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Nitrous Oxide Production in a Granule-based Partial Nitritation Reactor: A Model-based Evaluation

机译:氧化二氮氧化物生产在颗粒基部分氮化反应器中:基于模型的评价

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Sustainable wastewater treatment has been attracting increasing attentions over the past decades. However, the production of nitrous oxide (N2O), a potent GHG, from the energy-efficient granule-based autotrophic nitrogen removal is largely unknown. This study applied a previously established N2O model, which incorporated two N2O production pathways by ammonia-oxidizing bacteria (AOB) (AOB denitrification and the hydroxylamine (NH2OH) oxidation). The two-pathway model was used to describe N2O production from a granule-based partial nitritation (PN) reactor and provide insights into the N2O distribution inside granules. The model was evaluated by comparing simulation results with N2O monitoring profiles as well as isotopic measurement data from the PN reactor. The model demonstrated its good predictive ability against N2O dynamics and provided useful information about the shift of N2O production pathways inside granules for the first time. The simulation results indicated that the increase of oxygen concentration and granule size would significantly enhance N2O production. The results further revealed a linear relationship between N2O production and ammonia oxidation rate (AOR) (R2?=?0.99) under the conditions of varying oxygen levels and granule diameters, suggesting that bulk oxygen and granule size may exert an indirect effect on N2O production by causing a change in AOR.
机译:可持续的废水处理在过去几十年中一直在吸引越来越多的注意。然而,从节能颗粒基的自养氮去除中产生氧化亚氮(N 2 O),有效的温室的产生主要是未知的。该研究应用了先前建立的N2O模型,其通过氨氧化细菌(AOB)(AOB反硝化和羟胺(NH 2 OH)氧化)掺入了两个N2O生产途径。两种途径模型用于描述由颗粒基部分亚硝化(PN)反应器的N2O生产,并在颗粒内的N2O分布中提供洞察力。通过将模拟结果与来自PN反应器的同位素测量数据进行比较来评估模型。该模型展示了对N2O动态的良好预测能力,并提供了关于第一次颗粒内部生产途径的转变的有用信息。仿真结果表明,氧浓度和颗粒尺寸的增加将显着增强N2O生产。结果进一步揭示了在不同氧水平和颗粒直径的条件下N2O生产和氨氧化速率(AOR)(R2 =β0.99)之间的线性关系,表明散氧和颗粒尺寸可能对N2O生产产生间接影响通过造成AOR的变化。

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