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Greenhouse gases from membrane bioreactors: Mathematical modelling, sensitivity and uncertainty analysis

机译:膜生物反应器产生的温室气体:数学建模,灵敏度和不确定性分析

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摘要

In this study a new mathematical model to quantify greenhouse gas emissions (namely, carbon dioxide and nitrous oxide) from membrane bioreactors (MBRs) is presented. The model has been adopted to predict the key processes of a pilot plant with pre-denitrification MBR scheme, filled with domestic and saline wastewater. The model was calibrated by adopting an advanced protocol based on an extensive dataset. In terms of nitrous oxide, the results show that an important role is played by the half saturation coefficients related to nitrogen removal processes and the model factors affecting the oxygen transfer rate in the aerobic and MBR tanks. Uncertainty analysis showed that for the gaseous model outputs 88âu80u9393% of the measured data lays inside the confidence bands showing an accurate model prediction.
机译:在这项研究中,提出了一种新的数学模型来量化膜生物反应器(MBR)的温室气体排放量(即二氧化碳和一氧化二氮)。该模型已被采用来预测具有预反硝化MBR方案的试验工厂的关键过程,该方案充满了生活污水和含盐废水。通过采用基于大量数据集的高级协议对模型进行校准。就一氧化二氮而言,结果表明,与脱氮过程相关的半饱和系数以及影响好氧和MBR罐中氧气传输速率的模型因素起着重要作用。不确定性分析显示,对于气态模型输出,88%的测量数据位于置信带内,显示出准确的模型预测。

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