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首页> 外文期刊>ACS Omega >Exploring the Reaction Mechanisms of Furfural Hydrodeoxygenation on a CuNiCu(111) Bimetallic Catalyst Surface from Computation
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Exploring the Reaction Mechanisms of Furfural Hydrodeoxygenation on a CuNiCu(111) Bimetallic Catalyst Surface from Computation

机译:从计算中探索丘比测菌(111)双金属催化剂表面上的糠醛加氢脱氧的反应机制

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In this study, the selectively catalytic hydrodeoxygenation of furfural (F–CHO) to 2-methylfuran (F–CH_(3)) on the CuNiCu(111) bimetallic catalyst surface was systematically investigated based on the periodic density functional theory, including dispersion correction. The formation of furfuryl alcohol (F–CH_(2)OH) involved two steps: the preferred first step was the hydrogenation of the branched C atom, forming the alkoxyl intermediate (F–CHO + H = F–CH_(2)O), and the second step was H addition to the alkoxyl group, resulting in furfuryl alcohol (F–CH_(2)O + H = F–CH_(2)OH), which was the rate-controlling step. In contrast, in the formation of 2-methylfuran, the first step was the dehydroxylation of furfuryl alcohol, resulting in alkyl (F–CH_(2)) and OH (F–CH_(2)OH = F–CH_(2) + OH) groups, the second step was the hydrogenation of F–CH_(2) (F–CH_(2) + OH + H = F–CH_(3) + OH), and the rate-controlling step was the hydrogenation of OH to H_(2)O (OH + H = H_(2)O). Based on the comparison results of the NiCuCu(111), Cu(111), and CuNiCu(111) surfaces, it was concluded that the catalytic performance of the catalyst was closely related to the adsorption structure of furfural. These results provide a basis for studying the intrinsic activity of NiCu catalysts during the hydrodeoxygenation of refined oxygenated compounds involving biomass-derived oils.
机译:在该研究中,基于周期性的密度泛函理论,系统地研究了Cunicu(111)对二金属催化剂表面上的糠醛(F-Cho)至2-甲基杂环(F-CH_(3))的选择性催化加氢脱氧(F-CH_(3)),包括分散校正。富糠醇(F-CH_(2)OH)的形成涉及两个步骤:优选的第一步骤是支链C原子的氢化,形成烷氧基中间体(F-CHO + H = F-CH_(2)O)并且第二步骤是烷氧基的H除了HaIt,得到糠醇(F-CH_(2)O + H = F-CH_(2)OH),这是速率控制步骤。相反,在2-甲基呋喃的形成中,第一步骤是糠醇的脱羟基化,得到烷基(F-CH_(2))和OH(F-CH_(2)OH = F-CH_(2)+ OH)组,第二步骤是F-CH_(2)的氢化(F-CH_(2)+ OH + H = F-CH_(3)+ OH),速率控制步骤是OH的氢化到H_(2)O(OH + H = H_(2)O)。基于尼加索(111),Cu(111)和Cunicu(111)表面的比较结果,得出结论是催化剂的催化性能与糠醛的吸附结构密切相关。这些结果为研究涉及生物质衍生的油的精制含氧化合物的加氢脱氧过程中Nicu催化剂的内在活性提供了基础。

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    《ACS Omega》 |2020年第29期|共10页
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    Yun Shi;

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