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Direct kinetic measurements and theoretical predictions of an isoprene-derived Criegee intermediate
by
Walsh, Patrick J.
, 林志民
, Khan, M. Anwar H.
, Lin, Yen-Hsiu
, Winiberg, Frank A. F.
, Vansco, Michael F.
, Li, Yu-Lin
, Zuraski, Kristen
, Sheps, Leonid
, Shallcross, Dudley E.
, Trongsiriwat, Nisalak
, Au, Kendrew
, Klippenstein, Stephen J.
, Osborn, David L.
, Lin, Jim Jr-Min
, Lester, Marsha I.
, Chao, Wen
, Percival, Carl J.
, Taatjes, Craig A.
, Caravan, Rebecca L.
in
09 BIOMASS FUELS
/ ab initio calculations
/ Absorption spectra
/ Absorption spectroscopy
/ Air quality
/ Alkenes
/ atmospheric chemistry
/ chemical kinetics
/ Chemistry
/ Computational kinetics
/ Criegee intermediates
/ Depletion
/ Formic acid
/ Global chemical modelling
/ Intermediates
/ Isoprene
/ Mass spectrometry
/ Mass spectroscopy
/ Molecular beams
/ Organic hydroperoxide
/ Oxidation
/ Photoionization
/ Physical Sciences
/ Spectroscopy
/ Sulfur dioxide
/ Sulfur trioxide
/ Troposphere
/ Unimolecular decay
2020
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Direct kinetic measurements and theoretical predictions of an isoprene-derived Criegee intermediate
by
Walsh, Patrick J.
, 林志民
, Khan, M. Anwar H.
, Lin, Yen-Hsiu
, Winiberg, Frank A. F.
, Vansco, Michael F.
, Li, Yu-Lin
, Zuraski, Kristen
, Sheps, Leonid
, Shallcross, Dudley E.
, Trongsiriwat, Nisalak
, Au, Kendrew
, Klippenstein, Stephen J.
, Osborn, David L.
, Lin, Jim Jr-Min
, Lester, Marsha I.
, Chao, Wen
, Percival, Carl J.
, Taatjes, Craig A.
, Caravan, Rebecca L.
in
09 BIOMASS FUELS
/ ab initio calculations
/ Absorption spectra
/ Absorption spectroscopy
/ Air quality
/ Alkenes
/ atmospheric chemistry
/ chemical kinetics
/ Chemistry
/ Computational kinetics
/ Criegee intermediates
/ Depletion
/ Formic acid
/ Global chemical modelling
/ Intermediates
/ Isoprene
/ Mass spectrometry
/ Mass spectroscopy
/ Molecular beams
/ Organic hydroperoxide
/ Oxidation
/ Photoionization
/ Physical Sciences
/ Spectroscopy
/ Sulfur dioxide
/ Sulfur trioxide
/ Troposphere
/ Unimolecular decay
2020
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Direct kinetic measurements and theoretical predictions of an isoprene-derived Criegee intermediate
by
Walsh, Patrick J.
, 林志民
, Khan, M. Anwar H.
, Lin, Yen-Hsiu
, Winiberg, Frank A. F.
, Vansco, Michael F.
, Li, Yu-Lin
, Zuraski, Kristen
, Sheps, Leonid
, Shallcross, Dudley E.
, Trongsiriwat, Nisalak
, Au, Kendrew
, Klippenstein, Stephen J.
, Osborn, David L.
, Lin, Jim Jr-Min
, Lester, Marsha I.
, Chao, Wen
, Percival, Carl J.
, Taatjes, Craig A.
, Caravan, Rebecca L.
in
09 BIOMASS FUELS
/ ab initio calculations
/ Absorption spectra
/ Absorption spectroscopy
/ Air quality
/ Alkenes
/ atmospheric chemistry
/ chemical kinetics
/ Chemistry
/ Computational kinetics
/ Criegee intermediates
/ Depletion
/ Formic acid
/ Global chemical modelling
/ Intermediates
/ Isoprene
/ Mass spectrometry
/ Mass spectroscopy
/ Molecular beams
/ Organic hydroperoxide
/ Oxidation
/ Photoionization
/ Physical Sciences
/ Spectroscopy
/ Sulfur dioxide
/ Sulfur trioxide
/ Troposphere
/ Unimolecular decay
2020
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Direct kinetic measurements and theoretical predictions of an isoprene-derived Criegee intermediate
Journal Article
Direct kinetic measurements and theoretical predictions of an isoprene-derived Criegee intermediate
林志民,
2020
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Overview
Isoprene has the highest emission into Earth’s atmosphere of any nonmethane hydrocarbon. Atmospheric processing of alkenes, including isoprene, via ozonolysis leads to the formation of zwitterionic reactive intermediates, known as Criegee intermediates (CIs). Direct studies have revealed that reactions involving simple CIs can significantly impact the tropospheric oxidizing capacity, enhance particulate formation, and degrade local air quality. Methyl vinyl ketone oxide (MVK-oxide) is a four-carbon, asymmetric, resonance-stabilized CI, produced with 21 to 23% yield fromisoprene ozonolysis, yet its reactivity has not been directly studied. We present direct kinetic measurements of MVK-oxide reactions with key atmospheric species using absorption spectroscopy. Direct UV-Vis absorption spectra from two independent flow cell experiments overlap with the molecular beam UV-Vis-depletion spectra reported recently [M. F. Vansco, B. Marchetti, M. I. Lester, J. Chem. Phys. 149, 44309 (2018)] but suggest different conformer distributions under jetcooled and thermal conditions. Comparison of the experimental lifetime herein with theory indicates only the syn-conformers are observed; anti-conformers are calculated to be removed much more rapidly via unimolecular decay. We observe experimentally and predict theoretically fast reaction of syn-MVK-oxide with SO₂ and formic acid, similar to smaller alkyl-substituted CIs, and by contrast, slow removal in the presence of water. We determine products through complementary multiplexed photoionization mass spectrometry, observing SO₃ and identifying organic hydroperoxide formation from reaction with SO₂ and formic acid, respectively. The tropospheric implications of these reactions are evaluated using a global chemistry and transport model.
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