4.3 Article

Effects of Solvent Exchange Period and Heat Treatment on Physical and Chemical Properties of Rice Husk Derived Silica Aerogels

期刊

SILICON
卷 13, 期 1, 页码 251-257

出版社

SPRINGER
DOI: 10.1007/s12633-020-00421-5

关键词

Rice husk ash; Silica aerogels; Sodium silicate; Ambient pressure drying; Solvent exchange; Heat treatment

资金

  1. Research Management Centre (RMC) Universiti Teknologi Malaysia [03-01-06-SF1456, FRGS 5F023, HIR 04G38]
  2. Ministry of Science, Technology, and Innovation (MOSTI) [03-01-06-SF1456, FRGS 5F023, HIR 04G38]
  3. Ministry of Education of Malaysia [03-01-06-SF1456, FRGS 5F023, HIR 04G38]

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Hydrophobic silica aerogels were successfully synthesized in this study from rice husk ash-derived sodium silicate, with the optimal quality obtained from a 9-day solvent exchange period. The hydrophobicity of the aerogels decreases above 380 degrees C as confirmed by DSC analysis.
In this study, hydrophobic silica aerogels were synthesized from rice husk ash-derived sodium silicate through sol-gel processing, solvent exchange, surface modification and ambient pressure drying. By volume, 10% of trimethylchlorosilane (TMCS) in 90% of n-hexane was used as a hydrophobic solution in the surface modification process. The physical and chemical properties of silica aerogels were characterized by density and porosity measurements, scanning electron microscopy (SEM), Fourier transforms infrared (FTIR) spectroscopy, Brunauer-Emmett-Teller theory (BET) and dynamic scanning calorimetry (DSC). The hydrogels prepared were in the form of 2.5 +/- 0.5 mm beads and then converted into alcogels through solvent exchange with ethanol for repetition of 3, 6 and 9 days. It is found that the optimal quality of silica aerogels with the BET surface area as high as 668.82 m(2)/g was obtained from the alcogels of the solvent exchange period of 9 days. Depending on the size of the gel's block, a longer solvent exchange period will ensure adequate removal of pore water. Post heat treatment on silica aerogels obtained from the 9 days of solvent exchange at 200, 300 and 400 degrees C for 2 h results in slight decreased of aerogel's density from 0.048 g/cm(3) to 0.039 g/cm(3) and the hydrophobicity of the aerogels is decreased above 380 degrees C as confirmed by DSC analysis.

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