| TiO2/GO/PVDF改性复合膜的制备及抗污染性研究 |
| 作者: 南京工程学院环境工程学院,江苏 南京 211167 |
| 单位: 南京工程学院环境工程学院,江苏 南京 211167 |
| 关键词: 二氧化钛;聚偏氟乙烯;复合膜;抗污染 |
| DOI号: |
| 分类号: X-1 |
| 出版年,卷(期):页码: 2021, 41(1):80-88 |
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摘要: |
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溶胶-凝胶法制得的TiO2经GO修饰,通过SEM、XRD分析表明制得的复合粒子为TiO2、GO的均匀混合物,且TiO2为易分散、粒径均匀的锐钛矿型。将其添加至PVDF铸膜液基体,采用相转换法制备TiO2/GO/PVDF改性复合膜。X射线衍射、红外光谱和接触角测试实验结果表明,TiO2/GO和PVDF有效结合,且在相转化过程中TiO2/GO转移至膜表面,复合膜表面的亲水性增强。借助SEM发现GO和TiO2间存在的协同作用使TiO2/GO /PVDF改性复合膜孔道和孔径均发生了改变。结合膜性能测试实验,证实其亲水性有较大提升,纯水通量上升至203.5 L.m-2.h-1,分别为纯PVDF膜、TiO2/PVDF膜的2.3倍和1.2倍。此外TiO2/GO粒子携带的负电荷增大其对污染物的静电斥力,对BSA的截留率高达91.2%,较纯PVDF膜和TiO2 /PVDF膜具有更优的抗污染性,通量恢复率可达86.3%。 |
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TiO2 prepared by sol-gel method was modified by GO, by mieans of SEM and XRD analysis showed that the prepared composite particles were uniform mixture of TiO2 and GO, and TiO2 was anatase type with easy dispersion and uniform particle size. We successfully prepared a TiO2/GO/PVDF modified composite membrane by phase inversion method.X-ray diffraction、infrared spectrum and the results of the contact angle analysis showed that TiO2/GO and PVDF were well combined and the GO-TiO2 was transferred to the membrane surface, and the hydrophilicity of the composite membrane surface was enhanced.By means of SEM, it was found that the synergistic effect between GO and TiO2 changed both the channel and average pore size of |
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基金项目: |
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作者简介: |
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TiO2 prepared by sol-gel method was modified by GO, by mieans of SEM and XRD analysis showed that the prepared composite particles were uniform mixture of TiO2 and GO, and TiO2 was anatase type with easy dispersion and uniform particle size. We successfully prepared a TiO2/GO/PVDF modified composite membrane by phase inversion method.X-ray diffraction、infrared spectrum and the results of the contact angle analysis showed that TiO2/GO and PVDF were well combined and the GO-TiO2 was transferred to the membrane surface, and the hydrophilicity of the composite membrane surface was enhanced.By means of SEM, it was found that the synergistic effect between GO and TiO2 changed both the channel and average pore size of |
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参考文献: |
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[1] 朱亚光,杜青青,夏雪莲,等. 石墨烯类材料在水处理和地下水修复中的应用[J].中国环境科学,2018(38): 210-221. |
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