Microbial diversity reveals the partial denitrification-anammox process serves as a new pathway in the first mainstream anammox plant

厌氧氨氧化菌 缺氧水域 反硝化 反硝化细菌 环境化学 亚硝基单胞菌 污水处理 化学 生物 环境科学 环境工程 生态学 亚硝酸盐 氮气 硝酸盐 有机化学
作者
Zhibin Wang,Xiaolin Liu,Cuina Bu,Shou‐Qing Ni,Shihwu Sung
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:764: 142917-142917 被引量:30
标识
DOI:10.1016/j.scitotenv.2020.142917
摘要

A full-scale sewage treatment plant in Xi'an city is discovered as the first mainstream anaerobic ammonia oxidation (anammox) treatment process in China. Whether its biological mechanism is the nitritation-anammox or partial denitrification (PD)-anammox brought violent controversy between two groups. As a third party, here we uncovered the mystery of the moving-bed biofilm reactor (MBBR) as a PD-anammox process by analyzing the diversity and phylogenetic investigation of communities by reconstruction of unobserved states (PICRUSt) of microbes in anoxic pond. Anammox bacteria was found in the MBBR anoxic tank, which abundance is 8.9 times of that in the common anaerobic-anoxic-oxic process, confirming the existence of anammox process. The denitrifying bacteria (DNB) content in the anoxic tank is 5.9 times of the content of ammonia oxidizing bacteria (AOB), thus the DNB-anammox system is proved at the microbial composition level. The PICRUSt analysis found that ammonium nitrogen is mainly derived from the deamination of urea. The functional genes NAR and AMO of DNB and AOB are 910.84 and 5.80 rpms, respectively. The NAR gene content is 157.0 times of the AMO gene content and it is proved at the genetic level that the nitrite in the anoxic pool is mainly derived from denitrification. This study demonstrated the feasibility and advantages of the PD-anammox in the anammox process, which is different from the traditional nitritation-anammox demonstrated in Strass Wastewater Treatment Plant, Austria and Changi Water Reclamation Plant, Singapore and provided an alternative option for the mainstream application of anammox.

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