催化作用
甲醇
甲酸
化学
甲酸甲酯
格式化
甲醛
氢
蒸汽重整
无机化学
反应中间体
反应机理
原位
制氢
有机化学
作者
Zhenchao Zhao,Xinlong Yao,Guangjin Hou
出处
期刊:ACS Catalysis
[American Chemical Society]
日期:2023-05-30
卷期号:13 (12): 7978-7986
被引量:11
标识
DOI:10.1021/acscatal.3c01337
摘要
Methanol reforming to hydrogen is a promising route for releasing hydrogen when it is used as a hydrogen carrier, but the reaction pathways are still in dispute. Herein in situ high-pressure MAS NMR rotors have been developed to reveal the reaction pathways of methanol reforming over Pt/α-MoC catalysts. Time-resolved in situ 1H and 13C MAS NMR spectroscopy was carried out to quantitatively monitor the evolution of H2, CO2, and reaction intermediates. Notably, for Pt/α-MoC, in addition to CO derived from direct decomposition of methanol proposed for group 10 metal catalysts, formaldehyde is also an active intermediate that readily reacts with methanol or H2O and further transforms into methyl formate or formic acid, respectively, under high-pressure and lower-temperature conditions. Like the Cu-based catalyst, CO2 and H2 were produced mainly through a formic acid mediated mechanism. Moreover, our present work has proven multinuclear high-pressure in situ MAS NMR to be a powerful tool for exploring reactions containing multiple phases (solid, liquid, and gas), and the vital insights related to the reaction mechanism.
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