Chen Chongjun, Zhang Min, Yu Xuliang, Mei Juan, Jiang Ying, Wang Yaoqi, Zhang Tian C
School of Environmental Science and Engineering, Suzhou University of Science and Technology, Suzhou 215009, China E-mail:
Civil Engineering Dept., University of Nebraska-Lincoln (Omaha Campus), Omaha, NE 68182-0178, USA.
Water Sci Technol. 2018 Dec;78(11):2338-2348. doi: 10.2166/wst.2018.516.
Effects of different C/N (NO N) ratios on nitrogen removal and microbial community structure were investigated using an anaerobic baffled reactor (ABR). Results indicated that the C/N ratio exerted an important effect on nitrogen removal in the anammox-coupling-denitrification process associated with the ABR. When the C/N ratio was 1.29, the ABR could achieve the highest total nitrogen (TN) removal efficiency of 99.9%. Most of TN was removed in the 1st and 2nd compartment, accounting for about 81.0-97.6% of total TN removal. The nitrogen removal resulted from the interaction among anammox, heterotrophic denitrificans, and other microbes within the ABR. The contribution of anammox to nitrogen removal varied from 6.8% to 32.4%. High-throughput MiSeq sequencing analyses revealed that the C/N ratio was one of the most important factors regulating the microbial community structure, and the predominant phylum changed from Proteobacteria to Chloroflexi with the elevated C/N ratio. In addition, the Candidatus Brocadia was the major anammox bacterium, and its percentage varied from 1.0-2.9% at day 9 to 2.8-9.1% at day 46.
采用厌氧折流板反应器(ABR)研究了不同碳氮比(无氮)对脱氮及微生物群落结构的影响。结果表明,碳氮比对与ABR相关的厌氧氨氧化耦合反硝化过程中的脱氮有重要影响。当碳氮比为1.29时,ABR可实现最高总氮(TN)去除效率99.9%。大部分TN在第1和第2隔室中被去除,占总TN去除量的约81.0 - 97.6%。脱氮是由ABR内厌氧氨氧化菌、异养反硝化菌及其他微生物之间的相互作用导致的。厌氧氨氧化对脱氮的贡献在6.8%至32.4%之间变化。高通量MiSeq测序分析表明,碳氮比是调节微生物群落结构的最重要因素之一,随着碳氮比升高,优势菌门从变形菌门变为绿弯菌门。此外,“Candidatus Brocadia”是主要的厌氧氨氧化菌,其百分比在第9天为1.0 - 2.9%,在第46天为2.8 - 9.1%。