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Plant-wide Optimization of a Full-Scale Activated Sludge Plant with Anaerobic Sludge Treatment

机译:具有厌氧污泥处理的全尺寸活性污泥厂的植物广泛优化

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This paper presents the application of a plant-wide model-based methodology to wastewater treatment plants. The focus is on a tertiary activated sludge plant with anaerobic sludge treatment, owned and operated by Sydney Water. A dynamic plant-wide model is first developed and calibrated using historical data. A scenario-based optimization procedure is then applied for computing the effect of key discharge constraints on the minimal net power consumption, via the repeated solution of a dynamic optimization problem. The results show a potential for reduction of the energy consumption by about 20%, through operational changes only, without compromising the current effluent quality. It is also found that nitrate (and hence total nitrogen) discharge could be reduced from its current level around 22 mg(N)/L to less than 15 mg(N)/L with no increase in net power consumption, and could be further reduced to <10 mg(N)/L subject to a 15% increase in net power consumption upon diverting part of the primary sludge to the secondary treatment stage. This improved understanding of the relationship between nutrient removal and energy use will feed into discussions with environmental regulators regarding nutrient discharge licensing.
机译:本文介绍了植物范围的基于模型的方法到废水处理厂的应用。重点是含有氧化物污泥处理的三级活性污泥厂,由悉尼水拥有和操作。首先使用历史数据开发和校准动态植物范围的模型。然后应用了基于场景的优化过程来计算通过动态优化问题的重复解决方案来计算关键放电约束对最小净功耗的影响。结果表明,通过仅运行变化,在不影响目前的流出质量的情况下,将能量消耗降低约20%的潜力。还发现硝酸盐(并且因此总氮气)放电可以从其电流水平减少约22mg(n)/ l至小于15mg(n)/ l,没有净功耗不增加,并且可以进一步在将部分初级污泥转移到次要治疗阶段,减少到<10mg(n)/ l的净功耗增加15%。这种改进了对营养消除和能量使用之间的关系的理解将与有关营养放电许可的环境调节剂讨论。

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