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首页> 外文期刊>ACS catalysis >Hydrodeoxygenation of Furylmethane Oxygenates to Jet and Diesel Range Fuels: Probing the Reaction Network with Supported Palladium Catalyst and Hafnium Triflate Promoter
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Hydrodeoxygenation of Furylmethane Oxygenates to Jet and Diesel Range Fuels: Probing the Reaction Network with Supported Palladium Catalyst and Hafnium Triflate Promoter

机译:呋喃甲烷含氧化合物与射流和柴油范围燃料的加氢氧基:用负载钯催化剂和铪三氟甲酸盐启动子探测反应网络

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摘要

Catalytic hydrodeoxygenation of furylmethane oxygenates to high carbon branched chain jet and diesel fuel range alkanes under mild reaction conditions is a promising strategy for energy efficient production of fuels with minimal C-C cracking to undesired products. Here, we report that a strong Lewis acidic promoter can overcome the energy barrier for furylmethane hydrodeoxygenation at lower temperature. Furan rings of furylmethanes are first hydrogenated to fully saturated cyclic ethers by a hydrogenation catalyst, which then undergo facile ring opening and deoxygenation by the promoter. A cyclic intermediate between ethereal O and the Lewis acidic metal center, assisted by the triflate ligand of the promoter, is formed in the ring-opening step. Probing the reaction pathway with symmetric single furan ring surrogate molecules suggests that the promoter is necessary for the ring opening. Deoxygenation of ring-opened oxygenates takes place more quickly for single furan ring surrogates than for the multiple furan ring furylmethanes. A maximum 97% jet fuel range alkanes with 93% selectivity in C15H32 and C14H30 is achieved from C-15-furylmethane under optimal conditions. The yield and selectivity of alkanes with desired carbon numbers can be tuned using furylmethanes with tailored carbon chains, furan numbers, and a carbon center that minimizes C-C cracking.
机译:在轻度反应条件下催化加氢甲烷含氧化合物和柴油燃料氧化件的高碳支链射流和柴油燃料水流烷烃是能够有效生产燃料的有希望的策略,以最小的C-C裂解对不需要的产品。在这里,我们报告说,强化Lewis酸性启动子可以在较低温度下克服呋喃甲烷加氢脱氧的能量屏障。首先通过氢化催化剂将呋喃甲烷的呋喃环氢化成完全饱和的环状醚,然后通过启动子进行容纳环开口和脱氧。在开环步骤中形成醚型o和Lewis酸性金属中心之间的环状中间体,在开环步骤中形成助剂。用对称单呋喃环替代分子探测反应途径表明,促进剂是开环所必需的。对于单曲呋喃环替代品比多个呋喃环富吡咯甲烷更快地进行环形含氧化合物的脱氧。在最佳条件下,在C-15-富甲甲烷中,在C-15-富甲甲烷中获得具有93%选择性的最大97%的喷射燃料量烷烃。使用具有定制碳链,呋喃数和最小化C-C开裂的碳中心的呋喃甲烷可以调节具有所需碳数的烷烃的产量和选择性。

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