Abstract
Selective oxidation of propene to acrolein over industrial multicomponent bismuth molybdate (BMO) catalysts significantly depends on reaction conditions that include operating parameters and catalyst state. This work investigates selective propene oxidation in the intrinsic kinetic paradigm of Temporal Analysis of Products (TAP) reactor by systematically varying catalyst redox state, temperature, and oxygen-to-propene feed ratio. A 93 % propene conversion with an acrolein yield of 80 % is achieved at elevated temperatures (450 °C) on oxidized catalysts under oxygen-rich conditions (O2:C3H6 = 10). However, these conditions diminish acrolein-to-CO2 selectivity due to enhanced total oxidation to CO2. In contrast, a reduced catalyst state, moderate temperature (350 °C), and lower oxygen feed (O2:C3H6 = 1) nearly doubles the acrolein to-CO2 selectivity, albeit at a lower acrolein yield (33 %). Transient kinetic studies together with a kinetic model that simplify the major product formation pathways in lumped non-elementary forms reveal that the availability of surface oxygen species plays a pivotal role in governing reaction pathways. Additionally, density functional theory (DFT) calculations on pure BMO catalysts inform the role of surface redox states on propene and oxygen activation barriers. Lattice oxygen at acrolein-selective sites drives both acrolein and CO2 formation, while adsorbed oxygen at activation sites favors unselective CO2 generation. This work establishes a critical relationship between transient product selectivity and surface oxygen availability, which is strongly influenced by catalyst redox state, feed ratio, and reaction temperature. These insights underscore the importance of dynamic reactor operation strategies and offer a foundation for designing next-generation propene oxidation processes with tunable acrolein selectivity.
| Original language | English |
|---|---|
| Article number | 168782 |
| Journal | Chemical engineering journal |
| Volume | 524 |
| Early online date | Oct 10 2025 |
| DOIs | |
| State | Published - Nov 15 2025 |
Keywords
- Bismuth molybdate
- Intrinsic kinetics
- Kinetic model
- Selective propene oxidation
- Temporal Analysis of Products (TAP) reactor
- Transient selectivity
INL Publication Number
- INL/JOU-25-85319
- 201275
Fingerprint
Dive into the research topics of 'Transient kinetic insights into selective propene oxidation over industrial bismuth molybdate catalysts'. Together they form a unique fingerprint.Cite this
- APA
- Author
- BIBTEX
- Harvard
- Standard
- RIS
- Vancouver