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首页> 外文期刊>Catalysis science & technology >Design of nanocomposites with cobalt encapsulated in the zeolite micropores for selective synthesis of isoparaffins in Fischer-Tropsch reaction
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Design of nanocomposites with cobalt encapsulated in the zeolite micropores for selective synthesis of isoparaffins in Fischer-Tropsch reaction

机译:与钴纳米复合材料封装的设计在选择性合成的沸石微孔隙异链烷烃的费托反应

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摘要

A new strategy for the synthesis of metal-zeolite nanocomposite materials containing metal nanoparticles only in the zeolite pores is proposed. These materials were first prepared by zeolite impregnation with metal salts which resulted in metal species located both inside the zeolite pores and on the zeolite outer surface. Then, the metal oxide nanoparticles on the external zeolite surface were selectively extracted by larger heteropolyacid molecules which cannot enter the zeolite pores. The use of cobalt-zeolite nanocomposites with cobalt nanoparticles selectively encapsulated in the zeolite pores led to significantly higher selectivity to C-5-C-12 branched hydrocarbons in Fischer-Tropsch synthesis with the maximum ratio of isoparaffins to n-paraffins of 5.8.
机译:一个新的metal-zeolite的合成策略含有金属纳米复合材料纳米粒子只有在沸石孔建议。沸石与金属盐浸渍导致金属物种车内沸石毛孔和沸石外表面。然后,上的金属氧化物纳米颗粒外部沸石表面选择性提取的大heteropolyacid分子不能进入沸石孔。cobalt-zeolite与钴纳米复合材料纳米粒子有选择地封装的沸石孔导致更高选择性C-5-C-12扩展碳氢化合物费托合成的最大比例异链烷烃n-paraffins 5.8。

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