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Transformation of ethylbenzene-m-xylene feed over MCM-22 zeolites with different acidities

机译:不同酸度的MCM-22沸石对乙苯间二甲苯进料的转化

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摘要

Transformation of ethylbenzene (EB, 22 wt%)-m-xylene (78 wt%) mixture was carried out over zeolite MCM-22 catalysts with different acidities. The modification of the number and strength of the acid sites was attained by: (i) dealumination by steaming and successive acid treatment and (ii) isomorphous substitution of framework Al for boron ([Al,B]MCM-22). The effect of platinum introduction was also investigated. The strong decrease in the Brønsted acidity, concomitant to the dealumination procedure, appears unfavorable since it leads to a drastic diminish of the degree of EB conversion, not compensated by satisfactory level of m-xylene isomerization. [Al,B]MCM-22 is a modification with much better performance, most probably because it contains both strong, Al-connected acid sites but in lower amount than in the parent sample, and weaker boron-generated sites and practically no any Lewis sites.udParent zeolite [Al]MCM-22 as well as B-substitution possess promising properties for ethylbenzene–m-xylene mixture transformation catalyst with adequate degree of EB conversion and extent of p-xylene approach to equilibrium as well as low xylene loss.ud
机译:在具有不同酸度的沸石MCM-22催化剂上进行乙苯(EB,22重量%)-间二甲苯(78重量%)混合物的转化。酸位点的数量和强度的改变是通过以下方法实现的:(i)通过汽蒸脱铝并进行连续的酸处理,以及(ii)用骨架同构取代硼([Al,B] MCM-22)。还研究了铂引入的影响。伴随脱铝过程,布朗斯台德酸度的强烈降低似乎是不利的,因为这会导致EB转化率的急剧降低,而不能通过令人满意的间二甲苯异构化水平进行补偿。 [Al,B] MCM-22是一种性能更好的修饰,很可能是因为它既包含与Al连接的强酸位点,又比母体样品中的酸位点少,并且硼生成位点更弱,几乎没有路易斯 ud分子沸石[Al] MCM-22以及B取代物对乙苯-间二甲苯混合物转化催化剂具有良好的性能,具有足够的EB转化率和对二甲苯达到平衡的程度,并且二甲苯损失低。 ud

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