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共氨氧化硝化螺旋菌是主流低溶解氧硝化反应器中占优势的氨氧化菌。

Comammox Nitrospira are the dominant ammonia oxidizers in a mainstream low dissolved oxygen nitrification reactor.

机构信息

Department of Civil and Environmental Engineering, Northwestern University, 2145 Sheridan Road, Evanston, IL, 60208, USA.

Metropolitan Water Reclamation District of Greater Chicago, 6001 W Pershing Road, Chicago, IL, 60804, USA.

出版信息

Water Res. 2019 Jun 15;157:396-405. doi: 10.1016/j.watres.2019.03.060. Epub 2019 Mar 28.

Abstract

Recent findings show that a subset of bacteria affiliated with Nitrospira, a genus known for its importance in nitrite oxidation for biological nutrient removal applications, are capable of complete ammonia oxidation (comammox) to nitrate. Early reports suggested that they were absent or present in low abundance in most activated sludge processes, and thus likely functionally irrelevant. Here we show the accumulation of comammox Nitrospira in a nitrifying sequencing batch reactor operated at low dissolved oxygen (DO) concentrations. Actual mainstream wastewater was used as influent after primary settling and an upstream pre-treatment process for carbon and phosphorus removal. The ammonia removal rate was stable and exceeded that of the treatment plant's parallel full-scale high DO nitrifying activated sludge reactor. 16S rRNA gene sequencing showed a steady accumulation of Nitrospira to 53% total abundance and a decline in conventional ammonia oxidizing bacteria to <1% total abundance over 400 + days of operation. After ruling out other known ammonia oxidizers, qPCR confirmed the accumulation of comammox Nitrospira beginning around day 200, to eventually comprise 94% of all detected amoA and 4% of total bacteria by day 407. Quantitative fluorescence in-situ hybridization confirmed the increasing trend and high relative abundance of Nitrospira. These results demonstrate that comammox can be metabolically relevant to nitrogen transformation in wastewater treatment, and can even dominate the ammonia oxidizing community. Our results suggest that comammox may be an important functional group in energy efficient nitrification systems designed to operate at low DO levels.

摘要

最近的研究结果表明,与亚硝化单胞菌属(Nitrospira)相关的一部分细菌能够进行完全氨氧化(comammox)生成硝酸盐,该属以其在生物营养去除应用中的亚硝酸盐氧化中的重要性而闻名。早期的报告表明,它们在大多数活性污泥工艺中要么不存在,要么丰度很低,因此可能在功能上无关紧要。在这里,我们展示了在低溶解氧(DO)浓度下运行的硝化序批式反应器中 comammox 硝化螺旋菌的积累。实际的主流废水在经过初次沉淀和上游的碳和磷去除预处理过程后用作进水。氨去除率稳定,超过了处理厂平行的高 DO 硝化活性污泥反应器。16S rRNA 基因测序显示,硝化螺旋菌的丰度稳定增加到 53%,而传统的氨氧化细菌的丰度下降到<1%,在 400 多天的运行过程中。在排除其他已知的氨氧化菌后,qPCR 证实了 comammox 硝化螺旋菌的积累始于大约第 200 天,到第 407 天,最终占所有检测到的 amoA 的 94%和总细菌的 4%。定量荧光原位杂交证实了硝化螺旋菌的增加趋势和高相对丰度。这些结果表明,comammox 可能与废水处理中的氮转化具有代谢相关性,甚至可以主导氨氧化群落。我们的研究结果表明,在设计用于低 DO 水平运行的节能硝化系统中,comammox 可能是一个重要的功能群。

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