The study of the kinetics of heterogeneous solid-fluid reactions, such as dissolution- precipitation reactions is difficult due to the characterization of the solid-fluid interphase properties, and the possibility for the reaction rate to be limited by different phenomena, such as pore diffusion, surface kinetics, or electric double layer repulsion. Herein, a model for the porous scale dissolution of a calcite particle summited to an incident flow containing certain level of acidity is presented. First, the Chemical Reaction Engineering physics has been used to model the set of chemical reactions defining the chemical problem, including the surface of the calcite particle, CaCO3(s), and the aqueous species Ca2+, CO2-, HCO-, H2CO3, H+ an...
An understanding of the factors controlling calcite dissolution is important for modeling geochemica...
The dissolution of calcite in hydrochloric acid was studied with the aid of a rotating disk system a...
The carbonate system is ubiquitous in nature, playing a role in many natural and industrial processe...
We use a pore-scale dissolution model to simulate the dissolution of calcite by HCl in two different...
Geological storage of CO2 gas is perceived as a potential solution against global warming. Injection...
Geological storage of CO2 gas is perceived as a potential solution against global warming. Injection...
A fully coupled reactive transport model at pore-scale has been developed using finite volumes in or...
A fully coupled reactive transport model at pore-scale has been developed using finite volumes in or...
We simulate two sets of dissolution experiments in which CO2-saturated solutions are injected into c...
© 2018 The Authors We use a pore-scale dissolution model to simulate the dissolution of calcite by H...
The channel-flow cell method is used to establish the dissolution/precipitation kinetics of calcite ...
Recent measurements on the dissolution rate of nano- and micron-scale rough calcite surfaces have sh...
Recent measurements on the dissolution rate of nano- and micron-scale rough calcite surfaces have sh...
Recent measurements on the dissolution rate of nano- and micron-scale rough calcite surfaces have sh...
Recent measurements on the dissolution rate of nano- and micron-scale rough calcite surfaces have sh...
An understanding of the factors controlling calcite dissolution is important for modeling geochemica...
The dissolution of calcite in hydrochloric acid was studied with the aid of a rotating disk system a...
The carbonate system is ubiquitous in nature, playing a role in many natural and industrial processe...
We use a pore-scale dissolution model to simulate the dissolution of calcite by HCl in two different...
Geological storage of CO2 gas is perceived as a potential solution against global warming. Injection...
Geological storage of CO2 gas is perceived as a potential solution against global warming. Injection...
A fully coupled reactive transport model at pore-scale has been developed using finite volumes in or...
A fully coupled reactive transport model at pore-scale has been developed using finite volumes in or...
We simulate two sets of dissolution experiments in which CO2-saturated solutions are injected into c...
© 2018 The Authors We use a pore-scale dissolution model to simulate the dissolution of calcite by H...
The channel-flow cell method is used to establish the dissolution/precipitation kinetics of calcite ...
Recent measurements on the dissolution rate of nano- and micron-scale rough calcite surfaces have sh...
Recent measurements on the dissolution rate of nano- and micron-scale rough calcite surfaces have sh...
Recent measurements on the dissolution rate of nano- and micron-scale rough calcite surfaces have sh...
Recent measurements on the dissolution rate of nano- and micron-scale rough calcite surfaces have sh...
An understanding of the factors controlling calcite dissolution is important for modeling geochemica...
The dissolution of calcite in hydrochloric acid was studied with the aid of a rotating disk system a...
The carbonate system is ubiquitous in nature, playing a role in many natural and industrial processe...