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首页> 外文期刊>Separation and Purification Technology >Preparation of acid block anion exchange membrane with quaternary ammonium groups by homogeneous amination for electrodialysis-based acid enrichment
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Preparation of acid block anion exchange membrane with quaternary ammonium groups by homogeneous amination for electrodialysis-based acid enrichment

机译:用季铵基制备亚氨铵基通过均匀胺化进行电渗析基酸富集

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摘要

Proton leakage defect of anion exchange membrane (AEM) seriously restricts the applications of electrodialysis (ED) in acid enrichment. Different from conventional scheme in which weak base groups are usually introduced, strong base AEMs are endowed with acid block property by the specific design of membrane microstructure in this work. Firstly, as confirmed by H-1 NMR and FTIR, a series of quaternary ammonium polysulfone containing long alkyl side chains pendant are synthesized for AEM preparation. Small Angle X-ray Scattering experiments show that ionic domains form a distinct and well-separated phase. The introduced hydrophobic side chains strengthen the hydrophobic matrix and then restrict AEM water uptake. Besides, some interesting confinement effects are observed, for examples, the reinforcement of Donnan exclusion for H+ and facilitated transport of counter-ions. Furthermore, influences of pendant carbon chain length and ion exchange capacity are investigated. Notably, ED measurements show as-prepared AEMs indeed display excellent acid block performance, a current efficiency of almost 100% under certain condition, which substantially exceeds that of conventional AEM fabricated by heterogeneous aminaiton. This observation demonstrates an unprecedented result that novel strong base AEM with both outstanding acid block performance and membrane conductivity can be achieved by constructing phase separation microstructure.
机译:阴离子交换膜(AEM)的质子泄漏缺陷严重限制了电渗析(ED)在酸富集中的应用。与通常引入弱碱基组的常规方案不同,通过该工作中的膜微观结构的特定设计赋予酸阻滞性能的强碱AEM。首先,如H-1 NMR和FTIR的确认,合成了一系列含有长烷基侧链侧链的季铵聚砜用于AEM制剂。小角度X射线散射实验表明,离子结构域形成明显且分开的相。引入的疏水侧链加强疏水基质,然后限制AEM水吸收。此外,对于实施例,观察到一些有趣的限制效果,甘然排除的H +和促进反离子的运输。此外,研究了吊坠碳链长度和离子交换能力的影响。值得注意的是,ED测量显示的AEMS确实显示出优异的酸块性能,在某些条件下的电流效率几乎100%,这基本上超过了由异质的Aminaiton制造的常规AEM的效率。该观察结果证明了前所未有的结果,即通过构建相分离微观结构,可以实现具有出色的酸块性能和膜导电性的新型强基础AEM。

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