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[厌氧氨氧化与反硝化同步工艺的启动及微生物群落特征变化]

[Start-up of Simultaneous ANAMMOX and Denitrification Process and Changes in Microbial Community Characteristics].

作者信息

Song Zhuang-Zhuang, Lü Shuang, Liu Zhe, Shi Xing-Dong, Pan Ao, Zhang Zhi

机构信息

School of Urban Construction and Environmental Engineering, Chongqing University, Chongqing 400045, China.

Key Laboratory of Three Gorges Reservoir Region's Eco-Environment, Ministry of Education, Chongqing University, Chongqing 400045, China.

出版信息

Huan Jing Ke Xue. 2019 Nov 8;40(11):5057-5065. doi: 10.13227/j.hjkx.201905223.

Abstract

To understand the relationship between nitrogen and carbon removal performance and the microbial community during start-up of simultaneous ANAMMOX and denitrification (SAD), nitrogen and carbon removal performance and microbial community change were studied by gradually increasing the influent COD concentration. The results showed that with the increase of the influent COD concentration, NH-N and NO-N effluent remained stable, and the average removal rate was more than 98%. The removal rate of TN increased gradually, and the rate was 95.6% in the third stage, which was 6.8% higher than that of ANAMMOX in theory. ΔNO-N/ΔNH-N decreased significantly from 0.15-0.17 to 0.03-0.07. The contribution rate of ANAMMOX to nitrogen removal decreased gradually, denitrification for nitrogen removal increased gradually, and the COD removal rate increased. Sludge activity analysis showed that the denitrification activity of sludge increased significantly and the ANAMMOX activity decreased slightly after the start-up of SAD. High throughput sequencing results showed that the dominant phyla of microorganisms in the reactor were Chloroflexi, Planctomycetes, Firmicutes, Armatimonadetes, and Proteobacteria. The characteristics of the microbial community in the reactor were closely related to the performance of SAD in nitrogen and carbon removal. The main functional microorganisms related to nitrogen and carbon removal were ANAMMOX bacteria, anaerobic digestive bacteria, and denitrifying bacteria. The abundance of ANAMMOX bacteria decreased after the start-up of SAD, and the anaerobic digestive bacteria and heterotrophic denitrifying bacteria increased significantly.

摘要

为了解厌氧氨氧化与反硝化同步(SAD)启动过程中氮素和碳去除性能与微生物群落之间的关系,通过逐步提高进水COD浓度,研究了氮素和碳去除性能及微生物群落变化。结果表明,随着进水COD浓度的增加,出水NH-N和NO-N保持稳定,平均去除率超过98%。TN去除率逐渐提高,第三阶段去除率为95.6%,比理论上的厌氧氨氧化去除率高6.8%。ΔNO-N/ΔNH-N从0.15 - 0.17显著降至0.03 - 0.07。厌氧氨氧化对氮去除的贡献率逐渐降低,反硝化脱氮贡献率逐渐增加,COD去除率提高。污泥活性分析表明,SAD启动后污泥的反硝化活性显著增加,厌氧氨氧化活性略有下降。高通量测序结果表明,反应器中微生物的优势菌门为绿弯菌门、浮霉菌门、厚壁菌门、装甲菌门和变形菌门。反应器中微生物群落特征与SAD的氮素和碳去除性能密切相关。与氮素和碳去除相关的主要功能微生物为厌氧氨氧化菌、厌氧消化菌和反硝化菌。SAD启动后,厌氧氨氧化菌丰度下降,厌氧消化菌和异养反硝化菌显著增加。

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