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A systematic methodology for the environomic design and synthesis of energy systems combining process integration, Life Cycle Assessment and industrial ecology

机译:结合过程集成,生命周期评估和工业生态学的能源系统环境设计和综合的系统方法

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摘要

This paper presents a systematic methodology for sustainable process systems design, combining the principles of industrial ecology, process design and process integration, Life Cycle Assessment (LCA) and multi-objective optimization (MOO). The superstructure considers an extended decision perimeter and embeds models based either on flowsheeting software or average market technologies, for which energy and material flows are extracted from the Life Cycle Inventory (LCI) database. Therefore, the overall supply chain can be synthesized within a given action system and the systematic recyclings identified. The methodology can be used to design eco-industrial parks or urban systems, to identify the best conversion pathways of resources or waste, or to fix the optimal value of environmental taxes. It is illustrated by an application to the environomic design of an urban energy system. This case study considers multiple energy services to be supplied and waste to be treated, with their seasonal variations, indigenous and imported resources, as well as different candidate conversion technologies. Results demonstrate that integrating an environmental objective in the design procedure leads to consider different system configurations than if only economic aspects are considered. The problematic of the optimal value of a CO_2 tax is as well addressed.
机译:本文提出了一种可持续过程系统设计的系统方法,结合了工业生态学,过程设计和过程集成,生命周期评估(LCA)和多目标优化(MOO)的原理。上层建筑考虑了扩展的决策范围,并基于流程图软件或平均市场技术嵌入了模型,为此从生命周期清单(LCI)数据库中提取了能源和物料流。因此,整个供应链可以在给定的行动系统内进行综合,并确定系统的回收利用。该方法可用于设计生态工业园区或城市系统,确定资源或废物的最佳转化途径,或确定环境税的最佳价值。它通过在城市能源系统的环境设计中的应用来说明。本案例研究考虑了要提供的多种能源服务和要处理的废物,它们具有季节性变化,本地和进口资源以及不同的候选转换技术。结果表明,与仅考虑经济方面的情况相比,将环境目标集成到设计过程中会导致考虑不同的系统配置。还很好地解决了CO_2税最佳价值的问题。

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