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Mg and Zn co-doped mesoporous ZSM-5 as an ideal catalyst for ethane dehydroaromatization reaction

机译:Mg and Zn co-doped mesoporous ZSM-5 as an ideal catalyst for ethane dehydroaromatization reaction

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Ethane dehydroaromatization (EDA) is a promising method for synthesizing benzene, toluene, and xylene (BTX) to meet the increasing demand for these compounds. Zn2+-ion exchanged MFI-type zeolite (ZnZSM-5) is an active catalyst for EDA reactions. However, ZnZSM-5 is rapidly deactivated by coke formation due to its excess acidity derived from aluminum (Al) sites. In this study, we prepared Mg and Zn co-doped ZSM-5 zeolites for EDA reactions. Mg species were loaded in the ZSM-5 zeolites using an impregnation method, whereas Zn species were introduced via an ion exchange process. By optimizing the synthesis conditions, Mg- and Zn co-doped ZSM-5 zeolites demonstrated unique properties: (1) high content of Zn species with moderate dehydrogenation activity, (2) mesoporosity, and (3) mild acidity, all of which contributed to higher BTX yields and a longer catalyst lifetime in the EDA reaction compared to those in the EDA reactions with ZnZSM-5 as the catalyst. This work contributes to the progress of catalyst design for transforming light alkanes into value-added chemicals.
机译:乙烷dehydroaromatization (EDA)是一种很有前途的方法合成苯、甲苯和二甲苯(BTX)来满足日益增长的需求这些化合物。沸石(ZnZSM-5)是一个活跃的EDA的催化剂反应。停用的焦炭的形成由于其过度酸度来自铝(Al)网站。研究中,我们准备了Mg和锌co-doped ZSM-5沸石对EDA反应。使用一个加载的ZSM-5沸石浸渍法,而锌物种介绍了通过离子交换过程。优化合成条件、镁和锌co-doped ZSM-5沸石独特属性:(1)高含量锌的物种适度的脱氢活动,(2)中孔隙,(3)轻微的酸度,所有这一切导致更高的BTX收益率和较长催化剂寿命的EDA反应相比那些与ZnZSM-5 EDA反应催化剂。设计改变光催化剂烷烃增值的化学物质。

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