A three dimensional chemical transport model (PMCAMx) is applied to the Mexico City Metropolitan Area (MCMA) in order to simulate the chemical composition and mass of the major PM1 (fine) and PM1-10 (coarse) inorganic components and determine the effect of mineral dust on their formation. The aerosol thermodynamic model ISORROPIA-II is used to explicitly simulate the effect of Ca, Mg, and K from dust on semi-volatile partitioning and water uptake. The hybrid approach is applied to simulate the inorganic components, assuming that the smallest particles are in thermodynamic equilibrium, while describing the mass transfer to and from the larger ones. The official MCMA 2004 emissions inventory with improved dust and NaCl emissions is used. The ...
The equilibrium inorganic aerosol model ISORROPIA was embedded in a Markov Chain Monte Carlo algorit...
International audienceThe significance of the heterogeneous formation of particulate nitrate, rarely...
Fine particulate matter (i.e., PM2.5) has gained intensive attention due to its adverse health and v...
A three dimensional chemical transport model (PMCAMx) is applied to the Mexico City Metropolitan Are...
Atmospheric aerosols have adverse effects on human health, contribute to the visibility reduction an...
One of the most challenging tasks for chemical transport models (CTMs) is the prediction of the form...
New primary and secondary organic aerosol modules have been added to PMCAMx, a three dimensional che...
This study assesses the chemical composition and global aerosol load of the major inorganic aerosol ...
Measurements of atmospheric gases and fine par- ticle chemistry were made in the Mexico City Metropo...
A new aerosol model, the Model of Aerosol Dynamics, Reaction, Ionization and Dissolution (MADRID) ha...
A new aerosol model, the Model of Aerosol Dynamics, Reaction, Ionization, and Dissolution (MADRID) h...
An Aerodyne Aerosol Mass Spectrometer (AMS) was deployed at the CENICA Supersite, during the Mexico ...
Air quality in the Mexico City Metropolitan Area (MCMA) is the subject of many studies due to concer...
The contribution of garbage burning (GB) emissions to chloride and PM2.5 in the Mexico City Metropol...
Fine particulate matter with aerodynamic diameter less than 2.5 μm (PM2.5) has been associated with ...
The equilibrium inorganic aerosol model ISORROPIA was embedded in a Markov Chain Monte Carlo algorit...
International audienceThe significance of the heterogeneous formation of particulate nitrate, rarely...
Fine particulate matter (i.e., PM2.5) has gained intensive attention due to its adverse health and v...
A three dimensional chemical transport model (PMCAMx) is applied to the Mexico City Metropolitan Are...
Atmospheric aerosols have adverse effects on human health, contribute to the visibility reduction an...
One of the most challenging tasks for chemical transport models (CTMs) is the prediction of the form...
New primary and secondary organic aerosol modules have been added to PMCAMx, a three dimensional che...
This study assesses the chemical composition and global aerosol load of the major inorganic aerosol ...
Measurements of atmospheric gases and fine par- ticle chemistry were made in the Mexico City Metropo...
A new aerosol model, the Model of Aerosol Dynamics, Reaction, Ionization and Dissolution (MADRID) ha...
A new aerosol model, the Model of Aerosol Dynamics, Reaction, Ionization, and Dissolution (MADRID) h...
An Aerodyne Aerosol Mass Spectrometer (AMS) was deployed at the CENICA Supersite, during the Mexico ...
Air quality in the Mexico City Metropolitan Area (MCMA) is the subject of many studies due to concer...
The contribution of garbage burning (GB) emissions to chloride and PM2.5 in the Mexico City Metropol...
Fine particulate matter with aerodynamic diameter less than 2.5 μm (PM2.5) has been associated with ...
The equilibrium inorganic aerosol model ISORROPIA was embedded in a Markov Chain Monte Carlo algorit...
International audienceThe significance of the heterogeneous formation of particulate nitrate, rarely...
Fine particulate matter (i.e., PM2.5) has gained intensive attention due to its adverse health and v...