Very few thermodynamic models exist for estimation of density alteration due to solution of CO2 in a pure H2O and CaCl2–H2O system. All of these models require density of CaCl2 solution to estimate density of CaCl2–H2O–CO2 system. Similarly, models presented to calculate CaCl2 solution density need pure H2O density in advance. The main approach to model density of CaCl2–H2O–CO2 system is based on estimation of density alteration of CaCl2–H2O system due to the solution of CO2 mole fraction. Hence, to estimate CO2–CaCl2–H2O system density, density of CaCl2 solution is necessary, and to estimate density of CaCl2–H2O system, density of pure H2O is required in advance. Firstly in this paper, ...
To study the feasibility of CO2 geological sequestration, it is needed to understand the complicated...
Phase equilibrium data for CO2 hydrate in binary CaCl2-MgCl2 aqueous solutions are determined at fou...
To study the feasibility of CO2 geological sequestration, it is needed to understand the complicated...
Very few thermodynamic models exist for estimation of density alteration due to solution of CO2 in a...
AbstractA liquid density model for the H2O–CO2–NaCl ternary system is established, based on previous...
In this report, we present a numerical representation for the partial molar volume of CO2 in water ...
AbstractA liquid density model for the H2O–CO2–NaCl ternary system is established, based on previous...
International audienceThe thermodynamic study of the CO2-H2O-NaCl system is of great importance whet...
ACLInternational audienceIn the framework of the efforts of the scientific community developed for t...
ACLInternational audienceIn the framework of the efforts of the scientific community developed for t...
ACLInternational audienceIn the framework of the efforts of the scientific community developed for t...
Thermodynamic and dynamic investigations are needed to study the sequestration capacity, CO2 leakage...
Thermodynamic and dynamic investigations are needed to study the sequestration capacity, CO2 leakage...
Thermodynamic and dynamic investigations are needed to study the sequestration capacity, CO2 leakage...
Thermodynamic and dynamic investigations are needed to study the sequestration capacity, CO2 leakage...
To study the feasibility of CO2 geological sequestration, it is needed to understand the complicated...
Phase equilibrium data for CO2 hydrate in binary CaCl2-MgCl2 aqueous solutions are determined at fou...
To study the feasibility of CO2 geological sequestration, it is needed to understand the complicated...
Very few thermodynamic models exist for estimation of density alteration due to solution of CO2 in a...
AbstractA liquid density model for the H2O–CO2–NaCl ternary system is established, based on previous...
In this report, we present a numerical representation for the partial molar volume of CO2 in water ...
AbstractA liquid density model for the H2O–CO2–NaCl ternary system is established, based on previous...
International audienceThe thermodynamic study of the CO2-H2O-NaCl system is of great importance whet...
ACLInternational audienceIn the framework of the efforts of the scientific community developed for t...
ACLInternational audienceIn the framework of the efforts of the scientific community developed for t...
ACLInternational audienceIn the framework of the efforts of the scientific community developed for t...
Thermodynamic and dynamic investigations are needed to study the sequestration capacity, CO2 leakage...
Thermodynamic and dynamic investigations are needed to study the sequestration capacity, CO2 leakage...
Thermodynamic and dynamic investigations are needed to study the sequestration capacity, CO2 leakage...
Thermodynamic and dynamic investigations are needed to study the sequestration capacity, CO2 leakage...
To study the feasibility of CO2 geological sequestration, it is needed to understand the complicated...
Phase equilibrium data for CO2 hydrate in binary CaCl2-MgCl2 aqueous solutions are determined at fou...
To study the feasibility of CO2 geological sequestration, it is needed to understand the complicated...