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Acidity and catalytic activity of mesoporous ZSM-5 in comparison with zeolite ZSM-5, Al-MCM-41 and silica-alumina

机译:与沸石ZSM-5,Al-MCM-41和二氧化硅-氧化铝相比,介孔ZSM-5的酸度和催化活性

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Acidity of mesoporous HZSM-5 prepared using amphophilic organosilane template molecules was measured. Br0nsted acid sites were observed in the prepared sample, and the number and the strength of Br0nsted acid sites were determined quantitatively by a method of infrared-mass spectroscopy/temperature-programmed desorption (IRMS-TPD) of ammonia. AH for ammonia adsorption as an index of the strength was ca. 150 kJ mol~(-1) that was almost the same as on usual HZSM-5, but the number was smaller than that of HZSM-5. From the measured acidity, it was concluded that the mesoporous materials contained a smaller concentration of Br0nsted acid site notable on the structure of HZSM-5. Measurements of turnover frequency (TOF) in the catalytic cracking of octane supported the conclusion. Density functional calculations showed that the defect sites Al-OH and Si-OH attached to the Br0nsted acid site changed the strength of the acid sites to show some possible structures of the weak and strong Bronsted acid sites included in the mesoporous HZSM-5. Acidities of Al-MCM-41 and silica-alumina were also measured, and the difference in the solid acidities of these materials was discussed.
机译:测量了使用两亲性有机硅烷模板分子制备的中孔HZSM-5的酸度。在制备的样品中观察到布朗斯台德酸位,并通过红外质谱/程序升温脱附法(IRMS-TPD)定量测定布朗斯台德酸位的数量和强度。作为强度指标的用于氨吸附的AH为约。 150 kJ mol〜(-1)与通常的HZSM-5几乎相同,但数量小于HZSM-5。根据测得的酸度,可以得出结论,介孔材料在HZSM-5的结构上具有较小浓度的布朗斯台德酸位。对辛烷催化裂化中周转频率(TOF)的测量支持了这一结论。密度泛函计算表明,附着在布朗斯台德酸位点上的缺陷位点Al-OH和Si-OH改变了酸位点的强度,从而显示出介孔HZSM-5中弱和强布朗斯台德酸位点的某些可能结构。还测量了Al-MCM-41和二氧化硅-氧化铝的酸度,并讨论了这些材料的固体酸度的差异。

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