Manufacturing and characterization of composite fibreboards with Posidonia oceanicawastes with an environmentally-friendly binder from epoxy resin

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Abstract

Highly environmentally-friendly fibreboards were manufactured by hot-press moulding using Posidonia ocaeanica wastes and a partially biobased epoxy resin as binder. Fibreboards with a constant fibre content of 70 wt % were successfully manufactured by thermo-compression. The effects of a conventional alkali treatment were compared to the synergistic effects that additional silanization with two silanes (amino and glycidyl) can exert on the mechanical and thermo-mechanical properties of fibreboards. The results revealed a remarkable improvement of the mechanical properties with the combination of the alkali treatment followed by the silanization. Scanning electron microscopy also revealed increased resin-fibre interactions due to the synergistic effect of both aminoand glycidyl-silanes. These fibreboards represent a formaldehyde-free solution and can positively contribute to sustainable development as the lignocellulosic component is a waste and the binder resin is partially biobased.

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Garcia-Garcia, D., Quiles-Carrillo, L., Montanes, N., Fombuena, V., & Balart, R. (2017). Manufacturing and characterization of composite fibreboards with Posidonia oceanicawastes with an environmentally-friendly binder from epoxy resin. Materials, 11(1). https://doi.org/10.3390/ma11010035

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