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首页> 外文期刊>Catalysis science & technology >Ring-opening of furfuryl alcohol to pentanediol with extremely high selectivity over Cu/MFI catalysts with balanced Cu0–Cu+ and Brønsted acid sites
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Ring-opening of furfuryl alcohol to pentanediol with extremely high selectivity over Cu/MFI catalysts with balanced Cu0–Cu+ and Brønsted acid sites

机译:糠醇对戊二醇的开环,与具有平衡的Cu0–Cu+和Brønsted酸位点的Cu/MFI催化剂相比,具有极高的选择性

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摘要

Biomass-based chemicals as a renewable alternative to petroleum-based chemicals are of great significance. The conversion of biomass-based furfuryl alcohol to pentanediol, including 1,5-pentanediol and 1,2-pentanediol, is explored over a series of bifunctional Cu/MFI catalysts in a continuous-flow reactor. These catalysts are synthesized by supporting copper nanoparticles on MFI zeolites with varying molar ratios of SiO2/Al2O3. Among them, the Z60-10Cu catalyst containing balanced Cu0–Cu+ and Brønsted acid sites exhibits excellent performance, and a high furfuryl alcohol conversion of 99.5% and selectivity of 85.2% for 1,5-pentanediol (69.2%) and 1,2-pentanediol (16.0%) could be achieved (hydrogen pressure: 2.5 MPa) at 160 °C. The experimental results and the results obtained using the DFT technique revealed that the high catalytic activity realized during the processes of ring-opening and hydrogenation could be attributed to the synergistic effect between the Cu species and Brønsted acid sites. The Brønsted acid sites on the Si(OH)Al groups significantly affect the ring-opening process of furfuryl alcohol. The methoxy group on furfuryl alcohol adsorbs on the Cu+ sites, and the hydrogenation saturation of the ring-opening intermediate is realized under the influence of the activated hydrogen units on the Cu0 sites. The results reported herein could help promote the continuous production of high value-added pentanediol from biomass-based raw materials in the presence of non-noble metal catalysts. An economical and feasible path for the transformation of biomass resources into high value-added fine chemicals could also be developed.
机译:再化学物质作为一种可再生的替代方案石油的化学物质的意义。糠醇戊二醇,包括1, 5-pentanediol和1,2-pentanediol探索通过一系列的双官能团的铜/ MFI催化剂一个连续流动反应器。通过支持合成铜纳米粒子与不同摩尔比的MFI沸石二氧化硅/氧化铝。包含平衡Cu0-Cu +和Brø望远镜酸网站展示优秀的性能,和高糠醇的转化率为99.5%,选择性为85.2% 1,5-pentanediol (69.2%)1, 2-pentanediol(16.0%)可以实现(氢压力:2.5 MPa)在160°C。实验结果和结果用DFT技术显示,高催化活性的过程中实现的开环和加氢归因于之间的协同效应铜物种和Brø望远镜酸网站。酸网站Si显著(OH)基地组织影响开环糠醇的过程酒精。吸附于铜+网站,和加氢饱和的开环中间意识到的影响下激活氢在Cu0单位网站。这可以帮助促进连续报道生产的高附加值戊二醇生质原料的存在非贵金属催化剂。生物质能转换的可行路径资源转化为高附加值的精细化学品也可以开发。

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