首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >A comparative assessment of the effect of H2S on hydrodesulfurization of dibenzothiophene over nanosize MoS2-and CoMo-based A12O3 catalysts
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A comparative assessment of the effect of H2S on hydrodesulfurization of dibenzothiophene over nanosize MoS2-and CoMo-based A12O3 catalysts

机译:硫化氢对纳米MoS2和CoMo基Al2O3催化剂上二苯并噻吩加氢脱硫影响的比较评估

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摘要

The catalytic performances of unsupported nanosize MoS_(2-) and CoMo-based A12O3 catalysts in dibenzothiophene hydrodesulfurization have been compared. The reaction was carried out in a high-pressure batch reactor under 3 MPa of H2. The effects of a wide range reaction temperatures along with the presence of H2S on the catalytic activity and selectivity were studied. In all catalysts, the rise in the catalytic activity with temperature was Arrhenius dependent; however, the nature of the catalysts affected the reaction selectivity. The direct fission of C-S bond is the most important route for CoMo/Al2O3 catalyst. On the other hand, the contribution from the hydrogenation reaction followed by hydrodesulfurization is most significant for the nanosize MoS2 catalyst. The results demonstrate that the coexistence of H2S in the reaction feedstock does not permanently deactivate and/or activate the catalysts. There was a severe inhibition because of H2S on the catalytic activity for the dibenzothiophene hydrodesulfurization over CoMo/Al2O3 catalyst. However, H2S causes a significant catalytic promotion for nanosize MoS2 catalyst. A drastic modification in the contribution of the reaction pathways for dibenzothiophene hydrodesulfurization in exist of H2S over the nanosize MoS2 catalyst was observed. The apparent thermodynamic parameters for the dibenzothiophene hydrodesulfurization over the present catalysts were estimated. Large variations in both the apparent activation energy and the apparent frequency factor were observed for the nanosize MoS2 catalyst investigated under different status of H2S. This reflects the differences in the energetic requirements of the hydrodesulfurization pathways in each case. The differences in the apparent activation parameters suggest that the activated complexes might differ considerably in energetic detail and that distinct activated complexes in each case might be involved in the reaction mechanism. On the contrary, there was no important change in the activation parameters due to H2S for the reaction carried out over CoMo/Al2O3 catalyst.
机译:比较了无载体的纳米MoS_(2-)和CoMo基的Al2O3催化剂在二苯并噻吩加氢脱硫中的催化性能。该反应在3MPa的H 2的高压间歇反应器中进行。研究了宽反应温度以及H2S的存在对催化活性和选择性的影响。在所有催化剂中,催化活性随温度的升高取决于阿累尼乌斯;然而,催化剂的性质影响了反应的选择性。 C-S键的直接裂变是CoMo / Al2O3催化剂最重要的途径。另一方面,对于纳米级的MoS2催化剂,加氢反应后加氢脱硫的贡献最为显着。结果表明,反应原料中H 2 S的共存不会使催化剂永久失活和/或活化。由于H 2 S对CoMo / Al 2 O 3催化剂上的二苯并噻吩加氢脱硫的催化活性具有严重的抑制作用。然而,H 2 S对纳米级MoS 2催化剂产生了显着的催化促进作用。观察到,在纳米MoS2催化剂上存在H2S时,二苯并噻吩加氢脱硫反应途径的贡献发生了巨大变化。估计了在本催化剂上二苯并噻吩加氢脱硫的表观热力学参数。对于在不同硫化氢状态下研究的纳米级MoS2催化剂,表观活化能和表观频率因子均发生了较大变化。这反映了在每种情况下加氢脱硫途径的能量需求的差异。表观活化参数的差异表明活化的配合物在能量细节上可能有很大的不同,并且在每种情况下不同的活化的配合物都可能参与反应机理。相反,对于在CoMo / Al2O3催化剂上进行的反应,由于H2S,活化参数没有重要变化。

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