This work intends to quantify the variation in optical properties of aerosol by in-situ spectroscopic monitoring the ozonolysis of a mixture of typical biomass burning compounds. The reaction occurs on silica and glass particles in the presence of simulated sunlight. Fused silica particles (Aerosil) were coated with a thin film of a 1:1 mixure of 4-phenoxyphenol with 4-carboxyphenone as a photosensitizer. UV-VIS spectra of dichloromethane extracts from the particles recorded before and after treatment, show development of a new band after prolonged ozone and light exposure. Changes in optical properties are reported, and variations of spectroscopic features are discussed. We show that the ozone-induced heterogeneous photochemical reaction d...
Secondary Organic Aerosol (SOA) were generated from the ozonolysis of \u3b1-pinene in the CESAM simu...
Secondary organic aerosol (SOA) were generated from the ozonolysis of α-pinene in the CESAM (French ...
International audienceThis work explores the heterogeneous reaction between HUmic-LIke Substances (s...
International audienceHeterogeneous reactions between organic films, taken as proxies for atmospheri...
Atmospheric aerosols have a significant organic composition as determined by field measurement studi...
Organic aerosols are very complex in nature and can contain upwards to thousands of different chemic...
International audienceIn addition to direct photolysis, degradation of organic compounds by solar li...
The chemical and physical properties of secondary organic aerosol (SOA) formed by the photochemical ...
International audienceA series of experiments was conducted in the CE-SAM (French acronym for Experi...
International audienceSecondary organic aerosol (SOA) were generated from the ozonolysis of alpha-pi...
A series of experiments was conducted in the CESAM (French acronym for Experimental Multiphasic Atmo...
Aerosols can substantially impact human health, atmospheric chemistry, and climate. The composition ...
Aerosol particles have a significant impact on atmospheric processes through interacting directly wi...
Secondary Organic Aerosol (SOA) were generated from the ozonolysis of \u3b1-pinene in the CESAM simu...
Secondary organic aerosol (SOA) were generated from the ozonolysis of α-pinene in the CESAM (French ...
International audienceThis work explores the heterogeneous reaction between HUmic-LIke Substances (s...
International audienceHeterogeneous reactions between organic films, taken as proxies for atmospheri...
Atmospheric aerosols have a significant organic composition as determined by field measurement studi...
Organic aerosols are very complex in nature and can contain upwards to thousands of different chemic...
International audienceIn addition to direct photolysis, degradation of organic compounds by solar li...
The chemical and physical properties of secondary organic aerosol (SOA) formed by the photochemical ...
International audienceA series of experiments was conducted in the CE-SAM (French acronym for Experi...
International audienceSecondary organic aerosol (SOA) were generated from the ozonolysis of alpha-pi...
A series of experiments was conducted in the CESAM (French acronym for Experimental Multiphasic Atmo...
Aerosols can substantially impact human health, atmospheric chemistry, and climate. The composition ...
Aerosol particles have a significant impact on atmospheric processes through interacting directly wi...
Secondary Organic Aerosol (SOA) were generated from the ozonolysis of \u3b1-pinene in the CESAM simu...
Secondary organic aerosol (SOA) were generated from the ozonolysis of α-pinene in the CESAM (French ...
International audienceThis work explores the heterogeneous reaction between HUmic-LIke Substances (s...