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Effects of hydrophilic surface macromolecule modifier loading on PES/O-g-C_3N_4 hybrid photocatalytic membrane for phenol removal

机译:亲水性表面高分子改性剂负载量对PES / O-g-C_3N_4杂化光催化膜去除苯酚的影响

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HydrophiLic surface modifying macromolecules (LSMM) modified polyethersulfone (PES) based photocatalytic membranes have been successfully prepared. This hybrid photocatalytic membrane applying oxygen-doped graphitic carbon nitride (g-C3N4) as a photocatalyst was successfully fabricated via phase inversion technique in flat sheet form at ambient temperature. The potential of LSMM as membrane modifier was explored in detail under various loadings (1-5 wt%). The results show that the LSMM addition successfully increased the membrane hydrophilicity which may consequently prevent the membrane from comprehensive fouling. More appearance of g-C3N4 on the membrane surface was observed by Scanning Electron Microscopy (SEM) and Atomic Force Microscope (AFM) analyses upon the LSMM addition. However, the trend tended to decline at the loading beyond 4 wt% of LSMM. At 4 wt% of LSMM, the PES/g-C3N4 membrane successfully decreased phenol concentration up to 35.78% and rejected 14.73% of phenol. From the water flux result, the application of LSMM in water treatment application was hindered by the flux deterioration but a considerably high flux for an ultrafiltration membrane. The results indicate that the introduction of LSMM in the PES/g-C3N4 hybrid photocatalytic membrane showed the great potential of LSMM as a membrane surface modifier for photocatalytic activities and membrane separation performance.
机译:已经成功制备了疏水表面改性大分子(LSMM)改性聚醚砜(PES)基光催化膜。通过相转化技术,在室温下以平板形式成功制备了以氧掺杂的石墨氮化碳(g-C3N4)为光催化剂的混合光催化膜。在各种负载(1-5 wt%)下,详细探讨了LSMM作为膜改性剂的潜力。结果表明,添加LSMM成功地提高了膜的亲水性,从而可能阻止了膜的全面结垢。添加LSMM后,通过扫描电子显微镜(SEM)和原子力显微镜(AFM)分析观察到g-C3N4在膜表面上更多的外观。但是,当负载量超过LSMM的4 wt%时,趋势趋于下降。在LSMM为4 wt%时,PES / g-C3N4膜成功地将苯酚浓度降低至35.78%,而拒绝了14.73%的苯酚。从水通量结果来看,LSMM在水处理应用中的应用因通量恶化而受到阻碍,但是超滤膜的通量却相当高。结果表明,在PES / g-C3N4杂化光催化膜中引入LSMM表现出LSMM作为膜表面改性剂的巨大潜力,具有光催化活性和膜分离性能。

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