Department of Chemical and Biochemical Engineering, College of Chemistry and Chemical Engineering, The Key Lab for Synthetic Biotechnology of Xiamen City, Xiamen University, Xiamen 361005, China.
Department of Electronic Engineering, Laboratory of Micro/Nano-Optoelectronics, Xiamen University, Xiamen, Fujian 361005, China.
J Hazard Mater. 2022 Jan 5;421:126682. doi: 10.1016/j.jhazmat.2021.126682. Epub 2021 Jul 17.
Biofilms are ubiquitous in aquatic environment. While so far, most of the ultraviolet (UV) disinfection studies focus on planktonic bacteria, and only limited attention has been given to UV irradiation on biofilms. To enrich this knowledge, the present paper reviews the up-to-date studies about applying UV to control biofilms in water and wastewater infrastructure. The development of UV light sources from the conventional mercury lamp to the light emitting diode (LED), and the resistance mechanisms of biofilms to UV are summarized, respectively. Then the feasibility to control biofilms with UV is discussed in terms of three technical routes: causing biofilm slough, inhibiting biofilm formation, and inactivating bacteria in the established biofilm. A comprehensive evaluation of the biofilm-targeted UV technologies currently used or potentially useful in water industry is provided as well, after comparative analyses on single/combined wavelengths, continuous/pulsed irradiation, and instant/chronic disinfection effects. UV LEDs are emerging as competitive light sources because of advantages such as possible selection of wavelengths, adjustable emitting mode and the designable configuration. They still, however, face challenges arising from the low wall plug efficiency and power output. At last, the implementation of the UV-based advanced oxidation processes in controlling biofilms on artificial surfaces is overviewed and their synergistic mechanisms are proposed, which further enlightens the prospective of UV in dealing with the biofilm issue in water infrastructure.
生物膜在水生环境中普遍存在。虽然到目前为止,大多数紫外线(UV)消毒研究都集中在浮游细菌上,而对生物膜的 UV 照射仅给予了有限的关注。为了丰富这方面的知识,本文综述了目前应用 UV 控制水和废水基础设施中生物膜的最新研究。分别总结了从传统汞灯到发光二极管(LED)的 UV 光源的发展以及生物膜对 UV 的抵抗机制。然后从三个技术途径讨论了用 UV 控制生物膜的可行性:引起生物膜剥落、抑制生物膜形成和使已建立的生物膜中的细菌失活。还对目前在水工业中使用或可能有用的针对生物膜的 UV 技术进行了全面评估,对单/组合波长、连续/脉冲辐射以及瞬时/慢性消毒效果进行了比较分析。由于可能选择波长、可调发射模式和可设计的配置等优点,UV LED 作为有竞争力的光源正在出现。然而,它们仍然面临着由于壁装效率和功率输出低而产生的挑战。最后,综述了基于 UV 的高级氧化工艺在控制人工表面生物膜方面的应用,并提出了它们的协同机制,这进一步启发了 UV 在处理水基础设施中生物膜问题方面的前景。