Maleh Mohammad Salehi, Raisi Ahmadreza
Department of Chemical Engineering, Amirkabir University of Technology (Tehran Polytechnic) Hafez Ave., P.O. Box 15875-4413 Tehran Iran
RSC Adv. 2020 Apr 30;10(29):17061-17069. doi: 10.1039/d0ra02255a. eCollection 2020 Apr 29.
In this study, the performances of mixed matrix composite membranes (MMCMs) containing surface-treated NaX nanocrystals (ST-NaX-NCs) were experimentally and theoretically investigated for O/N separation. For this purpose, the MMCMs were fabricated by the casting solution method and characterized by various analyses. The results reveal that there is a robust interaction between the polymer chains and the ST-NaX-NCs, and that the ST-NaX fillers are uniformly dispersed in the polymer matrix. The incorporation of ST-NaX-NCs alters the PEBAX polymer chain packing arrangement resulting in decreased membrane transport behavior for both O and N gases. The MMCM containing 16.7% wt ST-NaX-NCs has drastically enhanced air separation properties, with a selectivity that is increased to 204% of that of the neat membrane. Moreover, the Lewis-Nielsen model was modified by considering non-ideal effects in mixed matrix membranes, like the clogging of filler pores and polymer chain hardening around the nanocrystals, to predict the gas permeation behavior through the MMCMs. The comparison of the experimental and model results reveals that the modified model can accurately predict the gas permeability and selectivity through the MMCMs.
在本研究中,对含有表面处理过的NaX纳米晶体(ST-NaX-NCs)的混合基质复合膜(MMCMs)用于氧气/氮气分离的性能进行了实验和理论研究。为此,采用浇铸溶液法制备了MMCMs,并通过各种分析手段对其进行了表征。结果表明,聚合物链与ST-NaX-NCs之间存在强烈的相互作用,且ST-NaX填料均匀分散在聚合物基质中。ST-NaX-NCs的加入改变了聚醚嵌段酰胺(PEBAX)聚合物链的堆积排列,导致氧气和氮气的膜传输行为均下降。含有16.7%重量比ST-NaX-NCs的MMCM具有显著增强的空气分离性能,其选择性提高到了纯膜的204%。此外,通过考虑混合基质膜中的非理想效应,如填料孔堵塞和纳米晶体周围聚合物链硬化,对Lewis-Nielsen模型进行了修正,以预测气体透过MMCMs的行为。实验结果与模型结果的比较表明,修正后的模型能够准确预测MMCMs的气体渗透率和选择性。