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Preparation and characterization of PAN/CNT nanocomposite fiber supports for membrane filtration

机译:膜过滤用PAN / CNT纳米复合纤维载体的制备与表征

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Polymeric membranes have low mechanical, chemical, and thermal resistances, whereas carbon nanotubes (CNTs) have excellent mechanical properties, in addition to high chemical and thermal stability. Hence, polyacrylonitrile/multiwalled CNT (PAN/CNT) nanocomposite fibers were synthesized via an electrospinning process in order to modify the properties of PAN nanofibers. The resultant nanofibers were then characterized by scanning electron microscopy, transmission electron microscopy and Fourier transform infrared spectroscopy. It was found that the addition of CNTs into the polymer solution increased the roughness of the fiber surface. The diameters of the PAN, 0.1% CNT doped PAN and 0.5% CNT doped PAN nanofibers are 1.63, 0.59 and 1.39 mu m, respectively. Hence, the thickness of the nanocomposite fiber was seen to be dependent on the CNT concentration. The protein adsorption onto the 0.1% CNT doped PAN nanofibers and 0.5% CNT doped PAN nanofibers were 26% and 34% less than the PAN nanofibers, respectively. Hence, adding CNTs to the PAN/CNT nanocomposite fibers also had the potential to alleviate fouling. Based on these results, the modification of PAN/CNT nanocomposite fibers was confirmed, and these fibers were deemed to be a good alternative to current support materials for membranes.
机译:聚合物膜具有较低的机械,化学和热阻,而碳纳米管(CNT)除了具有较高的化学和热稳定性外,还具有出色的机械性能。因此,通过电纺丝工艺合成了聚丙烯腈/多壁CNT(PAN / CNT)纳米复合纤维,以改变PAN纳米纤维的性能。然后通过扫描电子显微镜,透射电子显微镜和傅立叶变换红外光谱对所得的纳米纤维进行表征。发现将CNT添加到聚合物溶液中会增加纤维表面的粗糙度。 PAN,0.1%CNT掺杂的PAN和0.5%CNT掺杂的PAN纳米纤维的直径分别为1.63、0.59和1.39μm。因此,可以看出纳米复合纤维的厚度取决于CNT的浓度。蛋白质在0.1%CNT掺杂的PAN纳米纤维和0.5%CNT掺杂的PAN纳米纤维上的吸附分别比PAN纳米纤维少26%和34%。因此,将碳纳米管添加到PAN / CNT纳米复合纤维中也具有减轻结垢的潜力。基于这些结果,证实了PAN / CNT纳米复合纤维的改性,并且这些纤维被认为是目前的膜支撑材料的良好替代品。

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