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Synergy of the mechanical, antifouling and permeation properties of a carbon nanotube nanohybrid membrane for efficient oil/water separation

机译:协同作用的机械、防污和碳纳米管的渗透特性为有效的油/水nanohybrid膜分离

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摘要

For water treatment applications, fabricating a high permeation flux membrane with super-strong mechanical strength and excellent long-term antifouling properties remains a great challenge. In this study, robust, antifouling carbon nanotube (CNT) nanohybrid membranes have been fabricated for oil/water separation. Polyethyleneimine (PEI) with abundant amino groups and a hyperbranched structure is utilized to construct a nanocoating on a CNT surface to enhance their hydrophilicity through multiple interactions between PEI and CNTs. Secondly, the vacuum-assisted self-assembly method is utilized to fabricate freestanding membranes by filtration of CNT dispersions. Finally, trimesoyl chloride (TMC) is utilized to postmodify membranes to enhance the mechanical strength and hydrophilicity and change the surface charge through reaction between amino groups and acyl chloride groups as well as hydrolysis of acyl chloride groups into carboxyl groups. The controlled stacking of CNTs renders membranes with a hierarchical nanostructure and a high porosity, leading to high water flux. The physical and chemical crosslinking renders membranes with high mechanical strength, as measured by atomic force microscopy (AFM) and tensile strength tests. The high hydrophilicity and negatively charged surface render membranes with good antifouling properties, as evaluated by filtration experiments of various oil-in-water emulsions. This study may reveal the great prospects of CNT-based membranes with superior comprehensive properties in water treatment relevant applications.
机译:对于水处理应用程序,编造一个高渗透通量膜与超强的机械强度和良好的长期防污性能仍然是一个巨大的挑战。在这项研究中,健壮,防污碳纳米管(问)nanohybrid膜捏造的油/水分离。聚乙烯亚胺(PEI)和丰富的氨基酸组织和利用的超支化结构构建一个nanocoating问表面通过多个增强其亲水性裴和碳纳米管之间的相互作用。利用真空辅助自组装方法制作独立的过滤膜CNT的分散体。(TMC)是利用postmodify膜提高机械强度和亲水性和表面电荷变化通过氨基酸之间的反应组和酰基氯组以及酰基水解氯组分为羧基组。控制碳纳米管膜呈现的叠加分层纳米结构和高孔隙度,导致高水通量。物理和化学交联呈现膜机械强度高,用原子力显微镜(AFM)和抗拉强度测试。和带负电荷的表面呈现膜与良好的防污性能评价水包油的各种过滤实验乳剂。CNT-based膜具有优异的前景综合水处理属性相关的应用程序。

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