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Promoting effects of MgO and Pd modification on the catalytic performance of hierarchical porous ZSM-5 for catalyzing benzene alkylation with methanol

机译:MgO和Pd改性对分级多孔ZSM-5催化甲醇催化苯烷基化反应的催化作用

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The effect of MgO and Pd modification on the catalytic performance of hierarchical porous ZSM-5 for benzene alkylation with methanol was investigated. The results indicated that the introduction of MgO could reduce the Bronsted acid sites which suppressed the side reaction of methanol to olefins and in turn effectively promoted the alkylation of benzene. However, the single modification of MgO could not completely suppress the formation of ethylbenzene and coke. Doping a small amount of Pd had a positive effect on inhibiting the generation of ethylbenzene and coke, which could be attributed to the hydrogenation of ethylene into ethane on Pd. The dual modified catalyst (MgO and Pd) exhibited high benzene conversion (56%) and xylene selectivity (39.1%), and the lowest ethylbenzene selectivity (0.13%) and coke content (0.4 wt%).
机译:研究了MgO和Pd改性对分级多孔ZSM-5催化甲醇苯烷基化反应的影响。结果表明,MgO的引入可以减少布朗斯台德酸位,从而抑制了甲醇与烯烃的副反应,进而有效地促进了苯的烷基化。但是,MgO的单一修饰不能完全抑制乙苯和焦炭的形成。掺杂少量Pd对抑制乙苯和焦炭的生成有积极作用,这可能归因于Pd上乙烯加氢成乙烷。双改性催化剂(MgO和Pd)显示出高的苯转化率(56%)和二甲苯选择性(39.1%),以及最低的乙苯选择性(0.13%)和焦炭含量(0.4 wt%)。

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