首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Hydrodesulfurization of 4,6-dimethyldibenzothiophene over NiMo sulfide catalysts supported on meso-microporous Y zeolite with different mesopore sizes
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Hydrodesulfurization of 4,6-dimethyldibenzothiophene over NiMo sulfide catalysts supported on meso-microporous Y zeolite with different mesopore sizes

机译:4,6-二甲基二苯甲酸的水阳离子在中索微孔y沸石上负载不同的硫化物催化剂,具有不同的中孔尺寸

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摘要

MY-x series zeolites with different mesopore diameters were successfully synthesized via a hydrothermal synthesis procedure and the corresponding NiMo/HMY-x series hydrodesulfurization(HDS) catalysts were prepared via incipient co-impregnation method. The synthesized samples were characterized by both wide and small angle XRD, N-2 adsorption-desorption isotherms, pyridine adsorbed FTIR (Py-FTIR), Al-27 MAS NMR, H-2-TPR, HRTEM and XPS. The results show that the synthesized samples exhibit wide opened mesopores of varying sizes with well crystallized pore walls. The introduction of mesopores caused a slight decline in the interaction between active metals and support (MSI) in the corresponding catalysts, generating higher stacking numbers and a shorter slab lengths among MoS2 crystals on the corresponding catalyst and favoring both the dispersion and sulfidation of Mo species, particularly favoring the formation of both active edge sites and highly active corner active sites. The reaction network for 4,6-DMDBT HDS over NiMo/HMY-x series catalysts is proposed, and HDS selectivity is found to be related to mesopore size. More specifically, HYD activity is linearly correlated to the number of Mo atoms located along the edge sites of MoS2 crystals, and DDS activity is linearly correlated with the number of Mo atoms located at the corner sites of MoS2 crystals. Finally, the active corner sites are approximately 10 times more active than active edge sites.
机译:通过水热合成程序成功合成了具有不同中孔直径的My-X系列沸石,并通过初始的共浸渍方法制备相应的Nimo / HMY-X系列加氢脱硫(HDS)催化剂。通过宽和小角度XRD,N-2吸附 - 解吸等温,吡啶吸附的FTIR(PY-FTIR),Al-27Mas NMR,H-2-TPR,HRTEM和XPS,其特征在于宽且小角XRD,N-2吸附 - 解吸等温度。结果表明,合成样品具有良好的孔隙壁的不同尺寸的宽开放的中孔。中孔的引入引起了相应催化剂中的活性金属和支持(MSI)之间的相互作用的轻微下降,在相应的催化剂上产生更高的堆叠数和较短的SLAB长度,并有利于Mo物种的分散和硫化,特别喜欢形成有源边缘位点和高活性角活动场所的形成。提出了4,6-DMDBT HDS的反应网络在NiMO / HMY-X系列催化剂上,发现HDS选择性与中孔尺寸有关。更具体地,Hyd活性与位于MOS2晶体的边缘位点的莫原子的数量线性相关,并且DDS活性与位于MOS2晶体的角部位的Mo原子的数量线性相关。最后,主动角网站比主动边缘站点更高的10倍。

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