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Model-based methodology for plant-wide analysis of wastewater treatment plants: Industrial case study

机译:基于模型的污水处理厂全厂分析方法:工业案例研究

摘要

© IWA Publishing 2015.This paper presents the application of a model-based methodology for improved understanding of the tight interplay between effluent quality, energy use, and fugitive emissions in wastewater treatment plants. Dynamic models are developed and calibrated in an objective to predict the performance of a conventional activated sludge plant owned and operated by Sydney Water, Australia. A scenario-based approach is applied to quantify the effect of key operating variables on the effluent quality, energy use, and fugitive emissions. Operational strategies that enable a reduction in aeration energy by 10-20% or a reduction of total nitrogen discharge down to 3 mg L are identified. These results are also compared to an upgraded plant with reverse osmosis in terms of energy consumption and greenhouse gas emissions. This improved understanding of the relationship between nutrient removal, energy use, and emissions will feed into discussions with environmental regulators regarding nutrient discharge licensing.
机译:©IWA Publishing 2015.本文介绍了基于模型的方法的应用,以增进对废水处理厂废水质量,能源使用和逃逸排放之间紧密相互作用的理解。动态模型的开发和校准旨在预测澳大利亚悉尼水务公司拥有和运营的传统活性污泥装置的性能。应用基于方案的方法来量化关键操作变量对废水质量,能源使用和逃逸排放的影响。确定了可将通气能量降低10-20%或将总氮排放降低至3 mg L的操作策略。这些结果还与能耗和温室气体排放方面具有反渗透能力的升级工厂进行了比较。对养分去除,能源使用和排放之间关系的这种更好的理解将有助于与环境监管机构就养分排放许可进行讨论。

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