在阴离子导电膜的纳米离子通道中赋予负电荷,促进电渗析对Cl - /SO42 -离子的分离

Wenlong Ding , Haoyu Liu , Jiayi Liao , Tongtong Wang , Dongze Li , Yu Xu , Shiyu Zhou , Zhiqiang Wu , Wenhui Shi , Jiangnan Shen , Junbin Liao
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引用次数: 0

摘要

构建具有合适离子传输通道和稳定结构的均相聚合物离子交换膜是分离单价/多价阴离子的关键。两性离子交换膜(两性离子交换膜)是一种特殊类型的离子交换膜,由于同时存在阴离子交换基和阳离子交换基而具有独特的性能。在这项工作中,我们通过亲核取代反应将1-溴庚烷和3-溴丙磺酸接枝到聚芳醚砜链上。与IEM在一个侧链上附着不同的离子变化官能团不同,这种AIEM在双侧链上具有两种离子变化官能团。结果表明,制备的aiem能保持较低的吸水率(20%)和溶胀率(11%)。最佳表面积电阻为6.31 Ω∙cm2。优化后的PAES-TA/BS-0.85 AIEMs在2.5 mA∙cm2的二元混合溶液体系中的选择性(Cl−/SO42−)高达67.46,远高于同等条件下的商用ACS IEMs。小角度x射线散射揭示了AIEM基体中明显的相分离模式,这是由于引入了磺酸盐来增加侧链的亲水性。孔径筛选和静电斥力的共同作用使得制备的aiem具有较高的选择性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Endowing the nanostructured ion channels of anion conductive membranes with negative charge to boost the Cl−/SO42− ion separation via electrodialysis

Endowing the nanostructured ion channels of anion conductive membranes with negative charge to boost the Cl−/SO42− ion separation via electrodialysis
Construction of homogeneous polymer ion-exchange membranes (IEMs) with suitable ion transport channels and stable structures is crucial to the separation of mono-/multi-valent anions. Amphoteric ion-exchange membrane (AIEM) is a special type of IEM that possesses unique properties due to the presence of both anion exchange groups and cation exchange groups. In this work, we have grafted 1-bromoheptane and 3-bromopropanesulfonate onto the poly(aryl ether sulfone) chain through nucleophilic substitution reactions. Unlike the IEM attaching different ion-change functional groups onto one side-chain, this kind of AIEM bears two kinds of ion-change functional groups on dual side-chains. The results show that the as-prepared AIEMs could maintain low water absorption (<20 ​%) and swelling ratios (<11 ​%). The optimal surface area resistance is 6.31 ​Ω∙cm2. The perm-selectivity (Cl/SO42−) of the optimized PAES-TA/BS-0.85 AIEMs in a binary mixed solution system at 2.5 ​mA∙cm2 could be achieved as high as 67.46, which is much higher than commercial ACS IEMs under the same conditions. Small Angle X-ray scattering reveals a distinct phase separation pattern within the AIEM matrix, which is due to the introduction of sulfonates to increase the hydrophilicity of the side-chains. The combined effects of pore size screening and electrostatic repulsion render the high selectivity of as-prepared AIEMs.
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