Effect of regulators on the catalytic performance of UiO-66 in furfural transfer hydrogenation to furfuryl alcohol

被引:0
|
作者
Xie Y. [1 ]
Chen J. [1 ]
Yu F. [1 ]
Shi X. [2 ]
Fan B. [1 ]
Li R. [1 ]
机构
[1] College of Chemical Engineering and Technology, Taiyuan University of Technology, Shanxi, Taiyuan
[2] College of Chemistry, Taiyuan University of Technology, Shanxi, Taiyuan
关键词
alcohol; biomass; catalysis; furfuryl; transfer hydrogenation; UiO-66;
D O I
10.16085/j.issn.1000-6613.2023-0020
中图分类号
学科分类号
摘要
The highly selective catalytic transfer hydrogenation of furfural to furfuryl alcohol is one of the important routes for high value utilization of biomass. Herein, UiO-66 catalysts with the different defect sites were prepared with formic acid, acetic acid and trifluoroacetic acid as regulators. The catalyst was characterized by XRD, SEM, NH3-TPD, TG and N2 adsorption and desorption. The effects of defects, acidity and textural properties of UiO-66 catalysts on the transfer hydrogenation of furfural were investigated with isopropanol as both solvent and hydrogen donor. The results showed that the enhancement of acidity of UiO-66 catalysts was beneficial to the improvement of furfuryl alcohol selectivity in furfural transfer hydrogenation reaction. The furfural conversion and selectivity to furfuryl alcohol over UiO-66 prepared with formic acid as regulator could reach 99.4% and 98.9% at 160℃ in 1h, respectively. © 2023 Chemical Industry Press. All rights reserved.
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页码:5756 / 5763
页数:7
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  • [1] CHO E J, TRINH L T P, SONG Y H, Et al., Bioconversion of biomass waste into high value chemicals, Bioresource Technology, 298, (2020)
  • [2] WANG Jiuchen, DAI Lin, TIAN Yishui, Et al., Analysis of the development status and trends of biomass energy industry in China, Transactions of the Chinese Society of Agricultural Engineering, 23, 9, pp. 276-282, (2007)
  • [3] DU Haifeng, YAN Chao, Study progress on technologies of biomass conversion and utilization, Energy Chemical Industry, 37, 2, pp. 41-46, (2016)
  • [4] MORAVVEJ Z, TABRIZI F F, RAHIMPOUR M R, Et al., Exploiting the potential of cobalt molybdenum catalyst in elevated hydrodeoxygenation of furfural to 2-methyl furan, Fuel, 332, (2023)
  • [5] HAI Xueqing, TAN Jingjing, HE Jing, Et al., Hydrogenation of furfural to 1, 5-pentanediol over CuCo bimetallic catalysts, Journal of Fuel Chemistry and Technology, 51, 7, pp. 959-969, (2023)
  • [6] LI Yucheng, ZHU Liyu, ZHAO Jingyang, Et al., Synthesis of novel NaNi/C catalyst and selective hydrogenation study of furfural, Journal of Beijing Forestry University, 45, 1, pp. 140-147, (2023)
  • [7] XIAO Yaoxin, ZHANG Jun, HU Sheng, Et al., Cu-Zn catalyzed hydrogenation of furfural with methanol as hydrogen donor, Chemical Industry and Engineering Progress, 42, 3, pp. 1341-1352, (2023)
  • [8] WANG Zhuangqing, WANG Xinchao, ZHANG Chao, Et al., Selective hydrogenation of furfural to furfuryl alcohol over Pd/TiH<sub>2</sub> catalyst, Molecular Catalysis, 508, (2021)
  • [9] CHEN Junjie, SUN Weixiao, WANG Yongxing, Et al., Performant Au hydrogenation catalyst cooperated with Cu-doped Al<sub>2</sub>O<sub>3</sub> for selective conversion of furfural to furfuryl alcohol at ambient pressure, Green Energy & Environment, 6, 4, pp. 546-556, (2021)
  • [10] LIU Sile, BU Yifu, WU Jing, Et al., Selective hydrogenation of furfural to furfuryl alcohol catalyzed by heterogeneous Pd/mpg-C<sub>3</sub>N<sub>4</sub>, Chemical Engineering (China), 50, 12, pp. 22-26, (2022)