A Four Carbon Organonitrate as a Significant Product of Secondary Isoprene Chemistry

Oxidation of isoprene by nitrate radicals (NO3) or by hydroxyl radicals (OH) under high NOx conditions forms a substantial amount of organonitrates (ONs). ONs impact NOx concentrations and consequently ozone formation while also contributing to secondary organic aerosol. Here we show that the ONs with the chemical formula C4H7NO5 are a significant fraction of isoprene-derived ONs, based on chamber experiments and ambient measurements from different sites around the globe. From chamber experiments we found that C4H7NO5 isomers contribute 5%–17% of all measured ONs formed during nighttime and constitute more than 40% of the measured ONs after further daytime oxidation. In ambient measurements C4H7NO5 isomers usually dominate both nighttime and daytime, implying a long residence time compared to C5 ONs which are removed more rapidly. We propose potential nighttime sources and secondary formation pathways, and test them using a box model with an updated isoprene oxidation scheme.

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Main Authors: Tsiligiannis, Epameinondas, Wu, Rongrong, Lee, Ben H., Salvador, Christian Mark, Priestley, Michael, Carlsson, Philip T.M., Kang, Sungah, Novelli, Anna, Vereecken, Luc, Fuchs, Hendrik, Mayhew, Alfred W., Hamilton, Jacqueline F., Edwards, Peter M., Fry, Juliane L., Brownwood, Bellamy, Brown, Steven S., Wild, Robert J., Bannan, Thomas J., Coe, Hugh, Allan, James, Surratt, Jason D., Bacak, Asan, Artaxo, Paul, Percival, Carl, Guo, Song, Hu, Min, Wang, Tao, Mentel, Thomas F., Thornton, Joel A., Hallquist, Mattias
Format: Article/Letter to editor biblioteca
Language:English
Subjects:VOC oxidation, atmospheric chamber, isoprene, organonitrate,
Online Access:https://research.wur.nl/en/publications/a-four-carbon-organonitrate-as-a-significant-product-of-secondary
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spelling dig-wur-nl-wurpubs-5997772024-12-04 Tsiligiannis, Epameinondas Wu, Rongrong Lee, Ben H. Salvador, Christian Mark Priestley, Michael Carlsson, Philip T.M. Kang, Sungah Novelli, Anna Vereecken, Luc Fuchs, Hendrik Mayhew, Alfred W. Hamilton, Jacqueline F. Edwards, Peter M. Fry, Juliane L. Brownwood, Bellamy Brown, Steven S. Wild, Robert J. Bannan, Thomas J. Coe, Hugh Allan, James Surratt, Jason D. Bacak, Asan Artaxo, Paul Percival, Carl Guo, Song Hu, Min Wang, Tao Mentel, Thomas F. Thornton, Joel A. Hallquist, Mattias Article/Letter to editor Geophysical Research Letters 49 (2022) 11 ISSN: 0094-8276 A Four Carbon Organonitrate as a Significant Product of Secondary Isoprene Chemistry 2022 Oxidation of isoprene by nitrate radicals (NO3) or by hydroxyl radicals (OH) under high NOx conditions forms a substantial amount of organonitrates (ONs). ONs impact NOx concentrations and consequently ozone formation while also contributing to secondary organic aerosol. Here we show that the ONs with the chemical formula C4H7NO5 are a significant fraction of isoprene-derived ONs, based on chamber experiments and ambient measurements from different sites around the globe. From chamber experiments we found that C4H7NO5 isomers contribute 5%–17% of all measured ONs formed during nighttime and constitute more than 40% of the measured ONs after further daytime oxidation. In ambient measurements C4H7NO5 isomers usually dominate both nighttime and daytime, implying a long residence time compared to C5 ONs which are removed more rapidly. We propose potential nighttime sources and secondary formation pathways, and test them using a box model with an updated isoprene oxidation scheme. en application/pdf https://research.wur.nl/en/publications/a-four-carbon-organonitrate-as-a-significant-product-of-secondary 10.1029/2021GL097366 https://edepot.wur.nl/574016 VOC oxidation atmospheric chamber isoprene organonitrate https://creativecommons.org/licenses/by/4.0/ https://creativecommons.org/licenses/by/4.0/ Wageningen University & Research
institution WUR NL
collection DSpace
country Países bajos
countrycode NL
component Bibliográfico
access En linea
databasecode dig-wur-nl
tag biblioteca
region Europa del Oeste
libraryname WUR Library Netherlands
language English
topic VOC oxidation
atmospheric chamber
isoprene
organonitrate
VOC oxidation
atmospheric chamber
isoprene
organonitrate
spellingShingle VOC oxidation
atmospheric chamber
isoprene
organonitrate
VOC oxidation
atmospheric chamber
isoprene
organonitrate
Tsiligiannis, Epameinondas
Wu, Rongrong
Lee, Ben H.
