沸石
硅酸铝
热液循环
结晶
介孔材料
材料科学
化学工程
溶解
表征(材料科学)
水热合成
矿物学
化学
纳米技术
催化作用
有机化学
工程类
作者
Hery Jon,Nobuaki Ikawa,Yasunori Oumi,Tsuneji Sano
摘要
The use of FAU zeolite as a starting material was found to enhance the crystallization rate of *BEA zeolite, suggesting that the dissolution of FAU zeolite provides locally ordered aluminosilicate species that assemble and evolve into *BEA zeolite. Here we show experimental findings that indicate the presence of such locally ordered aluminosilicate species in intermediate phases involved in the hydrothermal conversion of FAU zeolite into *BEA zeolite. On the basis of the previous fact that cetyltrimethylammonium (CTA+) cations seem to be able to preserve zeolitic fragments or seeds and retain them in the mesoporous framework, this method was applied to the characterization of the obtained intermediate phases. From the detailed characterization of mesoporous products, the different characteristics were found to be observed between intermediate phases. Namely, as the more disordered arrangement was found in the mesoporous products, the presence of evolved, locally ordered aluminosilicate species was strongly indicated.
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