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  <docDscr>
    <citation>
      <titlStmt>
        <titl xml:lang="sv">En organonitrat med fyra kolatomer som en betydande produkt av sekundär isoprenkemi</titl>
        <parTitl xml:lang="en">A four carbon organonitrate as a significant product of secondary isoprene chemistry</parTitl>
        <IDNo agency="SND">2021-330-1-1</IDNo>
        <IDNo agency="DOI">https://doi.org/10.5878/wfv9-a491</IDNo>
      </titlStmt>
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        <producer xml:lang="en" abbr="SND">Swedish National Data Service</producer>
        <producer xml:lang="sv" abbr="SND">Svensk nationell datatjänst</producer>
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      <holdings URI="https://doi.org/10.5878/wfv9-a491">Landing page</holdings>
    </citation>
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  <stdyDscr>
    <citation>
      <titlStmt>
        <titl xml:lang="sv">En organonitrat med fyra kolatomer som en betydande produkt av sekundär isoprenkemi</titl>
        <parTitl xml:lang="en">A four carbon organonitrate as a significant product of secondary isoprene chemistry</parTitl>
        <IDNo agency="SND">2021-330-1-1</IDNo>
        <IDNo agency="DOI">https://doi.org/10.5878/wfv9-a491</IDNo>
      </titlStmt>
      <rspStmt>
        <AuthEnty xml:lang="en" affiliation="Department of Chemistry and Molecular Biology, University of Gothenburg">Hallquist, Mattias</AuthEnty>
        <AuthEnty xml:lang="sv" affiliation="Institutionen för kemi och molekylärbiologi, Göteborgs universitet">Hallquist, Mattias</AuthEnty>
        <AuthEnty xml:lang="en" affiliation="Department of Chemistry and Molecular Biology, University of Gothenburg">Tsiligiannis, Epameinondas</AuthEnty>
        <AuthEnty xml:lang="sv" affiliation="Institutionen för kemi och molekylärbiologi, Göteborgs universitet">Tsiligiannis, Epameinondas</AuthEnty>
      </rspStmt>
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      <distStmt>
        <distrbtr xml:lang="en" abbr="SND" URI="https://snd.se">Swedish National Data Service</distrbtr>
        <distrbtr xml:lang="sv" abbr="SND" URI="https://snd.se">Svensk nationell datatjänst</distrbtr>
        <distDate xml:lang="en" date="2021-12-06" />
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      <holdings URI="https://doi.org/10.5878/wfv9-a491">Landing page</holdings>
    </citation>
    <stdyInfo>
      <subject>
        <keyword xml:lang="en" vocab="GEMET" vocabURI="http://www.eionet.europa.eu/gemet/concept/5613">nitrogen oxides</keyword>
        <keyword xml:lang="sv" vocab="GEMET" vocabURI="http://www.eionet.europa.eu/gemet/concept/5613">kväveoxider</keyword>
        <keyword xml:lang="en" vocab="GEMET" vocabURI="http://www.eionet.europa.eu/gemet/concept/632">atmospheric ozone</keyword>
        <keyword xml:lang="sv" vocab="GEMET" vocabURI="http://www.eionet.europa.eu/gemet/concept/632">atmosfäriskt ozon</keyword>
        <keyword xml:lang="en" vocab="INSPIRE Spatial Data Themes" vocabURI="http://inspire.ec.europa.eu/theme/ac">Atmospheric conditions</keyword>
        <keyword xml:lang="sv" vocab="INSPIRE Spatial Data Themes" vocabURI="http://inspire.ec.europa.eu/theme/ac">Atmosfäriska förhållanden</keyword>
        <topcClas xml:lang="en" vocab="INSPIRE topic categories" vocabURI="http://inspire.ec.europa.eu/metadata-codelist/TopicCategory/geoscientificInformation">Geoscientific Information</topcClas>
        <topcClas xml:lang="sv" vocab="INSPIRE topic categories" vocabURI="http://inspire.ec.europa.eu/metadata-codelist/TopicCategory/geoscientificInformation">Geovetenskap</topcClas>
        <topcClas xml:lang="en" vocab="INSPIRE topic categories" vocabURI="http://inspire.ec.europa.eu/metadata-codelist/TopicCategory/environment">Environment</topcClas>
        <topcClas xml:lang="sv" vocab="INSPIRE topic categories" vocabURI="http://inspire.ec.europa.eu/metadata-codelist/TopicCategory/environment">Miljö</topcClas>
      </subject>
      <abstract xml:lang="en" contentType="abstract">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 ONs formed during nighttime and constitute more than 40% of the 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.

This dataset is based on oxidation experiments of isoprene + NO3 radicals at the atmospheric chamber SAPHIR, in Jülich, Germany and ambient data from five different locations. More specifically, this dataset is provided in order for users to be able to replicate the results from the Tsiligiannis et al. publication. It includes time-series of gaseous species.

