Li Tian, Cao Jia-Wei, Xie Feng-Lian, Sheng Yao-Liang, Wu Peng, Song Yin-Ling
School of Environmental Science and Engineering, Suzhou University of Science and Technology, Suzhou 215009, China.
Jiangsu Collaborative Innovation Center of Technology and Material of Water Treatment, Suzhou 215009, China.
Huan Jing Ke Xue. 2019 Mar 8;40(3):1390-1395. doi: 10.13227/j.hjkx.201808126.
In order to promote the application of anaerobic ammonium oxidation (ANAMMOX) to treat municipal wastewater, nitrosation was coupled with ANAMMOX and an ABR decarbonization system at the front of it; then used to build a system in which ABR decarbonization-nitrosation coupled with ANAMMOX was used to treat municipal wastewater. The high throughput sequencing technology of MiSeq was employed to analyze the structure of the microbial community in the sludge. Results showed that the average effluent COD concentration of the carbon removal system was 120 mg·L and that the subsequent nitrosation system and ANAMMOX system would not be adversely affected by the effluent COD. Controlled by matching the nitrosation effluent with that from the ABR carbon removal system 2:1, the ANAMMOX influent, kept the ratio of the NO-N and NH-N matrix to ANAMMOX at about 1:1. The total nitrogen removal rate of the integrated reactor was 86%-92% and the COD of the effluent was 20-40 mg·L. After the experiment, the number of bacteria in class -Proteobacteria in the nitrosation system, which are closely related to denitrification, increased. Members of class Sphingobacteria, which have the function of enhancing the growth rate of microorganisms and enhancing the rate of denitrification, were significantly increased in the ANAMMOX system. The nitrogen and carbon in the municipal wastewater could be stably and efficiently removed by the ABR Decarbonization-Nitrosation coupled with ANAMMOX process.
为促进厌氧氨氧化(ANAMMOX)工艺在城市污水处理中的应用,将亚硝化与ANAMMOX耦合,并在其前端设置ABR脱碳系统;进而构建了ABR脱碳-亚硝化耦合ANAMMOX处理城市污水的系统。采用MiSeq高通量测序技术分析污泥中微生物群落结构。结果表明,脱碳系统出水COD平均浓度为120mg·L,后续亚硝化系统和ANAMMOX系统不会受到出水COD的不利影响。通过控制亚硝化出水与ABR脱碳系统出水以2:1的比例匹配,使ANAMMOX进水的NO-N和NH-N基质与ANAMMOX的比例保持在1:1左右。一体化反应器的总氮去除率为86%-92%,出水COD为20-40mg·L。试验后,亚硝化系统中与反硝化密切相关的-变形菌纲细菌数量增加。在ANAMMOX系统中,具有提高微生物生长速率和提高反硝化速率功能的鞘脂杆菌纲成员显著增加。ABR脱碳-亚硝化耦合ANAMMOX工艺能够稳定、高效地去除城市污水中的氮和碳。