Simultaneous phosphorus and nitrogen removal with different C/N ratios in a low oxygen aeration system: Microorganisms and mechanisms

曝气 反硝化细菌 化学需氧量 化学 硝化作用 反硝化 氮气 环境化学 氧气 好氧反硝化 活性污泥 微生物 强化生物除磷 环境工程 废水 细菌 生物 环境科学 有机化学 遗传学
作者
Baodan Jin,Liu Ye,Yusheng Jia,Jintao Niu,Lipei Wang,Hexian Qin,Ran Wang,Lan Wang,Jiantao Ji,Long Pang,Jing Du
出处
期刊:Water Environment Research [Wiley]
卷期号:94 (12) 被引量:3
标识
DOI:10.1002/wer.10815
摘要

In this study, a combined system with simultaneous nitrification, denitrification, and phosphorus removal was operated in continuous low oxygen aeration mode, and the effect of lower oxygen aeration (dissolved oxygen [DO] 0.5-1.5 mg/L) on its performance was examined. The combined system consisted of sludge and high-efficiency biological packing and was operated using four carbon/nitrogen ratios (C/N) with being 10:1, 8:1, 6:1, 10:1. Experimental results showed that the combined system could perform an efficient nitrogen and phosphorus removal under low DO and C/N ratio of 8:1 condition, and removal efficiencies of chemical oxygen demand (COD), NH4+ -N, and PO43- -P were 80.01%, 99.03%, and 89.51%, respectively. High-throughput analysis indicated that the functional species of denitrifying bacteria, including Ferruginibacter Azospira, Comamonas, Bacilli, Hyphomicrobium, Thauera, and Comamonadaceae, were important participants in biological nutrient removal. Meanwhile, Acinetobacter was enriched in the combined system, which contributed to phosphorus removal. PRACTITIONER POINTS: A combined system was operated firstly under continuous low oxygen condition. The lower dissolved oxygen (DO) of the combined system was maintained at 0.50-1.5 mg/L level. The combined system could realize simultaneous phosphorus and nitrogen removal under C/N ratio of 8:1. Several functional bacteria were enriched in the coupled systems.
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