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Combined hydraulic and biological modelling and full-scale validation of SBR process

机译:水力和生物建模相结合以及SBR工艺的全面验证

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The biological reactions during the settling and decant periods of Sequencing Batch Reactors (SBRs) are generally ignored as they are not easily measured or described by modelling approaches. However, important processes are taking place, and in particular when the influent is fed into the bottom of the reactor at the same time (one of the main features of the UniFed process), the inclusion of these stages is crucial for accurate process predictions. Due to the vertical stratification of both liquid and solid components, a one-dimensional hydraulic model is combined with a modified ASM2d biological model to allow the prediction of settling velocity, sludge concentration, soluble components and biological processes during the non-mixed periods of the SBR. The model is calibrated on a full-scale UniFed SBR system with tracer breakthrough tests, depth profiles of particulate and soluble compounds and measurements of the key components during the mixed aerobic period. This model is then validated against results from an independent experimental period with considerably different operating parameters. In both cases, the model is able to accurately predict the stratification and most of the biological reactions occurring in the sludge blanket and the supernatant during the non-mixed periods. Together with a correct description of the mixed aerobic period, a good prediction of the overall SBR performance can be achieved. [References: 12]
机译:测序间歇反应器(SBR)在沉降和倾析期间的生物反应通常被忽略,因为它们不容易通过建模方法进行测量或描述。但是,重要的过程正在发生,特别是当将进料液同时进料到反应器底部时(UniFed过程的主要特征之一),这些阶段的加入对于准确的过程预测至关重要。由于液体和固体组分的垂直分层,一维水力模型与改进的ASM2d生物学模型相结合,可以预测在非混合过程中的沉降速度,污泥浓度,可溶组分和生物过程。 SBR。该模型在全面的UniFed SBR系统上进行了校准,该系统具有示踪剂突破性测试,颗粒和可溶性化合物的深度分布以及有氧运动期间关键成分的测量。然后,根据独立实验阶段的结果(具有明显不同的操作参数)验证该模型。在这两种情况下,该模型都能够准确预测分层以及非混合期间污泥层和上清液中发生的大多数生物反应。结合正确的混合好氧期描述,可以很好地预测整体SBR性能。 [参考:12]

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