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Limitations of ASM1 and ASM3: a comparison based on batch oxygen uptake rate profiles from different CD full-scale wastewater treatment plants

机译:ASM1和ASM3的局限性:基于来自不同CD满规模废水处理厂的批量氧气吸收率曲线的比较

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摘要

The two most popular models for the description of the biological COD removal are ASM1 and ASM3. However, some numerical inconsistencies arise when using these models to interpret the data obtained in short-term respirometric batch experiments. In this study, both models are fitted to four different respirometric batch profiles obtained with biomass from different WWTP. The parameter estimation results and the practical (local) identifiability are analysed, and the limitations of both models are discussed. The growth yield obtained by fitting ASM1 to the short-term respirometric batch profiles is higher than the default one, as well as the storage yield obtained by fitting ASM3 is lower than the default one. Based on these values, possible improvements to the modelling of the biological COD removal, such as the inclusion of simultaneous growth and storage on external substrate, are proposed.
机译:用于描述生物COD去除的两个最受欢迎的模型是ASM1和ASM3。但是,使用这些模型解释在短期呼吸批量实验中获得的数据时,会出现一些数值不一致的情况。在这项研究中,两个模型都适合于使用不同污水处理厂的生物质获得的四个不同的呼吸计量批次配置文件。分析了参数估计结果和实际(局部)可识别性,并讨论了这两种模型的局限性。通过将ASM1拟合到短期呼吸计量批次配置文件获得的生长产量高于默认值,并且通过将ASM3拟合得到的存储产量低于默认值。基于这些值,提出了对生物化学需氧量去除建模的可能改进,例如在外部基质上同时生长和储存。

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