首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Fabrication of novel poly(phenylene ether ether sulfone) based nanocomposite membrane modified by Fe2NiO4 nanoparticles and ethanol as organic modifier
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Fabrication of novel poly(phenylene ether ether sulfone) based nanocomposite membrane modified by Fe2NiO4 nanoparticles and ethanol as organic modifier

机译:Fe2NiO4纳米粒子和乙醇作为有机改性剂改性的新型聚苯醚醚砜基纳米复合膜的制备

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摘要

In this research, poly(phenylene ether ether sulfone) based nanofiltation membranes were prepared by solution casting technique/phase inversion method. The effects of ethanol and Fe2NiO4 nanopartides and as organic modifier and inorganic filler additive on membranes physico-chemical properties were studied. Scanning electron microscopy (SEM) and scanning optical microscopy (SOM) analysis, porosity and water content measurements, tensile strength, water flux and salt rejection tests were carried out for the membrane characterization. SEM images showed that utilizing ethanol in polymeric solution led to increase of macro-voids in the membrane matrix. Also images showed that using nanoparticle in casting solution led to increase of the void length. Images showed uniform particle distribution for the composite membranes. Moreover, obtained results exhibited more amount of water content and porosity for the modified membranes compared to virgin type. Results showed that utilizing 0.02 wt.% Fe2NiO4 nanoparddes and 5 wt.% ethanol in the membrane matrix led to increase of water flux from 2 to 14.45 (L/m(2) h) and salt rejection from 49.5 to 93% respectively. Mechanical strength of membrane was decreased obviously by the use of ethanol in casting solution. Mechanical strength was improved initially by the use of 0.01 wt.% NPs in the membrane matrix and then decreased. (C) 2014 Elsevier B.V. All rights reserved.
机译:在这项研究中,通过溶液流延技术/相转化方法制备了基于聚苯醚醚砜的纳米过滤膜。研究了乙醇和Fe2NiO4纳米粒子以及作为有机改性剂和无机填料添加剂对膜理化性质的影响。进行了扫描电子显微镜(SEM)和扫描光学显微镜(SOM)分析,孔隙率和水含量测量,拉伸强度,水通量和脱盐率测试,以表征膜。 SEM图像显示在聚合物溶液中使用乙醇导致膜基质中大孔的增加。图像还显示在浇铸溶液中使用纳米颗粒会导致空隙长度增加。图像显示复合膜的颗粒分布均匀。此外,与原始类型相比,获得的结果显示出改性膜的水含量和孔隙率更多。结果表明,在膜基质中使用0.02 wt。%的Fe2NiO4纳米颗粒和5 wt。%的乙醇分别导致水通量从2增加到14.45(L / m(2)h),盐分截留率从49.5增加到93%。在流延溶液中使用乙醇会明显降低膜的机械强度。通过在膜基质中使用0.01 wt。%NP,机械强度最初得到改善,然后降低。 (C)2014 Elsevier B.V.保留所有权利。

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