Development of Mg-Modified Fe-Based Catalysts for Low-Concentration CO2 Hydrogenation to Olefins

被引:8
作者
Liu, Kaidi [1 ]
Xu, Di [1 ]
Fan, Haifeng [1 ]
Hou, Guoqiang [1 ]
Li, Yangyang [1 ]
Huang, Siyi [1 ]
Ding, Mingyue [1 ]
机构
[1] Wuhan Univ, Sch Power & Mech Engn, Wuhan 430072, Peoples R China
基金
中国博士后科学基金; 中国国家自然科学基金;
关键词
low-concentration; CO2; hydrogenation; Fe-based catalyst; Mg promoter; olefins; CARBON-DIOXIDE; METHANOL SYNTHESIS; LIGHT OLEFINS; SELECTIVITY; FE5C2; FTIR; NANOPARTICLES; CONVERSION; SURFACES; CAPTURE;
D O I
10.1021/acssuschemeng.3c07514
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
With mounting concerns about reducing carbon emissions, developing a catalyst that can be used in the hydrogenation of CO2 to olefins makes sense. Considering the high cost of CO2 capture, the direct use of low-concentration CO2 to produce olefins is more promising. In this work, we develop a reliable Mg-modified Fe-based catalyst for the low-concentration hydrogenation of CO2 to olefins. The optimized KFeMnMg0.15 catalyst exhibits a high olefin yield of 15.4% with an olefin selectivity of 61.2% at a low CO2 concentration of 10%. The structural characterizations reveal that the Mg promoter regulates the adsorption strength of reactants CO2 and H-2, and the intermediate is CO, which promotes the conversion of CO2 and inhibits the hydrogenation of olefins. In addition, the Mg promoter plays a critical role in facilitating the formation of iron carbide, which is the active phase of the hydrogenation of CO2 to olefins. Thus, multiple functions of the Mg promoter realize the efficient conversion of low-concentration CO2 to olefins.
引用
收藏
页码:2070 / 2079
页数:10
相关论文
共 59 条
[1]   New Trends in Olefin Production [J].
Amghizar, Ismael ;
Vandewalle, Laurien A. ;
Van Geem, Kevin M. ;
Marin, Guy B. .
ENGINEERING, 2017, 3 (02) :171-178
[2]   CO2 methanation on Mg-promoted Fe catalysts [J].
Baysal, Zeynep ;
Kureti, Sven .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2020, 262
[3]   Unravelling the Role of Oxygen Vacancies in the Mechanism of the Reverse Water-Gas Shift Reaction by Operando DRIFTS and Ultraviolet-Visible Spectroscopy [J].
Bobadilla, Luis F. ;
Santos, Jose L. ;
Ivanova, Svetlana ;
Odriozola, Jose A. ;
Urakawa, Atsushi .
ACS CATALYSIS, 2018, 8 (08) :7455-7467
[4]   Pd nanoparticles with highly defined structure on MgO as model catalysts:: An FTIR study of the interaction with CO, O2, and H2 under ambient conditions [J].
Borchert, H. ;
Juergens, B. ;
Zielasek, V. ;
Rupprechter, G. ;
Giorgio, S. ;
Henry, C. R. ;
Baeumer, M. .
JOURNAL OF CATALYSIS, 2007, 247 (02) :145-154
[5]   The Effect Of Ca Doping On The CO2 Hydrogenation Performance Of CaxZn10-xFe20 Catalysts (x=0, 0.5, 1 and1.5) [J].
Cai, Zhenyu ;
Zhang, Fenglei ;
Cao, Xinjie ;
Huang, Yifei ;
Wang, Danlei ;
Zhang, Lei ;
Huang, Kai .
CHEMISTRY-AN ASIAN JOURNAL, 2023, 18 (10)
[6]   Reactant adsorption modulation by Fe and K in Pt catalyst for highly effective CO preferential oxidation in practical conditions [J].
Cao, Jianlin ;
Zhang, Xiaoqian ;
Ou, Xinxin ;
Liu, Tao ;
Xing, Tao ;
Li, Zhi ;
Zhou, Xin ;
Yan, Hao ;
Liu, Yibin ;
Feng, Xiang ;
Tuo, Yongxiao ;
Yang, Chaohe ;
Chen, De .
CHEMICAL ENGINEERING JOURNAL, 2022, 444
[7]   Relationship between Iron Carbide Phases (ε-Fe2C, Fe7C3, and χ-Fe5C2) and Catalytic Performances of Fe/SiO2 Fischer-Tropsch Catalysts [J].
Chang, Qiang ;
Zhang, Chenghua ;
Liu, Chengwei ;
Wei, Yuxue ;
Cheruvathur, Ajin V. ;
Dugulan, A. Iulian ;
Niemantsverdriet, J. W. ;
Liu, Xingwu ;
He, Yurong ;
Qing, Ming ;
Zheng, Lirong ;
Yun, Yifeng ;
Yang, Yong ;
Li, Yongwang .
ACS CATALYSIS, 2018, 8 (04) :3304-3316
[8]   An active and stable nickel-based catalyst with embedment structure for CO2 methanation [J].
Chen, Yiming ;
Qiu, Baocheng ;
Liu, Yi ;
Zhang, Yi .
APPLIED CATALYSIS B-ENVIRONMENTAL, 2020, 269
[9]   Effects of metal-organic framework-derived iron carbide phases for CO hydrogenation activity to hydrocarbons [J].
Cho, Jae Min ;
Kim, Byeong-Gi ;
Han, Gui Young ;
Sun, Jian ;
Jeong, Hae-Kwon ;
Bae, Jong Wook .
FUEL, 2020, 281
[10]   Determination of the dispersion and surface oxidation states of supported Cu catalysts [J].
Dandekar, A ;
Vannice, MA .
JOURNAL OF CATALYSIS, 1998, 178 (02) :621-639