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首页> 外文期刊>Journal of Environmental Engineering >Solid-Phase Fe(II)-Mediated Autotrophic Denitrification for Nitrate Removal from Wastewater with a Low Carbon-to-Nitrogen Ratio
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Solid-Phase Fe(II)-Mediated Autotrophic Denitrification for Nitrate Removal from Wastewater with a Low Carbon-to-Nitrogen Ratio

机译:固相Fe(II)介导的自养反硝化,用于硝酸盐与氮氮比的废水中除去

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摘要

In this study, three solid-phase iron sources-FeS, FeCO3, and sponge iron-were used to investigate the autotrophic denitrification efficiency in low-carbon-to-nitrogen (C/N) wastewater. Among these iron sources, FeS obtained the best efficiency, with a nitrate removal of 96% at 120 h under C/N=1 and NO3--N=40mgL-1. Then, batch experiments with FeS as an electron donor were conducted to evaluate the effect of different influent C/N ratios and NO3--N concentrations. According to the results of the experiments, the nitrate removal efficiency of the mixotrophic system was greater than that of the pure autotrophic system under low-C/N ratios, and the TN (total nitrogen) removal efficiency was also enhanced. In the mixotrophic system, the nitrate removal reached 98% in 48 h under a C/N ratio of 1, and NO3--N was in the range of 20mgL-1 to 40mgL-1. Additionally, some accumulation of ammonia was observed in the nitrogen conversion process. According to microbial analysis, the synergistic action of heterotrophic and autotrophic denitrifiers improved nitrate removal.
机译:在该研究中,使用三种固相铁来源 - FES,FECO3和海绵铁 - 用于研究低碳 - 氮(C / N)废水中的自养脱氮效率。在这些铁源中,FE获得的最佳效率,硝酸盐除去96%在120小时,C / N = 1和NO3 - n = 40mg <粗体> L -1。然后,进行了作为电子给体的FES的分批实验,以评估不同流入的C / N比和NO3 - N浓度的效果。根据实验结果,在低C / N比下,混合营养系统的硝酸盐去除效率大于纯自养系统的纯自养系统,并且还增强了TN(总氮)去除效率。在混纺系统中,在C / N比的48小时内达到98%的硝酸盐,NO3-n在20mg <粗体> l -1至40mg <粗体的范围内 -1。另外,在氮转换过程中观察到氨的一些积累。根据微生物分析,异养和自养脱氮剂的协同作用改善了硝酸盐去除。

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