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首页> 外文期刊>Applied Petrochemical Research >Improved performance of hierarchical porous Mo/H-IM-5 catalyst in methane non-oxidative aromatization
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Improved performance of hierarchical porous Mo/H-IM-5 catalyst in methane non-oxidative aromatization

机译:提高分层多孔MO / H-IM-5催化剂在甲烷非氧化芳族化中的性能

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摘要

AbstractTwo novel hierarchical porous IM-5-S and IM-5-M materials were synthesized using mesoporous silica SBA-15 and MCM-48 as the silica sources, and for comparison conventional IM-5-C zeolite was also synthesized with the same synthesis composition. IM-5-S and IM-5-M samples exhibited larger crystal sizes and different textural properties than the conventional IM-5-C zeolite. Moreover, Mo-modified catalysts, Mo-IM-5-S, Mo-IM-5-M, and Mo-IM-5-C, were prepared for the non-oxidative aromatization of methane. The physical properties and acidities of the samples were characterized by XRD, SEM, TEM, BET, and NH3-TPD. Compared with Mo-IM-5-C, the Mo-IM-5-S and Mo-IM-5-M catalysts showed higher yields of aromatics and better stabilities. The preferable catalytic behaviors of Mo-modified mesoporous IM-5 catalysts may be attributed to the generation of secondary mesoporous systems within the zeolite crystals, which may influence the location and state of the active Mo species, simultaneously lead to easier access to the active sites for reactants and be favorable for the diffusion of products formed in the microporous channels during the methane aromatization reaction.]]>
机译:<![cdata [ <标题>抽象 ara id =“par1”>两种新颖的分层多孔IM-5-s和IM使用介孔二氧化硅SBA-15和MCM-48作为二氧化硅来源合成-5-M材料,并且对于比较,还用相同的合成组合物合成常规的IM-5-C沸石。 IM-5-S和IM-5-M样品显示出比常规IM-5-C沸石更大的晶体尺寸和不同的纹理性质。此外,为甲烷的非氧化芳族化制备了Mo-改性催化剂,Mo-IM-5-S,Mo-5-5-C和Mo-IM-5-C.样品的物理性质和酸度的特征在于XRD,SEM,TEM,BET和NH <下标> 3 -TPD。与MO-IM-5-C相比,MO-IM-5-S和MO-IM-5-M催化剂显示出更高的芳烃产量和更好的稳定性。 Mo-修饰的介孔IM-5催化剂的优选催化行为可归因于沸石晶体内的仲介孔系统的产生,其可能影响活性MO物种的位置和状态,同时导致对活动位点更容易进入对于反应物并且有利于在甲烷芳族化反应期间在微孔通道中形成的产物的扩散。 ]]>

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