An examination of the chemistry of peroxycarboxylic nitric anhydrides and related volatile organic compounds during Texas Air Quality Study 2000 using ground-based measurements

James M. Roberts, Bertram T. Jobson, William Kuster, Paul Goldan, Paul Murphy, Eric Williams, Gregory Frost, Daniel Riemer, Eric Apel, Craig Stroud, Christine Wiedinmyer, Fred Fehsenfeld

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39 Scopus citations

Abstract

Measurements of peroxycarboxylic nitric anhydrides (PANs) along with related volatile organic compounds (VOCs) were made at the La Porte super site during the TexAQS 2000 Houston study. The PAN mixing ratios ranged up to 6.5 ppbv and were broadly correlated with O3, characteristic of a highly polluted urban environment. The anthropogenic PAN homologue concentrations were generally consistent with those found in other urban environments; peroxypropionic nitric anhydride (PPN) averaged 15%, and peroxyisobutyric nitric anhydride (PiBN) averaged 3% of PAN. Some periods were noted where local petrochemical sources resulted in anomalous PANs chemistry. This effect was especially noticeable in the case of peroxyacrylic nitric anhydride (APAN) where local sources of 1,3-butadiene and acrolein resulted in APAN as high as 30% of PAN. Peroxymethacrylic nitric anhydride (MPAN) was a fairly minor constituent of the PANS except for two periods on 4 and 5 September when air masses from high biogenic hydrocarbons (BHC) areas were observed. BHC chemistry was not a factor in the highest ozone pollution episodes in Houston but may have an impact on daily average ozone levels in some circumstances.

Original languageEnglish
Pages (from-to)ACH 4-1 - ACH 4-12
JournalJournal of Geophysical Research
Volume108
Issue number16
DOIs
StatePublished - Aug 27 2003

Keywords

  • PAN
  • Peroxyacetyl nitrate
  • Urban air pollution

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