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Furfural hydrodeoxygenation on iron and platinum catalysts

机译:铁和铂催化剂上的糠醛加氢脱氧

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Furfural can be converted into a wide range of high-octane products like 2-methylfuran (2-MF) through hydrodeoxygenation (HDO). Iron-based catalyst (Fe/SiO2), has shown high selectivity for gas phase conversion of furfural to 2-MF at atmospheric pressure and 573 K. However, it showed rapid deactivation. Furfural is the main coke precursor, although coke is also formed when 2-MF and furan are used as reactants, but in lower quantities. Coke profiles along the catalytic bed suggest that tetra-hydrofuran is an important coke precursor. The addition of a second metal like platinum, even in very low proportions, generates hydrogen spillover leading to an important improvement in the stability of the catalyst. The Fe/Pt ratio on the surface regulates the amount of coke deposited because it modifies the iron particle sizes, the interaction with the support and the amount of hydrogen available for the reactions. These phenomena influence the reaction, coke formation and regeneration mechanisms.
机译:糠醛可以通过加氢酰基(HDO)转化为2-甲基呋喃(2-MF)的各种高辛烷产物。基于铁基催化剂(Fe / SiO 2),在大气压下为糠醛转化为2-MF的高选择性,573 K.然而,它表现出快速失活。糠醛是主要的焦炭前兆,尽管当2-MF和呋喃用作反应物时也形成焦炭,但较少量。透耳剖面沿催化床表明Tetra-Hydrofuran是重要的焦炭前兆。加入第二金属如铂,即使在非常低的比例中,也产生氢溢出,导致催化剂稳定性的重要改进。表面上的Fe / Pt比率调节焦炭的量,因为它改变了铁颗粒尺寸,与载体的相互作用和可用于反应的氢气量。这些现象影响反应,焦炭形成和再生机制。

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