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Preparation of spherical silica powder by oxygen-acetylene flame spheroidization process

机译:氧-乙炔火焰球化法制备球形二氧化硅粉

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摘要

A novel economic oxygen-acetylene flame spheroidization process and special equipments to prepare spherical silica powders are presented. Before spheroidization treatment, the raw silica is purified by mixed acids. In this spheroidization process, oxygen is used both as the carrier gas to transport the purified silica powders to the flame region, and as the combustion-supporting gas. The crystallized silica powders are melted and then transformed to amorphous silica after oxygen-acetylene flame spheroidization treatment. The powder size analysis indicates that the powder size increases and the size distribution become narrower after spheroidization treatment. By optimizing the process parameters, spherical silica powders were obtained. A scanning electron microscope (SEM) investigation reveals that the spheroidization efficiency of the 5 μm diameter powder is more than 95% at feeding rates below 60 g/min. The closer the length-diameter ratio of raw silica powder is to 1, the higher the spheroidization efficiency of the sample is. The fluidity value and apparent density of the powder with the spheroidization efficiency 95% is 70 s/50 g and 0.88 g/cm~3, respectively. Oxygen-acetylene flame spheroidization process is a promising low-cost alternative for large-scale production of spherical silica powder.
机译:提出了一种经济的乙炔火焰球化工艺及制备球形二氧化硅粉体的专用设备。在球化处理之前,将粗制二氧化硅通过混合酸进行纯化。在该球化过程中,氧气既用作载气将纯化的二氧化硅粉末输送到火焰区域,又用作助燃气体。将结晶的二氧化硅粉末熔融,然后在氧-乙炔火焰球化处理之后转变为无定形二氧化硅。粉末尺寸分析表明,在球化处理之后,粉末尺寸增加并且尺寸分布变窄。通过优化工艺参数,获得了球形二氧化硅粉末。扫描电子显微镜(SEM)研究表明,进料速度低于60 g / min时,直径为5μm的粉末的球化效率超过95%。原始二氧化硅粉末的长径比越接近1,则样品的球化效率越高。球形化效率为95%的粉末的流动性值和表观密度分别为70 s / 50 g和0.88 g / cm〜3。氧气-乙炔火焰球化工艺是大规模生产球形二氧化硅粉末的有希望的低成本替代方法。

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