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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Gas-phase, catalytic hydrodeoxygenation of propanoic acid, over supported group VIII noble metals: Metal and support effects
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Gas-phase, catalytic hydrodeoxygenation of propanoic acid, over supported group VIII noble metals: Metal and support effects

机译:负载在第VIII族贵金属上的丙酸的气相催化加氢脱氧:金属和载体效应

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摘要

The catalytic, gas-phase hydrodeoxygenation (HDO) of propanoic acid (PAc) over supported group VIII noble metals (M = Pd, Pt, Rh, Ru, Ni) was studied at 1 atm and 200-400°C. The activity and selectivi-ity as a function of the reaction temperature was investigated. The reaction activity based on the TOF follows the order: Pd>Ru>Pt>Rh>Ni. The reaction over Pd, Pt and Rh catalysts proceeds mainly via decarbonylation (DCN) and decarboxylation (DCX) pathways at each reaction temperature. For Ru andi Ni catalysts, while decarbonylation and decarboxylation pathways were predominant at lower tempera-tures (e.g., 200-250 °C), at higher temperatures (>300°C) the formation of diethyl ketone was observed Additionally, the kinetics of Pd over different supports (carbon, SiO2 and TiO2) were examined. The activity based on the TOF decreases in the following order: Pd/SiO2 >Pd/TiO2 >Pd/C. The reaction orders in acid and H2 were found to be approximately 0.5 and zero, respectively, regardless of the support. The apparent activation energies studied in a temperature range of 200-240°C, were 16.7±0.6, 19.3±1.6 and 11.7±0.7kcal/mole for Pd/C, Pd/TiO2 and Pd/SiO2 catalysts, respectively. The selectivity for Pd/C and Pd/SiO2 indicated mainly decarbonylation/decarboxylation and hydrogenation reaction pathways. In contrast, Pd/TiO2 at low temperatures (200°C) could generate decarbonylation and esterifkation products.
机译:在1 atm和200-400°C下研究了负载型VIII族贵金属(M = Pd,Pt,Rh,Ru,Ni)上丙酸(PAc)的催化气相加氢脱氧(HDO)。研究了活性和选择性与反应温度的关系。基于TOF的反应活性遵循以下顺序:Pd> Ru> Pt> Rh> Ni。在每种反应温度下,Pd,Pt和Rh催化剂上的反应主要通过脱羰(DCN)和脱羧(DCX)途径进行。对于Ru andi Ni催化剂,虽然在较低温度(例如200-250°C)下脱羰和脱羧途径是主要的,但在较高温度(> 300°C)下则观察到二乙基酮的形成。此外,Pd的动力学在不同的载体(碳,SiO2和TiO2)上进行了检测。基于TOF的活性按以下顺序降低:Pd / SiO 2> Pd / TiO 2> Pd / C。发现在酸和H 2中的反应级数分别为约0.5和零,与载体无关。在200-240°C的温度范围内,对于Pd / C,Pd / TiO2和Pd / SiO2催化剂,表观活化能分别为16.7±0.6、19.3±1.6和11.7±0.7kcal / mol。 Pd / C和Pd / SiO2的选择性主要表明脱羰/脱羧和氢化反应途径。相反,在低温(200℃)下Pd / TiO2可能产生脱羰基和酯化产物。

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