费托法
催化作用
选择性
化学
化学工程
合成气
材料科学
有机化学
工程类
作者
Faen Song,Yong Xiaojing,Xuemei Wu,Wei Zhang,Qingxiang Ma,Tiejian Zhao,Minghui Tan,Zhongshan Guo,Heng Zhao,Guohui Yang,Noritatsu Tsubaki,Yisheng Tan
标识
DOI:10.1016/j.apcatb.2021.120713
摘要
For Fe-based Fischer-Tropsch synthesis catalyst, how to decrease CO2 formation is a big challenge. In this work, a capsule catalyst ([email protected]) with FeMn as core and HZSM-5 as shell was prepared and used for Fischer-Tropsch to olefins (FTO) reaction, compared with bare FeMn catalyst and several hybrid catalysts by physically mixing FeMn and HZSM-5 in different ways. Among these catalysts, the [email protected] capsule catalyst showed the best catalytic performance with the highest light olefins selectivity and the lowest CO2 selectivity. Compared with FeMn catalyst, the CO2 selectivity of [email protected] catalyst decreased more than 10%. However, the CO2 selectivity of other physically mixing catalysts was similar to that of bare FeMn catalyst, indicating that randomly adding HZSM-5 had no effect on depressing the CO2 formation. Benefiting from the HZSM-5 shell, the [email protected] capsule catalyst could effectively affect the diffusion of H2O and thus suppress the water-gas shift reaction in FTO reaction.
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