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- W4386319711 abstract "A depleting fossil reserve and recycling troublesome synthetic fiber waste has become a global crisis when the indecomposable fibers prevails in every aspect of daily life. This work developed a economical and environmentally friendly opening-combing-needle punching technique that recycled polyester waste fibers with intrinsic nonflammable bio-based alginate fibers into a composite up to 50 % of its weight. It had a >26 flame retardancy index and a UL94 V-2 rating, which was in line with cone calorimeter test that had peak of heat release rate of 27.63 kW/m2, 38% less than similar alginate fibers/recycled textile fiber composites. Also, the composite generated 27% less smoke in burning than PET fiber felt. Its fire proof mechanism was explored as the dominant charring effect that dense CaCO3 residue prevented the fiber from burning and exchanging heat/radicals at all stages, which also received support from inert gas dilution of H2O evaporated from calcium alginate fiber and easily generated CO2, as well as the homogeneous structure of the composite, while the increased CO/CO2 ratio ruled out the possibility of chemical quenching of active radicals. Taken together, this research recycled synthetic waste fiber into an outstanding fire-proofing composite by a cost-effective and eco-friendly method, which could be a potential filler and construction materials." @default.
- W4386319711 created "2023-09-01" @default.
- W4386319711 creator A5053533157 @default.
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- W4386319711 date "2023-11-01" @default.
- W4386319711 modified "2023-10-09" @default.
- W4386319711 title "Recycling of polyester wastes with bio-based alginate fiber into fire-safety composite" @default.
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- W4386319711 doi "https://doi.org/10.1016/j.polymdegradstab.2023.110519" @default.
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