6533b856fe1ef96bd12b277b

RESEARCH PRODUCT

Identification of organic hydroperoxides and hydroperoxy acids in secondary organic aerosol formed during the ozonolysis of different monoterpenes and sesquiterpenes by on-line analysis using atmospheric pressure chemical ionization ion trap mass spectrometry.

Jörg WarnkeMarc-christopher ReinnigThorsten Hoffmann

subject

AerosolsOrganic peroxideChemical ionizationAir PollutantsSpectrometry Mass Electrospray IonizationOzonolysisAtmospheric pressureOrganic ChemistryAnalytical chemistryCarboxylic AcidsAtmospheric-pressure chemical ionizationHydrogen PeroxideOnline SystemsIon sourceAnalytical ChemistryPeroxideschemistry.chemical_compoundchemistryFunctional groupMonoterpenesPressureVolatilizationHydrogen peroxideSesquiterpenesSpectroscopy

description

On-line ion trap mass spectrometry (ITMS) enables the real-time characterization of reaction products of secondary organic aerosol (SOA). The analysis was conducted by directly introducing the aerosol particles into the ion source. Positive-ion chemical ionization at atmospheric pressure (APCI(+)) ITMS was used for the characterization of constituents of biogenic SOA produced in reaction-chamber experiments. APCI in the positive-ion mode usually enables the detection of [M+H](+) ions of the individual SOA components. In this paper the identification of organic peroxides from biogenic volatile organic compounds (VOCs) by on-line APCI-ITMS is presented. Organic peroxides containing a hydroperoxy group, generated by gas-phase ozonolysis of monoterpenes (alpha-pinene and beta-pinene) and sesquiterpenes (alpha-cedrene and alpha-copaene), could be detected via on-line APCI(+)-MS/MS experiments. A characteristic neutral loss of 34 Da (hydrogen peroxide, H(2)O(2)) in the on-line MS/MS spectra is a clear indication for the existence of an organic peroxide, containing a hydroperoxy functional group.

10.1002/rcm.4065https://pubmed.ncbi.nlm.nih.gov/19412924