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Dynamics of nitrogen oxides emission from a full-scale sludge liquor treatment plant with nitritation

机译:大型污泥硝化硝化厂的氮氧化物排放动态

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Biological treatment in wastewater treatment plants (WWTPs) is a source of nitrogen oxides (N_2O, NO and NO_2) emitted to the atmosphere. Aerobic ammonia-oxidising bacteria (AOB) have been suggested to be the main source of these emissions. In a full-scale sludge liquor treatment plant at Sj?lunda WWTP, it was shown that significant emissions of N 2O, NO and NO_2 do occur. The plant is operated with nitritation alone, which gives an environment enriched in aerobic AOB. During normal operation, emissions of N _2O, NO and NO_2 were found to be 3.8%, 0.06% and 0.01% of the ammonium nitrogen load. The N_2O emissions were larger than the recommended estimated figure of the Intergovernmental Panel on Climate Change (IPCC) for a complete wastewater treatment plant. The N_2O emissions correlated positively with the length of the previous anoxic period, i.e., settling and decantation, and with the ammonium oxidation rate. The NO and NO_2 emission profiles were similar and dependent on ammonium oxidation and DO level, but the NO_2 concentrations were always lower.
机译:废水处理厂(WWTP)中的生物处理是排放到大气中的氮氧化物(N_2O,NO和NO_2)的来源。有氧氨氧化细菌(AOB)被认为是这些排放的主要来源。在Sj?lunda污水处理厂的大型污泥液处理厂中,发现确实发生了N 2O,NO和NO_2的大量排放。该工厂仅在硝化作用下运行,从而提供了富含需氧AOB的环境。在正常运行期间,发现N _2O,NO和NO_2的排放量分别为铵态氮负荷的3.8%,0.06%和0.01%。 N_2O排放量大于政府间气候变化专门委员会(IPCC)所建议的完整废水处理厂的估计数字。 N_2O排放与上一个缺氧期的长度(即沉降和倾析)以及铵的氧化速率呈正相关。 NO和NO_2的排放曲线相似,并且取决于铵氧化和DO含量,但NO_2的浓度始终较低。

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