厌氧氨氧化菌
抗生素
化学
机制(生物学)
生物量(生态学)
氮气
生物化学
生物
反硝化
物理
生态学
有机化学
反硝化细菌
量子力学
作者
Xinxin Xu,Shuang Liu,Ming Zeng,Hongli Li,Tingting Du,Nan Wu,Juanjuan Sun,Linlin Hao
标识
DOI:10.1016/j.biortech.2022.126674
摘要
Recently, little research has been devoted to the systematic investigation regarding the effect of different antibiotics on anammox-based system and its underlying mechanism. In this study, a critical inhibition concentration to the anammox-based system was obtained: 2, 0.5 and 5 mg/L for OTC, TC and SM, respectively. However, SPM had no significant inhibition. Furthermore, Exp model and Monod model were capable to describe the inhibition period, while Gauss model was suitable for the recovery period. A universal machine learning model could accurately predict the NRR (R2 over 0.9), especially when biomass information data was introduced. As a qualitative analysis, the inhibition effect of TC and OTC was strongest. The abundance of nitrogen functional genes was negatively correlated with antibiotics, while antibiotic resistance genes showed the opposite trend. Overall, the inhibition ratios of OTC, TC, SPM and SM on anammox process were calculated to be 91%, 82%, 50% and 30%, respectively.
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