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Nitrogen Removal and Nitrous Oxide Emission in a Constant-Flow Multiple Anoxic and Aerobic Process

机译:恒流多氧氧基和有氧过程中的氮去除和氧化二氮发射

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摘要

Nitrogen removal and nitrous oxide (N2O) emission in a lab-scale constant-flow multiple anoxic (A) and aerobic (O) process, combined with the addition of suspended carriers, were investigated. Under steady state, 99.9% of ammonia nitrogen (NH4-N), 76.8% of orthophosphate, and 80.2% of total inorganic nitrogen removal efficiency was achieved. The N2O emission factor during nitrification was 0.8-1.9% of the oxidized NH4-N. The emission factor increased to 7.4-45.9% with the coexistence of heterotrophic activities. Extending the anoxic time from 30 to 90 min reduced the N2O emission factor from 1.6 to 1.0%. N2O emission was stimulated with nitrite (NO2-N) as the electron acceptor, with the N2O emission factor of 5.2-5.6%. Denitrification with internal organic carbon contributed 6.8% of reduced NO2-N to N2O. NO2-N might exert a crucial role in N2O emission independent of carbon source. For the acclimated microbial communities, Nitrospira and Nitrosospira were the dominant nitrifiers and responsible for the N2O emission during nitrification. Azospira, Dechloromonas, Flavobacterium, Pseudomonas, and unclassified genus of family Comamonadaceae might be responsible for N2O emission during denitrification. These findings may guide the design of multiple AO process for controlling N2O emission.
机译:研究了实验室规模恒定流量多氧氧基(A)和有氧(O)方法的氮除去和氧化二氮(N 2 O)发射,与添加悬浮载体组合。在稳态下,达到99.9%的氨氮(NH4-N),76.8%的正磷酸盐,占总无机氮去除效率的80.2%。硝化过程中的N2O排放因子为氧化NH4-N的0.8-1.9%。排放因子随着异养殖活动的共存而增加至7.4-45.9%。将缺氧时间从30〜90分钟扩展,将N2O排放因子降低1.6%至1.0%。用亚硝酸盐(NO2-N)作为电子受体刺激N2O发射,N2O排放因子为5.2-5.6%。用内部有机碳的脱氮导致6.8%的NO 2-N还原至N2O。 NO2-N可能在与碳源无关的N2O排放中发挥至关重要的作用。对于适应的微生物群落,Nitrospira和Nitrosospira是主要的氮气,并负责硝化过程中的N2O发射。 Azospira,Dechloromonas,Flavobacterium,假单胞菌和无分类的家庭属植物群岛的植物可能负责在反硝化期间的N2O发射。这些发现可以指导用于控制N2O发射的多个AO过程的设计。

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