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Intrinsic activities and pore diffusion effect in hydrocarbon cracking in steamed Y zeolite

机译:Y型沸石分子筛在烃裂解中的内在活性和孔扩散作用

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In the literature, it has been shown that the hydrocarbon cracking activity of a zeolite particle can be greatly enhanced by steam treatment. The extent of enhancement depends on the proces condition. Recently, it has been shown that under conditions where the reaction is dominated by the monomolecular mechanism, the turnover frequency and the intrinsic activation energy for cracking are practically unchanged by steaming. However, a much larger difference in activity can be observed under conditions where bimolecular and oligomeric cracking dominate. Thus, the phenomenon of enhanced activity by steaming can be explained by the possibility that the bimolecular and oligomeric cracking reactions are pore diffusion-limited. Steaming generates defects in the zeolite particle, increases the external surface area for diffusion, which then leads to the large enhancement in the observed activity.
机译:在文献中已经表明,通过蒸汽处理可以大大提高沸石颗粒的烃裂化活性。增强的程度取决于处理条件。最近,已经表明,在反应以单分子机理为主的条件下,通过汽蒸,裂解的周转频率和内在活化能实际上没有改变。但是,在双分子和低聚裂解占主导的条件下,可以观察到活性差异更大。因此,可以通过双分子和低聚物裂化反应受到孔扩散限制的可能性来解释通过蒸煮而增强活性的现象。汽化会在沸石颗粒中产生缺陷,增加扩散的外表面积,从而导致观察到的活性大大提高。

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