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首页> 外文期刊>Journal of Applied Polymer Science >Investigation of characteristic and performance of polyvinyl chloride ultrafiltration membranes modified with silica-oriented multi walled carbon nanotubes
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Investigation of characteristic and performance of polyvinyl chloride ultrafiltration membranes modified with silica-oriented multi walled carbon nanotubes

机译:用二氧化硅定向多壁碳纳米管改性聚氯乙烯超滤膜特性和性能研究

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摘要

The complicated and dynamic nature of membrane fouling is one of the most challenging issues that need to be addressed to obtain an efficient membrane. In this work, silica-oriented multiwalled carbon nanotubes (Si-MWCNTs) are synthesized by the sol-gel method and characterized using several analytical techniques. Novel polyvinyl chloride (PVC) ultrafiltration membranes are fabricated by incorporation of Si-MWCNT nanoparticles at varying loading levels (0-2 wt%) using the phase inversion method. Membrane morphology, chemical composition, thermal behavior, crystallinity, roughness, hydrophilicity, and mechanical strength are characterized and filtration performance is tested to compare the results with those of pristine PVC membranes. The results reveal that the addition of 0.5% Si-MWCNT nanoparticles into the casting solution exhibits the highest flux (400 L/m(2)h), sodium alginate (SA) rejection rate (96%), and flux recovery ratio (93%) due to having the highest hydrophilicity, an improved structure, and surface properties revealed by surface morphology and bulk property analysis. Furthermore, the results of dynamic mechanical and nanoindentation analyses confirm that mechanical properties such as hardness, Young's modulus, and stiffness of the pristine membrane are significantly improved by the addition of Si-MWCNT nanoparticles.
机译:膜污染的复杂性和动态性质是需要解决的最具挑战性的问题之一,以获得有效的膜。在这项工作中,通过溶胶 - 凝胶法合成二氧化硅取向的多晶碳纳米管(Si-MWCNT),并使用几种分析技术表征。通过使用相反转方法将Si-MWCNT纳米颗粒掺入不同的负载水平(0-2wt%),制造新型聚氯乙烯(PVC)超滤膜。膜形态,化学成分,热行为,结晶性,粗糙度,亲水性和机械强度,并测试过滤性能以将结果与原始PVC膜的结果进行比较。结果表明,将0.5%Si-MWCNT纳米颗粒加入浇铸溶液中表现出最高的助焊剂(400L / m(2)H),藻酸钠(SA)排斥率(96%)和助熔剂恢复比(93 %)由于具有最高的亲水性,改进的结构和表面形态和散装性质分析显示的表面性质。此外,动态机械和纳米狭窄分析的结果证实,通过加入Si-MWCNT纳米颗粒,显着提高了原始膜的硬度,杨氏模量和刚度的机械性能。

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