Vatanpour Vahid, Fallah Kaveh, Norouzbahari Somayeh, Ghadimi Ali
Department of Applied Chemistry, Faculty of Chemistry, Kharazmi University, 15719-14911, Tehran, Iran.
Department of Applied Chemistry, Faculty of Chemistry, Kharazmi University, 15719-14911, Tehran, Iran.
Chemosphere. 2025 Apr;375:144254. doi: 10.1016/j.chemosphere.2025.144254. Epub 2025 Mar 1.
In this paper, Matrimid® 5218 glassy polymer, which is predominantly used for fabrication of the dense gas separation membranes, was applied to fabricate porous ultrafiltration (UF) membranes for liquid phase filtration. The prepared bare and mixed matrix membranes (MMMs), containing different weight percentages of graphene oxide (GO) nanoplates were characterized by SEM, ATR-FTIR, and AFM analyses along with water contact angle (WCA), average pore radius, and porosity measurements. The SEM images displayed an asymmetric structure where the incorporation of hydrophilic GO nanoplates has resulted in construction of more and larger finger-like macrovoids in the sublayer. The optimum membrane, containing 0.02 wt% of GO nanoplates offered the overall porosity of 86.9%, average pore radius of 5.48 nm, as well as the highest pure water flux (PWF) and flux recovery ratio (FRR%) of 266 L m h and 83%, respectively. The WCA reduction by 10.7% accompanying with PWF and FFR% values enhancement by 30.6% and 74%, respectively confirmed the favourable effect of GO nanoplates embedment in increasing the prepared MMMs hydrophilicity and antifouling properties. In addition, the optimum membrane represented the highest bovine serum albumin (BSA) protein solution flux of 96.6 L m h. The fabricated MMMs exhibited the BSA solution rejection values more than 96% and were capable of rejecting two organic azo dyes, including reactive yellow 160 and reactive black 5 more than ∼90%. The results approved that Matrimid® 5218 polymer can be properly employed in fabrication of porous asymmetric UF membranes for wastewater treatment applications.
在本文中,主要用于制造致密气体分离膜的Matrimid® 5218玻璃态聚合物被应用于制备用于液相过滤的多孔超滤(UF)膜。通过扫描电子显微镜(SEM)、衰减全反射傅里叶变换红外光谱(ATR-FTIR)和原子力显微镜(AFM)分析,以及水接触角(WCA)、平均孔径和孔隙率测量,对制备的不含添加剂和含不同重量百分比氧化石墨烯(GO)纳米片的混合基质膜(MMM)进行了表征。SEM图像显示出一种不对称结构,其中亲水性GO纳米片的掺入导致在底层构建了更多、更大的指状大孔。含有0.02 wt% GO纳米片的最佳膜的总孔隙率为86.9%,平均孔径为5.48 nm,以及分别为266 L m⁻² h⁻¹和83%的最高纯水通量(PWF)和通量回收率(FRR%)。WCA降低了10.7%,同时PWF和FFR%值分别提高了30.6%和74%,这证实了GO纳米片嵌入对提高制备的MMM亲水性和抗污染性能的有利影响。此外,最佳膜表现出最高的牛血清白蛋白(BSA)蛋白溶液通量为96.6 L m⁻² h⁻¹。制备的MMM对BSA溶液的截留值超过96%,并且能够截留两种有机偶氮染料,包括活性黄160和活性黑5,截留率超过90%。结果证明,Matrimid® 5218聚合物可适当地用于制备用于废水处理应用的多孔不对称超滤膜。