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Highly Active and Selective NiFe/SiO2 Bimetallic Catalyst with Optimized Solvent Effect for the Liquid-Phase Hydrogenation of Furfural to Furfuryl Alcohol

机译:高活性和选择性的NIFE / SiO2双金属催化剂,具有优化的溶剂效果,用于糠醛至糠醇的液相氢化

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摘要

Toxic Cu-Cr catalysts or precious metal catalysts are currently used for the selective hydrogenation of biomass-derived furfural to the key intermediate furfuryl alcohol (FFA). Herein, efficient and Cr-free Ni-based nonprecious bimetallic catalysts were developed. Catalyst characterizations with XRD, TEM, and TPR and catalytic evaluation revealed that the Ni3Fe1/SiO2 catalyst showed a significant synergetic effect. Compared with the Ni/SiO2 monometallic catalyst, the activity increased by 8 times, and the selectivity to FFA increase from 50% to 91.7% over the Ni3Fe1/SiO2 bimetallic catalyst. Furthermore, the solvent effect is significant in terms of catalytic activity and product distribution. Protic solvents, especially alcohols, showed the highest reaction rate and FFA selectivity. The byproduct tetrahydrofurfuryl alcohol, which is produced by excessive hydrogenation, was almost completely inhibited due to competitive adsorption when using methanol as solvent. At optimized operating conditions, the Ni3Fe1/SiO2 catalyst showed 100% conversion and 96.5% selectivity to FFA in methanol solvent with a good recyclability, which was much better than most reported catalysts.
机译:目前毒性Cu-Cr催化剂或贵金属催化剂目前用于生物质衍生的糠醛的选择性氢化至关键中间体糠醇(FFA)。在此,开发了有效和无铬基的Ni的非甲基非金属催化剂。具有XRD,TEM和TPR和催化评价的催化剂表征显示Ni3Fe1 / SiO2催化剂显示出显着的协同作用。与Ni / SiO2单金属催化剂相比,活性增加了8倍,并且FFA的选择性在Ni3Fe1 / SiO 2双金属催化剂上从50%增加到91.7%。此外,在催化活性和产物分布方面,溶剂效应是显着的。质子溶剂,尤其是醇,表现出最高的反应速率和FFA选择性。通过过度氢化产生的副产物四氢呋喃醇由于使用甲醇作为溶剂而具有竞争性吸附,几乎完全抑制。在优化的操作条件下,Ni3Fe1 / SiO 2催化剂显示出100%转化率和96.5%对甲醇溶剂中的FFA选择性,其具有良好的再循环性,这比大多数报道的催化剂好得多。

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