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Modeling of nitrous oxide production from nitritation reactors treating real anaerobic digestion liquor

机译:处理实际厌氧消化液的硝化反应器中一氧化二氮生产的模型

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摘要

In this work, a mathematical model including both ammonium oxidizing bacteria (AOB) and heterotrophic bacteria (HB) is constructed to predict N2O production from the nitritation systems receiving the real anaerobic digestion liquor. This is for the first time that N2O production from such systems was modeled considering both AOB and HB. The model was calibrated and validated using experimental data from both lab- and pilot-scale nitritation reactors. The model predictions matched the dynamic N2O, ammonium, nitrite and chemical oxygen demand data well, supporting the capability of the model. Modeling results indicated that HB are the dominant contributor to N2O production in the above systems with the dissolved oxygen (DO) concentration of 0.5–1.0 mg O2/L, accounting for approximately 75% of N2O production. The modeling results also suggested that the contribution of HB to N2O production decreased with the increasing DO concentrations, from 75% at DO = 0.5 mg O2/L to 25% at DO = 7.0 mg O2/L, with a corresponding increase of the AOB contribution (from 25% to 75%). Similar to HB, the total N2O production rate also decreased dramatically from 0.65 to 0.25 mg N/L/h when DO concentration increased from 0.5 to 7.0 mg O2/L.
机译:在这项工作中,建立了一个同时包含铵氧化细菌(AOB)和异养细菌(HB)的数学模型,以预测接收实际厌氧消化液的硝化系统中N2O的产生。这是首次考虑到AOB和HB对此类系统的N2O生产进行建模。使用来自实验室规模和中试规模的硝化反应器的实验数据对模型进行校准和验证。该模型预测与动态N2O,铵,亚硝酸盐和化学需氧量数据非常匹配,从而支持了模型的功能。建模结果表明,在上述系统中,HB是N2O产生的主要贡献者,溶解氧(DO)浓度为0.5–1.0μmg O2 / L,约占N2O产生的75%。模拟结果还表明,随着溶解氧浓度的增加,HB对N2O产生的贡献从DO = 0.5 mg O2 / L的75%下降到DO = 7.0 mg O2 / L的25%,并且AOB相应增加。贡献(从25%到75%)。与HB相似,当DO浓度从0.5mg / L升至7.0mg / L时,N2O的总生产率也从0.65降至0.25mg / L / h。

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