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首页> 外文期刊>Fuel >High-dispersed Ni-Mo-S active phases within hierarchical pore materials by introducing the cationic protective shell during the impregnation process for hydrodesulfurization
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High-dispersed Ni-Mo-S active phases within hierarchical pore materials by introducing the cationic protective shell during the impregnation process for hydrodesulfurization

机译:通过在加氢脱硫的浸渍过程中引入阳离子保护壳,在分层孔隙材料中高分散的Ni-Mo-S活性相

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摘要

A highly dispersed NiMo/Beta-FDU-12 catalyst was successfully synthesized by introducing the cationic protective shell (DTA(+), MTA(+) and CTA(+)) in the impregnation process in order to achieving the optimal interaction between Mo species and the support. Based on H-2-TPR, XRD, XPS and HRTEM characterization results, it could be proved that quaternary ammonium cationic salts served as effective shells to protect Mo species from aggregation in the hydrothermal treatment, thus decreasing the interaction between Mo species and support and improving the dispersion of Ni-Mo-S active phases. Compared with NiMo/BF-DTAB and NiMo/BF-MTAB catalysts, NiMo/BF-CTAB catalyst synthesized with longer alkyl-chain quaternary ammonium cationic species exhibited the best hydrodesulfurization performance of DBT, of which the conversion reached 98% at 10 h(-1) WHSV. Moreover, NiMo/BF-CTAB catalyst showed higher HYD/DDS ratio, which is nearly three times than that of NiMo/BF-IWI catalyst obtained through the traditional impregnation method. The high hydrodesulfurization activity of NiMo/BF-CTAB catalyst came down to the comprehensive effects of the best dispersion of active phases (f(Mo) = 0.32), the highest sulfidation degrees of active metals (S-Mo = 60.19%) and higher amounts of total acids.
机译:通过在浸渍过程中引入阳离子保护壳(DTA(+),MTA(+)和CTA(+))成功地合成了高度分散的NiMo / Beta-FDU-12催化剂,以实现Mo物种之间的最佳相互作用和支持。根据H-2-TPR,XRD,XPS和HRTEM表征结果,可以证明季铵阳离子盐可作为有效的壳层来保护Mo物种在水热处理过程中不发生聚集,从而降低Mo物种与载体和载体之间的相互作用。改善Ni-Mo-S活性相的分散性。与NiMo / BF-DTAB和NiMo / BF-MTAB催化剂相比,采用较长烷基链季铵阳离子物种合成的NiMo / BF-CTAB催化剂表现出最佳的DBT加氢脱硫性能,在10 h时转化率达到98%( -1)WHSV。而且,NiMo / BF-CTAB催化剂具有更高的HYD / DDS比,几乎是通过传统浸渍方法获得的NiMo / BF-IWI催化剂的三倍。 NiMo / BF-CTAB催化剂的高加氢脱硫活性归因于活性相的最佳分散(f(Mo)= 0.32),活性金属的最高硫化度(S-Mo = 60.19%)和更高的综合效应。总酸量。

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