硫黄
黄铁矿
化学
硝酸盐
反硝化
环境化学
自养
流出物
氨
磷
胞外聚合物
曝气
铵
废水
无机化学
磷酸盐
氮气
化学工程
氧气
制浆造纸工业
核化学
滤波器(信号处理)
污水处理
环境工程
矿物学
有机化学
环境科学
细菌
地质学
古生物学
生物膜
作者
Yaofeng Li,Jianbo Guo,Haibo Li,Yuanyuan Song,Zhi Chen,Caicai Lu,Yi Han,Yanan Hou
标识
DOI:10.1016/j.biortech.2019.122340
摘要
A biological aerated filter (BAF) with sulfur and pyrite as fillers were structured to simultaneously remove NH4+-N, NO3--N and PO43--P from secondary effluent. When dissolved oxygen (DO) was 1.2-1.5 mg/L, effluent concentration of NH4+-N, NO3--N and PO43--P were below 0.65, 0.47 and 0.18 mg/L, respectively. Meanwhile, Fe2+ production via decomposing pyrite could improve autotrophic denitrification performance. Besides, sulfur and pyrite autotrophic denitrification process (PAD and SAD) aligned with the Zero-order and First-order kinetics models, respectively, indicating that the sulfur had excellent capability of providing electron. Moreover, there was a positive correlation between the nitrogen removal performance and protein-like substances in extracellular polymeric substances. Bacterial community analysis suggested the nitrifiers and autotrophic denitrifiers were simultaneously enriched. Principal component analysis indicated that the DO concentration and type of electron donors impacted bacterial community. Consequently, BAF combined with PAD and SAD processes provides an alternative method to remove nutrients.
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