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在序批式反应器中,通过聚磷菌(PAOs)和反硝化聚磷菌(DPAOs)之间的相互作用同时进行氮磷去除。

Simultaneous nitrogen and phosphorus removal by interactions between phosphate accumulating organisms (PAOs) and denitrifying phosphate accumulating organisms (DPAOs) in a sequencing batch reactor.

机构信息

Innovative Institute of Animal Healthy Breeding, Department of Environmental Science and Engineering, Zhongkai University of Agriculture and Engineering, Guangzhou 510225, China; Department of Civil and Environmental Engineering, Faculty of Science and Technology, University of Macau, Macau SAR 999078, China.

Innovative Institute of Animal Healthy Breeding, Department of Environmental Science and Engineering, Zhongkai University of Agriculture and Engineering, Guangzhou 510225, China.

出版信息

Sci Total Environ. 2020 Nov 20;744:140852. doi: 10.1016/j.scitotenv.2020.140852. Epub 2020 Jul 14.

Abstract

The identification of phosphate-accumulating organisms (PAOs), denitrifying phosphate-accumulating organisms (DPAOs) and their relationship is a key pathway for optimizing nitrate and phosphate removal efficiency in activated sludge. In this study, the acclimatization of microorganisms in sequencing batch reactor were performed with anaerobic/aerobic (A/O) and anaerobic/anoxic (A/A) cycles, the biomass changes of PAOs and DPAOs and the correlations were then discussed. The results indicated that after acclimatization, the nutrient removal efficiencies reached to 85.34% (COD), 93.64% (PO-P) and 92.34% (NO-N), respectively, with NO-N:PO-P of 1.5:1. The successful enrichment of PAOs and DPAOs (reached 97.9%) was verified by the change of relative metabolic activities, which was further proved by the change of bacterial diversity. The number of Candidatus Accumulibacter, Zoogloea, and Dechloromonas all increased at A/O and A/A stages while the number of Acinetobacter only increased at A/O stage. So Accumulibacter sp. was DPAO while Acinetobacter sp. was only PAO in this process, and genera Accumulibacter, Dechloromonas and Zoogloea greatly coordinated in denitrification and accumulating phosphorous though RDA and chord plot. This was worthy of attention and development to explore enhanced biological phosphorus removal (EBPR) in practical wastewater treatment via improving identification of bacterial species and symbiosis of bacteria community.

摘要

聚磷菌(PAOs)、反硝化聚磷菌(DPAOs)及其相互关系的鉴定是优化活性污泥中硝酸盐和磷酸盐去除效率的关键途径。本研究通过厌氧/好氧(A/O)和厌氧/缺氧(A/A)循环对序批式反应器中的微生物进行驯化,探讨了 PAOs 和 DPAOs 的生物量变化及其相关性。结果表明,驯化后,COD、PO-P 和 NO-N 的去除效率分别达到 85.34%、93.64%和 92.34%,NO-N:PO-P 为 1.5:1。相对代谢活性的变化验证了 PAOs 和 DPAOs 的成功富集(达到 97.9%),细菌多样性的变化进一步证明了这一点。在 A/O 和 A/A 阶段,Candidatus Accumulibacter、Zoogloea 和 Dechloromonas 的数量都增加了,而 Acinetobacter 的数量只在 A/O 阶段增加。因此,在这个过程中,Accumulibacter sp. 是 DPAO,而 Acinetobacter sp. 只是 PAO,尽管 RDA 和 chord 图表明,Accumulibacter、Dechloromonas 和 Zoogloea 属在反硝化和聚磷过程中协同作用很大。这值得关注和发展,通过提高细菌种类的鉴定和细菌群落的共生关系,探索实际废水处理中的强化生物除磷(EBPR)。

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