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Balancing effluent quality, economic cost and greenhouse gas emissions during the evaluation of (plant-wide) control/operational strategies in WWTPs

机译:在污水处理厂(全厂)控制/运营策略评估期间平衡废水质量,经济成本和温室气体排放

摘要

The objective of this paper was to show the potential additional insight that result from adding greenhouse gas (GHG) emissions to plant performance evaluation criteria, such as effluent quality (EQI) and operational cost (OCI) indices, when evaluating (plant-wide) control/operational strategies in wastewater treatment plants (WWTPs). The proposed GHG evaluation is based on a set of comprehensive dynamic models that estimate the most significant potential on-site and off-site sources of CO2, CH4 and N2O. The study calculates and discusses the changes in EQI, OCI and the emission of GHGs as a consequence of varying the following four process variables: (i) the set point of aeration control in the activated sludge section; (ii) the removal efficiency of total suspended solids (TSS) in the primary clarifier; (iii) the temperature in the anaerobic digester; and (iv) the control of the flow of anaerobic digester supernatants coming from sludge treatment. Based upon the assumptions built into the model structures, simulation results highlight the potential undesirable effects of increased GHG production when carrying out local energy optimization of the aeration system in the activated sludge section and energy recovery from the AD. Although off-site CO2 emissions may decrease, the effect is counterbalanced by increased N2O emissions, especially since N2O has a 300-fold stronger greenhouse effect than CO2. The reported results emphasize the importance and usefulness of using multiple evaluation criteria to compare and evaluate (plant-wide) control strategies in a WWTP for more informed operational decision making
机译:本文的目的是显示在评估(全厂范围)时,将温室气体(GHG)排放量添加到工厂绩效评估标准(例如出水质量(EQI)和运营成本(OCI)指数)中所获得的潜在附加见解。废水处理厂(WWTP)的控制/运营策略。拟议的GHG评估基于一套全面的动态模型,该模型可以估算最重要的潜在CO2,CH4和N2O现场和非现场来源。该研究计算并讨论了由于改变以下四个过程变量而导致的EQI,OCI和温室气体排放的变化:(i)活性污泥区的曝气控制设定点; (ii)初级澄清池中总悬浮固体(TSS)的去除效率; (iii)厌氧消化池的温度; (iv)控制来自污泥处理的厌氧消化池上清液的流量。基于模型结构中的假设,模拟结果突出显示了在进行活性污泥区的曝气系统局部能量优化和从AD回收能量时,GHG产量增加的潜在不良影响。尽管异地CO2排放量可能会减少,但N2O排放量的增加会抵消这种影响,特别是因为N2O的温室效应比CO2强300倍。报告的结果强调了在污水处理厂中使用多个评估标准来比较和评估(全厂范围)控制策略的重要性和有用性,以进行更明智的运营决策

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