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Synthesis of silica aerogel microspheres by a two-step acid–base sol–gel reaction with emulsification technique

机译:乳化技术通过两步酸碱溶胶-凝胶反应合成二氧化硅气凝胶微球

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Silica aerogel microspheres were synthesized by a two-step acid–base sol–gel reaction in water-in-oil emulsion systems, in which tetraethoxysilane was used as a precursor and ethanol as a solvent, and HCl and NH4OH as acid–base catalysts in two steps. The synthesis process and parameters of the emulsion process including viscosity, surfactant concentration and stirring rate have been investigated. In the emulsifying process, the viscosity of silica sol is vital to restrain the occurrence of flocculation phenomenon for forming monodisperse alcogel microspheres. The smooth silica aerogel microspheres can be formed from the silica sol with the viscosity of 107 mPa s. The resultant silica aerogel microspheres with similar surface areas above 650 m2/g, bulk densities in the range of 0.094–0.138 g/cm3, and mean diameters ranging from 40.3 to 126.1 μm can be formed by controlling these parameters of the emulsion process. The minimum of polydispersity and roundness of silica aerogel microspheres are 0.058 and 1.11, respectively. Furthermore, silica aerogel microspheres show a high capacity of uptaking bean oil, isopropanol, kerosene and n-hexane, highlighting the possibility to remove oils from water for oil spill cleanup.
机译:二氧化硅气凝胶微球是通过油包水乳液系统中的两步酸碱溶胶-凝胶反应合成的,其中四乙氧基硅烷用作前体,乙醇作为溶剂,HCl和NH4OH作为酸碱催化剂。两步。研究了乳液工艺的合成工艺和参数,包括粘度,表面活性剂浓度和搅拌速率。在乳化过程中,硅溶胶的粘度对于抑制形成单分散醇凝胶微球的絮凝现象的发生至关重要。光滑的二氧化硅气凝胶微球可以由粘度为107 mPa的硅溶胶形成。通过控制乳液工艺的这些参数,可以形成表面积大于650 m2 / g的相似的二氧化硅气凝胶微球,堆积密度在0.094-0.138 g / cm3的范围内,平均直径范围为40.3至126.1μm。二氧化硅气凝胶微球的最小分散度和圆度分别为0.058和1.11。此外,二氧化硅气凝胶微球显示出吸收豆油,异丙醇,煤油和正己烷的高能力,从而突出了从水中去除油进行溢油清理的可能性。

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