催化作用
醋酸
氢
制氢
化学
无机化学
二氧化碳
碳化物
化学工程
有机化学
工程类
作者
Mi Peng,Yuzhen Ge,Rui Gao,Jie Yang,Aowen Li,Zhiheng Xie,Qiaolin Yu,Jie Zhang,Hiroyuki Asakura,Hui Zhang,Zhi Liu,Qi Zhang,Jin Deng,Jihan Zhou,Wu Zhou,Graham J. Hutchings,Ding Ma
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2025-01-02
卷期号:387 (6735): 769-775
标识
DOI:10.1126/science.adt0682
摘要
Carbon-neutral hydrogen production is of key importance for the chemical industry of the future. We demonstrate a new thermal catalytic route for the partial reforming of ethanol into hydrogen and acetic acid with near-zero carbon dioxide emissions. This reaction is enabled by a catalyst containing a high density of atomic Pt 1 and Ir 1 species supported on a reactive alpha-molybdenum carbide substrate, achieving a hydrogen production rate of 331.3 millimoles of hydrogen per gram catalyst per hour and an acetic acid selectivity of 84.5% at 270°C, and is therefore more energy-efficient compared with standard reforming. Techno-economic analysis of partial ethanol reforming demonstrates the potential profitability for operation at an industrial scale, presenting the opportunity to produce hydrogen and acetic acid with a substantially reduced carbon dioxide footprint.
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