(683d) Kinetic Modelling of Ethanol Conversion to 1,3-Butadiene on MgO and Implications for Catalyst Design
AIChE Annual Meeting
2021
2021 Annual Meeting
Catalysis and Reaction Engineering Division
Fundamentals of Catalysis and Surface Science: Virtual
Monday, November 15, 2021 - 4:24pm to 4:42pm
We apply two levels of resolution to the kinetics, first using energy span theory to estimate the maximum turnover along each of the main proposed pathways and identify important states; and then turning to microkinetic modelling based on the same energy landscapes to better understand coverage effects and gas-surface dynamics. We quantify uncertainty in the kinetic predictions using a correlated error model to account for uncertainty in the underlying first-principles calculations. Turnover determining states are found to have high surface coverage, in agreement with experimental observations. We suggest that different reaction steps contribute more significantly at lower/higher temperatures, for example the microkinetic analysis indicates increasing dominance of the dehydration pathway as temperature increases, which could help to explain differing observations of rate determining steps in previous studies. Steps with the greatest impact on performance should be considered in the context of dopant choice to aid production rates. Together, the kinetic studies help to explore the implications of the energy landscape on the catalytic performance, and the selectivity towards the main (by-)products.