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首页> 外文期刊>Journal of Catalysis >Promoter effect of vanadia on Co/Mo/Al_2O_3 catalyst for deep hydrodesulfurization via the hydrogenation reaction pathway
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Promoter effect of vanadia on Co/Mo/Al_2O_3 catalyst for deep hydrodesulfurization via the hydrogenation reaction pathway

机译:钒对通过氢化反应途径进行深度加氢脱硫的Co / Mo / Al_2O_3催化剂的促进作用

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摘要

Vanadia containing alumina (Vx-Al_2O_3) was prepared by the co-precipitation method and used as a catalyst support for Co and Mo oxide (Co-Mo/Vx-Al_2O_3) in the hydrodesulfurization (HDS) reaction. Incorporation of vanadia in the support shifted the reaction mechanism from the direct desulfurization (DDS) pathway to the hydrogenation (HYD) pathway, and hence promoted the activity of Co and Mo oxide for the HDS reaction of the most sterically hindered compound, 4,6-dimethyldibenzothiophene. Detailed catalyst characterization and catalyst testing showed that the promoter effect of vanadia is due to the synergetic effect of the formation of V-Mo sulfide. A binary powder mixture with intimate contact of Co-Mo/γ-Al _2O_3 and Co-Mo/Vx-Al_2O_3 could facilitate a concerted reaction involving both HYD and DDS pathways. Such a binary powder mixture was shown to yield a high conversion and excellent sulfur removal efficiency for the most refractory sulfur compounds in the production of clean diesel fuels.
机译:通过共沉淀法制备了含钒的氧化铝(Vx-Al_2O_3),并用作加氢脱硫(HDS)反应中Co和Mo氧化物(Co-Mo / Vx-Al_2O_3)的催化剂载体。钒在载体中的引入将反应机理从直接脱硫(DDS)途径转移到了氢化(HYD)途径,从而提高了Co和Mo氧化物对受空间影响最大​​的化合物4,6的HDS反应的活性。 -二甲基二苯并噻吩。详细的催化剂表征和催化剂测试表明,钒的助催化剂作用是由于V-Mo硫化物形成的协同作用。 Co-Mo /γ-Al_2O_3和Co-Mo / Vx-Al_2O_3紧密接触的二元粉末混合物可以促进涉及HYD和DDS途径的协同反应。对于清洁柴油燃料的生产中最难熔的硫化合物,这种二元粉末混合物显示出高转化率和出色的硫去除效率。

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