PREPARATION OF BORIC ACID MODIFIED EXPANDABLE GRAPHITE AND ITS INFLUENCE ON POLYETHYLENE COMBUSTION CHARACTERISTICS

A boric acid modified expandable graphite (EG B) was prepared through oxidizing-intercalating reaction of natural graphite, using H2SO4 and boric acid (H3BO3) as intercalators simultaneously. The dilatability of the intercalated products were characterized with expansion volume and initial expansion...

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Veröffentlicht in:Journal of the Chilean Chemical Society 2016-03, Vol.61 (1), p.2767-2771
Hauptverfasser: ZHAO, HONGMEI, LIN, RUINIAN
Format: Artikel
Sprache:eng
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Zusammenfassung:A boric acid modified expandable graphite (EG B) was prepared through oxidizing-intercalating reaction of natural graphite, using H2SO4 and boric acid (H3BO3) as intercalators simultaneously. The dilatability of the intercalated products were characterized with expansion volume and initial expansion temperature.Scanning electron microscope, X-ray diffraction spectroscopy, energy dispersive spectroscopy and Fourier transform infrared spectroscopy were employed todetect its layer structure, main element relative contents and function group. At the same time, its influence on combustion characteristics and thermal stability forlinear low density polyethylene (LLDPE) were investigated in limiting oxygen index (LOI) tests, vertical burning tests and thermal gravimetric/differential thermal gravimetric analyses. Comparing with the normal expandable graphite (EG, intercalated by single H2SO4), EGb exhibited high dilatability, thermal stability and flame retardancy for LLDPE. It had been testified by combustion tests that the addition of 30 wt % EGb to LLDPE improved the limiting oxygen index (LOI) from17.6% to 30.2%, and the vertical burning level of UL-94 standard reached V-0 level. Whereas, the LOI of the same amount referenced EG was only 25.1%, the UL-94 level only reached V-1. Moreover, the synergistic effect between EGb and ammonium polyphosphate (II) (APP) improved the LOI of 70LLDPE/10APP/20EGb composite to 33.0%, and the UL-94 level to V-0. The synergistic efficiency was attributed to the formation of continuous and compact residual char.
ISSN:0717-9707
0717-9707
DOI:10.4067/S0717-97072016000100004