Fire retarding properties of nanocomposites from polystyrene waste and antimony, barium, and nickel oxides’ nanoparticles
DOI:
https://doi.org/10.70882/9mjd4g69Keywords:
Polystyrene Oxide nanoparticles Nanocomposites Afterglow Ignitability Flame propagation rateAbstract
This work involves the synthesis of oxide nanoparticles via the chemical precipitation
method and formation of nanocomposites by the in situ polymerization method. The
treated and blank samples were prepared and investigated for ignitability, flame prop
agation, and afterglow time. Sb2
O3
/polystyrene (PS) was found to give a good effect for
ignitability after 6.00 seconds than BaO/PS and NiO/PS nanocomposites and untreated PS
after 5.00, 4.00, and 2.00 seconds as the concentration of the nanoparticles incorporated
in the PS increased, respectively. Sb2
O3
/PS gave a better effect for flame propagation than
untreated PS, BaO/PS, and NiO/PS nanocomposites. The Sb2
O3
/PS nanocomposite has an afterglow time of 1 second at 0.25 g concentration than BaO/PS (2 seconds) and NiO/
PS nanocomposite (2 seconds) and blank PS (5 seconds). Conclusively, with this result,
Sb2
O3
/PS nanocomposite was found to give a better retarding effect. It is recommended
that during the production of polymer nanocomposites, PS/Sb2
O3
, PS/BaO, and PS/NiO
nanocomposites could be used to hinder or slow down the propagation of fire during
accidental fire outbreaks.
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