曝气
苯胺
活性污泥
生物反应器
化学
反硝化
硝化作用
生物降解
制浆造纸工业
降级(电信)
污水处理
废水
环境化学
氮气
环境工程
微生物学
环境科学
生物
有机化学
计算机科学
工程类
电信
作者
Haojin Peng,Yunjie Zhang,Qian Zhang,Wenli Zhang,Meng Li,Jiapeng Feng,Junhao Su,Jing He,Min Zhong
标识
DOI:10.1016/j.biortech.2021.126281
摘要
The strategy of adjusting aeration time (5 h/6 h/7 h) was applied to the sequential batch reactors to optimize the treatment of aniline wastewater (600 mg/L) conveniently and economically. Three reactors degraded aniline effectively. The nitrogen removal ability of system with 6 h aeration time was better, performing the similar denitrification property as 5 h and nitrification performance as 7 h. Meanwhile, longer aeration time potentially damaged the sludge structure. The metagenomic analysis explained the micro-mechanism for the better performance of the system with 6 h aeration time. Appropriate aeration time was conducive to the enrichment of synergistic microflora, including aniline degrading-bacteria, heterotrophic nitrifiers and denitrifiers. Then, the tilt of environmental resources to these floras in the system was beneficial to the maximum value utilization of living substrates. Accordingly, these bacteria were more closely related to genes, resulting in higher expression of functional genes in the system.
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