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Production of high surface area silica particles by acoustodispersion precipitation.

机译:通过声分散沉淀法生产高表面积二氧化硅颗粒。

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A continuous Acoustodispersion Precipitation Reaction (APR) flow process was applied to the production of high surface area silica particles. An ultrasonic reactor was used to atomize and disperse silica gel into a drying chamber for further solidification. Upon particle synthesis, the resulting powder was analyzed The effect of sodium silicate concentration, volumetric flow rate through the ultrasonic nozzle, and drying temperature on particle diameter and specific surface area (Asp) was observed. A mathematical equation was derived using the Box-Behnken statistical design.; SEM imaging was employed in measuring the particle size and observing the morphology, and BET theory was exploited in collecting surface area data. SEM images showed porous and spherical silica particles. The number average diameter of the particles ranged from 13.155 Most of the A sp values ranged from 100--300 m2/g. The highest Asp achieved was 342 m2/g and the lowest was 19.9 m2/g.
机译:连续的声分散沉淀反应(APR)流动过程应用于高表面积二氧化硅颗粒的生产。使用超声反应器将硅胶雾化并将其分散到干燥室中以进一步固化。进行颗粒合成后,分析所得粉末。观察到硅酸钠浓度,通过超声波喷嘴的体积流量以及干燥温度对粒径和比表面积(Asp)的影响。使用Box-Behnken统计设计推导了数学方程。 SEM成像用于测量粒度和观察形态,并且BET理论用于收集表面积数据。 SEM图像显示出多孔和球形二氧化硅颗粒。颗粒的数均直径范围为13.155,大多数A sp值范围为100--300 m2 / g。达到的最高Asp为342 m2 / g,最低为19.9 m2 / g。

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