Electrothermal Water-Gas Shift Reaction at Room Temperature with a Silicomolybdate-Based Palladium Single-Atom Catalyst.

Angewandte Chemie (International ed. in English)(2023)

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摘要
The water-gas shift (WGS) reaction is often conducted at elevated temperature and requires energy-intensive separation of hydrogen (H ) from methane (CH ), carbon dioxide (CO ), and residual carbon monoxide (CO). Designing processes to decouple CO oxidation and H production provides an alternative strategy to obtain high-purity H streams. We report an electrothermal WGS process combining thermal oxidation of CO on a silicomolybdic acid (SMA)-supported Pd single-atom catalyst (Pd /CsSMA) and electrocatalytic H evolution. The two half-reactions are coupled through phosphomolybdic acid (PMA) as a redox mediator at a moderate anodic potential of 0.6 V (versus Ag/AgCl). Under optimized conditions, our catalyst exhibited a TOF of 1.2 s with turnover numbers above 40 000 mol  mol achieving stable H production with a purity consistently exceeding 99.99 %.
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关键词
High-Purity Hydrogen,Hydrogen Evolution Reaction,Indirect Electrocatalysis,Polyoxometalate
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