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N2O emission during wastewater nitrification with enriched nitrifying bacteria

机译:富含硝化细菌的硝化废水中的N2O排放

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Nitrifying bacteria were enriched in a sequencing batch reactor and used to quantify N2O emission specifically by wastewater nitrification while minimizing or preventing the chances of denitrification during the experiment. Batch wastewater nitrification was carried out in a reactor (working volume 0.5L) at different aeration rates (10 and 20mL/min) and -N concentrations (25, 50, and 100mg/L). Wastewater nitrification efficiencies were more than 97% in all the cases except at 100mg/L with 10mL/min aeration rate (92%). Cumulative N2O emission reached 0.2, 1.15, and 2.67mg (aeration: 10mL/min) and 0.37, 2.18, and 3.08mg (aeration: 20mL/min) at the initial -N concentration of 25, 50, and 100mg/L, respectively. N2O emission yields (kg N2O-N per kg processed -N) were 0.016-0.058 and 0.029-0.088 at 10 and 20mL/min aeration rate, respectively. The yields were higher than that of denitrification. The results showed that cumulative N2O emission and the yield increased at higher ammonium concentration and aeration rate. Accumulated nitrite during nitrification also contributed and played a pivotal role in N2O emission.
机译:硝化细菌在分批测序反应器中富集,并用于通过废水硝化来量化N2O排放,同时最大程度减少或防止实验过程中反硝化的机会。分批废水硝化在反应器(工作容积0.5L)中以不同的曝气速率(10和20mL / min)和-N浓度(25、50和100mg / L)进行。除100mg / L和10mL / min的曝气率(92%)外,所有情况下的废水硝化效率均超过97%。在-N初始浓度分别为25、50和100mg / L时,累积N2O排放分别达到0.2、1.15和2.67mg(充气:10mL / min)和0.37、2.18和3.08mg(充气:20mL / min)。 。在10和20mL / min的充气速率下,N2O排放量(kg N2O-N / kg处理后的-N)分别为0.016-0.058和0.029-0.088。收率高于反硝化的收率。结果表明,在较高的铵浓度和通气速率下,累积的N2O排放和产量增加。硝化过程中累积的亚硝酸盐也对N2O排放起了重要作用。

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