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聚生小丝菌丰度与活性污泥沉降速度和流变性相关——丝状膨胀的定量和建模。

Microthrix parvicella abundance associates with activated sludge settling velocity and rheology - Quantifying and modelling filamentous bulking.

机构信息

Department of Environmental Engineering, Technical University of Denmark, Miljøvej, Building 113, 2800 Kgs. Lyngby, Denmark.

Department of Environmental Engineering, Technical University of Denmark, Miljøvej, Building 113, 2800 Kgs. Lyngby, Denmark.

出版信息

Water Res. 2015 Jul 1;78:121-32. doi: 10.1016/j.watres.2015.04.003. Epub 2015 Apr 13.

Abstract

The objective of this work is to identify relevant settling velocity and rheology model parameters and to assess the underlying filamentous microbial community characteristics that can influence the solids mixing and transport in secondary settling tanks. Parameter values for hindered, transient and compression settling velocity functions were estimated by carrying out biweekly batch settling tests using a novel column setup through a four-month long measurement campaign. To estimate viscosity model parameters, rheological experiments were carried out on the same sludge sample using a rotational viscometer. Quantitative fluorescence in-situ hybridisation (qFISH) analysis, targeting Microthrix parvicella and phylum Chloroflexi, was used. This study finds that M. parvicella - predominantly residing inside the microbial flocs in our samples - can significantly influence secondary settling through altering the hindered settling velocity and yield stress parameter. Strikingly, this is not the case for Chloroflexi, occurring in more than double the abundance of M. parvicella, and forming filaments primarily protruding from the flocs. The transient and compression settling parameters show a comparably high variability, and no significant association with filamentous abundance. A two-dimensional, axi-symmetrical computational fluid dynamics (CFD) model was used to assess calibration scenarios to model filamentous bulking. Our results suggest that model predictions can significantly benefit from explicitly accounting for filamentous bulking by calibrating the hindered settling velocity function. Furthermore, accounting for the transient and compression settling velocity in the computational domain is crucial to improve model accuracy when modelling filamentous bulking. However, the case-specific calibration of transient and compression settling parameters as well as yield stress is not necessary, and an average parameter set - obtained under bulking and good settling conditions - can be used.

摘要

本工作旨在确定相关的沉降速度和流变模型参数,并评估可能影响二沉池中固体混合和输送的丝状微生物群落特征。通过在四个月的测量过程中使用新型柱状设备进行每周两次的间歇沉降测试,估算了受阻、瞬态和压缩沉降速度函数的参数值。为了估算粘度模型参数,使用旋转粘度计对同一污泥样品进行了流变实验。使用靶向微缩单胞菌和绿弯菌门的定量荧光原位杂交(qFISH)分析。本研究发现,微缩单胞菌(主要存在于我们样品中的微生物絮体内部)可以通过改变受阻沉降速度和屈服应力参数,显著影响二沉池的沉降。引人注目的是,绿弯菌属(其丰度是微缩单胞菌的两倍多,且主要从絮体中伸出丝状)的情况并非如此。瞬态和压缩沉降参数的变异性也相当大,与丝状丰度没有显著关联。采用二维轴对称计算流体动力学(CFD)模型来评估丝状膨胀模型的校准方案。我们的结果表明,通过校准受阻沉降速度函数,模型预测可以显著受益于丝状膨胀的明确考虑。此外,在计算域中考虑瞬态和压缩沉降速度对于丝状膨胀模型的准确性至关重要。然而,瞬态和压缩沉降参数以及屈服应力的特定情况校准并不是必需的,可以使用在膨胀和良好沉降条件下获得的平均参数集。

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