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Nanocomposite hollow fiber nanofiltration membranes: Fabrication, characterization, and pilot-scale evaluation for surface water treatment

机译:纳米复合中空纤维纳滤膜:表面水处理的制造,表征和导频评估

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Thin-film nanocomposite (TFN) membranes were fabricated by interfacial polymerization of a polyamide (PA) layer on the shell side of hollow fiber membrane supports. TiO2 nanoparticle loadings in the thin-film layer were 0.01, 0.05, and 0.20 wt %. Nanoparticle-free PA thin-film composite (TFC) membranes served as the comparative basis. The TFN membranes were characterized in terms of the chemical composition, structure, and surface properties of the separation layer. Incorporating nanoTiO(2) improved membrane permeability up to 12.6-fold. During preliminary laboratory-scale evaluation, TFN membranes showed lower salt rejection but higher TOC rejection in comparisons with the corresponding values for TFC controls. Based on the performance in lab-scale tests, TFN membranes with 0.01 wt % nanoTiO(2) loading were selected for an evaluation at the pilot scale with synthetic surface water as the feed. While the permeate flux during long-term pilot-scale operation gradually decreased for TFC membranes, TFN membranes had a higher initial permeate flux that gradually increased with time. The TOC rejection by TFN and TFC membranes was comparable. We conclude that TFN membranes show promise for full-scale surface water treatment applications. (c) 2019 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2019, 136, 48205.
机译:通过在中空纤维膜支撑件的壳侧的聚酰胺(PA)层的界面聚合来制造薄膜纳米复合材料(TFN)膜。薄膜层中的TiO2纳米粒子载体为0.01,0.05和0.20wt%。无纳米粒子PA薄膜复合物(TFC)膜作为比较基础。在分离层的化学成分,结构和表面性质方面表征TFN膜。纳米氧化萘(2)改善高达12.6倍的膜渗透性。在初步实验室规模评估期间,TFN膜显示出较低的盐排斥,但与TFC控制的相应值进行比较,较低的TFC抑制。基于实验室测量试验中的性能,选择具有0.01wt%NaNotiO(2)载荷的TFN膜,以便在试验秤上用合成表面水作为进料的评估。虽然长期先导级操作期间的渗透通量逐渐降低TFC膜,但TFN膜具有更高的初始渗透助焊剂,随着时间的推移逐渐增加。 TFN和TFC膜的TOC抑制相当。我们得出结论,TFN膜展示了满量程水处理应用的承诺。 (c)2019 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2019,136,48205。

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