Elisabetta Morici, Nadka Tz. Dintcheva
Thermoset materials and their composites are characterized by a long life cycle with their main applications in aircrafts, wind turbines and constructions as insulating materials. Considering the importance of recovery and valorization of these materials at their end-of-life, avoiding landfilling, the interest concerning their recycling grows continuously. The thermoset materials and their composites, to be successfully recovered and valorized, must degrade their three-dimensional structures and recover the mono-oligomers and/or fillers. The thermoset materials could successfully degrade through thermal treatment at different temperatures (for example, above 1000 °C for incineration, ca. 500 °C for oxidation/combustion of organic constituents, etc.), chemical degradation by catalyst, irradiation with or without the presence of water, alcohol, etc., and mechanical recycling, obtaining fine particles that are useful as filler and/or reinforcement additives. Among these recycling methods, this mini-review focuses on the formulation and recovery method of innovative thermoset with in-build recyclability, i.e., materials having chemical links that could be degraded on-demand or containing dynamic covalent bonds to have re-processable and/or recyclable thermoset. This issue could be considered the future perspective in development.
@article{eb93996b-5e98-48ff-a3fb-0f3de53c9498,
title={Recycling of Thermoset Materials and Thermoset-Based Composites: Challenge and Opportunity},
author={Elisabetta Morici and Nadka Tz. Dintcheva},
year={2022},
language={en}
}TY - JOUR TI - Recycling of Thermoset Materials and Thermoset-Based Composites: Challenge and Opportunity AU - Elisabetta Morici AU - Nadka Tz. Dintcheva PY - 2022 LA - en ER -
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