材料科学
甲烷
光催化
催化作用
氧气
化学工程
选择性
光化学
有机化学
化学
工程类
作者
Jianlong Yang,Lunqiao Xiong,Chao Wang,Lei Luo,Liqiang Jing,Natalia Martsinovich,Junwang Tang
标识
DOI:10.1002/aenm.202404202
摘要
Abstract Synthesis of value‐added chemicals from methane remains a great challenge due to its high energy requirement, low conversion efficiency, and unavoidable over‐oxidation of desired products. Here, the integration of a photon‐driven chemical cycle process with a continuous flow reactor over the Co 0.2 Pd 1.8 ‐TiO 2 catalyst has led to the continuous synthesis of C 2 H 6 from CH 4 with ≈100% selectivity under ambient conditions, simultaneously avoiding mixing flammable gas methane with O 2 for the chemicals production. Such high selectivity and activity are due to the active lattice oxygen of PdO L and the oxygen‐lean condition characterized in the chemical cycle, together with Co single atoms for the regeneration of the photocatalyst surface during the chemical cycle process. The consumed oxygen in PdO L can be compensated by air during the subsequent catalyst regeneration process, leading to the stable activity during a 43 cycles test. Furthermore, this work to some extent demonstrates that the chemical cycle process not only improves the technoeconomic viability but also enhances safety of the process.
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