首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Enhanced long-term advanced denitrogenation from nitrate wastewater by anammox consortia: Dissimilatory nitrate reduction to ammonium (DNRA) coupling with anammox in an upflow biofilter reactor equipped with EDTA-2Na/Fe(II) ratio and pH control
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Enhanced long-term advanced denitrogenation from nitrate wastewater by anammox consortia: Dissimilatory nitrate reduction to ammonium (DNRA) coupling with anammox in an upflow biofilter reactor equipped with EDTA-2Na/Fe(II) ratio and pH control

机译:通过Anammox Commortia从氮酸盐结合增加硝酸盐废水的长期高级脱氮:将硝酸铵还原与配备EDTA-2NA / Fe(II)比率和pH控制的上流生物过滤器反应器中的anammox偶联

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摘要

A long-term experiment in an anaerobic ammonium oxidation (anammox) reactor showed that anammox consortia could perform a stable and efficient Fe(II)-dependent dissimilatory nitrate reduction to ammonium (DNRA) coupled to the anammox (DNRA-anammox) process by controlling the EDTA-2Na/Fe(II) ratio and pH, with a total nitrogen removal rate (TNRR) of 0.23 +/- 0.01 kg-N/m(3)/d. Anammox bacteria (Candidatus Kuenenia) were the dominant and functional microbes in such a nitrate wastewater treatment system. Visual MINTEQ analysis showed that the EDTA-2Na/Fe(II) molar ratio affected the influent composition of Fe and EDTA species and hence nitrate removal, while pH influenced both nitrate removal and the coupling degree of the Fe(II)dependent DNRA-anammox process due to its own physiology. The kinetic simulation results showed that excess EDTA-2Na imposed a competitive inhibition on the Fe(II)-dependent DNRA-anammox process, and the Bell-shaped (A), (B), (C) and Ratkowsky models could be used to explore the pH dependency of the Fe(II)-dependent DNRA-anammox process.
机译:厌氧氧化铵(厌氧毒素)反应器中的长期实验表明,厌氧聚焦可以通过控制通过控制(DNRO-Anammox)加工的铵(DNRA)对铵(DNRA)进行稳定和有效的Fe(ii)依赖性的硝酸盐还原物EDTA-2NA / Fe(II)的比率和pH,总氮去除率(TNRR)为0.23 +/- 0.01kg-n / m(3)/ d。 Anammox Bacteria(Candidatus Kuenenia)是这种硝酸盐废水处理系统中的主要和功能性微生物。 Visual MinteQ分析表明,EDTA-2NA / Fe(II)摩尔比对影响Fe和EDTA物种的流入组成,因此硝酸盐去除,而PH影响硝酸盐去除和Fe(II)的偶联程度依赖于DNra-anammox由于自己的生理学而流程。动力学模拟结果表明,过量的EDTA-2NA对Fe(II)依赖性DNRA-anammox工艺施加了竞争性抑制,并且钟形(A),(B),(C)和Ratkowsky模型可用于探索Fe(II)-Dependent DNra-anammox过程的pH依赖性。

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