Ab initio molecular dynamics study of ion-specific olivine dissolution with implications to CO<sub>2</sub> mineralization geosequestration
ORAL
Abstract
CO2 mineralization is the safest CO2 geosequestration method with the highest sequestration capacity. Even though there have been lab and pilot-scale demonstrations, the complex chemical reaction is still elusive at atomic level. Here, I show that the ab initio molecular dynamics (AIMD) and metadynamics simulations enable quantitative analysis of reaction pathways, thermodynamics, and kinetics of the Mg2+ and Ca2+ ion dissolutions from CO2-reactive minerals (olivine endmembers), which are the rate-determining steps for CO2 mineralization geosequestration. The leaching of Ca2+ from the Ca-olivine surface is a ligand exchange process that results in a much lower energy barrier with 103 times faster dissolution rate compared to the leaching of Mg2+, which the tight magnesium sites on the forsterite (Mg-olivine) surface forbid ligand exchange. My results have implications in CO2 mineralization geosequestration operations including the exploration of the desired mineralogy and the evaluation of enhanced mineralization mechanisms from first principle.
–
Presenters
-
Hsieh Chen
- Aramco Americas: Aramco Research Center-Boston