催化作用
催化裂化
烯烃纤维
材料科学
开裂
ZSM-5型
化学工程
硅
介孔材料
选择性
沸石
丁烯
乙烯
复合材料
冶金
化学
有机化学
工程类
作者
Haitao Zhang,Zhixiang Xi,Haiyan Wang,Jiaxing Zhang,Ajuan Zhou,Renwei Xu,Anfeng Zhang,Xinwen Guo
标识
DOI:10.1021/acs.iecr.4c01327
摘要
Catalytic cracking of light hydrocarbons is an attractive route for light olefin production. However, the poor stability of catalysts has impeded their practical application in industry, therefore more attention should be given to catalyst design to break the bottleneck of this technology. To solve this issue, ultrathin ZSM-5 nanoplates with high silicon content (Si/Al > 200) were synthesized and assessed for the catalytic cracking of C4 olefins. The obtained ZSM-5 nanoplates presented high selectivity toward light olefins up to 64.4% with n-butene conversion of 71.4% at 550 °C and WHSV of 30 h–1. Notably, no deactivation was observed during 120 h time-on-stream (TOS) operation. The effects of the Si/Al ratio and b-axis thickness of ZSM-5 zeolites were investigated to optimize their performance in C4 catalytic cracking. The catalyst lifetime of silicon-rich ZSM-5 nanoplates with b-axis thickness of 20–30 nm is about 3 times longer that of the plate-like ZSM-5 reference because of the increased acid sites and intergranular mesopores. This work opens an attractive avenue for the development of stable and active catalysts for the catalytic cracking of C4 olefins.
科研通智能强力驱动
Strongly Powered by AbleSci AI