A computationally efficient and rigorous thermodynamic model that predicts the physical state and composition of inorganic atmospheric aerosol is presented. One of the main features of the model is the implementation of mutual deliquescence of multicomponent salt particles, which lowers the deliquescence point of the aerosol phase. The model is used to examine the behavior of four types of tropospheric aerosol (marine, urban, remote continental and non-urban continental), and the results are compared with the predictions of two other models currently in use. The results of all three models were generally in good agreement. Differences were found primarily in the mutual deliquescence humidity regions, where the new model predicted the existe...
Fine particulate matter (i.e., PM2.5) has gained intensive attention due to its adverse health and v...
In this dissertation, we studied a general equilibrium model for multiphase multicomponent inorganic...
A variety of thermodynamic models have been developed to predict inorganic gas-aerosol equilibrium. ...
This study presents ISORROPIA II, a thermodynamic equilibrium model for the K+-Ca2+-Mg2+-NH4 +-Na+-S...
A computationally efficient and rigorous thermodynamic model (ISORROPIA) that predicts the physical ...
This study presents ISORROPIA II, a thermodynamic equilibrium model for the K+–Ca2+–Mg2+...
A variety of thermodynamic models have been developed to predict inorganic gas-aerosol equilibrium. ...
International audienceThis study presents ISORROPIA II, a thermodynamic equilibrium model for the K+...
International audienceThis study presents ISORROPIA II, a thermodynamic equilibrium model for the K+...
Aerosol simulations especially for Earth System Models require a thermodynamics module with a good c...
We present the development of ANISORROPIA, the discrete adjoint of the ISORROPIA thermodynamic equil...
Atmospheric aerosols are complex mixtures of various inorganic−organic compounds and play significan...
International audienceA variety of thermodynamic models have been developed to predict inorganic gas...
Mole fraction based equations for aqueous phase activities, together with equilibrium constants for ...
We present the development of ANISORROPIA, the discrete adjoint of the ISORROPIA thermodynamic equil...
Fine particulate matter (i.e., PM2.5) has gained intensive attention due to its adverse health and v...
In this dissertation, we studied a general equilibrium model for multiphase multicomponent inorganic...
A variety of thermodynamic models have been developed to predict inorganic gas-aerosol equilibrium. ...
This study presents ISORROPIA II, a thermodynamic equilibrium model for the K+-Ca2+-Mg2+-NH4 +-Na+-S...
A computationally efficient and rigorous thermodynamic model (ISORROPIA) that predicts the physical ...
This study presents ISORROPIA II, a thermodynamic equilibrium model for the K+–Ca2+–Mg2+...
A variety of thermodynamic models have been developed to predict inorganic gas-aerosol equilibrium. ...
International audienceThis study presents ISORROPIA II, a thermodynamic equilibrium model for the K+...
International audienceThis study presents ISORROPIA II, a thermodynamic equilibrium model for the K+...
Aerosol simulations especially for Earth System Models require a thermodynamics module with a good c...
We present the development of ANISORROPIA, the discrete adjoint of the ISORROPIA thermodynamic equil...
Atmospheric aerosols are complex mixtures of various inorganic−organic compounds and play significan...
International audienceA variety of thermodynamic models have been developed to predict inorganic gas...
Mole fraction based equations for aqueous phase activities, together with equilibrium constants for ...
We present the development of ANISORROPIA, the discrete adjoint of the ISORROPIA thermodynamic equil...
Fine particulate matter (i.e., PM2.5) has gained intensive attention due to its adverse health and v...
In this dissertation, we studied a general equilibrium model for multiphase multicomponent inorganic...
A variety of thermodynamic models have been developed to predict inorganic gas-aerosol equilibrium. ...