Salvador, Christian Mark
Priestley, Michael
Carlsson, Philip T.M.
Kang, Sungah
Novelli, Anna
Vereecken, Luc
Fuchs, Hendrik
Mayhew, Alfred W.
Hamilton, Jacqueline F.
Edwards, Peter M.
Fry, Juliane L.
Brownwood, Bellamy
Brown, Steven S.
Wild, Robert J.
Bannan, Thomas J.
Coe, Hugh
Allan, James
Surratt, Jason D.
Bacak, Asan
Artaxo, Paul
Percival, Carl
Guo, Song
Hu, Min
Wang, Tao
Mentel, Thomas F.
Thornton, Joel A.
Hallquist, Mattias
A Four Carbon Organonitrate as a Significant Product of Secondary Isoprene Chemistry
description Oxidation of isoprene by nitrate radicals (NO3) or by hydroxyl radicals (OH) under high NOx conditions forms a substantial amount of organonitrates (ONs). ONs impact NOx concentrations and consequently ozone formation while also contributing to secondary organic aerosol. Here we show that the ONs with the chemical formula C4H7NO5 are a significant fraction of isoprene-derived ONs, based on chamber experiments and ambient measurements from different sites around the globe. From chamber experiments we found that C4H7NO5 isomers contribute 5%–17% of all measured ONs formed during nighttime and constitute more than 40% of the measured ONs after further daytime oxidation. In ambient measurements C4H7NO5 isomers usually dominate both nighttime and daytime, implying a long residence time compared to C5 ONs which are removed more rapidly. We propose potential nighttime sources and secondary formation pathways, and test them using a box model with an updated isoprene oxidation scheme.
format Article/Letter to editor
topic_facet VOC oxidation
atmospheric chamber
isoprene
organonitrate
author Tsiligiannis, Epameinondas
Wu, Rongrong
Lee, Ben H.
Salvador, Christian Mark
Priestley, Michael
Carlsson, Philip T.M.
Kang, Sungah
Novelli, Anna
Vereecken, Luc
Fuchs, Hendrik
Mayhew, Alfred W.
Hamilton, Jacqueline F.
Edwards, Peter M.
Fry, Juliane L.
Brownwood, Bellamy
Brown, Steven S.
Wild, Robert J.
Bannan, Thomas J.
Coe, Hugh
Allan, James
Surratt, Jason D.
Bacak, Asan
Artaxo, Paul
Percival, Carl
Guo, Song
Hu, Min
Wang, Tao
Mentel, Thomas F.
Thornton, Joel A.
Hallquist, Mattias
author_facet Tsiligiannis, Epameinondas
Wu, Rongrong
Lee, Ben H.
Salvador, Christian Mark
Priestley, Michael
Carlsson, Philip T.M.
Kang, Sungah
Novelli, Anna
Vereecken, Luc
Fuchs, Hendrik
Mayhew, Alfred W.
Hamilton, Jacqueline F.
Edwards, Peter M.
Fry, Juliane L.
Brownwood, Bellamy
Brown, Steven S.
Wild, Robert J.
Bannan, Thomas J.
Coe, Hugh
Allan, James
Surratt, Jason D.
Bacak, Asan
Artaxo, Paul
Percival, Carl
Guo, Song
Hu, Min
Wang, Tao
Mentel, Thomas F.
Thornton, Joel A.
Hallquist, Mattias
author_sort Tsiligiannis, Epameinondas
title A Four Carbon Organonitrate as a Significant Product of Secondary Isoprene Chemistry
title_short A Four Carbon Organonitrate as a Significant Product of Secondary Isoprene Chemistry
title_full A Four Carbon Organonitrate as a Significant Product of Secondary Isoprene Chemistry
title_fullStr A Four Carbon Organonitrate as a Significant Product of Secondary Isoprene Chemistry
title_full_unstemmed A Four Carbon Organonitrate as a Significant Product of Secondary Isoprene Chemistry
title_sort four carbon organonitrate as a significant product of secondary isoprene chemistry
url https://research.wur.nl/en/publications/a-four-carbon-organonitrate-as-a-significant-product-of-secondary
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