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The effect of hydrothermal temperature on the properties of SBA-15 materials

机译:水热温度对SBA-15材料性能的影响

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摘要

In present work, ordered mesoporous material SBA-15 was synthesized by using poly (alkylene oxide) block copolymer (Pluronic P123) as template and ethylsilicate as silica source in weak acid environment in a wide range of temperature. The focus of synthesis research was high hydrothermal temperature. The obtained products were characterized by various techniques, including XRD, N sorption isotherms, FTIR spectroscopy and thermogravimetric. The effect of hydrothermal temperature on the specific surface area, pore volume and pore size of SBA-15 products was investigated systematically. As the hydrothermal temperature increases from the 100–120 °C, the specific surface area and the pore volume of the mesoporous molecular sieve increase greatly. When the hydrothermal temperature increase further, the pore volume of the mesoporous molecular sieve increase continually. But the specific surface area decrease significantly. When the hydrothermal temperature is too high (over 140 °C), the order degree begins to decrease, So the specific surface area and pore volume decrease significantly because the pores structure have significant destruction and collapse. Mechanism and structural characteristics of P123 block copolymer could explain in detail the effect of hydrothermal temperature on the property and structure of mesoporous molecular sieve SBA-15.
机译:在目前的工作中,通过使用聚(环氧烷)嵌段共聚物(Pluronic P123)作为模板和乙基硅基硅酸盐在弱酸环境中作为模板和乙基硅基硅酸盐来合成了有序的介孔材料SBA-15。合成研究的重点是高水热温度。所得产物的特征在于各种技术,包括XRD,N吸附等温线,FTIR光谱和热重度。系统地研究了水热温度对特定表面积,孔隙体积和孔径的SBA-15产品的影响。随着水热温度从100-120℃的增加,比较的表面积和中孔分子筛的孔体积大大增加。当水热温进一步增加时,中孔分子筛的孔体积不断增加。但具体表面积显着降低。当水热温过高(超过140℃)时,订单度开始减少,因此特定表面积和孔体积显着降低,因为孔结构具有显着的破坏和崩溃。 P123嵌段共聚物的机理和结构特征可以详细解释水热温度对介孔分子筛SBA-15的性质和结构的影响。

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