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SUBSTRATE FLUX INTO STORAGE AND GROWTH IN RELATION TO ACTIVATED SLUDGE MODELING

机译:与活性污泥模型相关的将基质通量存储和增长

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The recently proposed IAWQ activated sludge model No. 3 (ASM3) was evaluated for it's capacity in describing heterotrophic aerobic COD conversions. Hereto model simulations were com- pared to observed conversions in a laboratory sequencing batch reactor (SBR) with acetate as the sole substrate in the influent, no nitrification occurred. ASM3 was simplified to take only those processes which were important in the reactor studied into account. In general it was possible to describe the overall conversions including oxygen uptake rates. However, the difference in growth rate between feast and famine phase could not be described accurately. This was due to the fact that ASM3 allows growth on storage polymers only. Therefore a new model structure was proposed in which growth on external substrate is allowed. This model structure was further compared to experimental results at different temperatures. Since the polymer formation seemed to be strongly reduced at higher temperatures it was needed to describe this process with a negative temperature coefficient.
机译:对最近提出的IAWQ 3号活性污泥模型(ASM3)进行描述异养需氧COD转化的能力进行了评估。迄今为止,将模型模拟与在实验室顺序分批反应器(SBR)中观察到的转化率进行了比较,其中乙酸盐是进水的唯一底物,没有发生硝化反应。 ASM3被简化为仅考虑那些在研究的反应堆中很重要的过程。通常,可以描述包括氧气吸收率在内的总转化率。但是,无法准确地描述盛宴期和饥荒期之间生长速率的差异。这是因为ASM3仅允许在存储聚合物上生长。因此,提出了一种新的模型结构,其中允许在外部衬底上生长。将该模型结构与不同温度下的实验结果进行了比较。由于聚合物的形成似乎在较高温度下大大降低,因此需要用负温度系数描述该过程。

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