光催化降解和抑菌功能的聚乙烯醇复合壳聚糖接枝氧化氮化碳纳米纤维膜

PVA composite Chitosan grafted oxygenated graphite carbon nitride nanofiber membrane with photocatalytic adsorption degradation and bacterial inhibition performance

  • 摘要: 有机污染物和细菌的去除是水净化的难点,光催化协助水净化具有环保、节能、高效的优势,柔性光催化材料在水污染防治中具有重要意义。本文用静电纺丝法制备了聚乙烯醇复合壳聚糖接枝氧化氮化碳纳米纤维膜(PVA/CS-OCN), 分析测试了膜的微观结构,光电性能和光催化性能。PVA/CS-OCN纳米纤维膜表面光滑,成纤均匀,纤维平均直径为137±20.8 nm,拉伸测试结果显示PVA/CS-OCN-3纳米纤维膜的断裂伸长率和拉伸强度分别比聚乙烯醇(PVA)膜高约78.5%和15.8%。光电流测试结果显示PVA/CS-OCN-3的光电流强度提高,其电荷转移电阻较低。表明复合接枝以及纳米化的改性措施不仅改善了氮化碳(CN)电子-空穴复合率高的缺点,提高了光致电子产生的比例,并且PVA/CS-OCN纳米纤维膜的高比表面积和均匀的孔径为光催化反应的产生提供了更多的活性位点。PVA/CS-OCN纳米纤维膜对大肠杆菌(E.coli)有较好的抑制作用,其中PVA/CS-OCN-3的抑菌圈直径能达到19±0.1 mm。另外,纤维膜对亚甲基蓝(MB)有较好的去除性能,PVA/CS-OCN-3在390 min内对MB最大降解率可达到72.6%。

     

    Abstract: The removal of organic pollutants and bacteria is the difficulty of water purification process. Photocatalysis has the advantages of environmental protection, energy saving and high efficiency, flexible photocatalytic materials play an important role in water pollution control. Flexible photocatalytic materials are of great significance in water pollution prevention. Here, a series of PVA/CS-OCN nanofiber membranes with different ratios were prepared by electrospinning, and the microstructure, Photoelectric performance, photocatalytic performance of PVA/CS-OCN nanofiber membranes were investigated. The average fiber diameter was 137 ± 20.84 nm with a smooth surface and uniform fiber formation. The tensile test results showed that PVA/CS-OCN-3's fracture elongation and tensile strength were about 78.5% and 15.8% higher than those of the PVA membrane. The results of photocurrent test showed that PVA/CS-OCN-3 had higher photocurrent intensity and lower charge transfer resistance. The results showed that the composite grafting and nano modification not only improved the high electron-hole recombination rate of carbon nitride, but also increased the proportion of photoinduced electron production, and the high specific surface area and uniform pore size provided more active sites for the generation of photocatalytic reactions. The inhibition diameter of PVA/CS-OCN-3 reached 19 ± 0.1 mm against E.coli within 24 h under visible light, exhibiting excellent photocatalytic bactericidal ability. The maximum degradation efficiency for MB at 390 minutes can reach 72.6%.

     

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