Performance, microbial community and inhibition kinetics of long-term Cu2+ stress on an air-lift nitritation reactor with self-recirculation

被引:12
作者
Feng, Fan [1 ,2 ]
Duan, Cheng-Shan [1 ,2 ]
Tang, Xi [1 ,2 ]
Chen, Xi [1 ,2 ]
Lu, Xuan [1 ,2 ]
Chai, Xi-Lin [3 ,4 ]
Mahmood, Qaisar [5 ]
Tang, Chong-Jian [1 ,2 ]
Chai, Li-Yuan [1 ,2 ]
机构
[1] Cent South Univ, Sch Met & Environm, Dept Environm Engn, Changsha 410083, Peoples R China
[2] Natl Engn Res Ctr Control & Treatment Heavy Met P, Changsha 410083, Peoples R China
[3] Jiangxi Prov Collaborat Res Inst Environm Protect, Wannian 335500, Peoples R China
[4] Jiangxi Gaia Environm Sci & Technol Co Ltd, Shangrao 334000, Peoples R China
[5] COMSATS Univ, Dept Environm Sci, Abbottabad, Pakistan
来源
JOURNAL OF ENVIRONMENTAL SCIENCES | 2020年 / 91卷
基金
中国国家自然科学基金;
关键词
Nitritation; Cu2+ inhibition; Microbial structure; Haldane model; Kinetics; NITROGEN REMOVAL; UNCOMPETITIVE INHIBITION; NITRIFICATION; COPPER; CU(II); TOLERANT; METALS; ZN;
D O I
10.1016/j.jes.2020.01.021
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Biological nitrogen removal process could be affected due to the presence of heavy metals owing to their toxicity and accumulation in the sludge. In this study, the impact of Cu2+ shock on a long-term nitritation operation was investigated in an air-lift reactor with self-recirculation. Both the dynamics of microbial community and inhibition kinetics under Cu2+ stress were ascertained. The results showed that Cu2+ exerted severe inhibition on nitritation performance of an air-lift reactor (ALR) at 25 mg/L. The corresponding NH4+-N removal efficiency decreased to below 50%, which was mainly due to the variation of microbial community structure, especially the inhibition of nitrifiers like Nitrosomonas (the relative abundance decreased from 30% to 1% after Cu2+ inhibition). Kinetic parameters were obtained and compared after fitting the Haldane model. The long-term Cu2+ stress on the ALR aggravated the ammonium affinity and the resistance to substrate self-inhibition of the nitritation sludge, but reduced the resistance to Cu2+ inhibition. Furthermore, Cu2+ acted as uncompetitive inhibitor on nitritation process. Our results provide new insights into the nitritation characteristics under long-term Cu2+ stress. (C) 2020 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
引用
收藏
页码:117 / 127
页数:11
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