We present a novel analytical approach to measure the chemical composition of organic aerosol. The new instrument combines proton-transfer-reaction mass-spectrometry (PTR-MS) with a collection-thermal-desorption aerosol sampling technique. For secondary organic aerosol produced from the reaction of ozone with isoprenoids in a laboratory reactor, the TD-PTR-MS instrument detected typically 80% of the mass that was measured with a scanning mobility particle sizer (SMPS). The first field deployment of the instrument was the EUCAARI-IOP campaign at the CESAR tall tower site in the Netherlands. For masses with low background values (∼30% of all masses) the detection limit of aerosol compounds was below 0.2 ng/m3 which corresponds to a sampled co...
Aerosol hygroscopic properties were linked to its chemical composition by rising complementary onlin...
International audienceThe characterization of the molecular composition of organic carbon in both ga...
We report on a new method for analyzing atmospheric submicrometer particulate organic matter which c...
We present a novel analytical approach to measure the chemical composition of organic aerosol. The n...
We present a novel analytical approach to measure the chemical composition of organic aerosol. The n...
We present a novel approach to study the organic composition of aerosol filter samples using thermal...
For the first time a high mass resolution thermal desorption proton transfer reaction mass spectrome...
Our understanding of formation processes, physical properties, and climate/health effects of organic...
Volatile organic compounds (VOCs) and organic aerosols (OA) play an important role in the Earth’s at...
Thermal methods of various forms have been used to quantify carbonaceous materials. Thermal/optical ...
An intercomparison of different aerosol chemical characterization techniques has been performed as p...
An intercomparison of different aerosol chemical characterization techniques has been performed as p...
During the CalNex study (15 May to 16 June 2010) a large suite of instruments was operated at the Lo...
Atmospheric oxidation of volatile organic compounds (VOCs) yields a large number of different organi...
Aerosol hygroscopic properties were linked to its chemical composition by rising complementary onlin...
International audienceThe characterization of the molecular composition of organic carbon in both ga...
We report on a new method for analyzing atmospheric submicrometer particulate organic matter which c...
We present a novel analytical approach to measure the chemical composition of organic aerosol. The n...
We present a novel analytical approach to measure the chemical composition of organic aerosol. The n...
We present a novel approach to study the organic composition of aerosol filter samples using thermal...
For the first time a high mass resolution thermal desorption proton transfer reaction mass spectrome...
Our understanding of formation processes, physical properties, and climate/health effects of organic...
Volatile organic compounds (VOCs) and organic aerosols (OA) play an important role in the Earth’s at...
Thermal methods of various forms have been used to quantify carbonaceous materials. Thermal/optical ...
An intercomparison of different aerosol chemical characterization techniques has been performed as p...
An intercomparison of different aerosol chemical characterization techniques has been performed as p...
During the CalNex study (15 May to 16 June 2010) a large suite of instruments was operated at the Lo...
Atmospheric oxidation of volatile organic compounds (VOCs) yields a large number of different organi...
Aerosol hygroscopic properties were linked to its chemical composition by rising complementary onlin...
International audienceThe characterization of the molecular composition of organic carbon in both ga...
We report on a new method for analyzing atmospheric submicrometer particulate organic matter which c...