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Including greenhouse gas emissions during benchmarking of wastewater treatment plant control strategies

机译:在对废水处理厂控制策略进行基准测试时包括温室气体排放

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摘要

The main objective of this paper is to demonstrate how greenhouse gas (GHG) emissions can be quantified during the evaluation of control strategies in wastewater treatment plants (WWTP). A modified version of the IWA Benchmark Simulation Model No 2 (BSM2G) is hereby used as a simulation case study. Thus, the traditional effluent quality index (EQI), operational cost index (OCI) and time in violation (TIV) used to evaluate control strategies in WWTP are complemented with a new dimension dealing with GHG emissions. The proposed approach is based on a set of comprehensive models that estimate all potential on-site and off-site sources of GHG emissions. The case study investigates the overall performance of several control strategies and demonstrates that substantial reductions in effluent pollution, operating costs and GHG emissions can be achieved when automatic control is implemented. Furthermore, the study is complemented with a scenario analysis that examines the role of i) the dissolved oxygen (DO) set-point, ii) the sludge retention time (SRT) and iii) the organic carbonitrogen ratio (COD/N) as promoters of GHG emissions. The results of this study show the potential mechanisms that promote the formation of CO_2, CH_4 and N_2O when different operational strategies are implemented, the existing synergies and trade-offs amongst the EQI, the OCI and TIV criteria and finally the need to reach a compromise solution to achieve an optimal plant performance.
机译:本文的主要目的是演示如何在废水处理厂(WWTP)的控制策略评估过程中量化温室气体(GHG)排放。 IWA Benchmark Simulation Model No. 2(BSM2G)的修改版本特此用作仿真案例研究。因此,用于评估污水处理厂控制策略的传统污水质量指数(EQI),运营成本指数(OCI)和违规时间(TIV)补充了处理温室气体排放的新维度。提议的方法基于一套全面的模型,这些模型可以估算所有潜在的现场和场外GHG排放源。该案例研究调查了几种控制策略的整体性能,并证明了实施自动控制后,可以实现废水污染,运营成本和温室气体排放量的大幅减少。此外,该研究还辅以方案分析,该方案分析了以下方面的作用:i)溶解氧(DO)设定点; ii)污泥保留时间(SRT); iii)有机碳/氮比(COD / N)作为温室气体排放的促进者。这项研究的结果表明,当实施不同的操作策略时,潜在的机制可促进CO_2,CH_4和N_2O的形成,EQI,OCI和TIV标准之间的现有协同作用和权衡,最后需要达成折衷方案解决方案以实现最佳的工厂性能。

著录项

  • 来源
    《Water Research》 |2011年第16期|p.4700-4710|共11页
  • 作者单位

    modelEAU, Departement de genie civil et genie des eaux, Pavilion Adrien-Pouliot, Universite Laval, 1065, Avenue de la Medecine, Quebec, G1V 0A6 QC, Canada;

    modelEAU, Departement de genie civil et genie des eaux, Pavilion Adrien-Pouliot, Universite Laval, 1065, Avenue de la Medecine, Quebec, G1V 0A6 QC, Canada;

    modelEAU, Departement de genie civil et genie des eaux, Pavilion Adrien-Pouliot, Universite Laval, 1065, Avenue de la Medecine, Quebec, G1V 0A6 QC, Canada;

    modelEAU, Departement de genie civil et genie des eaux, Pavilion Adrien-Pouliot, Universite Laval, 1065, Avenue de la Medecine, Quebec, G1V 0A6 QC, Canada;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Activated sludge modeling; Benchmarking; Global warming; Model-based evaluation; Multi-criteria decision making; Process control; Sustainability;

    机译:活性污泥建模标杆管理;全球暖化;基于模型的评估;多标准决策;过程控制;可持续发展;

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