4.5 Article

Recycling of carbon fiber reinforced polymers in a subcritical acetic acid solution

期刊

HELIYON
卷 8, 期 12, 页码 -

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ELSEVIER SCI LTD
DOI: 10.1016/j.heliyon.2022.e12242

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Carbon fiber reinforced polymer; Recycling; Solvolysis; Acetic acid; Subcritical water

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A novel single-stage solvolysis process using 50 wt% acetic acid solution under subcritical conditions is demonstrated for recycling carbon fibers from an epoxy-based composite material. The process achieves 100% fiber recovery efficiency in a short period of time and without any resin residue on the recovered fibers or damage to the carbon fiber surfaces.
A novel single-stage solvolysis process is demonstrated for recycling carbon fibers from an epoxy-based composite material using 50 wt% acetic acid solution under subcritical conditions. The process yields 100% fiber recovery efficiency in less than 30 min at 300 degrees C. Qualitative SEM/EDS analysis of the fibers reveals that the recovered fibers are entirely free of resin, and the carbon fiber surfaces were not damaged. SEM images and gravimetric measurements of the composites treated at lower temperatures and short residence times show an initial increase in mass of the CFRP samples, suggesting a two-step process consisting of initial composite swelling due to uptake of solvent, followed by depolymerization and chemical decomposition of the polymer. FTIR and GC-MS analyses confirm resin decomposition and production of aromatic and aliphatic compounds.

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