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Key factors for the encapsulation of Keggin-type heteropoly acids in the supercages of Y-type zeolite

机译:Y型沸石超笼中Keggin型杂多酸包封的关键因素

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The influences of the properties of the zeolite support on the amount of encapsualtion of Keggin-type heteropoly acid (HPA) molecules in the supercages of Y-type zeolite were investigated to clarify the key factors for the production of a solid acid catalyst which maintains activity in aqueous solutions. The investigated properties were the SiO_2/Al_2O_3 ratio and the type and amount of counter cation occupying hte cation sites of hte zeolite support. It was found that in order to efficiently encapsulate HPA molecules, the zeolite support must have a moderate number of aluminum atoms in its framework, and cations which promote the formation of HPA precursors must occupy the cation sites indu ced by these aluminu m atoms. It was also found that the degree of ion exchange of such cations must be high enough so that the cations can exist within the supercages, and therefore can contribute to the formation of HPAs. By controlling these factors, we succeeded in enhancing the catalytic activity of the encapsulated catlayst.
机译:研究了沸石载体性能对Y型沸石超笼中Keggin型杂多酸(HPA)分子的包封量的影响,从而阐明了保持活性的固体酸催化剂生产的关键因素在水溶液中。所研究的性质为SiO_2 / Al_2O_3的比值以及沸石载体中反阳离子占据正阳离子位点的类型和数量。已经发现,为了有效地包封HPA分子,沸石载体必须在其骨架中具有适量的铝原子,并且促进HPA前体形成的阳离子必须占据这些铝原子所形成的阳离子位点。还发现这些阳离子的离子交换程度必须足够高,以使阳离子可以存在于超笼中,因此可以有助于HPA的形成。通过控制这些因素,我们成功地提高了包封催化剂的催化活性。

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