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Integrated Hybrid Life Cycle Optimization with Application to Sustainable Design of A UK Advanced Biofuel Supply Chain

机译:综合混合生命周期优化与适用于英国高级生物燃料供应链的可持续设计

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By combining life cycle assessment (LCA) with multi-objective optimization (MOO), the life cycle optimization (LCO) framework holds the promise not only to evaluate the environmental impacts for a given product but also to compare different alternatives and identify both ecologically and economically better decisions. Despite the recent methodological developments in LCA, most LCO applications are developed upon process-based LCA, which results in system boundary truncation and underestimation of the true impact. In this study, we propose a comprehensive LCO framework that seamlessly integrates MOO with integrated hybrid LCA. It quantifies both direct and indirect environmental impacts and incorporates them into the decision making process in addition to the more traditional economic criteria. The proposed LCO framework is demonstrated through an application on sustainable design of a potential bio-ethanol supply chain in the UK. Results indicate that the proposed hybrid LCO framework identifies a considerable amount of indirect greenhouse gas emissions (up to 58.4%) that are essentially ignored in process-based LCO.
机译:通过将生命周期评估(LCA)与多目标优化(MOO)结合起来,生命周期优化(LCO)框架不仅拥有对给定产品的环境影响,而且还可以比较不同的替代方案并识别生态和识别经济上更好的决定。尽管LCA最近的方法论发展,但大多数LCO应用都是在基于过程的LCA上开发的,这导致系统边界截断并低估了真正的影响。在这项研究中,我们提出了一种全面的LCO框架,可以使用集成的混合LCA无缝集成MOO。除了更传统的经济标准外,它还量化了直接和间接环境影响,并将其纳入决策过程。通过申请英国潜在生物乙醇供应链的可持续设计申请来证明拟议的LCO框架。结果表明,拟议的混合LCO框架识别相当多的间接温室气体排放(高达58.4%),基于基于过程的LCO基本上被忽略。

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