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Enhanced flux and antifouling property on municipal wastewater of polyethersulfone hollow fiber membranes by embedding carboxylated multi-walled carbon nanotubes and a vitamin E derivative

机译:通过将羧化的多壁碳纳米管和维生素E衍生物嵌入聚醚砜中空纤维膜的城市污水上增强的焊剂和防污性能

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摘要

Fouling of membranes is a key issue for their industrial applications. In this study, carboxylated multi-walled carbon nanotubes (MWCNTs-COOH) were embedded in hollow fiber membranes (HFMs) developed by blending polyethersulfone (PES), and d-a-tocopheryl polyethylene glycol 1000 succinate (TPGS, a vitamin E derivative) to remarkably enhance their permeation flux and fouling-resistance. The antifouling performance of HFMs was examined by calculating the change in pure water permeability (PWP) due to fouling by protein and synthetic municipal wastewater (SMWW). Modified HFMs containing 1 wt% TPGS and 0.025 wt% MWCNTs-COOH showed the highest hydrophilicity and lowest surface roughness among all HFMs, which resulted in similar to 187% higher PWP as compared to that of the pristine HFMs, and the highest flux recovery ratio (FRR) of 89.3 +/- 2.1% and 81.4 +/- 3.5% after protein and SMWW fouling, respectively. There are literature studies with higher FRR, but they have very low PWP, whereas some studies have reported high PWP with low FRR. In contrast to the literature, the results reported here have both high flux (PWP) and high antifouling property (FRR). Thus, the novel PES composite HFMs containing TPGS and MWCNTs-COOH showed the excellent antifouling property, which makes them potentially useful for wastewater treatment.
机译:膜的污染是其产业应用的关键问题。在该研究中,嵌入通过混合聚醚砜(PES)和Da-Tocopheryl聚乙二醇1000琥珀酸酯(TPG,维生素E衍生物)而产生的中空纤维膜(MWCNTS-COOH)嵌入中空纤维膜(HFMS)中增强它们的渗透助焊剂和污垢抗性。通过蛋白质和合成城市废水(SMWW)计算纯净水渗透率(PWP)的变化来检查HFMS的防污性能。含有1wt%TPG和0.025wt%MWCNTS-COOH的改性HFM显示了所有HFMS中的最高亲水性和最低表面粗糙度,导致与原始HFMS的PWP相似,最高的助焊剂回收率相似。 (FRR)分别为89.3 +/- 2.1%和81.4 +/- 3.5%,分别在蛋白质和SMWW Fourling后。有更高的FRR的文学研究,但它们具有很低的PWP,而一些研究报告过低FRR的高PWP。与文献相比,这里报道的结果具有高通量(PWP)和高防污性(FRR)。因此,含有TPG和MWCNTS-COOH的新型PES复合HFMS显示出优异的防污性,这使得它们可能适用于废水处理。

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