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Removal of nutrients and emission of nitrous oxide during simultaneous nitrification, denitrification and phosphorus removal process with metal ions addition
被引:15
|作者:
Chen, Yunfan
[1
]
Wang, Qian
[1
]
Zhao, Shuang
[1
]
Yang, Weihua
[1
]
Wang, Haiying
[1
]
Jia, Wenlin
[1
]
机构:
[1] Jiangsu Normal Univ, Sch Chem & Mat Sci, Xuzhou 221116, Jiangsu, Peoples R China
基金:
中国国家自然科学基金;
关键词:
Metal ions;
Nitrous oxide emission;
SNDPR;
Nutrients removal;
Enzyme activities;
EXTRACELLULAR POLYMERIC SUBSTANCES;
WASTE-WATER;
PARTIAL NITRITATION;
NITRATE REMOVAL;
COPPER;
SLUDGE;
ACCUMULATION;
EPS;
INHIBITION;
GENERATION;
D O I:
10.1016/j.ibiod.2019.05.016
中图分类号:
Q81 [生物工程学(生物技术)];
Q93 [微生物学];
学科分类号:
071005 ;
0836 ;
090102 ;
100705 ;
摘要:
The impacts of metal ions (Cu2+ and Fe3+) on nutrients removal and nitrous oxide (N2O) emission during the simultaneous nitrification, denitrification and phosphorus removal (SNDPR) process were evaluated and the mechanism was further investigated. Results showed that both Cu2+ and Fe3+ addition at moderate concentrations enhanced nitrogen removal by reinforcing the denitrification process. The long-term addition of Fe3+ weakened the removal of phosphorus by 2.3%-11.7%, due to the suppression of polyphosphate-accumulating organisms (PAOs) growth and activity. N2O production and emission factor decreased greatly by the addition of Cu2+. This decrease was caused by the enhancement of nitrite reductase and N2O reductase (N2OR) activities. On the contrary, Fe3+ addition at moderate concentrations stimulated the N2O production. Fe3+ enhanced the nitric oxide reductase (NOR) and increased the NOR/N2OR ratio, leading to the accumulation of N2O. Moreover, addition of Fe3+ caused a reduction in polyhydroxyalkanoates synthesis at the anaerobic stage and renforced glycogen-accumulating organisms (GAOs) activity instead of PAOs activity, resulting in increased N2O accumulation. Addition of high concentrations of metal ions (5 mg/L Cu2+ and 60 mg/L Fe3+ in this study) suppressed the nutrients removal and stimulated the N2O production, partly due to the inhibition of the bacterial activity.
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页码:143 / 150
页数:8
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