matrix photocatalytic membranes prepared from different morphologies heterostructures, the photocatalytic membrane reactor with a visible-light source was applied. Nanoflower/nanosheet (NF/NS) ZnO-g-CN photocatalytic membrane showed good self-cleaning performance owing to the high photocatalytic performance of NF/NS ZnO-g-CN heterostructure by the reduction of irreversible membrane fouling, thus improving the antifouling and filtration performance of the membrane. Also, the morphology and the uniform distribution of the NF/NS ZnO-g-CN heterostructure in the membrane matrix caused good hydrophilic properties, high porosity, and a more symmetrical structure in the (NF/NS) ZnO-g-CN photocatalytic membrane (F). For the F membrane, the permeability and rejection values increased from 40.35 L m h and 90.9% in the dark environment to 84.37 L m h and 97.4% under visible-light for dye pollutants. Accordingly, F had the best filtration and self-cleaning performance, which can be used as a promising visible-light photocatalytic membrane in wastewater treatment processes.
通过将光催化和膜过程相结合来减少聚合物膜中的不可逆污染,自清洁光催化膜是改善膜过滤性能的一个有前途的候选材料。在本研究中,采用相分离法,由聚合物基质中不同形态的ZnO-g-CN异质结构组合制备了混合基质光催化膜。为了研究由不同形态异质结构制备的混合基质光催化膜的自清洁和性能特性,应用了带有可见光源的光催化膜反应器。纳米花/纳米片(NF/NS)ZnO-g-CN光催化膜由于NF/NS ZnO-g-CN异质结构的高光催化性能,通过减少不可逆的膜污染而表现出良好的自清洁性能,从而提高了膜的抗污染和过滤性能。此外,NF/NS ZnO-g-CN异质结构在膜基质中的形态和均匀分布导致(NF/NS)ZnO-g-CN光催化膜(F)具有良好的亲水性、高孔隙率和更对称的结构。对于F膜,在黑暗环境中对染料污染物的渗透率和截留率分别为40.35 L m h和90.9%,在可见光下分别提高到84.37 L m h和97.4%。因此,F具有最佳的过滤和自清洁性能,可作为废水处理过程中一种有前途的可见光光催化膜。