Department of Environmental Health Engineering, School of Public Health and Safety, Shahid Beheshti University of Medical Sciences, Tehran, Iran.
Department of Environmental Health Engineering, School of Public Health and Safety, Shahid Beheshti University of Medical Sciences, Tehran, Iran.
J Hazard Mater. 2019 Mar 15;366:114-123. doi: 10.1016/j.jhazmat.2018.11.098. Epub 2018 Nov 27.
Ever-increasing production and use of nanoparticles (NPs) have aroused overarching concerns for their toxic effects on the environment and human. In the present study, the toxic effects of Silver (Ag) and Iron (Fe) NPs on the performance of activated sludge were investigated under continuous aerobic/anoxic/anaerobic conditions in laboratory-scale sequencing batch reactors (SBRs).Activated sludge was exposed to various concentrations (5-100 mg/L) of Ag-Fe NPs for 60 days and its response was assessed through the enzymatic activity, COD, nitrogen (TN) and phosphorus (TP) removal, toxicity tests, as well as variations in bacterial community. Compared with the pristine control sample, the exposure to NPs suppressed TN and TP removal efficiencies. Indeed, the respiration rate and biomass concentration were significantly affected by the NPs. Although the simultaneous exposure to Ag-Fe NPs did affect the integrity of cell membrane (LDH) and key enzymes activities, the higher concentration induced an increased generation of reactive oxygen species (ROS). The metagenome analysis revealed a marked shift in the microbial community structure suggesting that both heterotrophic and autotrophic communities were affected by the presence of Ag-Fe NPs. Our results provide some evidence for compounded effects of NPs in their simultaneous presence, and generate new leads for future research efforts.
不断增加的纳米颗粒(NPs)的生产和使用引起了人们对其对环境和人类的毒性影响的广泛关注。在本研究中,在实验室规模的序批式反应器(SBR)中,在连续好氧/缺氧/厌氧条件下,研究了银(Ag)和铁(Fe)NPs 对活性污泥性能的毒性影响。将活性污泥暴露于不同浓度(5-100mg/L)的 Ag-Fe NPs 中 60 天,并通过酶活性、COD、氮(TN)和磷(TP)去除、毒性测试以及细菌群落的变化来评估其反应。与原始对照样品相比,NP 的暴露抑制了 TN 和 TP 的去除效率。事实上,NP 对呼吸速率和生物量浓度有显著影响。尽管 Ag-Fe NPs 的同时暴露确实会影响细胞膜的完整性(LDH)和关键酶的活性,但较高浓度会导致活性氧(ROS)的产生增加。宏基因组分析显示微生物群落结构发生了明显变化,表明异养和自养群落都受到 Ag-Fe NPs 的影响。我们的结果为 NPs 同时存在时的复合效应提供了一些证据,并为未来的研究工作提供了新的线索。