Literature DB >> 20527767

Characterization of vapor wall loss in laboratory chambers.

Christine L Loza1, Arthur W H Chan, Melissa M Galloway, Frank N Keutsch, Richard C Flagan, John H Seinfeld.   

Abstract

Laboratory chambers used to study atmospheric chemistry and aerosol formation are subject to wall loss of vapors and particles that must be accounted for in calculating aerosol yields. While particle wall loss in chambers is relatively well-understood and routinely accounted for, that of vapor is less so. Here we address experimental measurement and modeling of vapor losses in environmental chambers. We identify two compounds that exhibit wall loss: 2,3-epoxy-1,4-butanediol (BEPOX), an analog of an important isoprene oxidation product; and glyoxal, a common volatile organic compound oxidation product. Dilution experiments show that BEPOX wall loss is irreversible on short time scales but is reversible on long time scales, and glyoxal wall loss is reversible for all time scales. BEPOX exhibits minimal uptake onto clean chamber walls under dry conditions, with increasing rates of uptake over the life of an in-use chamber. By performing periodic BEPOX wall loss experiments, it is possible to assess quantitatively the aging of chamber walls.

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Year:  2010        PMID: 20527767     DOI: 10.1021/es100727v

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


  6 in total

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Journal:  Atmos Chem Phys       Date:  2018-07-23       Impact factor: 6.133

2.  Semivolatile POA and parameterized total combustion SOA in CMAQv5.2: impacts on source strength and partitioning.

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Journal:  Atmos Chem Phys       Date:  2017       Impact factor: 6.133

3.  Formation and growth of sub-3-nm aerosol particles in experimental chambers.

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Journal:  Nat Protoc       Date:  2020-02-12       Impact factor: 13.491

4.  Nitrate radicals and biogenic volatile organic compounds: oxidation, mechanisms, and organic aerosol.

Authors:  Nga Lee Ng; Steven S Brown; Alexander T Archibald; Elliot Atlas; Ronald C Cohen; John N Crowley; Douglas A Day; Neil M Donahue; Juliane L Fry; Hendrik Fuchs; Robert J Griffin; Marcelo I Guzman; Hartmut Herrmann; Alma Hodzic; Yoshiteru Iinuma; José L Jimenez; Astrid Kiendler-Scharr; Ben H Lee; Deborah J Luecken; Jingqiu Mao; Robert McLaren; Anke Mutzel; Hans D Osthoff; Bin Ouyang; Benedicte Picquet-Varrault; Ulrich Platt; Havala O T Pye; Yinon Rudich; Rebecca H Schwantes; Manabu Shiraiwa; Jochen Stutz; Joel A Thornton; Andreas Tilgner; Brent J Williams; Rahul A Zaveri
Journal:  Atmos Chem Phys       Date:  2017       Impact factor: 6.133

5.  Size distribution dynamics reveal particle-phase chemistry in organic aerosol formation.

Authors:  Manabu Shiraiwa; Lindsay D Yee; Katherine A Schilling; Christine L Loza; Jill S Craven; Andreas Zuend; Paul J Ziemann; John H Seinfeld
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6.  Secondary Organic Aerosol Formation from Healthy and Aphid-Stressed Scots Pine Emissions.

Authors:  Celia L Faiola; Iida Pullinen; Angela Buchholz; Farzaneh Khalaj; Arttu Ylisirniö; Eetu Kari; Pasi Miettinen; Jarmo K Holopainen; Minna Kivimäenpää; Siegfried Schobesberger; Taina Yli-Juuti; Annele Virtanen
Journal:  ACS Earth Space Chem       Date:  2019-08-14       Impact factor: 3.475

  6 in total

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