首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Preparation and characterization of ion-selective polyvinyl chloride based heterogeneous cation exchange membrane modified by magnetic iron-nickel oxide nanoparticles
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Preparation and characterization of ion-selective polyvinyl chloride based heterogeneous cation exchange membrane modified by magnetic iron-nickel oxide nanoparticles

机译:磁性铁-氧化镍纳米粒子修饰的离子选择聚氯乙烯异质阳离子交换膜的制备与表征

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摘要

In this research, polyvinylchloride/styrene-butadiene-rubber blend heterogeneous cation exchange membranes were prepared by solution casting technique using tetrahydrofuran as solvent and cation exchange resin powder as functional groups agent. Iron-nickel oxide (Fe2NiO4) nanoparticle was also employed as additive in membrane fabrication. The effect of additive concentration on properties of home-made membranes was studied. SOM images showed uniform particles distribution and relatively uniform surfaces for the membranes. The increase of Fe2NiO4 concentration in casting solution caused to decrease of membrane water content. Membrane ion exchange capacity initially was increased by additive increasing to 1 wt.% and then showed decreasing trend with higher additive content. Membrane potential, charge density, permselectivity and transport number were enhanced initially by increase of additive loading to 2 wt.% and then they began to decrease by more additive concentration. Membranes exhibited lower potential, selectivity and transport number for bivalent ions compared to monovalent ones. Membrane permeability, flux and conductivity were enhanced initially in monovalent ionic solution by increase in additive concentration to 0.5 wt.% and then began to decrease by more additive loading. Permeability was improved for bivalent ions with increase in additive concentration. Modified membranes showed higher permeability for bivalent ions compared to monovalent type.
机译:本研究以四氢呋喃为溶剂,阳离子交换树脂粉末为官能团剂,通过溶液流延技术制备了聚氯乙烯/苯乙烯-丁二烯-橡胶共混非均相阳离子交换膜。铁-氧化镍(Fe2NiO4)纳米颗粒也用作膜制造中的添加剂。研究了添加剂浓度对自制膜性能的影响。 SOM图像显示出均匀的颗粒分布和相对均匀的膜表面。流延溶液中Fe2NiO4浓度的增加导致膜水含量的降低。膜离子交换容量最初通过添加剂增加至1 wt。%而增加,然后随着添加剂含量的增加而呈现下降趋势。膜电位,电荷密度,渗透选择性和转运数最初通过将添加剂负载增加至2 wt。%来提高,然后随着更多的添加剂浓度而开始降低。与一价离子相比,二价离子膜的电势,选择性和迁移数更低。在单价离子溶液中,膜的渗透性,通量和电导率最初是通过将添加剂浓度增加到0.5 wt。%来提高的,然后随着更多的添加剂负载而开始降低。随着添加剂浓度的增加,二价离子的渗透性得到改善。与单价类型相比,改性膜对二价离子的渗透性更高。

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