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Bio-augmentation by nitrification with return sludge

机译:通过硝化与回流污泥进行生物强化

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Bio-augmentation can be used to obtain nitrification in activated sludge processes that operate at sub-optimal solid retention times. In this study, we evaluated the potential of augmenting the endogenous nitrifying bacteria, by implementing a nitrification reactor in the sludge return line. This reactor can be fed with an internal N-rich flow (e.g. effluent from the sludge treatment) or with an external ammonium source. A mathematical model based on ASM1 was developed and used to evaluate the potential of this technique. The bio-augmentation studied here aimed to enhance the nitrification process of highly loaded activated sludge systems. A calibrated simulation model of a high loaded wastewater treatment plant in The Netherlands was used for this study. A side stream process (the named BABE process) was included in the simulation. This process was fed with the ammonia-rich water generated by sludge digestion and subsequent thickening by centrifugation (the so-called rejectwater). An external source (artificial) of ammonium was also considered to evaluate the differences between the two origins of ammonium. The results showed that with the augmentation process, high loaded activated sludge systems can achieve nitrification even at low winter temperatures. The best effect is obtained for systems operating at approximately 50% of the minimal SRT without augmentation. The use of an internal ammonia source is more effective than an external source. The results of this study give a quantitative basis for the design of process internal bio-augmentation processes and the effect on the N-removal capacity of the treatment plant.
机译:生物强化可用于获得活性污泥过程中的亚硝化作用,该过程在次佳的固体保留时间下运行。在这项研究中,我们通过在污泥回流管线中实施硝化反应器,评估了增加内源硝化细菌的潜力。该反应器可以被供给内部富氮流(例如来自污泥处理的流出物)或外部铵源。开发了基于ASM1的数学模型,并将其用于评估该技术的潜力。本文研究的生物增强旨在增强高负荷活性污泥系统的硝化过程。这项研究使用了荷兰某高负荷废水处理厂的校准模拟模型。模拟中包括侧流过程(称为BABE过程)。向该过程中喂入污泥消化产生的富氨水,然后通过离心浓缩(所谓的废水)。还考虑使用外部铵源(人工)来评估两种铵源之间的差异。结果表明,通过增强过程,即使在较低的冬季温度下,高负荷的活性污泥系统也可以实现硝化作用。在不增加最小SRT约50%的系统上获得最佳效果。内部氨源的使用比外部源更有效。这项研究的结果为工艺内部生物增强工艺的设计以及对处理厂脱氮能力的影响提供了定量依据。

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