Transitioning from linear to circular business models is essential for sustainable resource management; however, challenges persist in implementing effective circular strategies. This study examines how iterative mapping and modelling can facilitate the development of circular battery business models by identifying absent actors and optimising material flows. Employing Design Science Methodology (DSM), the research engages in three iterative cycles of ecosystem mapping, system modelling, and reflection, integrating qualitative and quantitative insights to enhance circular business strategies. The findings demonstrate that static mapping alone is insufficient to capture the complexities of circular ecosystems. By incorporating system dynamics and agent-based modelling, the study highlights gaps in actor participation, regulatory constraints, and inefficiencies in material retention. The results emphasise the importance of dynamic modelling in assessing business feasibility, enabling firms to anticipate supply chain disruptions and policy shifts. This approach offers a structured method for refining circular economy strategies, ensuring adaptability to changing market and regulatory conditions. The study contributes to academic and managerial discussions by providing a replicable framework for designing and testing circular business models.

(2025). An Iterative Framework for Circular Business Models: Insights from Mapping and Modelling . Retrieved from https://hdl.handle.net/10446/308808

An Iterative Framework for Circular Business Models: Insights from Mapping and Modelling

Gaiardelli, Paolo
2025-01-01

Abstract

Transitioning from linear to circular business models is essential for sustainable resource management; however, challenges persist in implementing effective circular strategies. This study examines how iterative mapping and modelling can facilitate the development of circular battery business models by identifying absent actors and optimising material flows. Employing Design Science Methodology (DSM), the research engages in three iterative cycles of ecosystem mapping, system modelling, and reflection, integrating qualitative and quantitative insights to enhance circular business strategies. The findings demonstrate that static mapping alone is insufficient to capture the complexities of circular ecosystems. By incorporating system dynamics and agent-based modelling, the study highlights gaps in actor participation, regulatory constraints, and inefficiencies in material retention. The results emphasise the importance of dynamic modelling in assessing business feasibility, enabling firms to anticipate supply chain disruptions and policy shifts. This approach offers a structured method for refining circular economy strategies, ensuring adaptability to changing market and regulatory conditions. The study contributes to academic and managerial discussions by providing a replicable framework for designing and testing circular business models.
CELS - Research Group on Industrial Engineering, Logistics and Services Operations
2025
Inglese
Advances in Production Management Systems. Cyber-Physical-Human Production Systems: Human-AI Collaboration and Beyond. 44th IFIP WG 5.7 International Conference, APMS 2025. Proceedings, Part III
Hajime Mizuyama; Eiji Morinaga; Tomomi Nonaka; Toshiya Kaihara; Gregor von Cieminski; David Romero;
9783032035370
766 IFIP AICT
459
473
cartaceo
online
Switzerland
Cham
Springer Science and Business Media Deutschland GmbH
esperti anonimi
44th IFIP WG 5.7 International Conference on Advances in Production Management Systems, APMS 2025; Kamakura, Japan; 31/08/2025 - 04/09/2025
44
Kamakura (Japan)
31/08/2025 - 04/09/2025
internazionale
contributo
Settore IIND-05/A - Impianti industriali meccanici
Iterative frameworks; circular economy; battery lifecycle; system dynamics; business models
info:eu-repo/semantics/conferenceObject
4
Huijssoon, Hidde; Rodel, Eugen; West, Shaun; Gaiardelli, Paolo
1.4 Contributi in atti di convegno - Contributions in conference proceedings::1.4.01 Contributi in atti di convegno - Conference presentations
reserved
Non definito
273
(2025). An Iterative Framework for Circular Business Models: Insights from Mapping and Modelling . Retrieved from https://hdl.handle.net/10446/308808
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