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用于各种分离应用的混合基质膜的进展:现状与未来展望。

Advancements in Mixed-Matrix Membranes for Various Separation Applications: State of the Art and Future Prospects.

作者信息

Arundhathi Bhoga, Pabba Manideep, Raj Shrisha S, Sahu Nivedita, Sridhar Sundergopal

机构信息

Membrane Separations Lab, Chemical Engineering and Process Technology Division, CSIR-Indian Institute of Chemical Technology, Tarnaka, Hyderabad 500007, TS, India.

Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, UP, India.

出版信息

Membranes (Basel). 2024 Oct 25;14(11):224. doi: 10.3390/membranes14110224.

Abstract

Integrating nanomaterials into membranes has revolutionized selective transport processes, offering enhanced properties and functionalities. Mixed-matrix membranes (MMMs) are nanocomposite membranes (NCMs) that incorporate inorganic nanoparticles (NPs) into organic polymeric matrices, augmenting mechanical strength, thermal stability, separation performance, and antifouling characteristics. Various synthesis methods, like phase inversion, layer-by-layer assembly, electrospinning, and surface modification, enable the production of tailored MMMs. A trade-off exists between selectivity and flux in pristine polymer membranes or plain inorganic ceramic/zeolite membranes. In contrast, in MMMs, NPs exert a profound influence on membrane performance, enhancing both permeability and selectivity simultaneously, besides exhibiting profound antibacterial efficacy. Membranes reported in this work find application in diverse separation processes, notably in niche membrane-based applications, by addressing challenges such as membrane fouling and degradation, low flux, and selectivity, besides poor rejection properties. This review comprehensively surveys recent advances in nanoparticle-integrated polymeric membranes across various fields of water purification, heavy metal removal, dye degradation, gaseous separation, pervaporation (PV), fuel cells (FC), and desalination. Efforts have been made to underscore the role of nanomaterials in advancing environmental remediation efforts and addressing drinking water quality concerns through interesting case studies reported in the literature.

摘要

将纳米材料整合到膜中彻底改变了选择性传输过程,赋予了膜增强的性能和功能。混合基质膜(MMMs)是一种纳米复合膜(NCMs),它将无机纳米颗粒(NPs)融入有机聚合物基质中,增强了机械强度、热稳定性、分离性能和抗污染特性。各种合成方法,如相转化、层层组装、静电纺丝和表面改性,能够制备出定制的MMMs。在原始聚合物膜或普通无机陶瓷/沸石膜中,选择性和通量之间存在权衡。相比之下,在MMMs中,NPs对膜性能有深远影响,除了具有显著的抗菌效果外,还能同时提高渗透率和选择性。本文报道的膜通过解决膜污染和降解、低通量、选择性以及截留性能差等挑战,在各种分离过程中得到应用,特别是在基于膜的特定应用中。这篇综述全面调查了纳米颗粒集成聚合物膜在水净化、重金属去除、染料降解、气体分离、渗透汽化(PV)、燃料电池(FC)和海水淡化等各个领域的最新进展。通过文献中报道的有趣案例研究,努力强调纳米材料在推进环境修复工作和解决饮用水质量问题方面的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c856/11596774/668317a68d48/membranes-14-00224-g001.jpg

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