糠醛
催化作用
化学
甲苯
产量(工程)
热解
苯
沸石
选择性
路易斯酸
无机化学
有机化学
二甲苯
核化学
材料科学
冶金
作者
Yan Zhao,Zongru Li,Qiong Shi,Minyue Wen,Linlin Song,Rourou Wang,Yin Liu,Jinbo Zhu
标识
DOI:10.1002/slct.202102598
摘要
Abstract This paper presents a new preparation method for aromatics through the catalytic pyrolysis of furfural from biomass. The use of HZSM‐5 zeolite as a catalyst with different pore sizes, pore geometries, and acidity levels was investigated for the conversion of furfural into aromatics. Results showed that product selectivity was dependent on the pore size and radius of the zeolites. Catalyst and reaction conditions were critical in maximizing the selectivity of aromatic hydrocarbons. The highest yield of 58.49 wt% was achieved at 10 ml min −1 N 2 purge rate, 0.5 ml h −1 feeding rate, 500 °C pyrolysis temperature, and 23 catalyst Si/Al ratio. The highest carbon yield of benzene (12.74 %), toluene (11.13 %), xylene (8.54 %), and total (30.85 %) was obtained when the HZSM‐5 zeolite was treated with HCl (0.9 mol/L) solution. On the basis of current experimental results and previous reports, the mechanism of Lewis and Bronsted acid sites was inferred.
科研通智能强力驱动
Strongly Powered by AbleSci AI