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首页> 外文期刊>Journal of CO2 Utilization >Mechanistic insights into Cu and K promoted Fe-catalyzed production of liquid hydrocarbons via CO2 hydrogenation
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Mechanistic insights into Cu and K promoted Fe-catalyzed production of liquid hydrocarbons via CO2 hydrogenation

机译:Cu和K的机械洞察通过CO 2氢化促进Fe催化的液体烃生产

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Understanding the origin of the high activity of Fe-Cu-K catalysts during CO2 hydrogenation for liquid hydrocarbon production is imperative. However, designing suitable catalysts for efficient power-to-liquid processes remains challenging. In this work, we determined how Cu and K modified the Fe structure and revealed the origin of their synergistic effect in promoting its catalytic performance during CO2 hydrogenation to long-chain hydrocarbons. Detailed analyses confirmed that K addition facilitated incorporation of Cu into the Fe bulk lattice and helped maintain either a metallic or carbide active phase during the reaction. Electronic structure calculations suggested that formation of Fe-Cu alloy facilitated CO2 hydrogenation, regardless of the reaction pathway. A series of scaling relations between C binding energies and other adsorbates suggested that the presence of K facilitated CO formation and C-C coupling reactions over the Cu and Fe driven catalysis, respectively. Hence, the coexistence of Cu and K in the Fe catalyst is essential for producing liquid hydrocarbons from CO2.
机译:理解在CO 2氢化过程中Fe-Cu-K催化剂的高活性的来源是液态烃生产的势病。然而,为有效的有效电力到液体过程设计合适的催化剂仍然具有挑战性。在这项工作中,我们确定了Cu和K如何修饰Fe结构,并揭示了它们协同作用的起源,以在CO 2氢化到长链烃期间促进其催化性能。详细分析证实,K加法促进Cu掺入Fe块状物格中,并帮助在反应过程中保持金属或碳化物活性相。电子结构计算表明,无论反应途径如何,形成Fe-Cu合金促进的CO2氢化。 C结合能量和其他吸附物之间的一系列缩放关系表明,分别对Cu和Fe驱动的催化分别存在K促进的CO形成和C-C偶联反应。因此,在Fe催化剂中Cu和K的共存对于生产来自CO 2的液态烃是必不可少的。

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