详细信息
Selective Production of Aromatics Directly from Carbon Dioxide Hydrogenation over nNa-Cu-Fe2O3/HZSM-5 ( SCI-EXPANDED收录 EI收录)
文献类型:期刊文献
英文题名:Selective Production of Aromatics Directly from Carbon Dioxide Hydrogenation over nNa-Cu-Fe2O3/HZSM-5
作者:Yang, Xiaopei[1];Song, Guiyao[1];Li, Minzhe[1];Chen, Chonghao[1];Wang, Zihao[1];Yuan, Huimin[2];Zhang, Zhixiang[2];Liu, Dianhua[1]
机构:[1]East China Univ Sci & Technol, State Key Lab Chem Engn, Shanghai 200237, Peoples R China;[2]China Natl Petr Corp, Daqing Petrochem Res Ctr, Daqing 163714, Peoples R China
年份:2022
卷号:61
期号:23
起止页码:7787
外文期刊名:INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH
收录:;EI(收录号:20222412227504);WOS:【SCI-EXPANDED(收录号:WOS:000812427100001)】;
基金:This work was supported by the National Key R&D Program of China (2017YFB0602204).
语种:英文
外文关键词:Additives - Aromatization - Catalysts - Copper - Hematite - Hydrogenation - Nanocrystals - Sodium
摘要:Na and Cu additives have been widely studied for their promotional efficiency of Fe-based catalysts directly converting CO2 to valuable hydrocarbons. Selective hydrogenation of CO2 toward aromatics, however, is still a huge challenge. Herein, we fabricated a bifunctional catalyst comprising Fe2O3 promoted by Na and Cu and hierarchical nanocrystalline HZSM-5, and then the catalytic performance and reaction conditions of CO2 hydrogenation were investigated by coupling nNa-Cu-Fe2O3 catalysts with HZSM-5. The maximum aromatic selectivity achieved 57.74% (including CO) at 33.26% CO2 conversion, and the proportion of aromatics in liquid products reached up to 94.81%. Moreover, the selectivity of light aromatics achieved 30.36%. The subtle synergy between Na and Cu in Fe2O3 contributed to the activation of iron species and the conversion of intermediates. In addition, the enhanced mesoporous and appropriate acidity over HZSM-5 was attributed to the post-treatment modification which facilitated the high aromatic selectivity and outstanding catalytic stability. Significantly, fast diffusion pulled off the synergistic effect on the tandem reaction owing to the presence of hierarchical HZSM-5.
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