Wu Enya, Yu Yang, Hu Jiayue, Ren Gang, Zhu Mingshan
Guangdong Key Laboratory of Environmental Pollution and Health, School of Environment, Jinan University, Guangzhou 511443, PR China.
Guangdong Key Laboratory of Environmental Pollution and Health, School of Environment, Jinan University, Guangzhou 511443, PR China.
J Hazard Mater. 2023 Sep 15;458:131885. doi: 10.1016/j.jhazmat.2023.131885. Epub 2023 Jun 17.
The conjugation of membrane filtration (MF) with advanced oxidation process (AOPs) is being considered as an alternative advanced treatment process for the potable reuse of wastewater. Beyond conventional MF/AOPs conjugation, a new downstream MF process with piezoelectric-channels induced piezo-activated peroxymonosulfate (PMS) is herein constructed to deal with antiepileptic carbamazepine (CBZ) pollutants through polyvinylidene fluoride (PVDF) membrane (PVDF-M10). Through a MF process, ca. 93.8% CBZ pollutants can be removed under an ultrasonic-assisted piezo-activation PMS, whereas only 18.3% and 60.2% CBZ can be removed by using pure PVDF membrane under the same condition and PVDF-M10 membrane without ultrasonic-assisted piezo-activation. Even after 9-cycles, CBZ removal efficiency was maintained at 56.4% under this MF process. These superior performances are attributed to the piezoelectric exfoliated-MoS nanosheets (E-MoS) embedded PVDF nanofibers in PVDF-M10 membrane, which lead to rich piezoelectric-channels in the membrane. These piezoelectric-channels not only produced more charges to activate PMS to boost the yield of reactive oxide species (ROS) but also provided an ideal platform for the rapid reaction between CBZ and ROS during MF process. This investigation develops a new MF technique to conjugate piezo-activation of PMS-AOPs for the efficient removal of emerging pollutants for the potable reuse of wastewater.
膜过滤(MF)与高级氧化工艺(AOPs)的结合正被视为一种用于废水饮用水回用的替代深度处理工艺。除了传统的MF/AOPs结合方式外,本文构建了一种新的下游MF工艺,该工艺通过压电通道诱导压电活化过一硫酸盐(PMS),利用聚偏氟乙烯(PVDF)膜(PVDF-M10)处理抗癫痫药物卡马西平(CBZ)污染物。通过MF工艺,在超声辅助压电活化PMS的条件下,约93.8%的CBZ污染物可被去除,而在相同条件下,使用纯PVDF膜以及未进行超声辅助压电活化的PVDF-M10膜时,CBZ的去除率分别仅为18.3%和60.2%。即使经过9个循环,在此MF工艺下CBZ的去除效率仍保持在56.4%。这些优异的性能归因于PVDF-M10膜中嵌入PVDF纳米纤维的压电剥离MoS纳米片(E-MoS),这使得膜中形成了丰富的压电通道。这些压电通道不仅产生更多电荷以活化PMS从而提高活性氧物种(ROS)的产量,还为MF过程中CBZ与ROS之间的快速反应提供了理想平台。本研究开发了一种新的MF技术,将PMS-AOPs的压电活化结合起来,用于高效去除新兴污染物,以实现废水饮用水回用。