Oxidation flow reactors (OFRs) are a promising complement to environmental chambers for investigating atmospheric oxidation processes and secondary aerosol formation. However, questions have been raised about how representative the chemistry within OFRs is of that in the troposphere. We investigate the fates of organic peroxy radicals (RO2), which play a central role in atmospheric organic chemistry, in OFRs and environmental chambers by chemical kinetic modeling and compare to a variety of ambient conditions to help define a range of atmospherically relevant OFR operating conditions. For most types of RO2, their bimolecular fates in OFRs are mainly RO2 + HO2 and RO2 + NO, similar to chambers and atmospheric studies. For substitut...
We evaluate monoterpene-derived peroxy radical (MT-RO2) unimolecular autoxidation and self- and cros...
Acylperoxy radicals (RO2) are key intermediates in the atmospheric oxidation of organic compounds an...
Hydroperoxyl (HO2) and organic peroxy (RO2, where R stands for any organic group) radicals are highl...
Hydrocarbons are emitted into the Earth's atmosphere in very large quantities by human and biogenic ...
Organic peroxy radicals (RO2), formed from the degradation of hydrocarbons and other volatile organi...
Atmospheric autoxidation of volatile organic compounds (VOC) leads to prompt formation of highly oxi...
Organic peroxy radicals (RO2) play a pivotal role in the degradation of hydrocarbons. The autoxidati...
Peroxy (RO2) and alkoxy (RO) radicals are prototypical intermediates in any hydrocarbon oxidation. I...
The recombination ("dimerization") of peroxyl radicals (RO2 center dot) is one of the pathways sugge...
Secondary organic aerosol (SOA) are important components in atmospheric processes and significantly ...
Peroxy radical (RO2) chemistry plays a central role in atmospheric science. RO2 radicals control the...
The gas-phase mechanism of the formation of highly oxidized multifunctional organic compounds (HOMs)...
The oxidation of biogenically emitted volatile organic compounds (BVOC) plays an important role in t...
Peroxyl radicals (ROO.) are key intermediates in atmospheric chemistry, with relatively long lifetim...
The formation of accretion products ("dimers") from recombination reactions of peroxyl radicals (RO2...
We evaluate monoterpene-derived peroxy radical (MT-RO2) unimolecular autoxidation and self- and cros...
Acylperoxy radicals (RO2) are key intermediates in the atmospheric oxidation of organic compounds an...
Hydroperoxyl (HO2) and organic peroxy (RO2, where R stands for any organic group) radicals are highl...
Hydrocarbons are emitted into the Earth's atmosphere in very large quantities by human and biogenic ...
Organic peroxy radicals (RO2), formed from the degradation of hydrocarbons and other volatile organi...
Atmospheric autoxidation of volatile organic compounds (VOC) leads to prompt formation of highly oxi...
Organic peroxy radicals (RO2) play a pivotal role in the degradation of hydrocarbons. The autoxidati...
Peroxy (RO2) and alkoxy (RO) radicals are prototypical intermediates in any hydrocarbon oxidation. I...
The recombination ("dimerization") of peroxyl radicals (RO2 center dot) is one of the pathways sugge...
Secondary organic aerosol (SOA) are important components in atmospheric processes and significantly ...
Peroxy radical (RO2) chemistry plays a central role in atmospheric science. RO2 radicals control the...
The gas-phase mechanism of the formation of highly oxidized multifunctional organic compounds (HOMs)...
The oxidation of biogenically emitted volatile organic compounds (BVOC) plays an important role in t...
Peroxyl radicals (ROO.) are key intermediates in atmospheric chemistry, with relatively long lifetim...
The formation of accretion products ("dimers") from recombination reactions of peroxyl radicals (RO2...
We evaluate monoterpene-derived peroxy radical (MT-RO2) unimolecular autoxidation and self- and cros...
Acylperoxy radicals (RO2) are key intermediates in the atmospheric oxidation of organic compounds an...
Hydroperoxyl (HO2) and organic peroxy (RO2, where R stands for any organic group) radicals are highl...