Synthesis of a zeolitic thin layer by a vapor-phase transport method: appearance of a preferential orientation of MFI zeolite

Eiichi Kikuchi , Kazuhiko Yamashita , Sachioko Hiromoto , Korekazu Ueyama , Masahiko Matsukata
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引用次数: 37

Abstract

Zeolitic membranes were synthesized on a porous alumina support by the vapor-phase transport method using one of two alumina sources: aluminum sulfate and sodium aluminate. By choosing the appropriate period and temperature for drying the aluminosilicate gel on the alumina support, MOR, FER and MFI could be synthesized. MOR was formed when the water content in the dry gel was high. As the water content decreased, FER and MFI were formed sequentially. Preferential formation of MFI was achieved by treating the dry gel at 373 K. The temperature at which the support was dipped in the parent gel also influenced the type of zeolite formed, although the effect of drying conditions was more pronounced. A similar trend was found for both aluminum sulfate and sodium aluminate.

When the alumina source was sodium aluminate and the aluminosilicate gel was treated at 373 K, a preferentially oriented MFI membrane could be synthesized, as the (a00) and (0b0) crystal faces were oriented in parallel to the surface of porous alumina support. The uniform and dense morphology of the dry gel seems to account for the appearance of the orientation.

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气相输运法合成沸石薄层:MFI沸石优先取向的出现
采用硫酸铝和铝酸钠两种氧化铝源之一,采用气相输运法在多孔氧化铝载体上合成沸石膜。通过选择合适的时间和温度,在氧化铝载体上干燥硅酸铝凝胶,可以合成MOR、FER和MFI。当干凝胶含水量较高时,会形成MOR。随着含水率的降低,FER和MFI依次形成。在373 K下处理干凝胶,实现了MFI的优先形成。尽管干燥条件的影响更为明显,但载体在母体凝胶中浸渍的温度也会影响形成的沸石类型。在硫酸铝和铝酸钠中也发现了类似的趋势。当氧化铝源为铝酸钠,铝硅酸盐凝胶在373 K下处理时,由于(a00)和(0b0)晶面与多孔氧化铝载体表面平行,可以合成优先取向的MFI膜。干凝胶的均匀和致密的形态似乎解释了取向的外观。
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Author index Subject index Contents Investigation of organosilanes as structure-directing agents in zeolite synthesis The influence of gel properties on the kinetics of crystallization and particulate properties of MFI-type zeolities. I. The influence of time and temperature of gel ageing on the particulate properties of silicalite-1 microcrystals
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