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A novel method to synthesize amorphous silica-alumina materials with mesoporous distribution without using templates and pore-regulating agents

机译:a novel method to synthesize amorphous silica-alumina materials with mesoporous distribution without using templates and pore-regulating agents

摘要

In this study, a novel sol-gel method is used to synthesize amorphous silica-alumina materials with a narrow mesoporous distribution and various Si/Al molar ratios without using any templates and pore-regulating agents. During the preparation procedure, only inexpensive inorganic salts were used as raw materials, instead of expensive and harmful alkoxides. The precursor sol was dried at room temperature in a vacuum box kept at 60 mmHg until it began to form the gel. The results of a nitrogen sorption experiment indicate that the synthesized materials with different Si/Al molar ratios have similar mesoporous distributions (within 2-12 nm). Moreover, it was found that the material's pore size distribution remains at a similar value during the heat treatment from room temperature to 550 degreesC. On the basis of the nitrogen sorption, TEM, and AFM characterization results, a formation mechanism of mesopores which accounts for the experimental data is also suggested. This suggested mechanism involves rearrangement of the primary particles during the drying process to form the precursors of the similarly sized mesopores. The synthesized materials were characterized by XRD, thermal analysis (TG/DTA), Al-27 and Si-29 MAS NMR spectroscopy, SEM, TEM, and AFM. The results of Al-27 and 29Si MAS NMR indicate that the distribution of silicon and aluminum in the synthesized materials is more uniform and homogeneous than that in the mixed oxides prepared via the traditional sol-gel method even at high alumina contents. The type and density of the acid sites were studied using pyridine adsorption-desorption FTIR spectroscopy. It was shown that the acidity of the synthesized materials is higher than that of the silica-alumina materials prepared by conventional methods.
机译:在这项研究中,一种新颖的溶胶-凝胶方法被用于合成具有窄介孔分布和各种Si / Al摩尔比的无定形二氧化硅-氧化铝材料,而无需使用任何模板和孔隙调节剂。在制备过程中,仅使用廉价的无机盐作为原料,而不使用昂贵且有害的醇盐。将前体溶胶在室温保持在60 mmHg的真空箱中干燥,直到开始形成凝胶为止。氮吸附实验的结果表明,不同Si / Al摩尔比的合成材料具有相似的介孔分布(在2-12 nm范围内)。此外,发现在从室温至550℃的热处理期间,材料的孔径分布保持在相似的值。根据氮吸附,TEM和AFM表征结果,还提出了介孔的形成机理,该机理解释了实验数据。该建议的机理涉及在干燥过程中初级颗粒的重排以形成类似尺寸的中孔的前体。合成的材料通过XRD,热分析(TG / DTA),Al-27和Si-29 MAS NMR光谱,SEM,TEM和AFM进行表征。 Al-27和29Si MAS NMR的结果表明,即使在高氧化铝含量下,合成材料中硅和铝的分布也比通过传统溶胶-凝胶法制备的混合氧化物中的硅更均匀,更均匀。使用吡啶吸附-脱附FTIR光谱研究了酸位的类型和密度。结果表明,合成材料的酸度高于常规方法制备的二氧化硅-氧化铝材料的酸度。

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