Effect of Yttrium on Ce/Ni-Metakaolin Catalysts for CO2 Methanation

被引:2
|
作者
Wang, Yuyi [1 ]
Ye, Quan [1 ]
Xu, Xinyu [1 ]
Dhmees, Abdelghaffar S. [2 ]
Cui, Xuemin [1 ]
机构
[1] Guangxi Univ, Sch Chem & Chem Engn, Guangxi Key Lab Petrochem Resource Proc & Proc Int, Nanning 530004, Peoples R China
[2] Egyptian Petr Res Inst, Ahmed El Zomor St, Cairo 11727, Egypt
来源
MOLECULES | 2023年 / 28卷 / 20期
关键词
CO2; methanation; metakaolin; catalyst; multiple metals; LOW-TEMPERATURE PERFORMANCE; NI-CEO2; CATALYST; CARBON-DIOXIDE; HYDROGENATION; NI/ZRO2; NANOPARTICLES; SELECTIVITY; METHANOL; SURFACE; OXIDE;
D O I
10.3390/molecules28207079
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
In recent years, major economies have implemented carbon reduction and carbon neutrality policies. Furthermore, with advancements in science and technology, carbon dioxide (CO2) is now considered a valuable raw material for producing carbon-based fuels through hydrogenation. Various concentrations of yttrium (referred to as Y hereafter) were introduced to assess their influence on the catalytic performance of CO2 methanation. At a temperature of 300 C-degrees, the catalyst exhibited an impressive CO2 conversion rate of 78.4% and maintained remarkable stability throughout a rigorous 100 h stability assessment. The findings suggest that the inclusion of yttrium (Y) promotes the formation of oxygen vacancies and alkaline sites on the catalyst. This, in turn, enhances the reducibility of nickel species, improves the dispersion of nickel particles, and plays a pivotal role in enhancing thermal stability. Furthermore, it offers an innovative design approach for creating highly efficient composite CO2 methanation catalysts by controlling particle size and harnessing synergistic catalytic effects at the metal/support interface.
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页数:18
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