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A multi-period optimisation approach for deployment and optimal design of an aerospace CFRP waste management supply chain

机译:航空航天废物管理供应链部署与最优设计的多周期优化方法

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摘要

This paper presents a modelling framework for the deployment and design of aerospace CFRP (Carbon Fibre Reinforced Polymer) waste supply chain. The problem involves a multi-period Mixed Integer Linear Programming (MILP) formulation considering s-constraint, lexicographic techniques and Multiple Criteria Decision Making (MCDM) tools. The methodology has been applied to a case study of France. In this model, the deployment of new recycling sites (Grinding, Pyrolysis, Supercritical Water, Microwave) is established. The system is optimised by bi-criteria optimisation including an economic objective based on cost minimisation or Net Present Value (NPV) maximisation and an environmental one (minimisation of Global Warming Potential). The potential for economic acceptability of recycled carbon fibres is assessed through a levelized cost derived from the supply chain total cost and the profitability via NPV with a range of various CFRP prices. The results show that the compromise strategy for both economic and environmental objectives leads to centralised configurations at the regions close to significant waste sources. The cooperation in the recovery system is needed to minimise cost and maximise profit. The improvement of recycling technology permits to achieve the compromise solution for both economic and environmental objectives. The results also highlight that a mix of technologies will be involved in deployment phase and that the answer is not straightforward due to the complexity of the system. The methodology is yet generic enough to be replicated in other contexts considering the upgrade of process database.
机译:本文介绍了航空航天CFRP(碳纤维增强聚合物)废料供应链的部署和设计的建模框架。问题涉及考虑S-约束,词典技术和多标准决策(MCDM)工具的多时段混合整数线性编程(MILP)配方。该方法已应用于法国的案例研究。在该模型中,建立了新的再循环部位(研磨,热解,超临界水,微波)的部署。该系统由双标准优化进行优化,包括基于成本最小化或净现值(NPV)最大化和环境的经济目标(全球变暖潜力最小化)。通过来自供应链总成本的调整成本和通过NPV提供各种CFRP价格的盈利能力来评估再生碳纤维的经济可接受性。结果表明,经济和环境目标的妥协战略导致靠近重要废物来源的地区的集中配置。需要在恢复系统中的合作,以尽量减少成本并最大限度地提高利润。改善回收技术的允许实现经济和环境目标的妥协解决方案。结果还强调了技术的组合将参与部署阶段,并且由于系统的复杂性,答案并不简单。考虑到进程数据库升级,方法尚未在其他上下文中复制方法。

著录项

  • 来源
    《Waste Management》 |2019年第7期|201-216|共16页
  • 作者单位

    Laboratoire de Genie Chimique Universite de Toulouse CNRS INPT UPS Toulouse France Universite de Toulouse Laboratoire de Genie Chimique LGC UMR CNRS 5503 ENSIACET INPT - 4 allee Emile Monso - BP 44362 31432 Toulouse Cedex 4 France;

    Laboratoire de Genie Chimique Universite de Toulouse CNRS INPT UPS Toulouse France Universite de Toulouse Laboratoire de Genie Chimique LGC UMR CNRS 5503 ENSIACET INPT - 4 allee Emile Monso - BP 44362 31432 Toulouse Cedex 4 France;

    Laboratoire de Genie Chimique Universite de Toulouse CNRS INPT UPS Toulouse France Universite de Toulouse Laboratoire de Genie Chimique LGC UMR CNRS 5503 ENSIACET INPT - 4 allee Emile Monso - BP 44362 31432 Toulouse Cedex 4 France;

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

    CFRP; Supply chain; Waste management; Bi-criteria optimisation; Multi-period approach; Mixed integer linear programming;

    机译:CFRP;供应链;废物管理;双标准优化;多时期方法;混合整数线性规划;

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