Exploring the potential of cobalt-based catalysts in the methane dry reforming for sustainable energy applications

被引:1
|
作者
Escalante, Yelisbeth [1 ,2 ]
Barroso, M. Noelia [2 ]
Tarditi, Ana M. [1 ]
Munera, John [1 ]
机构
[1] Univ Nacl Del Litoral, CONICET, Inst Invest Catalisis & Petroquim, Fac Ingn Quim,INCAPE, RA-28293000 Santiago Del Estero, Santa Fe, Argentina
[2] UNSL, CONICET, Fac Quim Bioquim & Farm, Inst Invest Tecnol Quim,INTEQUI, Almirante Brown 1455, RA-5700 San Luis, Argentina
来源
MOLECULAR CATALYSIS | 2024年 / 569卷
关键词
Methane dry reforming; Structured catalyst; Hydrogen; Synthesis gas; HYDROGEN-PRODUCTION; MONOLITH CATALYST; PERFORMANCE; NI; SYNGAS; CEO2; IMPREGNATION;
D O I
10.1016/j.mcat.2024.114575
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Cobalt-based powder catalysts with different Co loadings were synthesized via wet impregnation using MgAl2O4 spinel as support. The catalytic properties of the solids were evaluated in the dry-reforming methane at different reaction temperatures and two CH4:CO2 ratios. The catalyst with higher cobalt content (13 %) presented superior performance due to increased Co-0 species availability, confirmed by XPS analysis. Besides, this catalyst displayed remarkable resistance to carbon deposition at 550 degrees C and CH4:CO2 1: 1 ratio. In-situ DRIFT measurements demonstrated the formation and transformation of carbonate and hydrogen carbonate species during the DRM reaction, highlighting efficient CO2 and CH4 activation on the catalyst surface. Based on this data, a structured catalyst was deposited on top of the FeCrAlloy monolith, which was active, stable, selective for H-2, and resistant against on/off cycles. Compared with the powder catalyst, the structured system displayed higher catalytic activity, possibly due to higher reducibility of metal species and improved heat transfer provided by the FeCrAlloy substrate. The results highlight the potential of Co-based structured catalysts for H-2 or synthesis gas production processes.
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页数:14
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