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Developmentof an Extended ASM3 Model for Predictingthe Nitrous Oxide Emissions in a Full-Scale Wastewater Treatment Plant

机译:发展历程ASM3扩展模型的预测大型废水处理厂中的一氧化二氮排放量

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摘要

An Activated Sludge Model #3 (ASM3) based, pseudomechanistic model describing nitrous oxide (N2O) production was created in this study to provide more insight into the dynamics of N2O production, consumption, and emissions at a full-scale wastewater treatment plant (WWTP). N2O emissions at the studied WWTP are monitored throughout the plant with a Fourier transform infrared analyzer, while the developed model encountered N2O production in the biological reactors via both ammonia oxidizing bacteria (AOB) nitrification and heterotrophic denitrifiers. Additionally, the stripping of N2O was included by applying a KLa-based approach that has not been widely used before. The objective was to extend the existing ASM3-based model of the plant and assess how well the full-scale emissions could be predicted with the selected model. The validity and applicability of the model were tested by comparing the simulation results with the comprehensive online data. The results show that the ASM3-based model can be successfully extended and applied to modeling N2O production and emissions at a full-scale WWTP. These results demonstrate that the biological reactor can explain most of the N2Oemissions at the plant, but a significant proportion of the liquid-phaseN2O is further transferred during the process.
机译:在此研究中,创建了一个基于活化污泥模型#3(ASM3)的伪机制模型来描述一氧化二氮(N2O)的产生,以提供对大型污水处理厂(WWTP)中N2O产生,消耗和排放动态的更多见解。 )。使用傅立叶变换红外分析仪在整个工厂中监测所研究废水处理厂的N2O排放,而开发的模型遇到了生物反应器中通过氨氧化细菌(AOB)硝化和异养反硝化器产生N2O的问题。此外,通过应用以前未广泛使用的基于KLa的方法,还包括了N2O的汽提。目的是扩展工厂现有的基于ASM3的模型,并评估使用所选模型可以预测的满量程排放量。通过将仿真结果与综合在线数据进行比较,测试了模型的有效性和适用性。结果表明,基于ASM3的模型可以成功扩展,并可以用于在全面污水处理厂中对N2O产生和排放进行建模。这些结果表明生物反应器可以解释大多数N2O工厂的排放量,但很大一部分是液相N2O在此过程中进一步转移。

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