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Emission of nitrous oxide and nitric oxide from a full-scale single-stage nitritation-anammox reactor

机译:大型单级硝化-氨氧化反应器排放的一氧化二氮和一氧化氮

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At a full-scale single-stage nitritation-anammox reactor, off-gas measurement for nitric oxide (NO) and nitrous oxide (N2O) was performed. NO and N2O are environmental hazards, imposing the risk of improving water quality at the cost of deteriorating air quality. The emission of NO during normal operation of a single-stage nitritation-anammox process was 0.005% of the nitrogen load while the N2O emission was 1.2% of the nitrogen load to the reactor, which is in the same range as reported emission from other full-scale wastewater treatment plants. The emission of both compounds was strongly coupled. The concentration of NO and N2O in the off-gas of the single-stage nitritation-anammox reactor was rather dynamic and clearly responded to operational variations. This exemplifies the need for time-dependent measurement of NO and N2O emission from bioreactors for reliable emission estimates. Nitrite accumulation clearly resulted in increased NO and N2O concentrations in the off-gas, yielding higher emission levels. Oxygen limitation resulted in a decrease in NO and N2O emission, which was unexpected as oxygen limitation is generally assumed to cause increased emissions in nitrogen converting systems. Higher aeration flow dramatically increased the NO emission load and also seemed to increase the N2O emission, which stresses the importance of efficient aeration control to limit NO and N2O emissions.
机译:在大型单级硝化-氨氧化反应器中,对一氧化氮(NO)和一氧化二氮(N2O)进行废气测量。 NO和N2O危害环境,存在以恶化空气质量为代价提高水质的风险。在单阶段硝化-氨氧化过程的正常运行过程中,NO的排放量为反应器氮负荷的0.005%,而N2O排放量为反应器氮负荷的1.2%,与报道的其他全氮排放量相同。规模的废水处理厂。两种化合物的发射都是强耦合的。单级硝化-厌氧氨反应器废气中的NO和N2O浓度相当动态,并且明显响应运行变化。这举例说明了对生物反应器中NO和N2O排放进行时间依赖性测量以进行可靠的排放估算的需要。亚硝酸盐的积累显然导致废气中NO和N2O浓度增加,产生更高的排放水平。氧气限制导致NO和N2O排放减少,这是出乎意料的,因为通常认为氧气限制会导致氮转化系统中排放增加。较高的曝气流量显着增加了NO排放负荷,并且似乎也增加了N2O排放,这强调了有效的曝气控制对限制NO和N2O排放的重要性。

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