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Recycling of carbon fibre reinforced polymer composites with superheated steam – A review

Marcelle D. Hecker, Marco L. Longana, O.T. Thomsen, Ian Hamerton

2023Journal of Cleaner Production37 citationsDOIOpen Access PDF

Abstract

This paper reviews the published research pertaining to the use of superheated steam for carbon fibre reinforced polymer (CFRP) composite reclamation. Superheated steam has been used for this purpose for around a decade and was initially investigated to prevent the degradation of reclaimed fibres, which occurs during the oxidative char removal step of most pyrolysis-based reclamation techniques. The review evaluates the various methodologies employed with particular focus on the physical, mechanical, and chemical properties of the reclaimed fibres, and the environmental impact of using superheated steam for carbon fibre reclamation as determined by life cycle assessment. Superheated steam studies report recovering carbon fibres with retained tensile moduli of around 90%–100% and tensile strengths of 65%–100% when compared to virgin carbon fibres, however, when optimised it is shown that carbon fibres can be recovered with no loss in stiffness and strength. Most studies are still at laboratory- or pilot-scale, however, several companies are collaborating with researchers to investigate the potential of this reclamation method on a larger scale. Early analysis on the energy use of carbon fibre reclamation using superheated steam shows that energy savings of 25% could be made by recycling CFRP waste using superheated steam and using the recovered carbon fibres to displace virgin carbon fibres rather than landfilling and incinerating this waste.

Topics & Concepts

Superheated steamCharLand reclamationUltimate tensile strengthMaterials scienceSuperheatingCarbon fibersComposite materialWaste managementPyrolysisEnvironmental scienceComposite numberBoiler (water heating)EngineeringCondensed matter physicsArchaeologyHistoryPhysicsFiber-reinforced polymer compositesGraphene research and applicationsMechanical Behavior of Composites
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