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MXene(TiCT)/醋酸纤维素混合基质膜增强错流过滤过程中的抗污染性能和截留率。

MXene (TiCT)/Cellulose Acetate Mixed-Matrix Membrane Enhances Fouling Resistance and Rejection in the Crossflow Filtration Process.

作者信息

Azam Reem S, Almasri Dema A, Alfahel Radwan, Hawari Alaa H, Hassan Mohammad K, Elzatahry Ahmed A, Mahmoud Khaled A

机构信息

Qatar Environment and Energy Research Institute (QEERI), Hamad Bin Khalifa University (HBKU), Qatar Foundation, Doha P.O. Box 34110, Qatar.

Department of Civil and Architectural Engineering, Qatar University, Doha P.O. Box 2713, Qatar.

出版信息

Membranes (Basel). 2022 Apr 6;12(4):406. doi: 10.3390/membranes12040406.

Abstract

Obstacles in the membrane-based separation field are mainly related to membrane fouling. This study involved the synthesis and utilization of covalently crosslinked MXene/cellulose acetate mixed matrix membranes with MXene at different concentrations (CCAM-0% to CCAM-12%) for water purification applications. The membranes' water flux, dye, and protein rejection performances were compared using dead-end (DE) and crossflow (CF) filtration. The fabricated membranes, especially CCAM-10%, exhibited high hydrophilicity, good surface roughness, significantly high water flux, high water uptake, and high porosity. A significantly higher flux was observed in CF filtration relative to DE filtration. Moreover, in CF filtration, the CCAM-10% membrane exhibited 96.60% and 99.49% rejection of methyl green (MG) and bovine serum albumin (BSA), respectively, while maintaining a flux recovery ratio of 67.30% and an irreversible fouling ratio at () of 32.70, indicating good antifouling performance. Hence, this study suggests that covalent modification of cellulose acetate membranes with MXene significantly improves the performance and fouling resistance of membranes for water filtration in CF mode relative to DE mode.

摘要

基于膜的分离领域中的障碍主要与膜污染有关。本研究涉及合成并利用不同浓度(CCAM - 0%至CCAM - 12%)的MXene共价交联的MXene/醋酸纤维素混合基质膜用于水净化应用。使用死端(DE)过滤和错流(CF)过滤比较了膜的水通量、染料截留率和蛋白质截留率性能。所制备的膜,尤其是CCAM - 10%的膜,表现出高亲水性、良好的表面粗糙度、显著较高的水通量、高吸水率和高孔隙率。相对于DE过滤,CF过滤中观察到显著更高的通量。此外,在CF过滤中,CCAM - 10%的膜对甲基绿(MG)和牛血清白蛋白(BSA)的截留率分别为96.60%和99.49%,同时保持67.30%的通量恢复率和()处32.70的不可逆污染率,表明具有良好的抗污染性能。因此,本研究表明,相对于DE模式,用MXene对醋酸纤维素膜进行共价改性可显著提高CF模式下水过滤膜的性能和抗污染性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cf6c/9027356/698840d7c74c/membranes-12-00406-g001.jpg

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