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Plant-wide modelling for assessment and optimization of upgraded full-scale wastewater treatment plant performance

机译:全厂建模,用于评估和优化升级后的大型污水处理厂的性能

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This paper presents the design of a plant-wide CNP (carbon-nitrogen-phosphorus) simulation model of a full-scale wastewater treatment plant, which will be upgraded for tertiary treatment to achieve compliance with effluent total nitrogen (TN) and total phosphorus (TP) limit values. The plant-wide model of the existing plant was first designed and extensively validated under long-term dynamic operation. The most crucial step was a precise characterization of input wastewater that was performed by extending the plant performance indicators both to a water line and sludge line and systematically estimating identifiable wastewater characterization parameters from plant-wide performance indicators, i.e. effluent concentrations, biogas and sludge production, and sludge composition. The thus constructed simulation model with standard activated sludge model (ASM2d) and anaerobic digestion model (MantisAD) overpredicted ortho-P and ammonia-N on the sludge line, indicating a need to integrate state-of-the-art physico-chemical minerals precipitation models to simulate plant-wide interactions more precisely. The upgraded plant with multimode anaerobic/anoxic/oxic configuration shows limited denitrification potential. Therefore, additional reject water treatment was evaluated to improve effluent TN and TP performance.
机译:本文介绍了一个全规模废水处理厂的全厂范围CNP(碳-氮-磷)模拟模型的设计,该模型将进行升级以进行三级处理,以达到废水总氮(TN)和总磷( TP)极限值。在长期动态运行下,首先设计并广泛验证了现有工厂的全工厂模型。最关键的步骤是对输入废水进行精确表征,方法是将工厂性能指标扩展到水线和污泥管线,并从整个工厂范围的性能指标系统估算可识别的废水表征参数,即废水浓度,沼气和污泥产量和污泥组成。如此构建的模拟模型与标准活性污泥模型(ASM2d)和厌氧消化模型(MantisAD)一起高估了污泥生产线上的邻位磷和氨氮,表明需要整合最新的理化矿物沉淀模型以更精确地模拟工厂范围的交互。具有多模式厌氧/缺氧/氧化配置的升级工厂显示出有限的反硝化潜力。因此,对附加的废水处理进行了评估,以改善废水的总氮和总磷性能。

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