缺氧水域
流出物
反硝化
水力停留时间
废水
曝气
环境科学
污水处理
氮气
活性污泥
化学需氧量
制浆造纸工业
环境工程
碳纤维
化学
无氧运动
生物反应器
氮气循环
过程(计算)
废物管理
环境化学
污染
生物量(生态学)
作者
Zeming An,Xinjie Gao,Jing Ding,Xiaoxin Cao,Liang Zhang,Yongzhen Peng
标识
DOI:10.1038/s41467-026-73481-7
摘要
Achieving advanced nitrogen removal in municipal wastewater treatment plants remains challenging under low-strength influent and seasonal temperature fluctuations. Here, we optimized a full-scale anaerobic/aerobic/anoxic process (40,000 m3/d) and evaluated its year-round performance for influent with biochemical oxygen demand of 49.1 ± 9.9 mg/L and total nitrogen of 18.2 ± 1.4 mg/L. By reducing the air-water ratio to 0.39 and shortening the anaerobic hydraulic retention time to 1.8 h, the system achieves effluent total nitrogen as low as 3.3 mg/L and maintains 4.1 mg/L even as the temperature declines from 24.6 °C to 11.3 °C. The combined measures preserve intracellular carbon in the anaerobic zone and limit aerobic over-oxidation, enabling sustained endogenous denitrification in the downstream anoxic zone and clarifier. Endogenous denitrifiers and hydrolytic bacteria are selectively enriched, and functional genes associated with intracellular carbon metabolism and denitrification show higher abundance. Compared to the parallel anaerobic/anoxic/oxic process treating the same influent, chemical use decreases by 40%, sludge production by 8%, and aeration energy by 73%. This work demonstrates that full-scale implementation of this process provides an energy-efficient solution for low-strength municipal wastewater treatment. Authors report an optimized full-scale anaerobic/aerobic/anoxic process for low-strength municipal wastewater, achieving advanced nitrogen removal and reduced energy, chemical, and sludge outputs by regulating air-water ratio and hydraulic retention times.
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