首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Nitrogen removal characteristics of indigenous aerobic denitrifiers and changes in the microbial community of a reservoir enclosure system via in situ oxygen enhancement using water lifting and aeration technology
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Nitrogen removal characteristics of indigenous aerobic denitrifiers and changes in the microbial community of a reservoir enclosure system via in situ oxygen enhancement using water lifting and aeration technology

机译:本地需氧反硝化器的脱氮特性以及通过使用提水和曝气技术原位增氧的储层围护系统微生物群落的变化

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Indigenous aerobic denitrifiers of a reservoir system were enhanced in situ by water lifting and aeration technology. Nitrogen removal characteristics and changes in the bacterial community were investigated. Results from a 30-day experiment showed that the TN in the enhanced water system decreased from 1.08-2.02 to 0.75-0.91 mg/L and that TN removal rates varied between 21.74% and 52.54% without nitrite accumulation, and TN removal rate of surface sediments reached 41.37 +/- 1.55%. The densities of aerobic denitrifiers in the enhanced system increased. Furthermore, the enhanced system showed a clear inhibition of Fe, Mn, and P performances. Community analysis using Miseq showed that diversity was higher in the in situ oxygen enhanced system than in the control system. In addition, the microbial composition was significantly different between systems. It can be concluded that in situ enhancement of indigenous aerobic denitrifiers is very effective in removing nitrogen from water reservoir systems. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过提水和曝气技术原位增强了储层系统中的好氧反硝化装置。研究了脱氮特性和细菌群落的变化。 30天的实验结果表明,强化水系统中的总氮从1.08-2.02降低至0.75-0.91 mg / L,无亚硝酸盐积累的总氮去除率在21.74%至52.54%之间变化,并且表面总氮去除率沉积物达到41.37 +/- 1.55%。增强系统中需氧反硝化器的密度增加。此外,增强的系统显示出对Fe,Mn和P性能的明显抑制。使用Miseq进行的社区分析表明,原位氧增强系统的多样性高于对照系统。另外,系统之间的微生物组成也有显着差异。可以得出结论,就地增强本地有氧反硝化剂对于从储水系统中去除氮非常有效。 (C)2016 Elsevier Ltd.保留所有权利。

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