Anhui Province Key Laboratory of Wetland Ecosystem Protection and Restoration, School of Resources and Environmental Engineering, Anhui University, Hefei, 230601, China.
Anhui Province Key Laboratory of Wetland Ecosystem Protection and Restoration, School of Resources and Environmental Engineering, Anhui University, Hefei, 230601, China.
Environ Res. 2023 Aug 15;231(Pt 1):116062. doi: 10.1016/j.envres.2023.116062. Epub 2023 May 4.
Nitrogen (N) and phosphorous (P) removal by a single bacterium could improve the biological reaction efficiency and reduce the operating cost and complexity in wastewater treatment plants (WWTPs). Here, an isolated strain was identified as Pseudomonas mendocina SCZ-2 and showed high performance of heterotrophic nitrification (HN) and aerobic denitrification (AD) without intermediate accumulation. During the AD process, the nitrate removal efficiency and rate reached a maximum of 100% and 47.70 mg/L/h, respectively, under optimal conditions of sodium citrate as carbon source, a carbon-to-nitrogen ratio of 10, a temperature of 35 °C, and shaking a speed of 200 rpm. Most importantly, the strain SCZ-2 could rapidly and simultaneously eliminate N and P with maximum NH-N, NO-N, NO-N, and PO-P removal rates of 14.38, 17.77, 20.13 mg N/L/h, and 2.93 mg P/L/h, respectively. Both the N and P degradation curves matched well with the modified Gompertz model. Moreover, the amplification results of functional genes, whole genome sequencing, and enzyme activity tests provided theoretical support for simultaneous N and P removal pathways. This study deepens our understanding of the role of HN-AD bacteria and provides more options for simultaneous N and P removal from actual sewage.
单一细菌去除氮(N)和磷(P)可以提高生物反应效率,降低污水处理厂(WWTP)的运行成本和复杂性。在这里,分离出的一株菌被鉴定为门多萨假单胞菌 SCZ-2,表现出高效的异养硝化(HN)和需氧反硝化(AD)性能,没有中间产物积累。在 AD 过程中,在最优条件下(以柠檬酸钠作为碳源,碳氮比为 10,温度为 35°C,摇床转速为 200rpm),硝酸盐去除效率和速率分别达到 100%和 47.70mg/L/h。最重要的是,该菌株 SCZ-2 可以快速、同时去除 N 和 P,最大 NH-N、NO-N、NO-N 和 PO-P 去除率分别为 14.38、17.77、20.13mgN/L/h 和 2.93mgP/L/h。氮和磷的降解曲线与改进的 Gompertz 模型拟合良好。此外,功能基因的扩增结果、全基因组测序和酶活性测试为同时去除 N 和 P 的途径提供了理论支持。本研究加深了我们对 HN-AD 细菌作用的理解,为实际污水中同时去除 N 和 P 提供了更多选择。