Weng Xun, Fu Hui-Min, Mao Zheng, Yan Peng, Xu Xiao-Wei, Shen Yu, Chen You-Peng
Key Laboratory of the Three Gorges Reservoir Region's Eco-Environments of MOE, Chongqing University, Chongqing, 400045, China.
Key Laboratory of the Three Gorges Reservoir Region's Eco-Environments of MOE, Chongqing University, Chongqing, 400045, China; National Research Base of Intelligent Manufacturing Service, Chongqing Technology and Business University, Chongqing, 400067, China.
J Environ Manage. 2023 Dec 15;348:119323. doi: 10.1016/j.jenvman.2023.119323. Epub 2023 Oct 17.
Iron nanoparticles (FeNPs) are commonly used in various industrial processes, leading to their release into the environment and eventual entrance into wastewater treatment plants (WWTPs). FeNPs undergo dissolution, migration, and transformation in WWTPs, which can potentially affect the stable operation of anaerobic ammonia oxidation (anammox) systems and may be discharged with wastewater or biomass. To better understand the fate of FeNPs in anammox systems, exposure experiments were conducted using anammox granular sludges (AnGS) and FeNPs. Results demonstrated that FeNPs released Fe upon contact with water, with a portion being bound to functional groups in extracellular polymeric substances (EPS) and the rest entering the bacteria to form highly absorbable substances. A significant amount of FeNPs was observed to cover the surface of AnGS or aggregate and deposit at the bottom of the reactor, eventually converting into FeO and stably existing within the anammox system. The findings of this study clarify the fate of FeNPs in anammox systems and provide important insights into the stable operation of anammox systems under FeNPs exposure.
铁纳米颗粒(FeNPs)常用于各种工业过程,导致其释放到环境中并最终进入污水处理厂(WWTPs)。FeNPs在污水处理厂中会发生溶解、迁移和转化,这可能会影响厌氧氨氧化(anammox)系统的稳定运行,并可能随废水或生物质排放。为了更好地了解FeNPs在厌氧氨氧化系统中的归宿,使用厌氧氨氧化颗粒污泥(AnGS)和FeNPs进行了暴露实验。结果表明,FeNPs与水接触时会释放出铁,一部分与细胞外聚合物(EPS)中的官能团结合,其余部分进入细菌形成高吸收性物质。观察到大量FeNPs覆盖在AnGS表面或聚集并沉积在反应器底部,最终转化为FeO并稳定存在于厌氧氨氧化系统中。本研究结果阐明了FeNPs在厌氧氨氧化系统中的归宿,并为FeNPs暴露下厌氧氨氧化系统的稳定运行提供了重要见解。