Zhao Yang, Yang Feng, Jiang Han, Gao Guandao
School of Energy and Environment, Southeast University, Nanjing, 210096, China.
State Key Laboratory of Environmental Medicine Engineering, Ministry of Education, Southeast University, Nanjing, 210096, China.
Nat Commun. 2024 Jun 6;15(1):4845. doi: 10.1038/s41467-024-49266-1.
Piezoceramic membranes have emerged as a prominent solution for membrane fouling control. However, the prevalent use of toxic lead and limitations of vibration-based anti-fouling mechanism impede their wider adoption in water treatment. This study introduces a Mn/BaTiO piezoceramic membrane, demonstrating a promising in-situ anti-fouling efficacy and mechanism insights. When applied to an Alternating Current at a resonant frequency of 20 V, 265 kHz, the membrane achieves optimal vibration, effectively mitigating various foulants such as high-concentration oil (2500 ppm, including real industrial oil wastewater), bacteria and different charged inorganic colloidal particles, showing advantages over other reported piezoceramic membranes. Importantly, our findings suggest that the built-in ultrasonic vibration of piezoceramic membranes can generate reactive oxygen species. This offers profound insights into the distinct anti-fouling processes for organic and inorganic wastewater, supplementing and unifying the traditional singular vibrational anti-fouling mechanism of piezoceramic membranes, and potentially propelling the development of piezoelectric catalytic membranes.
压电陶瓷膜已成为控制膜污染的一种重要解决方案。然而,有毒铅的普遍使用以及基于振动的防污机制的局限性阻碍了它们在水处理中的更广泛应用。本研究介绍了一种锰/钛酸钡压电陶瓷膜,展示了其有前景的原位防污效果和作用机制见解。当在20 V、265 kHz的共振频率下施加交流电时,该膜实现了最佳振动,有效减轻了各种污染物,如高浓度油(2500 ppm,包括实际工业含油废水)、细菌和不同带电的无机胶体颗粒,显示出优于其他已报道的压电陶瓷膜的优势。重要的是,我们的研究结果表明,压电陶瓷膜的内置超声振动可以产生活性氧物种。这为有机和无机废水独特的防污过程提供了深刻见解,补充并统一了压电陶瓷膜传统的单一振动防污机制,并有可能推动压电催化膜的发展。