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首页> 外文期刊>International Journal of Quantum Chemistry >Reaction mechanism of hydrogenation and direct desulfurization routes of dibenzothiophene-like compounds: A density functional theory study
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Reaction mechanism of hydrogenation and direct desulfurization routes of dibenzothiophene-like compounds: A density functional theory study

机译:类二苯并噻吩类化合物加氢和直接脱硫途径的反应机理:密度泛函理论研究

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摘要

Reaction mechanisms of the two distinct routes, namely hydrogenation (HYD) and direct desulfurization (DDS), of dibenzothiophene (DBT)-type compounds in hydrodesulfurization (HDS) process have been investigated by means of density functional theory (DFT). A series of methyl- and dimethyl-compounds substituted at different positions in DBT were compared to get a deeper insight into the electronic effects of the alkyl position substitution. The Gibbs energy of reaction for each route and the C-S bond energies were calculated. The calculations showed that HYD route is more exergonic than DDS route. Refractory compounds exhibited less reaction energy values and high C-S bond stability. Full chemical structures in the energetic profile of HYD and DDS routes were identified. We proposed a reaction mechanism for each HDS route based on our theoretical calculations. According to our proposed mechanisms, the HYD reaction route is favored compared to DDS reaction route because energetic barriers are higher on the DDS route. The effect of methyl groups is clearly observed. Refractory compounds have higher activation and lower formation energies. This systematic study trough DFT method provides an important contribution in the field of HDS because the proposed mechanisms are related with some experimental observations.
机译:利用密度泛函理论(DFT)研究了二苯并噻吩(DBT)型化合物在加氢脱硫(HDS)过程中两种不同途径的反应机理,即氢化(HYD)和直接脱硫(DDS)。比较了在DBT中不同位置取代的一系列甲基和二甲基化合物,以更深入地了解烷基取代的电子效应。计算每条路线的反应的吉布斯能和C-S键能。计算结果表明,HYD路径比DDS路径具有更大的运动强度。耐火化合物表现出较小的反应能值和较高的C-S键稳定性。确定了HYD和DDS路线能量分布中的完整化学结构。我们根据理论计算为每条HDS路线提出了一种反应机制。根据我们提出的机理,与DDS反应路线相比,HYD反应路线更为有利,因为DDS路线上的能量壁垒更高。清楚地观察到甲基的作用。耐火化合物具有较高的活化度和较低的形成能。由于拟议的机制与一些实验观察有关,因此这种系统的研究槽DFT方法在HDS领域提供了重要贡献。

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