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Closed loop supply chain network for local and distributed plastic recycling for 3D printing: a MILP-based optimization approach

机译:用于3D打印的本地和分布式塑料回收的闭环供应链网络:基于MILP的优化方法

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摘要

Recent research and initiatives increasingly propose a new approach, based on distributed plastic recycling for open-source (OS) 3D printing technologies, as a way to deal with the issue of plastic waste and to support the development of the circular economy (CE). Distributed recycling can be thought of as a sort of "smart grid", composed of small and coordinated recycling units. However, the operational complexity of this distributed approach limits its application. Furthermore, the environmental and economic advantages have yet to be demonstrated. This article therefore explores the economic and environmental feasibility of this distributed plastic recycling approach from a logistics perspective, as a step towards its validation. To achieve this, an optimization mixed integer linear programming (MILP) model was used as an evaluation tool, representing a local closed loop supply chain (CLSC) network. The proposed model is illustrated using a case study of a university seeking to implement a distributed recycling demonstrator in order to recover 3D printing wastes from secondary schools in the northeast of France. Following this step, a sensitivity analysis was carried out considering the market variations (price of virgin plastic filament) and the amount of available plastic waste derived from the schools. The results obtained show positive economic and environmental benefits of carrying out this new method of plastic recycling. This work serves as a basis for continuing to explore the feasibility and replication of the distributed plastic recycling network in other contexts.
机译:最近的研究和举措越来越多地提出了一种新的方法,基于用于开源(OS)3D印刷技术的分布式塑料回收,作为处理塑料废物问题的一种方式,支持循环经济的发展(CE)。分布式回收可以被认为是一种“智能电网”,由小型和协调的回收单位组成。但是,该分布式方法的操作复杂性限制了其应用。此外,环境和经济优势尚未得到证明。因此,本文从物流视角探讨了这种分布式塑料回收方法的经济和环境可行性,作为迈向其验证的一步。为此,使用优化混合整数线性编程(MILP)模型作为评估工具,代表局部闭环供应链(CLSC)网络。通过对寻求实施分布式回收示威者的大学来说明所提出的模型,以便从法国东北的中学恢复3D印刷废物。在此步骤之后,考虑到敏感性分析,考虑到市场变化(处女塑料灯丝的价格)以及来自学校的可用塑料废物的量。得到的结果显示了实施这种塑料回收方法的积极经济和环境益处。这项工作是继续探讨在其他环境中分布式塑料回收网络的可行性和复制的基础。

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