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Electrochemical Performance Evaluation of Bipolar Membrane Using Poly(phenylene oxide) for Water Treatment System

机译:双极膜使用聚(亚苯基氧化物)对水处理系统的电化学性能评价

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摘要

This study describes the use of poly(phenylene oxide) polymer-based ion-exchange polymers, polystyrene-based ion-exchange particles and a porous support for fabricating bipolar membranes and the results of an assessment of the applicability of these materials to water splitting. In order to achieve good mechanical as well as good ion-exchange properties, bipolar membranes were prepared by laminating poly(phenylene oxide) and polystyrene based ion-exchange membranes with a sulfonated polystyrene-block-(ethylene-ran-butylene)-block-polystyrene) (S-SEBS) modified interface. PE pore-supported ion-exchange membranes were also used as bipolar membranes. The tensile strength was 13.21 MPa for the bipolar membrane which utilized only a cation/anion-exchange membrane. When ion-exchange nanoparticles were introduced for high efficiency, a reduction in the tensile strength to 6.81 MPa was observed. At the same time, bipolar membrane in the form of a composite membrane using PE support exhibited the best tensile strength of 32.41 MPa. To confirm the water-splitting performance, an important factor for a bipolar membrane, pH changes over a period of 20 min were also studied. During water slitting using CA-P-PE-BPM, the pH at the CEM part and the AEM part changed from 5.4 to 4.18 and from 5.4 to 5.63, respectively.
机译:该研究描述了聚(亚苯基氧化物)聚合物基离子交换聚合物,聚苯乙烯基离子交换颗粒和多孔载体用于制造双极膜和评估这些材料对水分裂的适用性的结果。为了实现良好的机械和良好的离子交换性能,通过用磺化聚苯乙烯 - 嵌段 - (乙烯 - 丁烯) - Block-(乙烯 - 丁烯) - Block-(乙烯 - 丁烯)制备双极膜。(乙烯 - 丁烯) - block-聚苯乙烯)(S-SEBS)改性界面。 PE孔支撑的离子交换膜也用作双极膜。双极膜的拉伸强度为13.21MPa,其仅使用阳离子/阴离子交换膜。当引入高效率的离子交换纳米颗粒时,观察到拉伸强度降低至6.81MPa。同时,使用PE载体的复合膜形式的双极膜表现出32.41MPa的最佳拉伸强度。为了确认水分解性能,还研究了双极膜的重要因素,在20分钟内的pH变化。在使用CA-P-PE-BPM的水分开过程中,CEM部分的pH和AEM部分分别从5.4到4.18变为5.4至5.63。

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