School of Civil Engineering and Architecture, Anhui University of Technology, Ma'anshan 243002, China.
School of Civil Engineering and Architecture, Anhui University of Technology, Ma'anshan 243002, China.
Bioresour Technol. 2017 Nov;243:975-985. doi: 10.1016/j.biortech.2017.07.048. Epub 2017 Jul 12.
A modified anaerobic/anoxic/oxic (mA2/O) process based on utilizing the internal carbon source and adding polypropylene carriers was operated for 90d to investigate the nutrients removal performance and bacterial community. This system exhibited a stable and efficient performance, particularly, in removing the NH-N and total phosphorus. The results of high-throughput sequencing showed that the 13 dominant genera containing Pseudomonas, Comamonas, Arcobacter, Nitrobacteria, Nitrosospira, Nitrosomonas, Bacteroides, Flavobacterium, Rhizobium, Acinetobacter, Zoogloea, Rhodocyclus and Moraxella were shared by five zones, inferring that they were the essential players in treating low C/N (below 5.0) municipal wastewater around 10°C. The average abundance of Nitrosospira (4.21%) was higher than that of Nitrosomonas (2.93%), suggested that Nitrosospira performed well under low temperature for nitrification. Additionally, both known Rhodocyclus-related PAOs and GAOs Competibacter were not detected possibly due to low temperature. Redundancy analysis (RDA) indicated that DO played more important roles in regulating bacterial community composition than HRT.
采用利用内部碳源和添加聚丙烯载体的改良厌氧/缺氧/好氧(mA2/O)工艺运行 90d,以研究营养物质去除性能和细菌群落。该系统表现出稳定而高效的性能,特别是在去除 NH-N 和总磷方面。高通量测序的结果表明,含有假单胞菌、贪噬菌属、弧菌属、硝化菌属、亚硝酸螺旋菌属、亚硝化单胞菌属、拟杆菌属、黄杆菌属、根瘤菌属、不动杆菌属、动胶菌属、红环菌属和莫拉氏菌属的 13 个优势属在五个区域共享,推断它们是在 10°C 左右处理低 C/N(低于 5.0)城市废水的必需参与者。亚硝化菌属(4.21%)的平均丰度高于亚硝化单胞菌属(2.93%),表明亚硝化菌属在低温下硝化性能良好。此外,可能由于低温,没有检测到已知的 Rhodocyclus 相关 PAOs 和 GAOs Competibacter。冗余分析(RDA)表明,DO 在调节细菌群落组成方面比 HRT 发挥更重要的作用。