The volatile and hygroscopic properties of ammonium sulphate seeded and unseeded secondary organic aerosol (SOA) derived from the photo-oxidation of atmospherically relevant concentrations of alpha-pinene were studied. The seed particles were electrospray generated ammonium sulphate ((NH4)(2)SO4) having diameters of approximately 33 nm with a quasi-mono-disperse size distribution (geometric standard deviation sigma(g)=1.3). The volatile and hygroscopic properties of both seeded and unseeded SOA were simultaneously measured with a VH-TDMA (volatility-hygroscopicity tandem differential mobility analyzer). VH-TDMA measurements of unseeded SOA show a decrease in the hygroscopic growth (HGF) factor for increased volatilisation temperatures such ...
Although water uptake of aerosol particles plays an important role in the atmospheric environment, ...
We compare the oxidation state and molecular composition of α-pinene-derived secondary organic aeros...
Saukko E, Lambe AT, Massoli P, et al. Humidity-dependent phase state of SOA particles from biogenic ...
The volatile and hygroscopic properties of ammonium sulphate seeded and unseeded secondary organic a...
A series of experiments has been conducted in the Caltech indoor smog chamber facility to investigat...
The hygroscopic behavior of atmospherically relevant water-soluble carboxylic salts and their effect...
Secondary Organic Aerosols (SOA) studied in previous laboratory experiments generally showed only sl...
Measurements of the hygroscopicity of 15145 nm particles in a boreal forest environment were conduct...
International audienceThe hygroscopic growth of ammoniated sulfate particles was studied by measurem...
International audienceThe phase transitions and hygroscopic growth of two humic acid aerosols (Aldri...
The formation of secondary organic aerosol (SOA) has been widely studied in the presence of dry seed...
Atmospheric particulate water is ubiquitous, affecting particle transport and uptake of gases. Yet, ...
Secondary inorganic and organic aerosol particles are ubiquitous constituents in the atmosphere. The...
A hygroscopicity tandem differential mobility analyzer (HTDMA) was used to measure the water uptake ...
International audienceSecondary organic aerosol (SOA) were generated from the ozonolysis of alpha-pi...
Although water uptake of aerosol particles plays an important role in the atmospheric environment, ...
We compare the oxidation state and molecular composition of α-pinene-derived secondary organic aeros...
Saukko E, Lambe AT, Massoli P, et al. Humidity-dependent phase state of SOA particles from biogenic ...
The volatile and hygroscopic properties of ammonium sulphate seeded and unseeded secondary organic a...
A series of experiments has been conducted in the Caltech indoor smog chamber facility to investigat...
The hygroscopic behavior of atmospherically relevant water-soluble carboxylic salts and their effect...
Secondary Organic Aerosols (SOA) studied in previous laboratory experiments generally showed only sl...
Measurements of the hygroscopicity of 15145 nm particles in a boreal forest environment were conduct...
International audienceThe hygroscopic growth of ammoniated sulfate particles was studied by measurem...
International audienceThe phase transitions and hygroscopic growth of two humic acid aerosols (Aldri...
The formation of secondary organic aerosol (SOA) has been widely studied in the presence of dry seed...
Atmospheric particulate water is ubiquitous, affecting particle transport and uptake of gases. Yet, ...
Secondary inorganic and organic aerosol particles are ubiquitous constituents in the atmosphere. The...
A hygroscopicity tandem differential mobility analyzer (HTDMA) was used to measure the water uptake ...
International audienceSecondary organic aerosol (SOA) were generated from the ozonolysis of alpha-pi...
Although water uptake of aerosol particles plays an important role in the atmospheric environment, ...
We compare the oxidation state and molecular composition of α-pinene-derived secondary organic aeros...
Saukko E, Lambe AT, Massoli P, et al. Humidity-dependent phase state of SOA particles from biogenic ...