0000000000520283

AUTHOR

Fangxia Shen

0000-0003-4166-4615

showing 2 related works from this author

Radical Formation by Fine Particulate Matter Associated with Highly Oxygenated Molecules

2019

Highly oxygenated molecules (HOMs) play an important role in the formation and evolution of secondary organic aerosols (SOA). However, the abundance of HOMs in different environments and their relation to the oxidative potential of fine particulate matter (PM) are largely unknown. Here, we investigated the relative HOM abundance and radical yield of laboratory-generated SOA and fine PM in ambient air ranging from remote forest areas to highly polluted megacities. By electron paramagnetic resonance and mass spectrometric investigations, we found that the relative abundance of HOMs, especially the dimeric and low-volatility types, in ambient fine PM was positively correlated with the formatio…

ChinaFine particulateoxidationRadicalvolatility010501 environmental sciences01 natural scienceschemistry.chemical_compoundEnvironmental ChemistryMoleculemultiphase chemistryChemical compositionRelative species abundanceFinlandIsoprene0105 earth and related environmental sciencesNaphthaleneAerosolsAir Pollutantsmechanismshydroxyl radicalsGeneral Chemistry15. Life on landParticulateschemistry13. Climate actionBeijingEnvironmental chemistryupper troposphereoxidized moleculesmassParticulate Matterchemical-compositionsecondary organic aerosolAEROSSOL
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Reactive species formed upon interaction of water with fine particulate matter from remote forest and polluted urban air

2020

Interaction of water with fine particulate matter leads to the formation of reactive species (RS) that may influence the aging, properties, and health effects of atmospheric aerosols. In this study, we explore the RS yields of fine PM from remote forest (Hyytiälä, Finland) and polluted urban air (Mainz, Germany and Beijing, China) and relate these yields to different chemical constituents and reaction mechanisms. Ultrahigh-resolution mass spectrometry was used to characterize organic aerosol composition, electron paramagnetic resonance (EPR) spectroscopy with a spin-trapping technique was used to determine the concentrations •OH, O2•−, and carbon- or oxygen-centered organic radicals, …

Reaction mechanism010504 meteorology & atmospheric sciencesFine particulateRadicalchemistry.chemical_element010501 environmental sciencesMass spectrometry01 natural scienceslaw.inventionchemistry13. Climate actionlawEnvironmental chemistry11. SustainabilityEnvironmental scienceAerosol compositionSpectroscopyElectron paramagnetic resonanceCarbon0105 earth and related environmental sciences
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