The files called I-CIMS contain compounds that measured using a chemical ionization mass spectrometer (CIMS) with iodide as the reagent ion. The files called Br-CIMS contain compounds that measured using a chemical ionization mass spectrometer (CIMS) with bromide as the reagent ion. The files called TD-CRDS contain the total alkyl nitrates measured using a thermal dissociation−cavity ring-down spectrometer.
The chamber data are indicated by the date of the experiment (e.g. 9Aug). The ambient data are indicated by the location where they collected (e.g. Amazon).

All the date &amp; time data corresponds to local time. For each column, the naming e.g. "BrC4H7NO5_ncps" or "C4H7INO5_ppt", corresponds to the chemical formula of the compound (C4H7NO5) clustering with either bromide or iodide, and the measurement units (ncps=normalized counts per second) or (ppt=parts per trillion by volume). File delimiter is the tabstop.

The data from the SOAS campaign can be found here: 
https://csl.noaa.gov/groups/csl7/measurements/2013senex/Ground/DataDownload/index.php?page=/groups/csl7/measurements/2013senex/Ground/DataDownload/</abstract>
      <abstract xml:lang="sv" contentType="abstract">Oxidation av isopren med nitratradikaler (NO3) eller av hydroxylradikaler (OH) under höga NOx-förhållanden bildar en betydande mängd organonitrater (ON). ON påverkar NOx-koncentrationerna och följaktligen ozonbildningen samtidigt som de bidrar till sekundär organisk aerosol. Här visar vi att ON med den kemiska formeln C4H7NO5 är en betydande del av isopren-härledda ON, baserat på kammarexperiment och omgivningsmätningar från olika platser runt om i världen. Från kammarexperiment fann vi att C4H7NO5 isomerer bidrar med 5-17% av alla ON som bildas under natten och utgör mer än 40% av ON efter ytterligare dagtid oxidation. I omgivningsmätningar dominerar vanligtvis C4H7NO5-isomerer både nattetid och dagtid, vilket innebär en lång uppehållstid jämfört med C5-ON som tas bort snabbare. Vi föreslår potentiella nattkällor och sekundära bildningsvägar och testar dem med en boxmodell med ett uppdaterat isoprenoxidationsschema.

Se den engelska sidan för beskrivning av datasetet.</abstract>
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        <nation xml:lang="en" abbr="SE">Sweden</nation>
        <nation xml:lang="sv" abbr="SE">Sverige</nation>
        <nation xml:lang="en" abbr="BR">Brazil</nation>
        <nation xml:lang="sv" abbr="BR">Brasilien</nation>
        <nation xml:lang="en" abbr="HK">Hong Kong</nation>
        <nation xml:lang="sv" abbr="HK">Hong Kong</nation>
        <nation xml:lang="en" abbr="CN">China</nation>
        <nation xml:lang="sv" abbr="CN">Kina</nation>
        <nation xml:lang="en" abbr="DE">Germany</nation>
        <nation xml:lang="sv" abbr="DE">Tyskland</nation>
        <dataKind xml:lang="en">Numeric</dataKind>
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    <dataAccs>
      <useStmt>
        <restrctn xml:lang="en">Access to data through SND. Data are freely accessible.</restrctn>
        <restrctn xml:lang="sv">Åtkomst till data via SND. Data är fritt tillgängliga.</restrctn>
        <conditions elementVersion="info:eu-repo-Access-Terms vocabulary">openAccess</conditions>
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      <relPubl>
        <citation>
          <titlStmt>
            <titl xml:lang="sv">Epameinondas Tsiligiannis, Rongrong Wu, Ben H. Lee, Christian Mark Garcia Salvador, Michael Priestley, Philip T.M. Carlsson, Sungah Kang, Anna Novelli, Luc Vereecken, Hendrik Fuchs, Alfred W. Mayhew, Jacqueline F. Hamilton, Peter M. Edwards, Juliane L. Fry, Bellamy Brownwood, Steven S. Brown, Robert J Wild, Thomas J. Bannan, Hugh Coe, James Allan, Jason D. Surrat, Asan Bacak, Paul Artaxo, Carl Percival, Song Guo, Min Hu, Tao Wang, Thomas F. Mentel, Joel A. Thornton, and Mattias Hallquist. (2021). A four carbon organonitrate as a significant product of secondary isoprene chemistry (submitted manuscript).</titl>
            <parTitl xml:lang="en">Epameinondas Tsiligiannis, Rongrong Wu, Ben H. Lee, Christian Mark Garcia Salvador, Michael Priestley, Philip T.M. Carlsson, Sungah Kang, Anna Novelli, Luc Vereecken, Hendrik Fuchs, Alfred W. Mayhew, Jacqueline F. Hamilton, Peter M. Edwards, Juliane L. Fry, Bellamy Brownwood, Steven S. Brown, Robert J Wild, Thomas J. Bannan, Hugh Coe, James Allan, Jason D. Surrat, Asan Bacak, Paul Artaxo, Carl Percival, Song Guo, Min Hu, Tao Wang, Thomas F. Mentel, Joel A. Thornton, and Mattias Hallquist. (2021). A four carbon organonitrate as a significant product of secondary isoprene chemistry (submitted manuscript).</parTitl>
          </titlStmt>
          <distStmt>
            <distDate date="2021">2021</distDate>
          </distStmt>
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