Atmospheric aerosols contribute some of the greatest uncertainties to estimates of global radiative forcing, and have significant effects on human health. New particle formation (NPF) is the process by which new aerosols of sub-2 nm diameter form from gas-phase precursors and contributes significantly to particle numbers in the atmosphere, accounting for approximately 50% of cloud condensation nuclei globally. Here, we study summertime NPF in urban Barcelona in NE Spain. The rate of formation of new particles is seen to increase linearly with sulphuric acid concentration in a manner similar to systems studied in c hamber studies involving sulphuric acid, water and dimethylamine (DMA), as well as sulphuric acid, water and the oxidation produ...
New particle formation (NPF) is a significant source of atmospheric particles, affecting climate and...
The role of different chemical compounds, particularly organics, involved in the new particle format...
The role of different chemical compounds, particularly organics, involved in the new particle format...
International audienceAbstract. Atmospheric aerosols contribute some of the greatest uncertainties t...
Atmospheric aerosols contribute some of the greatest uncertainties to estimates of global radiative ...
Nucleation and subsequent growth are a major source of new particles in many environments, but the p...
A substantial fraction of the atmospheric aerosols originates from secondary new particle formation ...
Sources and evolution of ultrafine particles were investigated both horizontally and vertically in t...
Sources and evolution of ultrafine particles were investigated both horizontally and vertically in t...
The vertical profiles (up to 975 m a.s.l.) of ultrafine and micronic particles across the planetary ...
We studied the simultaneity of tropospheric ozone (O3) episodes, high ultrafine particle (UFP; diame...
Studies on ultrafine particles (diameter < 100nm) and air quality have mostly focused on vehicle exh...
International audienceAs part of the CHARMEX (Chemistry Aerosol Mediterranean Experiments) project, ...
Dall'Osto, Manuel ... et al.-- 11 pages, 4 figures, supplementary material https://dx.doi.org/10.103...
New particle formation (NPF) is a significant source of atmospheric particles, affecting climate and...
The role of different chemical compounds, particularly organics, involved in the new particle format...
The role of different chemical compounds, particularly organics, involved in the new particle format...
International audienceAbstract. Atmospheric aerosols contribute some of the greatest uncertainties t...
Atmospheric aerosols contribute some of the greatest uncertainties to estimates of global radiative ...
Nucleation and subsequent growth are a major source of new particles in many environments, but the p...
A substantial fraction of the atmospheric aerosols originates from secondary new particle formation ...
Sources and evolution of ultrafine particles were investigated both horizontally and vertically in t...
Sources and evolution of ultrafine particles were investigated both horizontally and vertically in t...
The vertical profiles (up to 975 m a.s.l.) of ultrafine and micronic particles across the planetary ...
We studied the simultaneity of tropospheric ozone (O3) episodes, high ultrafine particle (UFP; diame...
Studies on ultrafine particles (diameter < 100nm) and air quality have mostly focused on vehicle exh...
International audienceAs part of the CHARMEX (Chemistry Aerosol Mediterranean Experiments) project, ...
Dall'Osto, Manuel ... et al.-- 11 pages, 4 figures, supplementary material https://dx.doi.org/10.103...
New particle formation (NPF) is a significant source of atmospheric particles, affecting climate and...
The role of different chemical compounds, particularly organics, involved in the new particle format...
The role of different chemical compounds, particularly organics, involved in the new particle format...