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Effect of Calcination Temperature of Kaolin Microspheres on the In situ Synthesis of ZSM-5

机译:高岭土微球煅烧温度对ZSM-5原位合成的影响

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ZSM-5 zeolite has been successfully synthesized in-situ on calcined kaolin microspheres by the hydrothermal method using n-butylamine as a template. The supported ZSM-5 was characterized by X-ray diffraction and scanning electron microscopy. The effect of calcination temperature of kaolin microspheres on the in-situ synthesis of ZSM-5 was investigated. The influence of the pretreatment temperature on the properties of kaolin microspheres including phase transformation, amounts of active SiO2 and A12O3, and pore structures, was studied using fourier transform infrared (FT-IR), nitrogen adsorption and chemical analysis. The results showed that when the calcination temperature increased from 300 to 900 ?C, the amount of active SiO2 in the kaolin microspheres increased slightly and the amount of active A12O3 initially increased rapidly and then decreased steadily. The surface area and pore volume of the kaolin calcined at both low and high temperatures was less than those of kaolin calcined at a medium tempera ure. The property changes of kaolin caused the relative crystallinity of in situ synthesized ZSM-5 to vary.
机译:以正丁胺为模板,通过水热法成功地在煅烧高岭土微球上原位合成了ZSM-5沸石。通过X射线衍射和扫描电子显微镜对负载的ZSM-5进行了表征。研究了高岭土微球的煅烧温度对ZSM-5原位合成的影响。使用傅立叶变换红外光谱(FT-IR),氮吸附和化学分析研究了预处理温度对高岭土微球性能的影响,包括相变,活性SiO2和Al2O3的含量以及孔结构。结果表明,当煅烧温度从300升高到900°C时,高岭土微球中的活性SiO2含量略有增加,活性Al2O3的含量最初迅速增加,然后稳定下降。在低温和高温下煅烧的高岭土的表面积和孔体积均小于在中等温度下煅烧的高岭土的表面积和孔体积。高岭土的性质变化引起原位合成ZSM-5的相对结晶度变化。

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