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首页> 外文期刊>Separation and Purification Technology >Investigation of electrochemical and morphological properties of S-PVC based heterogeneous cation-exchange membranes modified by sodium dodecyl sulphate
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Investigation of electrochemical and morphological properties of S-PVC based heterogeneous cation-exchange membranes modified by sodium dodecyl sulphate

机译:十二烷基硫酸钠修饰的S-PVC基异质阳离子交换膜的电化学和形态学特性研究

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摘要

Heterogeneous cation exchange membranes were prepared by solution casting technique using S-polyvinylchloride (S-PVC) and Styrene-Butadiene-Rubber (SBR) as binder and cation exchange resin as functional groups. In this research the effect of sodium dodecyl sulphate (SDS) on the selectivity, structure and electrochemical properties of potential driven membranes using this material in casting solution was evaluated. Totally the experiments revealed that SDS by revaluation in structure of membrane could change the membrane performance. The microstructures of prepared membranes were investigated by scanning optical microscopy (SOM). The images show that the enhancement in SDS ratio in the casting solution results in uniform distribution of functional groups. In order to investigate these prepared membranes, the oxidative stability and electrochemical properties tests were used. The measurements indicate that oxidative stability, ion exchange capacity, ion permeability, surface resistance, membrane potential, ionic flux, current efficiency, and selectivity parameters of prepared membranes have been improved by up to 2 wt% increase in SDS in the casting solution. Membrane with 2 wt% SDS loading exhibited higher efficiency and electrochemical properties in comparison with other prepared membranes in this research, while its water content was lower than other membranes.
机译:以S-聚氯乙烯(S-PVC)和苯乙烯-丁二烯-橡胶(SBR)为粘合剂,阳离子交换树脂为官能团,通过溶液流延技术制备了异质阳离子交换膜。在这项研究中,评估了十二烷基硫酸钠(SDS)对在浇铸溶液中使用该材料的潜在驱动膜的选择性,结构和电化学性能的影响。总体而言,实验表明通过重估膜结构,SDS可以改变膜性能。通过扫描光学显微镜(SOM)研究了制备的膜的微观结构。图像显示浇铸溶液中SDS比率的提高导致官能团的均匀分布。为了研究这些制备的膜,使用了氧化稳定性和电化学性能测试。这些测量表明,所制备的膜的氧化稳定性,离子交换容量,离子渗透性,表面电阻,膜电势,离​​子通量,电流效率和选择性参数得到了改善,其中流延溶液中SDS的增加高达2 wt%。与本研究中的其他制备膜相比,具有2 wt%SDS负载量的膜具有更高的效率和电化学性能,而其水含量却低于其他膜。

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