[ACIE] RWGS反应过程中钼氧化物原位动态渗碳实现空前CO生成率

文摘   2024-08-16 06:45   美国  

Abstract

In-situ construction of active structure under reaction conditions is highly desired but still remains challenging in many important catalytic processes. Herein, we observe structural evolution of molybdenum oxide (MoOx) into highly active molybdenum carbide (MoCx) during reverse water-gas shift (RWGS) reaction. Surface oxygen atoms in various Mo-based catalysts are removed in H2-containing atmospheres and then carbon atoms can accumulate on surface to form MoCx phase with the RWGS reaction going on, both of which are enhanced by the presence of intercalated H species or Pt-dopants in MoOx. The structural evolution from MoOx to MoCx is accompanied by enhanced CO2 conversion, which is positively correlated with the surface C/Mo ratio but negatively with the surface O/Mo ratio. As a result, an unprecedented CO formation rate of 7544.6 mmol·gcatal-1·h-1 at 600 °C has been achieved over in-situ carbonized H-intercalated MoO3 catalyst, which is even higher than those from noble metal catalysts. During 100 h stability test only a minimal deactivation rate of 2.3% is observed.

X. Du, R. Li, H. xin, Y. Fan, C. Liu, X. Feng, j. wang, C. Dong, C. Wang, D. Li, Q. Fu, X. Bao, In-Situ Dynamic Carburization of Mo Oxide with Unprecedented High CO Formation Rate in Reverse Water-Gas Shift Reaction, Angewandte Chemie International Edition, n/a (2024) e202411761. DOI: 10.1002/anie.202411761.


催化新文
推介催化机理,催化材料,催化表征等多相催化领域课题的最新研究成果,促进行业内学者相互交流与讨论。
 最新文章