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首页> 外文期刊>Energy for sustainable development >IECP — an approach for integrated environmental and cost evaluation of process design alternatives and its application to evaluate different NOx prevention technologies in a 125 MW thermal power plant
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IECP — an approach for integrated environmental and cost evaluation of process design alternatives and its application to evaluate different NOx prevention technologies in a 125 MW thermal power plant

机译:IECP —一种对工艺设计替代方案进行环境和成本综合评估的方法,并用于评估125 MW火力发电厂的不同NOx预防技术

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摘要

This paper proposes a methodology, IECP (integrated environmental and cost potential), for the integrated environmental and cost evaluation of a process design option. It is designed for a quick quantitative evaluation of a design option at different levels of process synthesis or retrofit applications. A hazard based approach, Pro-hazard, has been developed for the quantitative evaluation of environmental potential of design options by using a cradle-to-gate life cycle assessment. This assigns an environmental potential index to a design option by comparing its environmental performance with respect to the base option. To quickly evaluate the cost of the resulting option a simple approach, Eco-index, has been developed. It gives a cost potential index to a specific design option by comparing its unit operating and fixed cost with respect to that of the base option. In the IECP framework, both the environmental potential and cost potential indices for a design option are combined by assigning an appropriate weighting factor to each index, which gives an integrated index, IECP, for the design option. In this paper, the IECP methodology has been combined with a process simulator. Aspen HYSYS, to obtain the necessary data to quickly and accurately determine the IECP index. The applicability of the proposed IECP approach has been demonstrated through a case study for the selection of potential NOx prevention options in a 125 MW combined cycle power plant from a large number of options related to flue gas recirculation, steam and water injection to the furnace.
机译:本文提出了一种方法IECP(综合环境和成本潜能),用于过程设计方案的综合环境和成本评估。它设计用于在过程综合或改造应用的不同级别对设计选项进行快速定量评估。已开发出一种基于危害的方法,即Pro-hazard,可通过使用从摇篮到大门的生命周期评估对设计方案的环境潜力进行定量评估。通过将设计方案的环境绩效与基本方案进行比较,可以将环境潜力指数分配给设计方案。为了快速评估最终选项的成本,已经开发了一种简单的方法,即生态指数。通过将其单位运营成本和固定成本与基本选项相比,它为特定设计选项提供了潜在成本指数。在IECP框架中,通过为每个选项分配适当的权重因子,将设计选项的环境潜力和成本潜力指标合并在一起,从而为设计选项提供综合指标IECP。在本文中,IECP方法已与过程模拟器结合在一起。 Aspen HYSYS,获取必要的数据,以快速准确地确定IECP指数。通过从125兆瓦联合循环发电厂中从与烟道气再循环,蒸汽和水注入炉子有关的大量选择中选择潜在的NOx预防选择的案例研究,证明了所建议的IECP方法的适用性。

著录项

  • 来源
    《Energy for sustainable development》 |2011年第1期|p.61-68|共8页
  • 作者单位

    Process Engineering. Faculty of Engineering and Applied Science, Memorial University of Newfoundland, St. John's, NL, Canada A1B 3X5;

    Process Engineering. Faculty of Engineering and Applied Science, Memorial University of Newfoundland, St. John's, NL, Canada A1B 3X5;

    Process Engineering. Faculty of Engineering and Applied Science, Memorial University of Newfoundland, St. John's, NL, Canada A1B 3X5;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cost; Environment; Index; Process design; Nox;

    机译:成本;环境;指标;工艺设计;Nox;

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