Saknaphawuth Sureeporn, Pongthawornsakun Boontida, Toumsri Piyamit, Chuenchom Laemthong, Panpranot Joongjai
Center of Excellence on Catalysis and Catalytic Reaction Engineering, Department of Chemical Engineering, Faculty of Engineering, Chulalongkorn University.
Division of Physical Science (Chemistry) and Center of Excellence for Innovation in Chemistry, Faculty of Science, Prince of Songkla University.
J Oleo Sci. 2022 Aug 4;71(8):1229-1239. doi: 10.5650/jos.ess22063. Epub 2022 Jul 6.
Ordered mesoporous carbon (OMC) has attracted a great deal of attention as catalyst support due to their tunable morphological and textural properties. In this study, the characteristics and catalytic properties of OMC-supported Pt catalysts prepared by one-step modified soft-template self-assembly method (Pt/OMC-one-pot) were compared to the Pt impregnated on OMC, activated carbon (AC), and nonuniform meso/macroporous carbon (MC) in the selective hydrogenation of furfural to furfuryl alcohol (FA) under mild conditions (50°C, 2 MPa H). Larger Pt particle size (~4 nm) was obtained on the Pt/OMC-one-pot comparing to all the impregnated ones, in which the Pt particle sizes were in the range 0.5 - 2 nm. Reduction step was not necessary on the Pt/OMC-one-pot and among the catalysts studied, the Pt/OMC-one-pot exhibited the highest furfural conversion and FA selectivity under aqueous conditions. The use of methanol as the solvent resulted in the formation of solvent product (2-furaldehyde dimethyl acetal) instead. The amount of Pt being deposited, location of Pt particles, and metal-support interaction strongly affected recyclability of the catalysts because some larger size Pt particles with weak metal-support interaction could be leached out during the liquid-phase reaction, rendering similar catalytic performances of the various porous carbon supported catalysts after the 3 cycle of run.
有序介孔碳(OMC)因其可调节的形态和结构性质,作为催化剂载体引起了广泛关注。在本研究中,将通过一步改性软模板自组装法制备的OMC负载Pt催化剂(Pt/OMC-一锅法)与浸渍在OMC、活性炭(AC)和非均匀介孔/大孔碳(MC)上的Pt在温和条件(50°C,2 MPa H)下糠醛选择性加氢制糠醇(FA)中的特性和催化性能进行了比较。与所有浸渍法制备的催化剂相比,Pt/OMC-一锅法得到的Pt粒径更大(约4 nm),后者的Pt粒径范围为0.5 - 2 nm。Pt/OMC-一锅法无需还原步骤,在所研究的催化剂中,Pt/OMC-一锅法在水相条件下表现出最高的糠醛转化率和FA选择性。使用甲醇作为溶剂则会生成溶剂产物(2-糠醛二甲基缩醛)。Pt的沉积量、Pt颗粒的位置以及金属-载体相互作用强烈影响催化剂的可回收性,因为在液相反应过程中,一些金属-载体相互作用较弱的较大尺寸Pt颗粒可能会被浸出,导致在3次循环运行后,各种多孔碳负载催化剂的催化性能相似。