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    Item type:Publication,
    Flame spray-synthesized Pt-Co/TiO2 catalysts for the selective hydrogenation of furfural to furfuryl alcohol
    (2021-01-15)
    Tolek, Weerachon
    ;
    Khruechao, Kitima
    ;
    Pongthawornsakun, Boontida
    ;
    Mekasuwandumrong, Okorn
    ;
    Cadete Santos Aires, Francisco José
    Flame spray-synthesized Pt/TiO<inf>2</inf> and PtCo/TiO<inf>2</inf> catalysts with 0.7 wt% Pt and 0–0.4 wt% Co were studied in the hydrogenation of furfural to furfuryl alcohol (FA) at 50 °C and 2 MPa H<inf>2</inf>. Particle formation under high temperature flame facilitated high Pt dispersion and formation of Pt-TiO<inf>x</inf> interface sites, which were beneficial for furfural conversion to FA. Modifying with Co accelerated rutile phase TiO<inf>2</inf> formation, which strongly diminished hydrogenation activity on the (FSP)-PtCo/TiO<inf>2</inf>. On the other hand, (I)-PtCo/TiO<inf>2</inf> prepared by conventional impregnation, anatase phase TiO<inf>2</inf> was preserved (> 85%) and both furfural conversion and FA selectivity increased upon increasing Co loading.
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    Item type:Publication,
    Development of bimetallic Ni-Cu/SiO2 catalysts for liquid phase selective hydrogenation of furfural to furfuryl alcohol
    (2021-01-15) ;
    Krawmanee, Pacharaporn
    ;
    Inkamhaeng, Weerachat
    ;
    Cadete Santos Aires, Francisco J.
    ;
    Bimetallic Ni-Cu/SiO<inf>2</inf> catalysts with different Cu loading (2–5 wt%) were developed for liquid phase selective hydrogenation of furfural to furfuryl alcohol. Among these, bimetallic 2%Ni-X%Cu/SiO<inf>2</inf> (X = 2, 5) catalysts exhibited better catalytic performances than monometallic 2%Ni/SiO<inf>2</inf> and 2%Cu/SiO<inf>2</inf>. Moreover, the bimetallic 2%Ni-5%Cu/SiO<inf>2</inf> catalyst showed the best catalytic performance with 94% of furfural conversion and 64% of furfuryl alcohol selectivity. The synergetic effect of NiCu alloy particles that are present on bimetallic Ni-Cu/SiO<inf>2</inf> catalysts change the adsorption configuration of furfural on the catalyst surface resulting in high catalytic performance in liquid phase selective hydrogenation of furfural to furfuryl alcohol.