System optimization for eco-design by using monetization of environmental impacts: a strategy to convert bi-objective to single-objective problems

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36
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40

초록

Eco-design is an essential way to reduce the environmental impacts and economic cost of processes and systems, as well as products. Until now, the majority of eco-design approaches have employed multi-objective optimization methods to balance between environmental and economic performances. However, the methods have limitations because multi-objective optimization requires decision makers to subjectively assign weighting factors for objectives, i.e., environmental impacts and economic cost. This implies that, depending on decision makers' preference and knowledge, different design solutions can be engendered for the same design problem. Thus, this study proposes an eco-design method which can generate a single design solution by developing mathematical optimization models with a single-objective function for environmental impacts and economic cost. For the formulation of the single-objective function, environmental impacts are monetized to external cost by using the Environmental Priority Strategies. This enables the tradeoffs between environmental impacts and economic cost in the same unit, i.e., monetary unit. As a case study, the proposed method is applied to the eco-design of a water reuse system in an industrial plant. This study can contribute to improving the eco-efficiency of various products, processes, and systems. (C) 2012 Elsevier Ltd. All rights reserved.

키워드

Eco-designEconomic costEnvironmental impactExternal costMulti-objective optimizationARTIFICIAL NEURAL-NETWORKSMULTIOBJECTIVE OPTIMIZATIONGENETIC ALGORITHMDECISION-MAKINGEXTERNAL COSTWATERVALUATIONINDUSTRYMANAGEMENTLCA
제목
System optimization for eco-design by using monetization of environmental impacts: a strategy to convert bi-objective to single-objective problems
저자
Lim, Seong-RinKim, Yoo RiWoo, Seung H.Park, DongheePark, Jong Moon
DOI
10.1016/j.jclepro.2012.07.040
발행일
2013-01
유형
Article
저널명
Journal of Cleaner Production
39
페이지
303 ~ 311