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Effect of anoxic to aerobic duration ratios on nitrogen removal and nitrous oxide emission in the multiple anoxic/aerobic process

机译:好氧持续时间比对好氧/好氧复合过程中氮去除和一氧化二氮排放的影响

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摘要

Characteristics of nitrogen removal and nitrous oxide (N2O) emission in the multiple anoxic/aerobic (AO) process were examined in three sequencing batch reactors (SBRs) with different anoxic durations (50 min, SBRH; 40 min, SBRM; 30 min, SBRL) and a fixed aerobic duration of 30 min. The highest total inorganic nitrogen removal percentage of 85.8% was obtained in SBRH, while a minimum N2O emission factor of 1.9% was obtained in SBRL. During nitrification batch experiments, the N2O emission factor and emission rate were both lower in SBRH than SBRL. More N2O production was obtained during denitrification in SBRH when denitrifiers utilized intracellular organic carbon. Nitrite reduction by heterotrophs was the main N2O production pathway during simultaneous nitrification and denitrification in SBRH and SBRL, with the N2O emission factor of 31.3% and 36.3%, respectively. Adequate anoxic duration and lowering aerobic nitrite concentrations could be adopted to mitigate N2O emission in the multiple AO process. The dominant microorganisms at the phylum level in all reactors were Proteobacteria and Bacteroidetes, while the abundance of Nitrospira was the highest in SBRH with relatively lowest dissolved oxygen concentrations.
机译:在具有不同缺氧持续时间(50分钟,SBRH; 40分钟,SBRM; 30分钟,SBRL)的三个顺序分批反应器(SBR)中,检查了在多个缺氧/好氧(AO)过程中脱氮和一氧化二氮(N2O)排放的特征。 )和30分钟的固定有氧持续时间。在SBRH中,最高的总无机氮去除率为85.8%,而在SBRL中,最低的N2O排放因子为1.9%。在硝化批处理实验中,SBRH中的N2O排放因子和排放速率均低于SBRL。当反硝化剂利用细胞内有机碳时,在SBRH的反硝化过程中获得更多的N2O产生。在SBRH和SBRL同时硝化和反硝化过程中,异养亚硝酸盐还原是主要的N2O产生途径,N2O排放因子分别为31.3%和36.3%。在多AO过程中,可以采用足够的缺氧持续时间和降低好氧亚硝酸盐浓度来减轻N2O排放。在所有反应器中,菌落水平上的优势微生物为变形杆菌和拟杆菌,而SBRH中的硝化螺菌的丰度最高,而溶解氧浓度最低。

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