Ban Garram, Song Sinae, Lee Hong Woon, Kim Hee Taik
Department of Fusion Chemical Engineering, Hanyang University, 55 Hanyangdaehakro, Sangnok-gu, Ansan, Gyeonggi-do 15588, Korea.
Department of Advanced Materials Science and Engineering, Hanyang University, 55 Hanyangdaehakro, Sangnok-gu, Ansan, Gyeonggi-do 15588, Korea.
Nanomaterials (Basel). 2019 Feb 20;9(2):300. doi: 10.3390/nano9020300.
Silica aerogels have attracted tremendous interest due to their high specific surface area and the physical, chemical, and mechanical properties as promising materials for thermal insulation, chemical sensors, and energy storage devices. However, large-scale production of silica aerogels remains a challenge due to costly alkoxide precursors and energy-intensive supercritical drying processes. This paper analyzes the effect of acidity levels and feed rate on the porosity of rice husk aerogels with high specific surface area under ambient pressure. This synthetic approach is cost-effective, eco-friendly, and facilitates recycling. Rice husk ash, which consists of 92% amorphous pure silica, was produced by combustion. A process of solvent exchange and surface modification under ambient pressure at different pH levels was conducted for synthesis of the aerogel. The specific surface area of rice husk aerogel was confirmed as ranging from 385 to 861 m²/g under pH 1 to pH 9 and acid feed rate of 0.5 to 5.0 mL/min. The optimized aerogel had a specific surface area of 861 m²/g, a pore volume of 3.33 cm³/g, and an average pore diameter of 12 nm when synthesized at pH 1 and an acid feed rate of 2.5 mL/min. The aerogel was found to be highly hydrophobic, with a water contact angle of 156° up to about 340 °C.
由于其高比表面积以及作为隔热、化学传感器和储能设备的有前景材料的物理、化学和机械性能,二氧化硅气凝胶引起了极大的关注。然而,由于昂贵的醇盐前驱体和能源密集型的超临界干燥工艺,二氧化硅气凝胶的大规模生产仍然是一个挑战。本文分析了酸度水平和进料速率对常压下具有高比表面积的稻壳气凝胶孔隙率的影响。这种合成方法具有成本效益、环保且便于回收利用。由燃烧产生的稻壳灰含有92%的无定形纯二氧化硅。在不同pH值下于常压下进行溶剂交换和表面改性过程以合成气凝胶。在pH值为1至9且酸进料速率为0.5至5.0 mL/min的条件下,稻壳气凝胶的比表面积被确认为在385至861 m²/g之间。当在pH值为1且酸进料速率为2.5 mL/min的条件下合成时,优化后的气凝胶具有861 m²/g的比表面积、3.33 cm³/g的孔体积和12 nm的平均孔径。该气凝胶被发现具有高度疏水性,在高达约340 °C的温度下,水接触角为156°。