Wang Yan, Duan Shaofan, Wang Huixian, Wei Can, Qin Lijuan, Dong Guanying, Zhang Yatao
School of Chemical Engineering, Zhengzhou University, Zhengzhou 450001, China.
School of Material Science and Engineering, North China University of Water Resources and Electric Power, Zhengzhou 450046, China.
Membranes (Basel). 2023 Dec 25;14(1):7. doi: 10.3390/membranes14010007.
Thin film nanocomposite (TFN) membranes have proven their unrivaled value, as they can combine the advantages of different materials and furnish membranes with improved selectivity and permeability. The development of TFN membranes has been severely limited by the poor dispersion of the nanoparticles and the weak adhesion between the nanoparticles and the polymer matrix. In this study, to address the poor dispersion of nanoparticles in TFN membranes, we proposed a new combination of m-ZIF-8 and m-HNTs, wherein the ZIF-8 and HNTs were modified with poly (sodium p-styrenesulfonate) to enhance their dispersion in water. Furthermore, the hydropathic properties of the membranes can be well controlled by adjusting the content of m-ZIF-8 and m-HNTs. A series of modified m-ZIF-8/m-HNT/PAN membranes were prepared to modulate the dye/salt separation performance of TFN membranes. The experimental results showed that our m-ZIF-8/m-HNT/PAN membranes can elevate the water flux significantly up to 42.6 L m h MPa, together with a high rejection of Reactive Red 49 (more than 80%). In particular, the optimized NFM-7.5 membrane that contained 7.5 mg of HNTs and 2.5 mg of ZIF-8 showed a 97.1% rejection of Reactive Red 49 and 21.3% retention of NaCl.
薄膜纳米复合(TFN)膜已证明了其无与伦比的价值,因为它们可以结合不同材料的优点,为膜提供更高的选择性和渗透性。纳米颗粒的分散性差以及纳米颗粒与聚合物基质之间的附着力弱,严重限制了TFN膜的发展。在本研究中,为了解决纳米颗粒在TFN膜中分散性差的问题,我们提出了一种新的m-ZIF-8和m-HNTs组合,其中ZIF-8和HNTs用聚(对苯乙烯磺酸钠)进行了改性,以增强它们在水中的分散性。此外,通过调整m-ZIF-8和m-HNTs的含量,可以很好地控制膜的亲水性。制备了一系列改性的m-ZIF-8/m-HNT/PAN膜,以调节TFN膜的染料/盐分离性能。实验结果表明,我们的m-ZIF-8/m-HNT/PAN膜可以将水通量显著提高到42.6 L m h MPa,同时对活性红49具有高截留率(超过80%)。特别是,含有7.5 mg HNTs和2.5 mg ZIF-8的优化NFM-7.5膜对活性红49的截留率为97.1%,对NaCl的保留率为21.3%。