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Liquid Phase Furfural Hydrotreatment to 2-Methylfuran with Carbon Supported Copper, Nickel, and Iron Catalysts

机译:液相呋喃富含碳,镍和铁催化剂的2-甲基氟烷

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In this study inexpensive, non-toxic, and noble metal free mono- and bimetallic catalysts on activated carbon were tested in liquid phase catalytic furfural hydrotreatment to a potential biofuel component 2-methylfuran. High yields of 2-methylfuran were achieved in the study, the highest yield was achieved with 10 wt-% Ni/C (48.9%) in 120 minutes and good results were obtained also with bimetallic 2/2 wt-% CuNi/C and CuFe/C (yield 44.2 and 41.0%, respectively). These high yields were achieved applying significantly shorter reaction time (60 - 120 min) compared to many published studies. The activity of nickel catalysts was very high resulting eventually in further hydrogenation of 2-methylfuran. With increasing nickel loading also ring-opening and decarbonylation reactions were promoted. Addition of iron to nickel was beneficial for decreasing decarbonylation and other side reactions. Copper/nickel and copper/iron combinations were observed to have beneficial interaction as activity and selectivity to MF increased significantly.
机译:在这项研究中,在活化碳上的廉价,无毒和贵金金属的单金属和双金属催化剂在液相催化性富含呋喃的水合体中测试了潜在的生物燃料成分2-甲基氟素。在研究中实现了2-甲基呋喃的高收益率,在120分钟内使用10 wt-%Ni/c(48.9%)实现了最高的收率,并且在双金属2/2 wt-%cuni/c和bimetallic CUNI/C和CUFE/C(分别为44.2和41.0%)。与许多已发表的研究相比,这些高产量的应用明显较短(60-120分钟)。镍催化剂的活性非常高,最终导致2-甲基呋喃的进一步氢化。随着镍载荷的增加,还促进了开环和脱叠反应。将铁添加到镍中有益于减少脱骨和其他副反应。观察到铜/镍和铜/铁组合具有有益的相互作用,因为对MF的活性和选择性显着增加。

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