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Hydrogen peroxide treated g-C_3N_4 as an effective hydrophilic nanosheet for modification of polyethersulfone membranes with enhanced permeability and antifouling characteristics

机译:过氧化氢处理G-C_3N_4作为具有增强渗透性和防污特性的聚醚砜膜改性的有效亲水性纳米片

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In this study, first, graphitic carbon nitride was treated with hydrogen peroxide (abbreviated as H2O2-g-C3N4), then was used as a new hydrophilic nanomaterial in the fabrication of polyethersulfone (PES) mixed matrix membrane (MMM) for improving flux, protein and dye separation efficiency and antifouling properties. The H2O2-g-C3N4 nanosheet was inserted into the doping solution to fabricate PES/ H2O2-g-C3N4 nanocomposite membrane with the non-solvent induced phase inversion procedure. The results of the SEM and AFM images and also porosity and contact angle analysis were indicated that the modified membranes with H2O2-g-C3N4 had more porosity, smoother surface and more hydrophilic. Also, the influence of various weight percentage of H2O2-g-C3N4 was investigated systematically on the membrane performance. By blending of H2O2-g-C3N4 nanosheet in the membrane matrix, the permeability was raised from 4.1 (for bare membrane) to 30.1 L m(-2) h(-1) bar(-1). Additionally, the effect of the H2O2-g-C3N4 material on the antifouling features indicated that the flux recover ratio of the H2O2-g-C3N4 MMMs was improved and the resistance parameters were reduced. Also, the effect of the H2O2-g-C3N4 material on the antifouling features indicated that the flux recover ratio of the H2O2-g-C3N4 MMMs was improved and the resistance parameters were reduced. Finally, the dye rejection efficiency of the nanocomposite membranes for Orange II and Reactive Yellow 168 was improved. As a result, it could be mentioned that the mixing low amount of H2O2-g-C3N4 in the membrane structure could significantly improve the membrane flux and antifouling properties without reduction in membrane rejection efficiency. (C) 2021 Elsevier Ltd. All rights reserved.
机译:在本研究中,首先,用过氧化氢(缩写为H 2 O 2 -G-C3N4)处理石墨碳氮化物,然后在聚醚砜(PES)混合基质膜(MMM)的制造中作为新的亲水性纳米材料,用于改善助焊剂,蛋白质和染料分离效率和防污性能。将H 2 O 2 -G-C3N4纳米片插入掺杂溶液中以制造具有非溶剂诱导的相倒置过程的PES / H 2 O 2 -G-C3N4纳米复合膜。 SEM和AFM图像的结果以及孔隙率和接触角分析表明,具有H 2 O 2 -G-C3N4的改性膜具有更多的孔隙率,更平滑的表面和更亲水性。此外,系统地对膜性能进行了系统地研究了各种重量百分比的H 2 O 2 -G-C3N4的影响。通过在膜基质中混合H 2 O 2 -G-C3N4纳米片,渗透率从4.1(对于裸膜)升至30.1Lm(-2)H(-1)棒(-1)。另外,H 2 O 2 -G-C3N4材料对防污特征的影响表明,改善了H2O2-G-C3N4MMM的磁通回收率,降低了电阻参数。而且,H 2 O 2 -G-C3N4材料对防污特征的影响表明,改善了H 2 O 2 -G-C3N4mmm的磁通回收率,并且降低了电阻参数。最后,改善了橙色II和反应黄色168的纳米复合材料膜的染料排斥效率。结果,可以提到膜结构中的混合低量的H 2 O 2 -G-C3N4可以显着改善膜通量和防污性能而不降低膜排斥效率。 (c)2021 elestvier有限公司保留所有权利。

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