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Dinitrogen oxide (N2O) emission in the treatment of urban wastewater via nitrite: influence of liquid kinetic rates

机译:亚硝酸盐处理城市废水中的二氧化氮(N2O)排放:液体动力学速率的影响

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摘要

N2O emission was studied in a continuous process via nitrite for real urban wastewater treatment. The relationship between the gaseous forms and the liquid kinetic rates of nitritation and denitritation was investigated. N2O mass load and global nitrogen mass balance were quantified. The emission factor of the N2O (gN(2)Oemitted/kg mixed liquor volatile suspended solids [MLVSS]/d) was calculated. Incrementing the nitritation rate permits the reduction of N2O emission by 78%. Instead, an N2O decrease of 93% was observed by increasing the denitritation velocity. The determinant role of the anoxic phase in the production of dinitrogen oxide was identified. The contribution of N2O emission from the anoxic phase (4.8 gN(2)O-N/kgMLVSS/d) was enhanced under limiting denitritation conditions (kd lower than 0.08 kgNOx-N/kgMLVSS/d). N2O production increased by five times with the accumulation of nitrites in the solution up to 200 mg/L. Strict correlation between free ammonia concentration and nitritation rate was found as a possible signal of further ammonia oxidizing bacteria selection.
机译:通过亚硝酸盐的连续过程研究了N2O排放,用于实际的城市废水处理。研究了硝化和反硝化的气态形式与液体动力学速率之间的关系。量化N2O质量负荷和总氮质量平衡。计算出N2O的排放因子(gN(2)排放/ kg混合液挥发性悬浮固体[MLVSS] / d)。增加硝化速率可使N2O排放减少78%。相反,通过提高反硝化速度可观察到N2O降低93%。确定了缺氧相在生产二氧化氮中的决定性作用。在有限的反硝化条件下(kd低于0.08 kgNOx-N / kgMLVSS / d),缺氧相中N2O排放的贡献(4.8 gN(2)O-N / kgMLVSS / d)得到了增强。随着溶液中亚硝酸盐的积累达到200 mg / L,N2O产量增加了五倍。发现游离氨浓度和硝化速率之间的严格相关性是进一步选择氨氧化细菌的可能信号。

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