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On the design of closed-loop networks for product life cycle management: Economic, environmental and geography considerations

机译:关于产品生命周期管理的闭环网络设计:经济,环境和地理因素

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The management of the product life cycle needs industrial synergies along large-scale networks to collect, recycle, reuse, and recover the end-of-life products. This paper provides a tool to,assess the enabling economic, environmental, and transport geography conditions to design sustainable closed-loop networks for the management of a generic product along its life-cycle. The proposed tool is built through a mixed-integer linear programming (MILP) model for the strategic design of a multi-echelon closed-loop network. The product life cycle is handled via a cascade through seven stages, including raw material suppliers, manufacturing plants, distribution centers, retailers, collection nodes for waste and by-products, recycling centers, and landfills. The model minimizes a cost-based and a carbon-based function to determine the optimal geographic location of the nodes of the network and the allocation of transport flows. The model is applied to a case study inspired by the furniture industry over the Italian geography and a multi-scenario analysis is illustrated. The resulting considerations on the economic, environmental performances of the network couple with the transport geography to provide guidelines for designer, logistics planners and regional geographers toward a circular economy scenario. (C) 2015 Elsevier Ltd. All rights reserved.
机译:产品生命周期的管理需要大规模网络的产业协同作用,以收集,回收,再利用和回收报废产品。本文提供了一种工具,可评估有利的经济,环境和运输地理条件,以设计可持续的闭环网络,以在其整个生命周期内管理通用产品。拟议的工具是通过混合整数线性规划(MILP)模型构建的,用于多级闭环网络的战略设计。产品生命周期通过七个阶段的级联来处理,包括原料供应商,制造工厂,分销中心,零售商,废物和副产品的收集节点,回收中心和垃圾填埋场。该模型最小化了基于成本和基于碳的功能,以确定网络节点的最佳地理位置和运输流量的分配。该模型被应用于案例研究,该案例研究受家具行业在意大利地理上的启发,并进行了多情景分析。由此产生的对网络的经济,环境性能的考虑以及运输地理因素,为设计人员,物流规划师和区域地理学家提供了针对循环经济方案的指南。 (C)2015 Elsevier Ltd.保留所有权利。

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