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Abstract
A lignin-derived mesoporous carbon solid acid (LDMCS) catalyst was prepared by high temperature carbonization and subsequent sulfonation treatment using alkali lignin as the carbon source and KCl as a salt template. The prepared LDMCS has an irregular mesoporous structure with a narrow pore size 2 distribution (concentrated at 4 nm), large specific surface area (1123.0 m
2 g
1 ) and high -SO
3H group density (2.20 mmol g
1). Compared with other types of solid acids reported in the literature, the prepared LDMCS catalyst has equivalent or better catalytic performance in the catalytic conversion of glucose to 5-hydroxymethylfurfural (5-HMF). A glucose conversion of 97.7% and a 5-HMF yield of 57.8% were obtained with the aqNaCl-THF (1:3) biphasic solvent system under the optimized reaction conditions with reaction temperature of 160 C, reaction time of 2.5 h, and catalyst loading of 1 mg mg
1. More importantly, the 5-HMF yield still reached 40.9% after 5 cycles of the catalyst use, indicating that there was no significant loss of catalytic activity.
Citation
Wang, Shuai; Eberhardt, Thomas L.; Guo, Dayi; Feng, Junfeng; Pan, Hui. 2022. Efficient conversion of glucose into 5-HMF catalyzed by lignin-derived mesoporous carbon solid acid in a biphasic system. Renewable Energy. 190: 1-10. https://doi.org/10.1016/j.renene.2022.03.021.