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首页> 外文期刊>ChemCatChem >Influence of Extraframework Aluminum on the Bronsted Acidity and Catalytic Reactivity of Faujasite Zeolite
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Influence of Extraframework Aluminum on the Bronsted Acidity and Catalytic Reactivity of Faujasite Zeolite

机译:预铝铝对Faujasite沸石桥接酸度和催化反应性的影响

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摘要

A series of faujasite zeolites was modified by extraframework Al (AlEF) with the goal to investigate the influence of such species on the intrinsic BrOnsted acidity and catalytic activity towards paraffin cracking. The chemical state of AlEF and zeolite acidity were investigated by 27Al MAS NMR and COads IR spectroscopy, H/D exchange reaction, and propane cracking. Strongly acidic defect-free Y zeolites were obtained by substitution of framework Al by Si with (NH4)2SiF6. In accordance with the next-nearest-neighbor model, the intrinsic acidity of the protons increased with decreasing framework Al density. This increased acidity was evidenced by an increased shift of the OH stretching vibration upon CO adsorption in COads IR spectroscopy and by an increased H/D exchange rate in H/D exchange reactions with perdeuterobenzene. All of the acid sites in these zeolites were of equal strength beyond a certain Si/Al ratio. The increased acidity resulted in an enhanced propane cracking activity. Modification of a model dealuminated Y zeolite by AlEF only resulted in a small fraction of cationic AlEF species, because it was difficult to control the ion exchange process. In comparison, commercial ultrastabilized Y zeolites contained less AlEF and these species were predominantly present in cationic form. The rate of propane cracking strongly correlated to the concentration of BrOnsted acid sites perturbed by cationic AlEF species. The results of MQMAS 27Al NMR spectroscopy confirmed the presence of sites perturbed by AlEF and unaffected framework Al sites. Zeolites with higher intrinsic cracking activities contained a higher proportion of perturbed sites. Although COads IR and H/D exchange methods proved to be suitable methods to probe the acidity of Y zeolites free from AlEF, they were less suitable to predict the reactivity if the BrOnsted acid sites were affected by cationic AlEF species.
机译:通过Extraframework Al(Alef)修饰一系列Faujasite沸石,该目的是研究这些物种对石蜡裂化的内在刚性酸度和催化活性的影响。通过27AlMAS NMR和Coads IR光谱,H / D交换反应和丙烷裂化研究了α0F和沸石酸度的化学状态。通过用(NH 4)2SIF6通过Si取代框架Al获得强酸性缺陷Y沸石。根据下一个最近邻的模型,质子的内在酸度随着框架铝密度的降低而增加。通过在Coads IR光谱中的共同吸附时oh拉伸振动的偏移增加,并且通过与丙二屈苯苯磺苯的H / D换液反应的增加的H / D汇率增加,可以通过增加H / D汇率的增加的酸度来证明这种增加的酸度。这些沸石中的所有酸位点具有超出某种Si / Al比的相等强度。增加的酸度导致丙烷裂化活性增强。通过Alef改变模型浸涂Y沸石仅导致阳离子炎均匀的一小部分,因为难以控制离子交换过程。相比之下,含有较少的Alef和这些物种主要以阳离子形式出现的商业超标化Y沸石。丙烷裂纹的速率与阳离子均衡物种扰动的正囊酸位点的浓度强烈相关。 MQMAS 27Al NMR光谱的结果证实存在由Alef和未受影响的框架Al位点扰乱的位点。具有更高的内在裂解活动的沸石含有较高比例的扰动位点。虽然Coads IR和H / D exchange方法被证明是探讨y沸石的酸度的合适方法,但如果伪系酸位点受阳离子αFEF物种的影响,则它们不太适合于预测反应性。

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