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首页> 外文期刊>ChemCatChem >Insights into the Major Reaction Pathways of Vapor-Phase Hydrodeoxygenation of m-Cresol on a Pt/HBeta Catalyst
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Insights into the Major Reaction Pathways of Vapor-Phase Hydrodeoxygenation of m-Cresol on a Pt/HBeta Catalyst

机译:在Pt / Hbeta催化剂上欣赏M-甲酚的气相加氢脱氧的主要反应途径

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Conversion of m-cresol was studied on a Pt/HBeta catalyst at 225-350 degrees C and ambient hydrogen pressure. At 250 degrees C, the reaction proceeds through two major reaction pathways: (1)direct deoxygenation to toluene (DDO path); (2)hydrogenation of m-cresol to methylcyclohexanone and methylcyclohexanol on Pt, followed by fast dehydration on BrOnsted acid sites (BAS) to methylcyclohexene, which is either hydrogenated to methylcyclohexane on Pt or ring-contracted to dimethylcyclopentanes and ethylcyclopentane on BAS (HYD path). The initial hydrogenation is the rate-determining step of the HYD path as its rate is significantly lower than those of subsequent steps. The apparent activation energy of the DDO path is 49.7kJmol(-1) but the activation energy is negative for the HYD path. Therefore, higher temperatures lead to the DDO path becoming the dominant path to toluene, whereas the HYD path, followed by fast equilibration to toluene, is less dominant, owing to the inhibition of the initial hydrogenation of m-cresol.
机译:在Pt / Hbeta催化剂上在225-350℃和环境氢气压力下研究了M-甲酚的转化。在250℃下,反应通过两个主要反应途径进行:(1)直接脱氧至甲苯(DDO路径); (2)将M-CRESOL对甲基环己酮和甲基环己醇的氢化在PT上,然后在甲基环己酮上快速脱水,其在PT或环 - 乙基环戊烷和乙基环戊烷上氢化至甲基环己烷上(RED PATH) )。初始氢化是HYD路径的速率确定步骤,因为其速率显着低于后续步骤的速率。 DDO路径的表观激活能量为49.7kJmol(-1),但活化能对于HYD路径为负。因此,较高的温度导致DDO途径成为甲苯的主要路径,而HYD路径随后对甲苯快速平衡,不太显着,由于抑制M-甲酚的初始氢化。

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