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Effects of Si/Al Ratio on the Distribution of Framework Al and on the Rates of Alkane Monomolecular Cracking and Dehydrogenation in H-MFI

机译:Si / Al比对H-MFI中骨架Al的分布及烷烃单分子裂解和脱氢速率的影响

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摘要

The aim of this study was to investigate the influence of Si/Al ratio on the locations of exchangeable cations in H-MFI and on the monomolecular cracking and dehydrogenation reactions of n-butane. On the basis of UV-visible spectroscopic analysis of Co(Ⅱ) exchanged into MFI, it was inferred that the fraction of Co(Ⅱ) (and, by extension, Bronsted protons) located at channel intersections relative to straight and sinusoidal channels increases with increasing Al content. Concurrently, turnover frequencies for all monomolecular reactions, and the selectivities to dehydrogenation versus cracking and to terminal cracking versus central cracking, generally increased. The changes in selectivity with Al content are consistent with the finding that the transition-state geometry for dehydrogenation is bulky and resembles a product state, and should therefore exhibit a stronger preference to occur at channel intersections relative to cracking. Increases in turnover frequencies are attributed partly to increases in intrinsic activation entropies that compensate for concurrent increases in intrinsic activation energies, most strongly for dehydrogenation and terminal cracking, resulting in increased selectivity to these reactions at higher Al content. This interpretation contrasts with the view that intrinsic activation barriers are constant. It is also observed that isobutene inhibits the rate of n-butane dehydrogenation. Theoretical calculations indicate that this effect originates from adsorption of isobutene at the channel intersections. Because cracking reaction rates are not affected by the presence of isobutene, this result suggests that the preference of dehydrogenation to occur at channel intersections is much stronger than the preference for cracking to occur at these locations.
机译:这项研究的目的是研究Si / Al比对H-MFI中可交换阳离子的位置以及正丁烷的单分子裂解和脱氢反应的影响。根据交换成MFI的Co(Ⅱ)的紫外可见光谱分析,可以推断,相对于直通道和正弦通道,位于通道交点处的Co(Ⅱ)(以及扩展的质子化质子)比例随增加铝含量。同时,所有单分子反应的周转频率以及脱氢与裂化以及末端裂化与中心裂化的选择性通常增加。随Al含量的选择性变化与以下发现相符:脱氢的过渡态几何结构庞大且类似于产物态,因此应表现出相对于裂纹更优先出现在通道交叉处。周转频率的增加部分归因于内在活化熵的增加,该内在活化熵的补偿内在活化能的同时增加,最强烈地表现为脱氢和末端裂化,从而导致在较高Al含量下对这些反应的选择性增加。这种解释与固有激活壁垒是恒定的观点形成对比。还观察到异丁烯抑制正丁烷脱氢的速率。理论计算表明,这种效应源于异丁烯在通道交叉处的吸附。因为裂化反应速率不受异丁烯的存在影响,所以该结果表明,在通道交叉点发生脱氢的优先权要强于在这些位置发生裂化的优先权。

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  • 来源
    《Journal of the American Chemical Society》 |2013年第51期|19193-19207|共15页
  • 作者

    Amber Janda; Alexis T. Bell;

  • 作者单位

    Department of Chemical and Biomolecular Engineering, University of California-Berkeley, Berkeley, California 94720, United States;

    Department of Chemical and Biomolecular Engineering, University of California-Berkeley, Berkeley, California 94720, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:12:54

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