Number concentrations of atmospheric aerosol particles were measured by a flow-switching type differential mobility particle sizer in an electrical mobility diameter range of 6–1000 nm in 30 channels near central Budapest with a time resolution of 10 min continuously from 3 November 2008 to 2 November 2009. Daily median number concentrations of particles varied from 3.8 &times; 10<sup>3</sup> to 29 &times;10<sup>3</sup> cm<sup>−3</sup> with a yearly median of 11.8 &times; 10<sup>3</sup> cm<sup>−3</sup>. Contribution of ultrafine particles to the total particle number ranged from 58 to 92% with a mean ratio and standard deviation of (79 &plusmn; 6)%. Typical diurnal ...
Road traffic emissions are often considered the main source of ultrafine particles (UFP, diameter sm...
Most of the anthropogenic air pollution sources are located in urban environments. The contribution ...
Secondary aerosol particle production via new particle formation (NPF) has been shown to be a major ...
Dynamic properties, i.e. particle formation rate J6 and particle diameter growth rate GR10, and timi...
Abstract Simultaneous particle number size distribution measurements were performed in the urban env...
Particle number size distributions were measured by differential mobility particle sizer in the diam...
International audienceLong-term measurements (over 4 years) of particle number size distributions (s...
A correct description of fine (diameter <1 μm) and ultrafine (<0.1 μm) aerosol particles in urban ar...
Budapest platform for Aerosol Research and Training (BpART) was created for advancing long-term on...
Aerosol particle number size distributions (size range 0.003–10 μm) in the urban atmosphere of Augsb...
Ultrafine particles (UFPs, diameter < 100 nm) have gained major attention in the environmental healt...
AbstractUltrafine particles (UFPs, diameter<100nm) have gained major attention in the environmental ...
International audienceThe properties of atmospheric aerosol particles in Marseille and Athens were i...
The occurrence frequency of regional atmospheric new aerosol particle formation and consecutive grow...
International audienceOn occasion of the project YOGAM (year of gas phase and aerosol measurements),...
Road traffic emissions are often considered the main source of ultrafine particles (UFP, diameter sm...
Most of the anthropogenic air pollution sources are located in urban environments. The contribution ...
Secondary aerosol particle production via new particle formation (NPF) has been shown to be a major ...
Dynamic properties, i.e. particle formation rate J6 and particle diameter growth rate GR10, and timi...
Abstract Simultaneous particle number size distribution measurements were performed in the urban env...
Particle number size distributions were measured by differential mobility particle sizer in the diam...
International audienceLong-term measurements (over 4 years) of particle number size distributions (s...
A correct description of fine (diameter <1 μm) and ultrafine (<0.1 μm) aerosol particles in urban ar...
Budapest platform for Aerosol Research and Training (BpART) was created for advancing long-term on...
Aerosol particle number size distributions (size range 0.003–10 μm) in the urban atmosphere of Augsb...
Ultrafine particles (UFPs, diameter < 100 nm) have gained major attention in the environmental healt...
AbstractUltrafine particles (UFPs, diameter<100nm) have gained major attention in the environmental ...
International audienceThe properties of atmospheric aerosol particles in Marseille and Athens were i...
The occurrence frequency of regional atmospheric new aerosol particle formation and consecutive grow...
International audienceOn occasion of the project YOGAM (year of gas phase and aerosol measurements),...
Road traffic emissions are often considered the main source of ultrafine particles (UFP, diameter sm...
Most of the anthropogenic air pollution sources are located in urban environments. The contribution ...
Secondary aerosol particle production via new particle formation (NPF) has been shown to be a major ...