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The Influence of COD Fraction Forms and Molecules Size on Hydrolysis Process Developed by Comparative OUR Studies in Activated Sludge Modelling

机译:通过比较我们在活性污泥模型中的研究开发了COD馏分形式和分子大小对水解过程的影响

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摘要

The activated sludge models (ASMs) commonly used by the International Water Association (IWA) task group are based on chemical oxygen demand (COD) fractionations. However, the proper evaluation of COD fractions, which is crucial for modelling and especially oxygen uptake rate (OUR) predictions, is still under debate. The biodegradation of particulate COD is initiated by the hydrolysis process, which is an integral part of an ASM. This concept has remained in use for over 30 years. The aim of this study was to verify an alternative, more complex, modified (Activated Sludge Model No 2d) ASM2d for modelling the OUR variations and novel procedure for the estimation of a particulate COD fraction through the implementation of the GPS-X software (Hydromantis Environmental Software Solutions, Inc., Hamilton, ON, Canada) in advanced computer simulations. In comparison to the original ASM2d, the modified model more accurately predicted the OUR behavior of real settled wastewater (SWW) samples and SWW after coagulation–flocculation (C–F). The mean absolute relative deviations (MARDs) in OUR were 11.3–29.5% and 18.9–45.8% (original ASM2d) vs. 9.7–15.8% and 11.8–30.3% (modified ASM2d) for the SWW and the C–F samples, respectively. Moreover, the impact of the COD fraction forms and molecules size on the hydrolysis process rate was developed by integrated OUR batch tests in activated sludge modelling.
机译:国际水协会(IWA)任务组通常使用的活性污泥模型(ASM)基于化学需氧量(COD)分级。但是,对COD分数的正确评估(对于建模,尤其是对氧气吸收率(OUR)的预测至关重要)仍在争论中。颗粒状COD的生物降解是通过水解过程引发的,而水解过程是ASM不可或缺的一部分。这个概念已经使用了30多年。这项研究的目的是验证另一种更复杂的,经过修改的(活化污泥模型2d)ASM2d,用于通过建立GPS-X软件(Hydromantis)对我们的变化进行建模,并提出了一种新的程序来估算颗粒化学需氧量。环境软件解决方案有限公司,加拿大安大略省汉密尔顿)进行高级计算机仿真。与原始的ASM2d相比,修改后的模型可以更准确地预测实际沉降废水(SWW)样品和混凝-絮凝(CF)后SWW的OUR行为。 OUR的平均绝对相对偏差(MARD)为11.3–29.5%和18.9–45.8%(原始ASM2d),而SWW和C–F样本分别为9.7–15.8%和11.8–30.3%(经修改的ASM2d)。 。此外,COD馏分形式和分子大小对水解过程速率的影响是通过在活性污泥模型中集成的OUR批次测试开发出来的。

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