Production of highly oxidized organic compounds from ozonolysis of beta-caryophyllene: laboratory and field measurements

  • Tuija Jokinen
  • , Oskari Kausiala
  • , Olga Garmash
  • , Otso Peräkylä
  • , Heikki Junninen
  • , Siegfried Schobesberger
  • , Chao Yan
  • , Mikko Sipilä
  • , Matti P. Rissanen

Research output: Contribution to journalArticleScientificpeer-review

18 Citations (Scopus)

Abstract

We conducted a laboratory investigation to identify highly-oxidized organic compounds formed in sesquiterpene (C15H24, SQT) ozonolysis. The dominant sesquiterpene previously identified from branch emissions of Scots pine, beta-caryophyllene, was used for this study. Using the latest mass spectrometric methods, we identified several highly oxidized organic compounds corresponding to RO2 radical, closed-shell monomer and dimer species. The most abundant compounds detected were monomers C15H24O7.9.11, and C15O22O9.11, and dimers C29H46O12.14.16, and C30H46O12,14,16, These oxidized organic compounds have very low saturation vapour pressures, an O-to-C ratio of about 0.3-0.9, and they are all classified as extremely low-volatility products (ELVOC). The molar yield of ELVOC was determined to be 1.7/- 1.28oxidized organic compounds were also measured at a boreal forest site, and few possible beta-caryophyllene oxidation products were identified, but the concentrations were extremely low, reaching a maximum of a few hundred thousand molecules cm(-3) in spring.
Original languageEnglish
Pages (from-to)262-273
Number of pages12
JournalBoreal Environment Research
Volume21
Issue number3-4
Publication statusPublished - 1 May 2016
Publication typeA1 Journal article-refereed

Keywords

  • 114 Physical sciences
  • SULFURIC-ACID
  • AEROSOL
  • PARTICLE FORMATION
  • RATE COEFFICIENTS
  • 1172 Environmental sciences
  • OXIDATION
  • VOLATILITY BASIS-SET
  • ATMOSPHERE
  • EMISSIONS
  • SESQUITERPENES

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