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首页> 外文期刊>Journal of Catalysis >The selectivity of n-hexane hydroconversion on MOR-, MAZ-, and FAU-type zeolites
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The selectivity of n-hexane hydroconversion on MOR-, MAZ-, and FAU-type zeolites

机译:正己烷加氢转化对MOR,MAZ和FAU型沸石的选择性

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Analyses of a series of published n-hexane hydroisomerization product slates suggest that MAZ-type zeolites yield more dimethylbutane and less methylpentane than either FAU- or MOR-type zeolites. Molecular simulations do not corroborate the traditional view that these selectivity differences are specifically related to the MAZ-, FAU-, or MOR- type zeolite topology. A scrutiny of the literature indicates that reported variation in selectivity relates to a variation in the efficiency of the (de)hydrogenation function relative to the acid function. The FAU-type zeolite catalyst had the most efficient hydrogenation function. The efficiency of the hydrogenation function on the MAZ-type zeolite was low enough to significantly enhance the 2,3-dimethylbutane yield relative to the methylpentane yield, but not low enough to decrease the 2,2-dimethylbutane yield. The efficiency of the hydrogenation function on the MOR-type zeolite was low enough to do both. Only at a sufficiently high n-hexane hydroconversion does the catalyst with the most efficient hydrogenation function exhibit the highest dimethylbutane yield. This new perspective on the reported hexane hydroconversion selectivities suggests that a FAU-type zeolite catalyst with a highly efficient hydrogenation function is best suited for n-hexane hydroisomerization. The FAU topology has the highest porosity which should afford the highest activity without impairing selectivity. (C) 2004 Elsevier Inc. All rights reserved.
机译:对一系列已发表的正己烷加氢异构化产物的分析表明,与FAU型或MOR型沸石相比,MAZ型沸石可产生更多的二甲基丁烷和更少的甲基戊烷。分子模拟并不能证实传统观点,即这些选择性差异与MAZ型,FAU型或MOR型沸石的拓扑结构特别相关。对文献的审查表明,报道的选择性变化与(脱)氢化功能相对于酸功能的效率变化有关。 FAU型沸石催化剂具有最有效的加氢功能。相对于甲基戊烷产率,MAZ型沸石的氢化功能的效率低到足以显着提高2,3-二甲基丁烷产率,但不足以降低2,2-二甲基丁烷产率。在MOR型沸石上,氢化功能的效率很低,不足以同时兼顾两者。只有在足够高的正己烷加氢转化率下,具有最有效氢化功能的催化剂才能显示出最高的二甲基丁烷收率。对已报道的己烷加氢转化选择性的新观点表明,具有高效加氢功能的FAU型沸石催化剂最适合于正己烷加氢异构化。 FAU拓扑具有最高的孔隙率,应在不损害选择性的情况下提供最高的活性。 (C)2004 Elsevier Inc.保留所有权利。

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