厌氧氨氧化菌
化学
胞外聚合物
机制(生物学)
细胞外
四环素
细菌
环境化学
盐酸四环素
盐酸盐
微生物种群生物学
反硝化
生物化学
氮气
反硝化细菌
有机化学
生物
生物膜
哲学
遗传学
抗生素
认识论
作者
Li Zhang,Zixuan Song,Tingjun Dong,Xuepeng Fan,Yongzhen Peng,Jiachun Yang
标识
DOI:10.1016/j.jhazmat.2023.131035
摘要
In this study, activated carbon-loaded nano-zero-valent iron (nZVI-C) composites were added to anaerobic ammonium oxidation bacteria (AnAOB) to overcome the inhibition of tetracycline hydrochloride (TCH). Results showed that 500 mg L-1 nZVI-C effectively mitigated the long-term inhibition of 1.5 mg L-1 TCH on AnAOB and significantly improved the total nitrogen removal efficiency (TNRE) (from 65.27% to 86.99%). Spectroscopic analysis revealed that nZVI-C increased the content of N-H and CO groups in EPS, which contributed to the adsorption of TCH. The accumulation of humic acid-like substances in EPS was also conducive to strengthening the extracellular defense level. In addition, TCH-degrading bacteria (Clostridium and Mycobacterium) were enriched in situ, and the abundance of Ca. Brocadia was significantly increased (from 10.69% to 18.59%). Furthermore, nZVI-C increased the abundance of genes encoding tetracycline inactivation (tetX), promoted mineralization of TCH by 90%, weakening the inhibition of TCH on microbial nitrogen metabolism. nZVI-C accelerated the electron consumption of anammox bacteria by upregulating the abundance of electron generation genes (nxrA, hdh) and providing electrons directly.
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