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Circularity Governance Under Strategic Incentives A Stackelberg Model of Wind Turbine Blade Recycling.pdf (935.6Kb)
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Title
Circularity Governance Under Strategic Incentives: A Stackelberg Model of Wind Turbine Blade Recycling
Author
Nieto-Cerezo, OscarORCID
Fernandez Mendoza, Joan ManuelORCID
Research Group
Economía Circular y Sostenibilidad Industrial
Version
Postprint
Document type
Journal Article
Language
English
Rights
© 2026 Wiley
Access
Open access
URI
https://hdl.handle.net/20.500.11984/14659
Publisher’s version
https://doi.org/10.1002/bse.70717
Published at
Business Strategy and the Environment 
Primera página
1
Última página
18
Publisher
John Wiley and Sons Ltd
Keywords
Circular Governance
Closed-Loop Recycling
Subject (UNESCO Thesaurus)
Sustainable development
UNESCO Classification
Socio-economic development
Abstract
Circular economy goals under the European Green Deal require business models that make recyclability financially attractive, yet this alignment becomes fragile when eco-design effort is hidden and sec ... [+]
Circular economy goals under the European Green Deal require business models that make recyclability financially attractive, yet this alignment becomes fragile when eco-design effort is hidden and secondary-market prices are volatile. This paper develops a formal model of the wind-turbine blade (WTB) value chain to examine when closed-loop systems can internalise eco-design incentives. In a Stackelberg game between a manufacturer and a recycler, we show that reintegrating recovered glass fibre reinforced polymer (GFRP) into new WTBs can endogenously reward eco-design by linking material recovery to cost savings. However, this self-alignment weakens under risk aversion and competitive leakage, when recyclers divert material to more profitable external markets. We derive a robustness-adjusted subsidy threshold that ensures closed-loop stability and quantify how it varies with eco-design leverage, price uncertainty and technology choice. Numerical results for pyrolysis and solvolysis highlight how technological maturity and market risk shape feasibility. [-]
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