[寒区IFAS+磁混凝工艺污水处理厂细菌群落结构及耐药基因的变化]。

Wen-Yan Du, Jun-Qin Yao, Hui-Ying Ma, Yuan-Xin Hu, Chun-Lei Zhang, Yin-Guang Chen
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引用次数: 0

摘要

本研究旨在探讨新疆某固定膜活性污泥(IFAS)+磁混凝工艺污水处理厂(WWTP)中细菌群落和抗生素耐药基因(ARGs)的变化。采用16S rRNA基因测序和宏基因组测序技术对进水、悬浮活性污泥、附着生物膜和出水中的细菌群落和ARGs进行了研究。结果表明,活性污泥中氯氟西和硝基螺旋菌的平均相对丰度分别为3.50%和0.03%,生物膜中的相对丰度分别为10.02%和2.12%。该污水处理厂改造后,NH4+-N和TN的平均去除率分别从91.89%和66.76%提高到97.71%和91.90%,表明IFAS提高了寒区污水处理厂的生物脱氮能力。生物处理断面中与铁氧化还原相关的ferruginibacteria和Rhodoferax的平均相对丰度分别为5.24%和3.72%,出水中Rhodoferax的相对丰度达到9.48%,表明磁粉对细菌群落产生了影响。IFAS污水处理厂对ARGs有明显的去除效果,出水ARGs的相对丰度从进水的191.08×10-3‰下降到32.58×10-3‰。活性污泥中ARGs的相对丰度为63.25×10-3‰-72.38×10-3‰,显著高于生物膜中的41.31×10-3‰。然而,主要亚型的相对丰度的参数如sul2、福罗,和在生物膜rpoB2球季×5.77‰,球季×2.52‰,球季×2.03‰,分别是高于球季3.15×-3.57‰×三分‰,球季1.73××-2.24‰三分‰,球季和1.28××-1.76‰三分在活性污泥‰。网络分析结果表明,caldilineace_norank和Trichococcus分别与sul2和floR呈正相关,可为寒区污水处理厂的优化运行和ARGs控制提供理论参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Bacterial Community Structure and Antibiotic Resistance Gene Changes in IFAS+Magnetic Coagulation Process Wastewater Treatment Plant in Cold Regions].

The main objective of this study was to explore the changes in bacterial communities and antibiotic resistance genes (ARGs) in an integrated fixed-film activated sludge (IFAS)+magnetic coagulation process wastewater treatment plant (WWTP) in Xinjiang. The bacterial communities and ARGs in the influent, suspended activated sludge, attached biofilm, and effluent were studied using 16S rRNA gene sequencing and metagenomic sequencing. The results showed that the average relative abundances of Chloroflexi and Nitrospirae in activated sludge were 3.50% and 0.03%, respectively, and their relative abundances in biofilm reached 10.02% and 2.12%, respectively. The average removal rates of NH4+-N and TN increased from 91.89% and 66.76% to 97.71% and 91.90% after the reformation of this wastewater treatment plant, respectively, indicating that IFAS enhanced the biological nitrogen removal capacity of wastewater treatment plants in cold regions. The average relative abundances of Ferruginibacter and Rhodoferax related to iron redox in the biological treatment section were 5.24% and 3.72%, respectively, and the relative abundance of Rhodoferax in effluent reached 9.48%, indicating that the magnetic powder had an impact on the bacterial community. The IFAS wastewater treatment plant had an obvious removal effect on ARGs, and the relative abundance of ARGs decreased from 191.08×10-3‰ in the influent to 32.58×10-3‰ in the effluent. The relative abundance of ARGs in activated sludge was 63.25×10-3‰-72.38×10-3‰, which was significantly higher than 41.31×10-3‰ in biofilm. However, the relative abundances of dominant subtypes of ARGs such as sul2, floR, and rpoB2 in biofilm were 5.77×10-3‰, 2.52×10-3‰, and 2.03×10-3‰, respectively, which were higher than the 3.15×10-3‰-3.57×10-3‰, 1.73×10-3‰-2.24×10-3‰, and 1.28×10-3‰-1.76×10-3‰ in activated sludge. The network analysis indicated that Caldilineaceae_norank and Trichococcus were respectively positively correlated with sul2 and floR. These results can provide theoretical reference for the optimal operation and ARGs control of WWTPs in cold regions.

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