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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Hyperbranched-polymer functionalized multi-walled carbon nanotubes for poly (vinylidene fluoride) membranes: From dispersion to blended fouling-control membrane
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Hyperbranched-polymer functionalized multi-walled carbon nanotubes for poly (vinylidene fluoride) membranes: From dispersion to blended fouling-control membrane

机译:用于聚偏二氟乙烯膜的超支化聚合物功能化多壁碳纳米管:从分散到混合污垢控制膜

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摘要

To endow hydrophobic poly (vinylidene fluoride) (PVDF) membranes with reliable hydrophilicity and protein resistance, hyperbranched poly (amine-ester) functionalized multi-walled carbon nanotubes (MWNT_(HPAE)) were prepared to develop MWNT_(HPAE)/PVDF nanocomposite membrane. Various techniques such as transmission electron microscope, scanning electron microscopy, x-ray photoelectron spectroscopy and contact angle goni-ometry, as well as static protein adsorption and permeability experiments were applied to characterize the effect of MWNT_(HPAE) on the morphology, permeability and anti-fouling performance of the nanocomposite membranes. The results showed that MWNT_(HPAE) were randomly dispersed at the individual nanotube levels in the membrane without obvious agglomerations. The hydrophilicity of nanocomposite membrane was enhanced due to the surface coverage of hydrophilic hyperbranched poly (amine-ester) (HPAE) groups. Consequently, protein adsorption was significantly inhibited due to the hydrogen bonding interactions between hydrophilic groups and water molecules. This was also indicated by the higher flux recovery ratio of nanocomposite membranes in the protein filtration experiment. In addition, high water transport was obtained by the dual effect of hydrophilic MWNT_(HPAE) and the pore structure of membrane.
机译:为了使疏水性聚偏二氟乙烯(PVDF)膜具有可靠的亲水性和蛋白质抵抗性,制备了超支化聚(胺酯)功能化的多壁碳纳米管(MWNT_(HPAE))以开发MWNT_(HPAE)/ PVDF纳米复合膜。透射电子显微镜,扫描电子显微镜,X射线光电子能谱和接触角测角技术以及静态蛋白质吸附和渗透性实验等各种技术被用于表征MWNT_(HPAE)对形貌,渗透性和介电常数的影响。纳米复合膜的防污性能。结果表明,MWNT_(HPAE)随机分散在膜中各个纳米管水平,没有明显的团聚。纳米复合膜的亲水性由于亲水性超支化聚(胺酯)(HPAE)基团的表面覆盖而增强。因此,由于亲水基团和水分子之间的氢键相互作用,蛋白质的吸附被显着抑制。在蛋白质过滤实验中,纳米复合膜的通量回收率更高也表明了这一点。另外,亲水性MWNT_(HPAE)和膜的孔结构的双重作用获得了高的水传输。

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