甲烷化
碱金属
催化作用
掺杂剂
选择性
大气温度范围
材料科学
水煤气变换反应
化学工程
纳米技术
化学
兴奋剂
光电子学
有机化学
热力学
物理
工程类
作者
Jesús Gándara-Loe,Qi Zhang,Juan J. Villora‐Picó,A. Sepúlveda‐Escribano,Laura Pastor‐Pérez,Tomás Ramı́rez Reina
出处
期刊:Energy & Fuels
[American Chemical Society]
日期:2022-05-25
卷期号:36 (12): 6362-6373
被引量:16
标识
DOI:10.1021/acs.energyfuels.2c00784
摘要
Reverse water gas shift (RWGS) competes with methanation as a direct pathway in the CO2 recycling route, with methanation being a dominant process in the low-temperature window and RWGS at higher temperatures. This work showcases the design of multi-component catalysts for a full-temperature-range RWGS behavior by suppressing the methanation reaction at low temperatures. The addition of alkali promoters (Na, K, and Cs) to the reference Ni/CeO2 catalyst allows identifying a clear trend in RWGS activation promotion in both low- and high-temperature ranges. Our characterization data evidence changes in the electronic, structural, and textural properties of the reference catalyst when promoted with selected dopants. Such modifications are crucial to displaying an advanced RWGS performance. Among the studied promoters, Cs leads to a more substantial impact on the catalytic activity. Beyond the improved CO selectivity, our best performing catalyst maintains high conversion levels for long-term runs in cyclable temperature ranges, showcasing the versatility of this catalyst for different operating conditions. All in all, this work provides an illustrative example of the impact of promoters on fine-tuning the selectivity of a CO2 conversion process, opening new opportunities for CO2 utilization strategies enabled by multi-component catalysts.
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