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On methanol to hydrocarbons reactions in a hierarchically structured ZSM-5 zeolite catalyst

机译:在分层结构化ZSM-5沸石催化剂中甲醇对烃的反应

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Two type ZSM-5 catalysts (Si/Al ratio of similar to 30) with different mesoporosity were synthesized by using a structure directing agent of tetra-n-butylphosphonium hydroxide. In particular, the molar compositions of ethanol and water in the synthetic precursor were changed in order to acquire the two type ZSM-5 catalysts. The resulting ZSM-5 catalysts were formed via the interconnection of very thin pillars or lamellae; (1) similar to 6 nm thick with marked mesoporosity (H_30; high mesoporous ZSM-5) and (2) similar to 13 nm thick without any considerable mesoporosity (L_30; low mesoporous ZSM-5). The pyridine-based acid titration reveals that H_30 had internal Bronsted acid sites similar to those in the commercially available ZSM-5 with a Si/Al ratio of 75 (referred to as C_75), though H_30 contained a large amount of external Bronsted acid sites. The methanol to hydrocarbons (MTH) reaction performance of these two ZSM-5 catalysts demonstrates that H_30 preferred to produce propene over ethene compared to C_75, while L_30 showed a very poor MTH performance mainly due to the lower amount of internal Bronsted acid sites. More desirably, a very short diffusional length (similar to 18,600 times lower than that in C_75) in H_30 considerably disfavored the aromatic dealkylation that is known to produce ethene. With this, H_30 allowed for achieving the ratio of propene to ethene as high as similar to 9.1, which is, to the best of our knowledge, a highest value among the MTH results on ZSM-5 catalysts without any co-feed. Furthermore, ceria-doped H_30 not only enhanced the stability for the MTH reaction via a passivation of the external Bronsted acid sites, but also improved a propene to ethene ratio up to similar to 15.0.
机译:通过使用Tetra-N-丙基膦酸铵的结构引导剂,合成两种型ZSM-5催化剂(与30类似的二进制型相似的比例为30)。特别地,改变了合成前体中乙醇和水的摩尔组合物以获得两种型ZSM-5催化剂。通过非常薄的柱或薄片的互连形成所得ZSM-5催化剂; (1)与6nm厚的相似,具有标记的介孔(H_30;高介孔ZSM-5)和(2)类似于13nm厚,没有任何相当大的介体(L_30;低介孔ZSM-5)。吡啶基酸滴定显示,H_30具有与市售ZSM-5中的内部布朗酸盐位点,其具有75的Si / Al比(称为C_75),但H_30含有大量的外部布朗施亚酸位点。这两个ZSM-5催化剂的碳氢甲醇(MTH)反应性能表明,与C_75相比,H_30优选在乙烯上产生丙烯,而L_30显示出非常差的MTH性能,主要是由于较低的内部伪造酸位点。更理想地,在H_30中的非常短的扩散长度(与C_75中的C_75中的倍率低18,600次)显着不适用于已知制备乙烯的芳族脱硫。由此,H_30允许实现丙烯与乙烯相似的比例,与我们所知的最佳相似,即ZSM-5催化剂的MTH结果中的最高值,没有任何共源。此外,二氧化铈掺杂的H_30不仅通过外部布朗斯特酸位点的钝化增强了MTH反应的稳定性,而且还改善了与乙烯比相似的丙烯与15.0相似。

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