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Synthesis Of Silica-pillared Clay (spc) With Ordered Mesoporous Structure By One-step Method Without Preswelling Process

机译:无须预溶过程的一步法合成有序介孔结构的二氧化硅桩粘土

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The simultaneous intercalation of surfactants and TEOS into clay interlayers and subsequent intragallery ammonia-catalyzed hydrolysis of TEOS resulted in mesoporous silica-pillared clay (SPC). These SPC materials exhibited refractions corresponding to a basal spacing of 3.7-4.3 nm, a uniform pore size of 2.5-3.16 nm and large surface areas of 567-576 m~2/g. Our results indicate that surfactants play a decisive role in pore formation, because they act as micelle-like template during the hydrolysis of TOES. Moreover, the pore size of SPC derivatives is controllable by the molecular length of surfactant. All of the SPC materials reported here exhibit high catalytic activity and selectivity for coker gas oil (CGO) cracking reaction in comparison to parent MCM-41 and Al-MCM-41. The excellent acid catalytic activity, together with their sable, well-organized porous structure, opens up new opportunities for applications in catalysis.
机译:表面活性剂和TEOS的同时嵌入粘土层中,随后在画廊内氨催化的TEOS水解产生了介孔二氧化硅柱状粘土(SPC)。这些SPC材料表现出的折射率对应于3.7-4.3 nm的基本间距,2.5-3.16 nm的均匀孔径以及567-576 m〜2 / g的大表面积。我们的结果表明表面活性剂在孔形成中起决定性作用,因为它们在TOES水解过程中起胶束样模板的作用。而且,SPC衍生物的孔径可以通过表面活性剂的分子长度来控制。与母体MCM-41和Al-MCM-41相比,此处报道的所有SPC材料对焦化瓦斯油(CGO)裂解反应均显示出高催化活性和选择性。出色的酸催化活性及其稳定,组织良好的多孔结构,为催化应用提供了新的机会。

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