Lu Yuqin, Jia Jia, Miao Hengfeng, Ruan Wenquan, Wang Xinhua
Jiangsu Key Laboratory of Anaerobic Biotechnology, School of Environmental and Civil Engineering, Jiangnan University, Wuxi 214122, China.
Zhejiang Province Environmental Engineering Technology Appraisal Center, Hangzhou 310012, China.
Membranes (Basel). 2020 Jun 16;10(6):122. doi: 10.3390/membranes10060122.
An osmotic microbial fuel cell (OsMFC) using a forward osmosis (FO) membrane to replace the proton exchange membrane in a typical MFC achieves superior electricity production and better effluent water quality during municipal wastewater treatment. However, inevitable FO membrane fouling, especially biofouling, has a significantly adverse impact on water flux and thus hinders the stable operation of the OsMFC. Here, we proposed a method for biofouling mitigation of the FO membrane and further improvement in current generation of the OsMFC by applying a silver nanoparticle (AgNP) modified FO membrane. The characteristic tests revealed that the AgNP modified thin film composite (TFC) polyamide FO membrane showed advanced hydrophilicity, more negative zeta potential and better antibacterial property. The biofouling of the FO membrane in OsMFC was effectively alleviated by using the AgNP modified membrane. This phenomenon could be attributed to the changes of TFC-FO membrane properties and the antibacterial property of AgNPs on the membrane surface. An increased hydrophilicity and a more negative zeta potential of the modified membrane enhanced the repulsion between foulants and membrane surface. In addition, AgNPs directly disturbed the functions of microorganisms deposited on the membrane surface. Owing to the biofouling mitigation of the AgNP modified membrane, the water flux and electricity generation of OsMFC were correspondingly improved.
一种渗透式微生物燃料电池(OsMFC),使用正向渗透(FO)膜取代典型微生物燃料电池中的质子交换膜,在城市污水处理过程中实现了更高的发电量和更好的出水水质。然而,不可避免的FO膜污染,尤其是生物污染,对水通量有显著的不利影响,从而阻碍了OsMFC的稳定运行。在此,我们提出了一种减轻FO膜生物污染并通过应用银纳米颗粒(AgNP)改性的FO膜进一步提高OsMFC电流产生的方法。特性测试表明,AgNP改性的薄膜复合(TFC)聚酰胺FO膜表现出更高的亲水性、更负的zeta电位和更好的抗菌性能。使用AgNP改性膜有效减轻了OsMFC中FO膜的生物污染。这种现象可归因于TFC-FO膜性能的变化以及膜表面AgNPs的抗菌性能。改性膜亲水性的增加和zeta电位的更负增强了污染物与膜表面之间的排斥力。此外,AgNPs直接干扰了沉积在膜表面的微生物的功能。由于AgNP改性膜减轻了生物污染,OsMFC的水通量和发电量相应提高。