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用于改善镁/锂分离的基于簇状多季铵盐离子液体改性的纳滤膜

Nanofiltration Membranes Modified with a Clustered Multiquaternary Ammonium-Based Ionic Liquid for Improved Magnesium/Lithium Separation.

作者信息

Soyekwo Faizal, Wen Hui, Liao Dan, Liu Changkun

机构信息

College of Chemistry and Environmental Engineering, Shenzhen University, 1066 Xueyuan Boulevard, Shenzhen 518055, People's Republic of China.

出版信息

ACS Appl Mater Interfaces. 2022 Jul 20;14(28):32420-32432. doi: 10.1021/acsami.2c03650. Epub 2022 Jul 6.

DOI:10.1021/acsami.2c03650
PMID:35793230
Abstract

Lithium separation is of great significance to overcome the lithium supply shortage resulting from a heightened demand in the energy sector. The low selectivity of polymer nanofiltration membranes for lithium extraction from concentrated Mg/Li mixtures caused by miniaturized pore structures and weak and unstable positive surface charges limits their practical implementation. To address the surface charge strength and stability, a novel ionic liquid monomer, N-(6-aminohexyl)-N,N,N,N,N-pentamethylhexane-1,6-diaminium bromide (denoted as DABIL), is first synthesized and covalently anchored on a pristine polyamide thin-film composite (TFC) membrane via a secondary amidation reaction for improved selective lithium separation from Mg/Li mixtures. DABIL modification of the polyamide network contributes to increased surface hydrophilicity, an enlarged membrane pore structure, and reinforced Donnan exclusion effects. Molecular dynamics simulation confirmed that the difference of the interaction energies between water and the multication groups dominates the surface properties. The DABIL membrane exhibits sixfold enhancement of water permeability compared to the unmodified membrane and outperforms the recently reported state-of-the-art positively charged membranes. It presents an improved Li/Mg selectivity of 26.49, suggesting the membranes' potential for lithium recovery. Moreover, the membrane shows efficient antibacterial activity for mitigating biofilm formation. We establish that functionalization of TFC membranes with ionic liquids containing multication side chains could be a promising approach to achieve improved and sustainable permselectivity for the recovery of critical metal resources.

摘要

锂的分离对于克服能源领域需求增加导致的锂供应短缺具有重要意义。聚合物纳滤膜对从浓缩的镁/锂混合物中提取锂的选择性较低,这是由于其微孔结构以及表面正电荷较弱且不稳定所导致的,这限制了它们的实际应用。为了解决表面电荷强度和稳定性问题,首先合成了一种新型离子液体单体N-(6-氨基己基)-N,N,N,N,N-五甲基己烷-1,6-二溴化二铵(简称为DABIL),并通过二次酰胺化反应将其共价固定在原始聚酰胺复合薄膜(TFC)膜上,以提高从镁/锂混合物中选择性分离锂的能力。聚酰胺网络的DABIL修饰有助于提高表面亲水性、扩大膜孔结构并增强唐南排斥效应。分子动力学模拟证实,水与多阳离子基团之间相互作用能的差异主导了表面性质。与未改性的膜相比,DABIL膜的水渗透率提高了六倍,并且优于最近报道的最先进的带正电膜。它的锂/镁选择性提高到了26.49,表明该膜在锂回收方面具有潜力。此外,该膜还表现出有效的抗菌活性,可减轻生物膜的形成。我们确定,用含有多阳离子侧链的离子液体对TFC膜进行功能化可能是一种有前途的方法,可实现对关键金属资源回收的改进和可持续的渗透选择性。

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