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Aerobic N2O emission for activated sludge acclimated under different aeration rates in the multiple anoxic and aerobic process

机译:厌氧和好氧过程中不同曝气速率下活性污泥的好氧N2O排放量得到适应

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Nitrous oxide (N2O) is a potent greenhouse gas that can be emitted during biological nitrogen removal. N2O emission was examined in a multiple anoxic and aerobic process at the aeration rates of 600 mL/min sequencing batch reactor (SBRL) and 1200 mL/min (SBRH). The nitrogen removal percentage was 89% in SBRL and 71% in SBRH, respectively. N2O emission mainly occurred during the aerobic phase, and the N2O emission factor was 10.1% in SBRL and 2.3% in SBRH, respectively. In all batch experiments, the N2O emission potential was high in SBRL compared with SBRH. In SBRL, with increasing aeration rates, the N2O emission factor decreased during nitrification, while it increased during denitrification and simultaneous nitrification and denitrification (SND). By contrast, in SBRH the N2O emission factor during nitrification, denitrification and SND was relatively low and changed little with increasing aeration rates. The microbial competition affected the N2O emission during biological nitrogen removal. (C) 2015 The Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences. Published by Elsevier B.V.
机译:一氧化二氮(N2O)是一种有效的温室气体,可在生物除氮过程中释放出来。在多次缺氧和好氧过程中检查了N2O的排放,曝气速率为600 mL / min顺序分批反应器(SBRL)和1200 mL / min(SBRH)。 SBRL中的脱氮百分比分别为89%和SBRH中的71%。 N2O排放主要发生在好氧阶段,SBRL中的N2O排放因子分别为10.1%和SBRH中的2.3%。在所有批次实验中,与SBRH相比,SBRL中的N2O排放潜力均较高。在SBRL中,随着通气率的增加,N2O排放因子在硝化过程中降低,而在反硝化以及同时硝化和反硝化(SND)期间增加。相比之下,在SBRH中,硝化,反硝化和SND期间的N2O排放因子相对较低,并且随着通气速率的增加而变化很小。微生物竞争影响了生物脱氮过程中N2O的排放。 (C)2015年中国科学院生态环境研究中心。由Elsevier B.V.发布

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