首页> 外文期刊>Journal of Catalysis >The balance of acid, basic and redox sites in Mg/Me-mixed oxides: The effect on catalytic performance in the gas-phase alkylation of m-cresol with methanol
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The balance of acid, basic and redox sites in Mg/Me-mixed oxides: The effect on catalytic performance in the gas-phase alkylation of m-cresol with methanol

机译:Mg / Me混合氧化物中酸,碱和氧化还原位点的平衡:对间甲酚与甲醇气相烷基化的催化性能的影响

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摘要

The reactivity of Mg/Me-mixed oxides (Me = Fe, Cr, Al) in m-cresol gas-phase methylation with methanol was studied, with the aim of finding relationships between catalytic performance and surface/bulk features. All systems exhibit similar surface properties (basically due to the presence of basic and Lewis-type acid sites), but the presence of extra cations in the MgO framework affects greatly the products obtained in the mentioned catalytic reaction, depending on the possible co-presence of redox capacity. In particular, (i) the Mg/Al/O system, characterized by no redox capacity, shows catalytic behaviour quite similar to that of conventional Br?nsted-type acid catalysts, though with the advantage of exhibiting almost no deactivation during use (a rather common problem for acid catalysts activating methanol for phenol attack); (ii) the Mg/Cr/O catalyst shows a reactivity typical of a basic catalyst, with high chemo- and regio-selectivity and the favoured formation of 2,5-dimethylphenol; (iii) the Mg/Fe/O system presents a catalytic behaviour closer to that of Mg/Cr/O, if referred to the distribution of phenolic products, but it also exhibits a better activity in methanol dehydrogenation to formaldehyde (that is the true electrophilic reactant for m-cresol ring methylation), and in the decomposition of formaldehyde into light compounds. This behaviour causes a poor selectivity to dimethylphenols with respect to converted methanol, whereas the selectivity with respect to converted m-cresol is not different from that shown by Mg/Cr/O system.
机译:研究了Mg / Me混合氧化物(Me = Fe,Cr,Al)在间甲酚气相甲基化中与甲醇的反应性,目的是发现催化性能与表面/本体特征之间的关系。所有系统都表现出相似的表面性质(基本上是由于存在碱性和路易斯型酸位),但是MgO骨架中额外阳离子的存在会极大地影响上述催化反应中获得的产物,具体取决于可能的共存氧化还原能力。特别是(i)Mg / Al / O系统的特点是没有氧化还原容量,尽管具有使用过程中几乎不失活的优点,但其催化行为与传统的Brnsnsted型酸催化剂非常相似。酸催化剂活化甲醇以抵抗苯酚的普遍问题); (ii)Mg / Cr / O催化剂表现出典型的碱性催化剂的反应性,具有高的化学和区域选择性以及有利的2,5-二甲基苯酚的形成; (iii)如果提到酚类产品的分布,Mg / Fe / O系统的催化行为更接近Mg / Cr / O,但在甲醇脱氢制甲醛方面也表现出更好的活性(这是事实。亲电反应物为间甲酚环甲基化),并在分解过程中将甲醛分解为轻质化合物。该行为导致相对于转化的甲醇,对二甲基苯酚的选择性差,而相对于转化的间甲酚的选择性与Mg / Cr / O体系所显示的选择性相同。

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