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首页> 外文期刊>Topics in Catalysis >Deoxygenation of Fatty Acid Over Three-Dimensionally Ordered Mesoporous Carbon Supported Palladium Catalysts
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Deoxygenation of Fatty Acid Over Three-Dimensionally Ordered Mesoporous Carbon Supported Palladium Catalysts

机译:在三维有序的介孔碳支撑钯催化剂上的脂肪酸的脱氧

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摘要

Two ordered mesoporous carbons (OMCs) possessing three-dimensionally (3-D) well-ordered mesoporosity with different framework configurations were prepared via a hard template route. The OMCs were treated with different surface-oxidation methods for the preparation of OMC supported highly dispersed Pd catalysts (Pd/OMC). Among the different surface oxidation conditions, the 3-D ordered mesoporous structure of CMK-9 is preserved under a mild surface-oxidation condition by an ammonium persulfate solution at 30 degrees C for 2 h. The Pd/OMCs were introduced as catalysts for the catalytic deoxygenation of a fatty acid without hydrogen or different amounts of hydrogen. The catalytic performance of the deoxygenation of a fatty acid (stearic acid) was investigated in a batch reactor without hydrogen and a continuous fixed-bed reactor with different amounts of hydrogen (H-2/stearic acid = 0-3 molar ratios). The Pd/OMC catalysts were found to be less prone to deactivation than a commercially available activated carbon supported Pd catalyst (Pd/AC). This was attributed to the well-ordered 3-D mesoporosity in the OMC supports, which facilitated the facile diffusion of the liquid reactant and product with a long carbon chain length in the catalyst during the deoxygenation reaction, leading to less Pd metal sintering during the deoxygenation reaction as compared to that with Pd/AC catalyst.
机译:通过硬模板途径制备具有三维(3-D)三维(3-D)良好的骨架配置的有三维(3-D)良好有序的介质。用不同的表面氧化方法处理OMC,用于制备OMC的高度分散的Pd催化剂(Pd / OMC)。在不同的表面氧化条件中,CMK-9的3-D订购的介孔结构在温和的表面氧化条件下通过铵过硫酸铵溶液在30℃下保持2小时。将Pd / OMC作为催化剂引入脂肪酸的催化剂,而没有氢或不同量的氢。在没有氢气的间歇式反应器中研究了脂肪酸(硬脂酸)的催化性能,在批量反应器中,连续的固定床反应器具有不同量的氢(H-2 /硬脂酸= 0-3摩尔比)。发现Pd / OMC催化剂易于失活于可商购的活性炭负载的Pd催化剂(Pd / Ac)。这归因于OMC载体中的众多3-D型渗透度,其促进了液体反应物和产物在脱氧反应期间在催化剂中具有长的碳链长度的体扩散,导致较少的Pd金属烧结期间与Pd / Ac催化剂相比,脱氧反应。

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