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>Preparation of High-Temperature Resistant Aerogels by Incorporating Aluminum Sol into Composite Silica Sources Using Ambient Pressure Drying
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Preparation of High-Temperature Resistant Aerogels by Incorporating Aluminum Sol into Composite Silica Sources Using Ambient Pressure Drying
To reduce production costs and enhance the high-temperature resistance of SiO2 aerogels, an aluminum-doped silica aerogel (ASA) was successfully prepared using the sol-gel method and atmospheric drying method. The composite silica sources included TEOS and inexpensive acidic silica sol, while the aluminum source was aluminum sol. The study investigated the influence of the molar ratio of acidic silica sol to TEOS, Al/Si, and calcination temperature on the composition, structure, and high-temperature resistance of the ASA. The results indicate that a sample with an acidic silica sol to TEOS molar ratio of 0.8 achieved a specific surface area of 683.204 m2·g−1. The Al/Si molar ratio significantly impacted the high-temperature resistance of the ASA, with the sample having a molar ratio of 0.02 Al/Si displaying the highest specific surface area of 705.956 m2·g−1 at 600 °C. Moreover, this surface area remained at 273.099 m2·g−1 after calcination at 1000 °C, notably higher than the sample without aluminum sol (16.082 m2·g−1). Mechanism analysis indicated that the addition of aluminum sol to the SiO2 aerogel inhibited phase transitions, and both acidic silica sol and aluminum sol particles enhanced the aerogel structure, contributing to a marked improvement in high-temperature resistance.
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机译:为了降低生产成本并提高 SiO2 气凝胶的耐高温性,采用溶胶-凝胶法和常压干燥法成功制备了铝掺杂二氧化硅气凝胶 (ASA)。复合二氧化硅来源包括 TEOS 和廉价的酸性二氧化硅溶胶,而铝来源是铝溶胶。该研究调查了酸性二氧化硅溶胶与 TEOS、Al/Si 的摩尔比和煅烧温度对 ASA 的组成、结构和耐高温性的影响。结果表明,酸性二氧化硅溶胶与 TEOS 摩尔比为 0.8 的样品实现了 683.204 m2·g-1 的比表面积。Al/Si 摩尔比显着影响了 ASA 的耐高温性,样品的摩尔比为 0.02 Al/Si,在 600 °C 时显示出 705.956 m2·g-1 的最高比表面积。 此外,在 1000 °C 下煅烧后,该表面积保持在 273.099 m2·g−1,明显高于无铝溶胶的样品 (16.082 m2·g−1)。机理分析表明,在 SiO2 气凝胶中添加铝溶胶抑制了相变,酸性二氧化硅溶胶和铝溶胶颗粒都增强了气凝胶结构,有助于显著提高耐高温性。
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