An unmanned aerial vehicle (UAV) observation platform obtained the first vertical profiles of particle number size distribution (PNSD) from 7 to 16 July 2022 on the eastern slope of the Tibetan Plateau (ESTP). The results were from two flanks at the Chuni (CN) and Tianquan (TQ) sites, which are alongside a mountain (Mt. Erlang). The observations revealed a significant negative correlation between the planetary boundary layer height (PBLH) and the particle number concentration (PNC), and the correlation coefficient was −0.19. During the morning, the rise in the PBLH at the CN and TQ sites caused decreases of 16.43% and 58.76%, respectively, in the PNC. Three distinct profile characteristics were classified: Type I, the explosive growth of fi...
From November, 2011 to August, 2012, measurements of size distribution of particle number had been c...
The hygroscopic growth of atmospheric submicrometer particle size distributions (diameter D-p rangin...
To date, few comprehensive field observations of new particle formation (NPF) have been carried out ...
Knowledge of particle number size distribution (PND) and new particle formation (NPF) events in Sout...
Knowledge of particle number size distribution (PND) and new particle formation (NPF) events in Sout...
The characteristics of aerosol optical depth (AOD) over the Tibetan Plateau (TP) were analyzed using...
The Tibetan Plateau (TP) is representative of typical clean atmospheric conditions. Aerosol optical ...
A set of 152 vertical profiles of aerosol number concentration and size distribution with diameter r...
Particle number size distributions in size range 12–570 nm were measured continuously at Mount Walig...
Atmospheric aerosols exert highly uncertain impacts on radiative forcing and also have detrimental e...
Particle number size distribution (PNSD) is of importance for understanding the mechanisms of partic...
Biomass burning (BB) activities have a great impact on the particle number size distribution (PNSD)...
International audienceTo date, few comprehensive field observations of new particle formation (NPF) ...
The aerosol optical properties and chemical components of PM2.1 (particulate matter with a diameter ...
Particle number concentration and size distribution are important for better understanding the chara...
From November, 2011 to August, 2012, measurements of size distribution of particle number had been c...
The hygroscopic growth of atmospheric submicrometer particle size distributions (diameter D-p rangin...
To date, few comprehensive field observations of new particle formation (NPF) have been carried out ...
Knowledge of particle number size distribution (PND) and new particle formation (NPF) events in Sout...
Knowledge of particle number size distribution (PND) and new particle formation (NPF) events in Sout...
The characteristics of aerosol optical depth (AOD) over the Tibetan Plateau (TP) were analyzed using...
The Tibetan Plateau (TP) is representative of typical clean atmospheric conditions. Aerosol optical ...
A set of 152 vertical profiles of aerosol number concentration and size distribution with diameter r...
Particle number size distributions in size range 12–570 nm were measured continuously at Mount Walig...
Atmospheric aerosols exert highly uncertain impacts on radiative forcing and also have detrimental e...
Particle number size distribution (PNSD) is of importance for understanding the mechanisms of partic...
Biomass burning (BB) activities have a great impact on the particle number size distribution (PNSD)...
International audienceTo date, few comprehensive field observations of new particle formation (NPF) ...
The aerosol optical properties and chemical components of PM2.1 (particulate matter with a diameter ...
Particle number concentration and size distribution are important for better understanding the chara...
From November, 2011 to August, 2012, measurements of size distribution of particle number had been c...
The hygroscopic growth of atmospheric submicrometer particle size distributions (diameter D-p rangin...
To date, few comprehensive field observations of new particle formation (NPF) have been carried out ...