Reverse Supply Chain Network Design of a Polyurethane Waste Upcycling System

Fuente: arXiv
Gespeichert in:
Bibliographische Detailangaben
Hauptverfasser: Özkan, Dalga Merve, Lucia, Sergio, Engell, Sebastian
Format: Preprint
Veröffentlicht: 2025
Schlagworte:
Online-Zugang:
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
_version_ 1866915542093266944
author Özkan, Dalga Merve
Lucia, Sergio
Engell, Sebastian
author_facet Özkan, Dalga Merve
Lucia, Sergio
Engell, Sebastian
contents This paper presents a general mathematical programming framework for the design and optimization of supply chain infrastructures for the upcycling of plastic waste. For this purpose, a multi-product, multi-echelon, multi-period mixed-integer linear programming (MILP) model has been formulated. The objective is to minimize the cost of the entire circular supply chain starting from the collection of post-consumer plastic waste to the production of virgin-equivalent high value polymers, satisfying a large number of constraints from collection quota to the quality of the feedstock. The framework aims to support the strategic planning of future circular supply chains by determining the optimal number, locations and sizes of various types of facilities as well as the amounts of materials to be transported between the nodes of the supply chain network over a specified period. The functionality of the framework has been tested with a case study for the upcycling of rigid polyurethane foam waste coming from construction sites in Germany. The economic potential and infrastructure requirements are evaluated, and it has been found that from a solely economic perspective, the current status of the value chain is not competitive with fossil-based feedstock or incineration. However, with the right economic incentives, there is a considerable potential to establish such value chains, once the upcycling technology is ready and the economic framework conditions have stabilized.
format Preprint
id arxiv_https___arxiv_org_abs_2510_08097
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Reverse Supply Chain Network Design of a Polyurethane Waste Upcycling System
Özkan, Dalga Merve
Lucia, Sergio
Engell, Sebastian
Computational Engineering, Finance, and Science
Optimization and Control
This paper presents a general mathematical programming framework for the design and optimization of supply chain infrastructures for the upcycling of plastic waste. For this purpose, a multi-product, multi-echelon, multi-period mixed-integer linear programming (MILP) model has been formulated. The objective is to minimize the cost of the entire circular supply chain starting from the collection of post-consumer plastic waste to the production of virgin-equivalent high value polymers, satisfying a large number of constraints from collection quota to the quality of the feedstock. The framework aims to support the strategic planning of future circular supply chains by determining the optimal number, locations and sizes of various types of facilities as well as the amounts of materials to be transported between the nodes of the supply chain network over a specified period. The functionality of the framework has been tested with a case study for the upcycling of rigid polyurethane foam waste coming from construction sites in Germany. The economic potential and infrastructure requirements are evaluated, and it has been found that from a solely economic perspective, the current status of the value chain is not competitive with fossil-based feedstock or incineration. However, with the right economic incentives, there is a considerable potential to establish such value chains, once the upcycling technology is ready and the economic framework conditions have stabilized.
title Reverse Supply Chain Network Design of a Polyurethane Waste Upcycling System
topic Computational Engineering, Finance, and Science
Optimization and Control
url https://arxiv.org/abs/2510.08097