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首页> 外文期刊>ACS catalysis >Mechanisms of Mo2C(101)-Catalyzed Furfural Selective Hydrodeoxygenation to 2-Methylfuran from Computation
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Mechanisms of Mo2C(101)-Catalyzed Furfural Selective Hydrodeoxygenation to 2-Methylfuran from Computation

机译:Mo2C(101)催化糠醛选择性加氢脱氧制2-甲基呋喃的机理

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摘要

The selective formation of 2-methylfuran (F-CH3) and furan from furfural (F-CHO) hydrogenation and hydrodeoxygenation on clean and 4H precovered Mo2C(101) surfaces has been systematically computed on the basis of periodic density functional theory including dispersion correction (PBE-D3). The clean Mo2C(101) surface has two distinct surface sites: unsaturated C and Mo sites for the adsorption of H and furfural, respectively. The selectivity comes from the different preference of furfural hydrogenation and dissociation (F-CHO + H = F-CH2O vs F-CHO = F-CO + H) under the variation of H-2 partial pressure. On the basis of the computed minimum energy path on the clean surface, microkinetics shows that high H-2 partial pressure can promote 2-methylfuran formation and suppress furan formation. To verify this proposed selectivity trend of 2-methylfuran at high H-2 partial pressure, the 4H precovered Mo2C(101) surface (0.25 monolayer hydrogen coverage), which provides neighboring hydrogens for promoting furfural hydrogenation and blocks the active sites for suppressing furfural dissociation, has been used. The computed results are in full agreement with the experimentally observed selective formation of 2-methylfuran and the H-2 reaction order of one half as well as rationalize the need for a high H-2/furfural ratio (400/1). On the basis of these results, a new two-step protocol for experiments is proposed: i.e., the first step is the pretreatment of the catalyst with hydrogen, and the second step is furfural hydrogenation on H precovered catalysts.
机译:根据周期性密度泛函理论(包括色散校正( PBE-D3)。干净的Mo2C(101)表面具有两个不同的表面部位:分别用于吸附H和糠醛的不饱和C和Mo部位。选择性来自于在H-2分压变化下糠醛氢化和解离的不同偏好(F-CHO + H = F-CH2O与F-CHO = F-CO + H)。根据计算得出的清洁表面上的最小能量路径,微动力学表明,高H-2分压可促进2-甲基呋喃的形成并抑制呋喃的形成。为了验证这种在​​高H-2分压下2-甲基呋喃的选择性趋势,4H预先覆盖的Mo2C(101)表面(0.25单层氢覆盖)提供了相邻的氢,以促进糠醛加氢并阻断了抑制糠醛解离的活性位点, 已经用过。计算结果与实验观察到的2-甲基呋喃的选择性形成和H-2反应顺序的一半完全吻合,并且合理地需要高H-2 /糠醛比(400/1)。基于这些结果,提出了新的两步实验方案:即第一步是用氢气对催化剂进行预处理,第二步是在H覆盖的催化剂上进行糠醛加氢。

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