Literature DB >> 20707414

Chemical sinks of organic aerosol: kinetics and products of the heterogeneous oxidation of erythritol and levoglucosan.

Sean H Kessler1, Jared D Smith, Dung L Che, Douglas R Worsnop, Kevin R Wilson, Jesse H Kroll.   

Abstract

The heterogeneous oxidation of pure erythritol (C(4)H(10)O(4)) and levoglucosan (C(6)H(10)O(5)) particles was studied in order to evaluate the effects of atmospheric aging on the mass and chemical composition of atmospheric organic aerosol. In contrast to what is generally observed for the heterogeneous oxidation of reduced organics, substantial volatilization is observed in both systems. However, the ratio of the decrease in particle mass to the decrease in the concentration of the parent species is about three times higher for erythritol than for levoglucosan, indicating that details of chemical structure (such as carbon number, cyclic moieties, and oxygen-containing functional groups) play a governing role in the importance of volatilization reactions. The kinetics of the reaction indicate that while both compounds react at approximately the same rate, reactions of their oxidation products appear to be slowed substantially. Estimates of volatilities of organic species based on elemental composition measurements suggest that the heterogeneous oxidation of oxygenated organics may be an important loss mechanism of organic aerosol.

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Year:  2010        PMID: 20707414     DOI: 10.1021/es101465m

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  4 in total

1.  Monoterpenes are the largest source of summertime organic aerosol in the southeastern United States.

Authors:  Haofei Zhang; Lindsay D Yee; Ben H Lee; Michael P Curtis; David R Worton; Gabriel Isaacman-VanWertz; John H Offenberg; Michael Lewandowski; Tadeusz E Kleindienst; Melinda R Beaver; Amara L Holder; William A Lonneman; Kenneth S Docherty; Mohammed Jaoui; Havala O T Pye; Weiwei Hu; Douglas A Day; Pedro Campuzano-Jost; Jose L Jimenez; Hongyu Guo; Rodney J Weber; Joost de Gouw; Abigail R Koss; Eric S Edgerton; William Brune; Claudia Mohr; Felipe D Lopez-Hilfiker; Anna Lutz; Nathan M Kreisberg; Steve R Spielman; Susanne V Hering; Kevin R Wilson; Joel A Thornton; Allen H Goldstein
Journal:  Proc Natl Acad Sci U S A       Date:  2018-02-12       Impact factor: 11.205

2.  Carbon oxidation state as a metric for describing the chemistry of atmospheric organic aerosol.

Authors:  Jesse H Kroll; Neil M Donahue; Jose L Jimenez; Sean H Kessler; Manjula R Canagaratna; Kevin R Wilson; Katye E Altieri; Lynn R Mazzoleni; Andrew S Wozniak; Hendrik Bluhm; Erin R Mysak; Jared D Smith; Charles E Kolb; Douglas R Worsnop
Journal:  Nat Chem       Date:  2011-01-09       Impact factor: 24.427

3.  Changes to the chemical composition of soot from heterogeneous oxidation reactions.

Authors:  Eleanor C Browne; Jonathan P Franklin; Manjula R Canagaratna; Paola Massoli; Thomas W Kirchstetter; Douglas R Worsnop; Kevin R Wilson; Jesse H Kroll
Journal:  J Phys Chem A       Date:  2015-02-05       Impact factor: 2.781

4.  Analysis of indoor particles and gases and their evolution with natural ventilation.

Authors:  Claire Fortenberry; Michael Walker; Audrey Dang; Arun Loka; Gauri Date; Karolina Cysneiros de Carvalho; Glenn Morrison; Brent Williams
Journal:  Indoor Air       Date:  2019-08-01       Impact factor: 6.554

  4 in total

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