In this study we have provided simple analytical formulae to estimate the growth rate of a nucleation mode due to self-coagulation and the apparent growth rate due to coagulation scavenging by larger particles. These formulae were used on a set of simulations covering a wide range of atmospheric conditions. The modal growth rates were determined from the simulation results by summing the contribution of each process, by calculating the increase rate in the count mean diameter of the mode and by following the peak concentration of the mode. The results of these three methods were compared with each other and the means used to estimate the growth rate due to self-coagulation and coagulation scavenging were found to give accurate values. We al...
Two types of particles exist in the atmosphere, primary and secondary particles. While primary parti...
Two types of particles exist in the atmosphere, primary and secondary particles. While primary parti...
The presence of small ions influences the growth dynamics of a size distribution of aerosols. Specif...
Abstract. In this study we have provided simple analytical formulae to estimate the growth rate of a...
A dimensionless theory for new particle formation (NPF) was developed, using an aerosol population b...
The scanning mobility particle sizer (SMPS) technique is one of the largely employed techniques for ...
A new parameterization for atmospheric new-particle formation has been developed. The parameterizati...
[1] The formation and evolution of new particles during coastal nucleation events are examined using...
Charging and coagulation influence one another and impact the particle charge and size distributions...
[1] The formation and evolution of new particles during coastal nucleation events are examined using...
Atmospheric new particle formation occurs frequently in the global atmosphere and may play a crucial...
A theoretical framework was constructed by which one can estimate the relative role of different pro...
Atmospheric new particle formation occurs frequently in the global atmosphere and may play a crucial...
The growth rate of atmospheric new particles is a key parameter that determines their survival proba...
Charging and coagulation influence one another and impact the particle charge and size distribution...
Two types of particles exist in the atmosphere, primary and secondary particles. While primary parti...
Two types of particles exist in the atmosphere, primary and secondary particles. While primary parti...
The presence of small ions influences the growth dynamics of a size distribution of aerosols. Specif...
Abstract. In this study we have provided simple analytical formulae to estimate the growth rate of a...
A dimensionless theory for new particle formation (NPF) was developed, using an aerosol population b...
The scanning mobility particle sizer (SMPS) technique is one of the largely employed techniques for ...
A new parameterization for atmospheric new-particle formation has been developed. The parameterizati...
[1] The formation and evolution of new particles during coastal nucleation events are examined using...
Charging and coagulation influence one another and impact the particle charge and size distributions...
[1] The formation and evolution of new particles during coastal nucleation events are examined using...
Atmospheric new particle formation occurs frequently in the global atmosphere and may play a crucial...
A theoretical framework was constructed by which one can estimate the relative role of different pro...
Atmospheric new particle formation occurs frequently in the global atmosphere and may play a crucial...
The growth rate of atmospheric new particles is a key parameter that determines their survival proba...
Charging and coagulation influence one another and impact the particle charge and size distribution...
Two types of particles exist in the atmosphere, primary and secondary particles. While primary parti...
Two types of particles exist in the atmosphere, primary and secondary particles. While primary parti...
The presence of small ions influences the growth dynamics of a size distribution of aerosols. Specif...