六家大型污水处理厂氧化亚氮排放的季节性

M. Sieranen, Helena Hilander, H. Haimi, Timo Larsson, Anna Kuokkanen, A. Mikola
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摘要

一氧化二氮(N2O)是一种消耗臭氧的温室气体,在污水处理厂(WWTP)的碳足迹中占很大比重。要可靠地量化污水处理厂之间差异显著的排放水平,就必须开展针对具体污水处理厂的测量活动。在这项研究中,对五家全规模污水处理厂的一氧化二氮排放量进行了量化,在冷期(水温低于 12 °C)和暖期(水温在 12 至 20 °C)条件下进行了 4 至 19 天的测量活动。测量数据与第六个污水处理厂的长期监测数据一起进行了研究。相对于进水总氮负荷,计算得出的排放因子 (EF) 从接近 0 到 1.8% 不等。研究结果证实,一氧化二氮的排放具有明显的季节性,不同污水处理厂之间的排放水平也存在显著差异,而单一固定的 EF 无法体现这一点。废水温度是排放季节性的一个解释因素。反硝化-硝化活性污泥(AS)工艺的排放量既低又高,而仅硝化活性污泥工艺的排放量一直很高。活性污泥法好氧区末端的亚硝酸盐(NO2-)与寒冷时期一氧化二氮排放量的变化有关。
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Seasonality of nitrous oxide emissions at six full-scale wastewater treatment plants
Nitrous oxide (N2O) is an ozone-depleting greenhouse gas that contributes significantly to the carbon footprint of a wastewater treatment plant (WWTP). Plant-specific measurement campaigns are required to reliably quantify the emission level that has been found to significantly vary between WWTPs. In this study, the N2O emissions were quantified from five full-scale WWTPs during 4- to 19-day measurement campaigns conducted under both cold period conditions (water temperature below 12 °C) and warm period conditions (water temperature from 12 to 20 °C). The measurement data were studied alongside long-term monitoring data from a sixth WWTP. The calculated emission factors (EFs) varied from near 0 to 1.8% relative to the influent total nitrogen load. The results confirmed a significant seasonality of N2O emissions as well as a notable variation between WWTPs in the emission level, which a single fixed EF cannot represent. Wastewater temperature was one explanatory factor for the emission seasonality. Both low and high emissions were measured from denitrifying–nitrifying activated sludge (AS) processes, while the emissions from only nitrifying AS processes were consistently high. Nitrite (NO2-) at the end of the aerobic zones of the AS process was linked to the variability in N2O emissions during the cold period.
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