Anjum Tanzila, Tamime Rahma, Khan Asim Laeeq
Department of Environmental Sciences and Policy, Lahore School of Economics, Lahore 54000, Pakistan.
Department of Chemical Engineering, COMSATS University Islamabad, Lahore 54000, Pakistan.
Membranes (Basel). 2020 Dec 4;10(12):393. doi: 10.3390/membranes10120393.
High-performance Mixed-Matrix Membranes (MMMs) comprising of two kinds of porous fillers UiO-66 and Zeolite 4Aand their combination were fabricated with polysulfone (PSf) polymer matrix. For the very first time, UiO-66 and Zeolite 4A were jointly used as nanofillers in MMMs with the objective of complimenting synergistic effects. The individual and complimentary effects of nanofillers were investigated on membrane morphology and performance, pure water flux, humic acid rejection, static humic acid adsorption, and antifouling properties of membranes. Scanning Electron Microscopy (SEM) analysis of membranes confirmed that all MMMs possessed wider macrovoids with higher nanofiller loadings than neat PSf membranes and the MMMs (PSf/UiO-66 and PSf/Zeolite 4A-UiO-66) showed tendency of agglomeration with high nanofiller loadings (1 wt% and 2 wt%). All MMMs exhibited better hydrophilicity and lower static humic acid adsorption than neat PSf membranes. Pure water flux of MMMs was higher than neat PSf membranes but the tradeoff between permeability and selectivity was witnessed in the MMMs with single nanofiller. However, MMMs with combined nanofillers (PSf/Zeolite 4A-UiO-66) showed no such tradeoff, and an increase in both permeability and selectivity was achieved. All MMMs with lower nanofiller loadings (0.5 wt% and 1 wt%) showed improved flux recovery. PSf/Zeolite 4A-UiO-66 (0.5 wt%) membranes showed the superior antifouling properties without sacrificing permeability and selectivity.
由聚砜(PSf)聚合物基体与两种多孔填料UiO - 66和4A沸石及其组合制备了高性能混合基质膜(MMMs)。首次将UiO - 66和4A沸石联合用作MMMs中的纳米填料,以实现协同效应。研究了纳米填料对膜形态和性能、纯水通量、腐殖酸截留率、静态腐殖酸吸附以及膜的抗污染性能的单独和互补作用。膜的扫描电子显微镜(SEM)分析证实,所有MMMs比纯PSf膜具有更宽的大孔和更高的纳米填料负载量,并且MMMs(PSf/UiO - 66和PSf/4A沸石 - UiO - 66)在高纳米填料负载量(1 wt%和2 wt%)下表现出团聚趋势。所有MMMs比纯PSf膜表现出更好的亲水性和更低的静态腐殖酸吸附。MMMs的纯水通量高于纯PSf膜,但在含有单一纳米填料的MMMs中观察到渗透性和选择性之间的权衡。然而,含有复合纳米填料的MMMs(PSf/4A沸石 - UiO - 66)没有表现出这种权衡,并且实现了渗透性和选择性的提高。所有低纳米填料负载量(0.5 wt%和1 wt%)的MMMs表现出改善的通量恢复。PSf/4A沸石 - UiO - 66(0.5 wt%)膜在不牺牲渗透性和选择性的情况下表现出优异的抗污染性能。