Isomerization of Second-Generation Isoprene Peroxy Radicals: Epoxide Formation and Implications for Secondary Organic Aerosol Yields

被引:60
作者
D'Arnbro, Emma L. [1 ,2 ]
Moller, Kristian H. [3 ]
Lopez-Hilfiker, Felipe D. [1 ,6 ]
Schobesberger, Siegfried [1 ,7 ]
Liu, Jiumeng [4 ]
Shilling, John E. [4 ,5 ]
Lee, Ben Hwan [1 ]
Kjaergaard, Henrik G. [3 ]
Thornton, Joel A. [1 ,2 ]
机构
[1] Univ Washington, Dept Atmospher Sci, Seattle, WA 98195 USA
[2] Univ Washington, Dept Chem, Seattle, WA 98195 USA
[3] Univ Copenhagen, Dept Chem, Univ Pk 5, DK-2100 Copenhagen O, Denmark
[4] Pacific Northwest Natl Lab, Atmospher Sci & Global Change Div, Richland, WA 99352 USA
[5] Pacific Northwest Natl Lab, Environm Mol Sci Lab, Richland, WA 99352 USA
[6] Swiss Fed Inst Technol, Paul Scherrer Inst, Lab Atmospher Chem, CH-8092 Zurich, Switzerland
[7] Univ Eastern Finland, Dept Appl Phys, PL-1627 Kuopio, Finland
基金
美国国家科学基金会;
关键词
MOLECULAR-ORBITAL METHODS; EXCHANGE CAFE MODEL; GAS-PHASE REACTION; VAPOR WALL LOSS; BASIS-SETS; REACTIVE UPTAKE; ATMOSPHERIC OXIDATION; OH RADICALS; PHOTOOXIDATION; VOLATILITY;
D O I
10.1021/acs.est.7b00460
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
We report chamber measurements of secondary organic aerosol (SOA) formation from isoprene photochemical oxidation, in which radical concentrations were systematically varied and the molecular composition of semi- to low-volatility gases and SOA were measured online. Using a detailed chemical kinetics box model, we find that to explain the behavior of low-volatility products and SOA mass yields relative to input H2O2 concentrations, the second-generation dihydroxy hydroperoxy peroxy radical (C5H11O6 center dot) must undergo an intramolecular H-shift with a net forward rate constant of order 0.1 s-1 or higher. This finding is consistent with quantum chemical calculations that suggest a net forward rate constant of 0.3-0.9 s(-1). Furthermore, these calculations suggest that the dominant product of this isomerization is a dihydroxy hydroperoxy epoxide (C5H10O5), which is expected to have a saturation vapor pressure similar to 2 orders of magnitude higher, as determined by group-contribution calculations, than the dihydroxy dihydroperoxide, ISOP(OOH)(2)(C5H12O6), a major product of the peroxy radical reacting with HO2. These results provide strong constraints on the likely volatility distribution of isoprene oxidation products under atmospheric conditions and, thus, on the importance of nonreactive gas-particle partitioning of isoprene oxidation products as an SOA source.
引用
收藏
页码:4978 / 4987
页数:10
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