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Comparison of Simultaneous Nitrification and Denitrification for Three Different Reactors

机译:三种不同反应器同时硝化和反硝化的比较

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Discharge of high NH4-N containing wastewater into water bodies has become a critical and serious issue due to its negative impact on water and environmental quality. In this research, the performance of three different reactors was assessed and compared with regard to the removal of NH4-N from wastewater. The highest nitrogen removal efficiency of 98.3% was found when the entrapped sludge reactor (ESR), in which the sludge was entrapped in polyethylene glycol polymer, was used. Under intermittent aeration, nitrification and denitrification occurred simultaneously in the aerobic and anaerobic periods. Moreover, internal carbon was consumed efficiently for denitrification. On the other hand, internal carbon consumption was not found to occur in the suspended sludge reactor (SSR) and the mixed sludge reactor (MSR) and this resulted in nitrogen removal efficiencies of SSR and MSR being 64.7 and 45.1%, respectively. Nitrification and denitrification were the main nitrogen removal processes in the aerobic and anaerobic periods, respectively. However, due to the absence of sufficient organic carbon, denitrification was uncompleted resulting in high NO3-N contents in the effluent.
机译:由于其对水和环境质量的负面影响,将含高NH4-N的废水排入水体已成为一个关键而严重的问题。在这项研究中,对三种不同反应器的性能进行了评估,并就从废水中去除NH4-N进行了比较。当使用将污泥截留在聚乙二醇聚合物中的截留污泥反应器(ESR)时,发现最高的脱氮效率为98.3%。在间歇曝气条件下,好氧和厌氧阶段同时发生硝化和反硝化作用。此外,内部碳被有效地消耗以进行反硝化。另一方面,在悬浮污泥反应器(SSR)和混合污泥反应器(MSR)中未发现内部碳消耗,这导致SSR和MSR的脱氮效率分别为64.7%和45.1%。硝化和反硝化分别是有氧和厌氧时期的主要脱氮过程。但是,由于缺乏足够的有机碳,反硝化未完成,导致废水中的NO3-N含量很高。

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