聚偏氟乙烯
膜
生物污染
结垢
膜污染
材料科学
化学工程
导电体
电导率
过滤(数学)
废水
接触角
复合材料
化学
环境工程
环境科学
工程类
生物化学
统计
数学
物理化学
作者
Jinzhuo Shi,Yisong Hu,S. Li,Wenqian Xiao,Yuan Yang,Jiayuan Ji
出处
期刊:Membranes
[Multidisciplinary Digital Publishing Institute]
日期:2024-12-24
卷期号:15 (1): 1-1
标识
DOI:10.3390/membranes15010001
摘要
Electro-conductive membranes coupled with a low-voltage electric field can enhance pollutant removal and mitigate membrane fouling, demonstrating significant potential for electrified wastewater treatment. However, efficient fabrication of conductive membranes poses challenges. An in situ oxidative polymerization approach was applied to prepare PVDF-based conductive membranes (PVDF-CMs) and response surface methodology (RSM) was adopted to optimize modification conditions enhancing membrane performance. The anti-fouling property of the conductive membranes was analyzed using model pollutants. The results indicate that when the concentrations of the pyrrole, BVIMBF4, and FeCl3·6H2O are 0.9 mol/L, 4.8 mmol, and 0.8 mol/L, respectively, the electrical resistance of the PVDF-CM is 93 Ω/sq with the water contact angle of 31°, demonstrating good conductivity and hydrophilicity. Batch membrane filtration experiments coupled with negative voltage indicated that when an external voltage of 2.0 V is applied, membrane fouling rates for the conductive membrane filtering BSA and SA solutions are reduced by 17.7% and 17.2%, respectively, compared to the control (0 V). When an external voltage of 0.5 V is applied, the membrane fouling rate for the conductive membrane filtering HA solution is reduced by 72.6%. This study provides a valuable reference for the efficient preparation of conductive membranes for cost-effective wastewater treatment.
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