首页> 外文期刊>ACS Omega >The Influence of Pore Structure and Acidity on the Hydrodesulfurization of Dibenzothiophene over NiMo-Supported Catalysts
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The Influence of Pore Structure and Acidity on the Hydrodesulfurization of Dibenzothiophene over NiMo-Supported Catalysts

机译:孔隙结构和酸度对NiMO负载催化剂中二苯并噻吩加氢脱硫的影响

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摘要

A series of mesoporous materials of SBA-16 were in situ incorporated into ZSM-5 crystallites via a two-step self-assemble method, and hydrodesulfurization (HDS) catalysts were prepared on the corresponding ZSM-5/SBA-16 (ZS) composites. The characterization results indicated that ZSM-5 nanoseeds were fabricated into the silica framework of the ZS composites, and the three-dimensional Im 3m cubic structure of SBA-16 was retained simultaneously. In addition, the ZS series materials possessed open pores and large surfaces, which would facilitate the diffusion of reactants in the mesoporous channels. Moreover, the introduction of ZSM-5 seeds into composites could enhance the acidities of supports. As a result, the NiMo/ZS series catalysts exhibited high activities for DBT HDS processes. The NiMo/ZS-160 catalyst exhibited the highest catalytic efficiency (96.5%), which was apparently attributed to the synergistic contributions of the physicochemical properties of ZS supports and the dispersion states of active metals. Correspondingly, DBT HDS reactions over the NiMo/ZS series catalysts mainly proceeded via a hydrogenation desulfurization route that benefitted from the enhanced acidities especially the total Br?nsted acid.
机译:SBA-16的一系列介孔材料通过两步自组装方法原位掺入ZSM-5微晶中,并在相应的ZSM-5 / SBA-16(ZS)复合材料上制备加氢脱硫(HDS)催化剂。表征结果表明将ZSM-5纳米瘤制成ZS复合材料的二氧化硅框架中,并且同时保留SBA-16的三维型IM 3-I立方结构。此外,ZS系列材料具有开放的孔和大表面,这将有助于反应物在中孔通道中的扩散。此外,将ZSM-5种子引入复合材料可以增强支撑件的酸性。结果,NiMO / ZS系列催化剂表现出用于DBT HDS工艺的高活性。 NiMO / ZS-160催化剂表现出最高的催化效率(96.5%),这显然归因于ZS支持的物理化学性质和活性金属的分散状态的协同贡献。相应地,通过NiMO / ZS系列催化剂对NIMO / ZS系列催化剂的反应主要通过氢化脱硫途径进行,所述氢化脱硫途径受益于增强酸性,特别是总Brα.Nsted酸。

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