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首页> 外文期刊>Catalysis science & technology >Mechanistic understanding of ethane dehydrogenation and aromatization over Zn/ZSM-5: effects of Zn modification and CO2 co-reactant
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Mechanistic understanding of ethane dehydrogenation and aromatization over Zn/ZSM-5: effects of Zn modification and CO2 co-reactant

机译:机械的理解乙烷脱氢芳构化和锌/ ZSM-5:锌和二氧化碳co-reactant修改的影响

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摘要

Due to the vigorous development of shale gas production technology, the aromatization of light alkanes has become more attractive for the chemical industry. Ethane dehydrogenation/aromatization over Zn/ZSM-5 catalyst was investigated using density functional theory calculations to clarify the intrinsic effects of introducing a Zn modifier and CO2 co-reactant on the catalytic activity and performance. Introducing Zn to HZSM-5 resulted in the creation of new active sites composed of (Zn-O-Zn)(2+) species and thus altered the reaction pathways and reduced the kinetic barriers of ethane dehydrogenation. Moreover, Zn/ZSM-5 significantly suppressed methane by-product formation as compared to the unmodified ZSM-5, leading to an increased selectivity to aromatic products. In the presence of CO2, the H2O produced via the reverse water gas shift (RWGS) reaction could hydrolyze the (Zn-O-Zn)(2+) active sites and produce weaker acid sites, which correspond to the increased barriers for ethane dehydrogenation. The participation of H2O in ethane conversion also reduced the catalytic activity of Zn/ZSM-5. The present DFT results predict that adding Pt or Fe as a second modifier for Zn/ZSM-5 helps to prevent the hydrolysis of (Zn-O-Zn)(2+) active sites and minimize the negative effect of H2O on ethane conversion, potentially leading to CO2-assisted dehydrogenation/aromatization of light alkanes.
机译:由于页岩气的蓬勃发展生产技术、芳构化的光烷烃已成为更具吸引力的化学工业。脱氢芳构化/锌/ ZSM-5考察了催化剂使用密度功能理论计算澄清内在的影响引入锌修饰符和二氧化碳催化活性和co-reactant的性能。创建新的活跃网站组成的(Zn-O-Zn)(2 +)的物种,从而改变了反应途径,降低了动力乙烷脱氢的壁垒。锌/ ZSM-5显著抑制甲烷副产品而形成修改的ZSM-5,导致增加选择性芳香产品。产生的二氧化碳,水通过反向水气体转变(RWGS)可以水解反应(Zn-O-Zn)(2 +)活动网站并产生较弱酸的网站,它对应于增加乙烷脱氢的壁垒。水参与乙烷转化率减少锌/ ZSM-5的催化活性。现在的DFT结果预测,添加Pt或铁作为第二锌/ ZSM-5有助于修饰符防止水解(Zn-O-Zn)(2 +)活跃网站和H2O的负面影响最小化乙烷转换,可能导致CO2-assisted脱氢芳构化的轻烷烃。

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