首页> 外文期刊>Journal of water reuse and desalination >Mixed matrix heterogeneous cation exchange membrane filled with clay nanoparticles: membranes' fabrication and characterization in desalination process
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Mixed matrix heterogeneous cation exchange membrane filled with clay nanoparticles: membranes' fabrication and characterization in desalination process

机译:粘土纳米颗粒填充的混合基质非均相阳离子交换膜:膜的制备及脱盐过程中的表征

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In this research mixed matrix PVC based-co-clay nanoparticles heterogeneous cation exchange membranes were prepared by solution casting technique. The effect of clay nanoparticles concentration in the casting solution on membrane electrochemical properties was studied. Scanning optical microscopy (SOM) images showed uniform particles distribution and relatively uniform surfaces for the prepared membranes. The membrane water content was improved initially by an increase of additive content ratio up to 1% wt in casting solution and then it began to decrease by more additive concentration. Moreover, swelling was measured less than 5% in thickness and negligible in length and width for the prepared membranes. Membrane potential, transport number and permselectivity were improved by increase of nanoparticles loading ratio. Utilizing Cloisite nanoparticles up to 1% wt in the casting solution also led to an increase in permeability and flux for prepared membranes. The ionic permeability and flux were decreased again by a further increase in additive concentration from 1 to 4% wt. Also, membranes exhibited lower permeability and flux for bivalent ions in comparison with monovalent type. The membrane E-conductivity and mechanical strength was enhanced by an increase of nanoparticles concentration in membrane matrix. The modified membrane containing 1% wt clay nanoparticles showed more suitable electrochemical properties compared to others.
机译:在这项研究中,通过溶液流延技术制备了混合基质PVC基共粘土纳米颗粒异质阳离子交换膜。研究了流延溶液中粘土纳米颗粒浓度对膜电化学性能的影响。扫描光学显微镜(SOM)图像显示制备的膜具有均匀的颗粒分布和相对均匀的表面。膜中的水含量最初通过增加流延溶液中添加剂含量的比例(最高至1%wt)而提高,然后通过增加添加剂浓度开始降低。此外,测得的溶胀厚度小于5%,并且对于制备的膜而言其长度和宽度可忽略不计。通过增加纳米粒子的负载比,提高了膜的电势,转运数和选择性。在流延溶液中使用高达1%wt的Cloisite纳米颗粒还导致制备的膜的渗透性和通量增加。通过将添加剂浓度从1 wt%进一步增加到4 wt%,离子渗透性和通量再次降低。而且,与单价类型相比,膜对二价离子的渗透性和通量更低。膜基质中纳米颗粒浓度的增加增强了膜的电导率和机械强度。与其他相比,含有1%wt粘土纳米颗粒的改性膜表现出更合适的电化学性能。

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