Total Hydrogenation of Furfural and 5-Hydroxymethylfurfural over Supported Pd–Ir Alloy Catalyst
Полное гидрирование фурфурола и 5-гидроксиметилфурфурола на нанесённом Pd–Ir-сплавном катализаторе
2014-07-09
SCID: 54.1/4nydxk2j
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5-hydroxymethylfurfuralPd–Ir alloy catalystfurfuraltetrahydrofurfuryl alcoholtotal hydrogenation
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Abstract (AI)
Hydrogenation of aqueous furfural was conducted with SiO 2 -suported palladium-based bimetallic catalysts. The combination of palladium and iridium gave the best performance for the total hydrogenation to tetrahydrofurfuryl alcohol. Higher H 2 pressure and lower reaction temperature were advantageous to suppress side reactions. The synergy between Pd and Ir in the hydrogenation catalysis is most remarkable for substituted furans as substrates. Furfural was first converted into furfuryl alcohol, which was further converted to tetrahydrofurfuryl alcohol. A small amount of tetrahydrofurfural was formed in the first step (∼20% selectivity), and the subsequent hydrogenation of tetrahydrofurfural was much slower. The combined yield of tetrahydrofurfuryl alcohol and tetrahydrofurfural reached 98%. The yield of tetrahydrofurfuryl alcohol reached 94% with larger amount of catalyst. Total hydrogenation of 5-hydroxymethylfurfural was also possible using Pd–Ir/SiO 2 catalyst. The performance of Pd–Ir/SiO 2 catalyst was slightly changed by repeated uses, and the used catalyst can be regenerated by calcination and reduction at 573 K. Characterization results showed that Pd–Ir alloy particles with size of ≤4 nm were formed on the catalyst. Addition of Ir much increased the TOF values as compared with Pd/SiO 2 with similar particle size, especially for C═O hydrogenation. One factor of higher activity of Pd–Ir/SiO 2 than Pd/SiO 2 can be the change of adsorption mode: Ir atom on the surface promotes the adsorption at C═O site, whereas the Pd surface strongly interacts with furan ring.
Key Findings
1
Furfural hydrogenation proceeds mainly through furfuryl alcohol, while tetrahydrofurfural forms at approximately 20% selectivity and is hydrogenated much more slowly.
2
Higher hydrogen pressure and lower reaction temperature suppressed side reactions; Pd–Ir synergy was especially pronounced for substituted furan substrates, including 5-hydroxymethylfurfural.
3
Pd–Ir alloy nanoparticles of ≤4 nm increased turnover frequencies relative to similarly sized Pd/SiO₂, particularly for C═O hydrogenation, likely by favoring carbonyl adsorption over furan-ring adsorption.
4
Pd–Ir/SiO₂ was the best-performing catalyst among tested Pd-based bimetallic systems for aqueous furfural total hydrogenation to tetrahydrofurfuryl alcohol.
5
The combined yield of tetrahydrofurfuryl alcohol and tetrahydrofurfural reached 98%, while increasing catalyst loading raised tetrahydrofurfuryl alcohol yield to 94%.
Research Object
aqueous furfural and 5-hydroxymethylfurfural hydrogenation over supported Pd–Ir/SiO2 alloy catalysts
Research Subject
catalytic total hydrogenation performance, reaction pathway, activity, selectivity, synergistic Pd–Ir effects, and catalyst stability and regeneration
Publication Details
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2014-07-09
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