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基于模型的制革废水处理厂脱氮评估

Model-based evaluation of nitrogen removal in a tannery wastewater treatment plant.

作者信息

Moussa M S, Rojas A R, Hooijmans C M, Gijzen H J, van Loosdrecht M C M

机构信息

UNESCO-IHE Institute for Water Education, 2601 DA Delft, the Netherlands.

出版信息

Water Sci Technol. 2004;50(6):251-60.

Abstract

Computer modelling has been used in the last 15 years as a powerful tool for understanding the behaviour of activated sludge wastewater treatment systems. However, computer models are mainly applied for domestic wastewater treatment plants (WWTPs). Application of these types of models to industrial wastewater treatment plants requires a different model structure and an accurate estimation of the kinetics and stoichiometry of the model parameters, which may be different from the ones used for domestic wastewater. Most of these parameters are strongly dependent on the wastewater composition. In this study a modified version of the activated sludge model No. 1 (ASM 1) was used to describe a tannery WWTP. Several biological tests and complementary physical-chemical analyses were performed to characterise the wastewater and sludge composition in the context of activated sludge modelling. The proposed model was calibrated under steady-state conditions and validated under dynamic flow conditions. The model was successfully used to obtain insight into the existing plant performance, possible extension and options for process optimisation. The model illustrated the potential capacity of the plant to achieve full denitrification and to handle a higher hydraulic load. Moreover, the use of a mathematical model as an effective tool in decision making was demonstrated.

摘要

在过去15年里,计算机建模已成为理解活性污泥废水处理系统行为的强大工具。然而,计算机模型主要应用于生活污水处理厂(WWTPs)。将这类模型应用于工业废水处理厂需要不同的模型结构,以及对模型参数的动力学和化学计量学进行准确估计,这些参数可能与用于生活污水的参数不同。其中大多数参数强烈依赖于废水成分。在本研究中,使用活性污泥1号模型(ASM 1)的改进版本来描述一家制革厂的污水处理厂。进行了多项生物学测试和补充物理化学分析,以在活性污泥建模的背景下表征废水和污泥成分。所提出的模型在稳态条件下进行了校准,并在动态流量条件下进行了验证。该模型成功用于深入了解现有工厂的性能、可能的扩建以及工艺优化选项。该模型说明了该工厂实现完全反硝化和处理更高水力负荷的潜在能力。此外,还证明了使用数学模型作为决策有效工具的可行性。

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