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Transient Response of Aerobic and Anoxic Activated Sludge Activities to Sudden Substrate Concentration Changes

机译:好氧和缺氧活性污泥活性对突变基质浓度变化的瞬态响应

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摘要

The state-of-the-art understanding of activated sludge processes as summarized in activated sludge models (ASMs) predicts an instantaneous increase in the biomass activity (which is measured, e.g., by the corresponding respiration rate OUR, NUR, etc.) under sudden substrate concentration changes. Experimental data (e.g., short-term batch respiration experiments under aerobic or anoxic conditions) collected for the calibration of the dynamic models (ASMs) often exhibit a transient phenomenon while attaining maximum activity, which cannot be explained by the current understanding of the activated sludge process. That transient phenomenon exhibits itself immediately upon addition of a substrate source to an endogenously respiring activated sludge sample and it usually takes a few minutes until the activated sludge reaches its maximum possible rate under given environmental conditions. This discrepancy between the state-of-the-art model and the experimental data is addressed in detail in this investigation. It is shown that the discrepancy is not caused by an error in the experimental set-up/data but it is rather due to model inadequacy. Among the hypotheses proposed, it appears that this transient response of the activated sludge most likely results from the sequence of intracellular reactions involved in substrate degradation by the activated sludge. Results from studies performed elsewhere with pure cultures (S. cerevisae and E. coli) support the hypothesis. The transient phenomenon can be described by a dynamic metabolic network model or by a simple first-order model, as adopted in this study. The transient phenomenon occurring in short-term batch respiration experiments is shown to interfere severely with parameter estimation if not modeled properly (2.8%, 11.5%, and 16.8% relative errors [average of three experiments] on Y-H, mu(maxH), and K-S, respectively). Proper modeling of this transient phenomenon whose time constant is on the order of minutes (1 to 3 min) is expected to contribute fundamentally to a better understanding and modeling of Orbal, carousel, and SBR-type treatment plants with fast-alternating process conditions, although such studies are beyond the scope of this report. (C) 2004 Wiley Periodicals, Inc.
机译:活性污泥模型(ASM)中总结的对活性污泥过程的最新了解预测了在以下条件下生物质活性的瞬时增加(例如,通过相应的呼吸速率OUR,NUR等进行测量)。底物浓度突然变化。为校准动态模型(ASM)而收集的实验数据(例如,在有氧或缺氧条件下的短期间歇呼吸实验)通常会在达到最大活性的同时出现瞬态现象,这不能通过当前对活性污泥的理解来解释。处理。在向内源性呼吸的活性污泥样品中添加底物源后,这种瞬态现象立即显现出来,通常需要几分钟,直到在给定的环境条件下活性污泥达到其最大可能速率。最新的模型与实验数据之间的差异在本研究中得到了详细解决。结果表明,差异不是由实验装置/数据中的错误引起的,而是由模型的不足引起的。在提出的假设中,似乎活性污泥的这种瞬态响应很可能是由与活性污泥降解底物有关的细胞内反应序列引起的。在其他地方使用纯培养物(酿酒酵母和大肠杆菌)进行的研究结果也支持这一假说。瞬态现象可以通过本研究中采用的动态代谢网络模型或简单的一阶模型来描述。如果在模型中未正确建模,则短期间歇呼吸实验中出现的瞬态现象会严重干扰参数估计(YH,mu(maxH)和YH的相对误差[三个实验的平均值] [三个实验的平均值] KS)。正确地建模时间常数大约为几分钟(1到3分钟)的这种瞬态现象,有望从根本上有助于更好地理解和建模具有快速变化的工艺条件的Orbal,旋转木马和SBR型处理厂,尽管此类研究超出了本报告的范围。 (C)2004年Wiley Periodicals,Inc.

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