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Comammox 物种在处理低浓度氨氮的高效部分硝化-厌氧氨氧化生物反应器中占主导地位。

Comammox Species Dominate in an Efficient Partial Nitrification-Anammox Bioreactor for Treating Ammonium at Low Loadings.

机构信息

Department of Environmental Engineering, National Cheng Kung University, Tainan City 701, Taiwan.

出版信息

Environ Sci Technol. 2021 Feb 2;55(3):2087-2098. doi: 10.1021/acs.est.0c05777. Epub 2021 Jan 13.

DOI:10.1021/acs.est.0c05777
PMID:33440936
Abstract

Bacteria capable of complete ammonia oxidation (comammox) are widespread and contribute to nitrification in wastewater treatment facilities. However, their roles in partial nitrification-anaerobic ammonium oxidation (anammox) systems remain unclear. In this study, a bench-scale bioreactor with continuous stirring was operated for more than 1000 days with limited oxygen supply to achieve efficient nitrogen removal (70.1 ± 2.7%) at a low ammonium loading of 35.2 mg-N/L/day. High-throughput amplicon sequencing analysis of the comammox ammonia monooxygenase subunit A () gene revealed seven sequence types from two clusters in clade A of comammox . Quantitative polymerase chain reaction analyses suggested that the comammox species dominated the ammonia-oxidizing community, with an abundance as high as 89.2 ± 7.9% in total prokaryotic copies. Multiple linear regression further revealed the substantial contribution of the comammox to ammonia oxidation in the bioreactor. The investigation with bioreactor and batch experiments consistently showed that activities of comammox were inhibited by free ammonia far more severely than other ammonia-oxidizing microbes. Overall, this study provided new insight into the ecology of comammox under hypoxic conditions and suggested comammox-associated partial nitrification-anammox as a potential method for treating low-strength ammonium-containing wastewater.

摘要

能够进行氨氧化作用(comammox)的细菌广泛存在,并有助于废水处理设施中的硝化作用。然而,它们在部分硝化-厌氧氨氧化(anammox)系统中的作用仍不清楚。在这项研究中,使用连续搅拌的实验室规模生物反应器进行了 1000 多天的运行,在低氨负荷(35.2mg-N/L/d)下仅提供有限的氧气供应,以实现高效的氮去除(70.1±2.7%)。高通量扩增子测序分析 comammox 氨单加氧酶亚基 A(amoA)基因揭示了来自 comammox A 分支两个簇的七个序列类型。定量聚合酶链反应分析表明,comammox 物种主导了氨氧化菌群,总原核 拷贝数高达 89.2±7.9%。多元线性回归进一步表明,comammox 对生物反应器中氨氧化的贡献很大。生物反应器和批量实验的研究一致表明,游离氨对 comammox 的抑制作用远远超过其他氨氧化微生物。总的来说,这项研究为缺氧条件下 comammox 的生态学提供了新的见解,并表明 comammox 相关的部分硝化-厌氧氨氧化可能是处理低浓度含氨废水的一种潜在方法。

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