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一种制备具有增强耐碱性和尺寸稳定性的交联聚砜基阴离子交换膜的简便方法。

A facile approach to prepare crosslinked polysulfone-based anion exchange membranes with enhanced alkali resistance and dimensional stability.

作者信息

Wang Chao, Pan Nengxiu, Jiang Yuliang, Liao Junbin, Sotto Arcadio, Ruan Huimin, Gao Congjie, Shen Jiangnan

机构信息

Center for Membrane Separation and Water Science & Technology, Zhejiang University of Technology Hangzhou 310014 China

Rey Juan Carlos University Fuenlabrada, Camino del Molino, s/n Madrid 28942 Spain.

出版信息

RSC Adv. 2019 Nov 8;9(62):36374-36385. doi: 10.1039/c9ra07433c. eCollection 2019 Nov 4.

Abstract

Novel anion exchange membranes with enhanced ion exchange capacity, dimensional stability and alkali stability were prepared by a facile synthesis method. Internal crosslinking networks in the resulting membranes were achieved by reacting chloromethylated polysulfone with 4,4'-trimethylene bis(1-methylpiperidine) (BMP), where BMP was used as both a quaternization reagent and crosslinker without requirement of post-functionalization. In order to evaluate the alkali resistance and dimension stability performance of the resulting membranes, the molar ratio of BMP in the resulting membranes was fixed at four different contents: 40%, 60%, 80% and 100%. The obtained membranes were accordingly denoted as CAPSF-, in which = 40, 60, 80 and 100, respectively. Due to the dense internal network structure and spatial conformation of the six-membered rings, the resulting CAPSF- AEMs showed enhanced dimensional structures (at 60 °C, the water uptakes and swelling ratios of CAPSF- were 8.42% to 14.84% and 2.32% to 5.93%, respectively, whereas those for the commercial AEM Neosepta AMX were 44.23% and 4.22%, respectively). In addition, after soaking in 1 M KOH solution at 60 °C for 15 days, the modified membranes exhibited excellent alkaline stability. The CAPSF-100 membrane showed the highest alkali stability (retained 85% of its original ion exchange capacity and 84% of its original OH conduction after the alkaline stability test), whereas the non-crosslinked APSF broke into pieces. Additionally, compared to the commercial Neosepta AMX membrane under the same test conditions, the desalination efficiency of CAPSF-100 was enhanced, and the energy consumption was lower.

摘要

通过一种简便的合成方法制备了具有增强的离子交换容量、尺寸稳定性和碱稳定性的新型阴离子交换膜。所得膜中的内部交联网络是通过使氯甲基化聚砜与4,4'-三亚甲基双(1-甲基哌啶)(BMP)反应实现的,其中BMP既用作季铵化试剂又用作交联剂,无需后功能化。为了评估所得膜的耐碱性和尺寸稳定性性能,将所得膜中BMP的摩尔比固定为四种不同含量:40%、60%、80%和100%。相应地,所得膜分别表示为CAPSF-,其中 = 40、60、80和100。由于六元环的致密内部网络结构和空间构象,所得的CAPSF- AEMs显示出增强的尺寸结构(在60°C时,CAPSF-的吸水率和溶胀率分别为8.42%至14.84%和2.32%至5.93%,而商业AEM Neosepta AMX的吸水率和溶胀率分别为44.23%和4.22%)。此外,在60°C的1 M KOH溶液中浸泡15天后,改性膜表现出优异的碱稳定性。CAPSF-100膜表现出最高的碱稳定性(在碱稳定性测试后保留了其原始离子交换容量的85%和原始OH传导率的84%),而非交联的APSF则破碎成碎片。此外,在相同测试条件下,与商业Neosepta AMX膜相比,CAPSF-100的脱盐效率提高,能耗更低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c2cf/9075031/1d90da95d903/c9ra07433c-s1.jpg

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