Xing Jin-Liang, Zhang Yan, Chen Chang-Ming, Zhang Bo-Kang, Guo Wei, Ma Xiang-Shan
Key Laboratory of Beijing for Water Quality Science and Water Environment Recovery Engineering, Beijing University of Technology, Beijing 100124, China.
China Metallurgical Industry Panning and Research Institute, Beijing 100711, China.
Huan Jing Ke Xue. 2018 Mar 8;39(3):1342-1349. doi: 10.13227/j.hjkx.201707018.
In this study, a CEM-UF composite membrane with ammonia nitrogen enrichment and separation characteristics was combined with nitrification/denitrification to treat low C/N wastewater. The denitrification characteristics of low C/N wastewater at different flow ratios were investigated, and the structural characteristics of functional microbial communities in nitrifying and denitrifying activated sludge were analyzed by 16Sr DNA high-throughput sequencing. The results showed that influent TN was 60 mg·L, COD/TN was 2.65, the nitrification effect of each flow rate was good, and the average ammonia nitrogen removal rate was 98.7%. When the flow ratio increased from 1:2 to 1:6, the (COD)/(NO-N) of denitrification was increased, and the removal of average nitrate nitrogen reached its highest level at 1:6, which was 86.28%, and the removal of total nitrogen increased from 22.56% to 46.8%. An analysis of Illumina sequencing showed that nitrogen fixing bacteria Proteobacteria accounted for 30.9%, and the important nitrite oxidizing bacteria, Nitrospirae, accounted for 3.06%. At the genus level, and , belonging to the ammonia oxidizing bacteria (AOB) category and and , belonging to the nitrite oxidizing bacteria (NOB) category were detected. The ratio of AOB and NOB bacteria was high, which is consistent with good nitrification in the nitrification reactor. The dominant bacteria in denitrification sludge were Proteobacteria (53.13%), followed by Bacteroidetes (10.93%). A variety of bacteria related to denitrification were detected at the genus level, such as , and . The proportion of denitrifying bacteria was 25.91% as denitrifying bacteria microbial species were rich in the denitrifying sludge, giving a good denitrification effect.
本研究将具有氨氮富集分离特性的CEM-UF复合膜与硝化/反硝化相结合用于处理低C/N废水。研究了不同流量比下低C/N废水的反硝化特性,并通过16Sr DNA高通量测序分析了硝化和反硝化活性污泥中功能微生物群落的结构特征。结果表明,进水TN为60 mg·L,COD/TN为2.65,各流量下硝化效果良好,平均氨氮去除率为98.7%。当流量比从1:2增加到1:6时,反硝化的(COD)/(NO-N)增加,平均硝酸盐氮去除率在1:6时达到最高,为86.28%,总氮去除率从22.56%提高到46.8%。Illumina测序分析表明,固氮菌变形菌门占30.9%,重要的亚硝酸盐氧化菌硝化螺菌门占3.06%。在属水平上,检测到属于氨氧化细菌(AOB)类别的 和 ,以及属于亚硝酸盐氧化细菌(NOB)类别的 和 。AOB和NOB细菌的比例较高,这与硝化反应器中良好的硝化作用一致。反硝化污泥中的优势菌为变形菌门(53.13%),其次是拟杆菌门(10.93%)。在属水平上检测到多种与反硝化相关的细菌,如 、 和 。反硝化细菌比例为25.91%,因为反硝化污泥中反硝化细菌微生物种类丰富,反硝化效果良好。