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Application and kinetic evaluation of upflow anaerobic biofilm reactor for nitrogen removal from wastewater by Anammox process

机译:上流厌氧生物膜反应器在厌氧氨氧化工艺中去除废水中氮的应用及动力学评价

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摘要

The lab-scale upflow anaerobic biofilm reactor was successfully operated for the treatment of synthetic wastewater with high nitrogen load by Anammox (anaerobic ammonium oxidation) process. During the entire period of operation, the reactor temperature was kept at 35±1°C. The operational strategy consisted of both increasing the ammonium and nitrite concentrations from 60 to 700mgN/L and from 80 to 920 mgN/L, respectively and decreasing the hydraulic retention time from 24 to 6 h, at each step. The highest achieved removal efficiency of ammonium and nitrite were 91 and 93%, respectively. Consequently, due to their acceptable performance for nitrogen removal in previous researches, modified Stover-Kincannon and Grau second-order models were used in this study. According to the experiment results, the model validity testing showed that the Stover-Kincannon model was a little more appropriate for the description of nitrogen removal in the reactor, even though both models gave high correlation coefficients (R2=0.999).
机译:实验室规模的上流厌氧生物膜反应器通过厌氧氨氧化(厌氧铵氧化)工艺成功运行,用于处理高氮负荷的合成废水。在整个操作期间,反应器温度保持在35±1℃。该操作策略包括将铵和亚硝酸盐的浓度分别从60增加到700 mgN / L和从80增加到920 mgN / L,并将水力停留时间从24 h减少到6 h。去除铵和亚硝酸盐的最高效率分别为91%和93%。因此,由于以前的研究在脱氮方面具有可接受的性能,因此在本研究中使用了改进的Stover-Kincannon和Grau二级模型。根据实验结果,模型有效性测试表明,即使两个模型都具有很高的相关系数(R 2 ),Stover-Kincannon模型也更适合描述反应器中的脱氮。 = 0.999)。

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