| Literature DB >> 27566928 |
Zhi Li1, Xudong Cheng2, Long Shi3, Song He1, Lunlun Gong1, Congcong Li1, Heping Zhang4.
Abstract
Silica aerogels (SAs) present great application prospects especially on thermal insulation, but their flammability is usually ignored. A combined study on the combustion behaviors and oxidation kinetics of hydrophobic silica aerogels prepared by ambient pressure drying (SA-apd) and supercritical drying (SA-sd) was performed by employing cone calorimeter and thermal analysis. The whole combustion process for SAs could be divided into three stages in which a fire propagation phenomenon was observed with the radial propagation velocity of 6.6-8.3cms-1. Current investigations forcefully demonstrated that hydrophobic SAs were combustible and easy to flashover when exposed to a heat flux higher than 25kWm-2. Compared between the two SAs, the SA-sd owned a less fire risk with presenting a less fire hazard and a lower smoke toxicity than those of SA-apd. The oxidation kinetics by Ozawa-Flynn-Wall method revealed that SA-sd had larger apparent activation energies than those of SA-apd which conformed to the thermal stability analysis by TG-DSC. Furthermore, a two-step combustion mechanism was proposed to explain the combustion behaviors of SAs.Entities:
Keywords: Fire hazard; Flammability; Hydrophobic silica aerogel; Oxidation kinetics; Thermal decomposition
Year: 2016 PMID: 27566928 DOI: 10.1016/j.jhazmat.2016.07.054
Source DB: PubMed Journal: J Hazard Mater ISSN: 0304-3894 Impact factor: 10.588