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Dive into the research topics where V. F. McNeill is active.

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Featured researches published by V. F. McNeill.


Geoscientific Model Development | 2015

simpleGAMMA – a reduced model of secondary organic aerosol formation in the aqueous aerosol phase (aaSOA)

Joseph Woo; V. F. McNeill

’aaSOA’ has not been defined. Introduction: 2nd sentence: (i) The study by Hodzic et al., ACP (2010) should be cited here that shows that total SOA mass can be predicted. I do agree with the fact that this might be for wrong reasons as individual properties (e.g. oxygenation state) are still biased. (ii) ’oxidation state’ usually refers to a single atom within a molecule (e.g. +4 for C in CO2). If the bulk OA is characterized, ’oxygenation state’ might be more appropriate. p. 465, l. 23: It is not clear what is meant by ’bulk aqueous uptake’. The study by Schwartz describes the kinetic uptake of trace gases and can be applied to bulk phases or individual droplets.


Atmospheric Chemistry and Physics | 2009

Light-absorbing secondary organic material formed by glyoxal in aqueous aerosol mimics

E. L. Shapiro; J. Szprengiel; Neha Sareen; Coty N. Jen; M. R. Giordano; V. F. McNeill


Atmospheric Chemistry and Physics | 2010

Secondary organic material formed by methylglyoxal in aqueous aerosol mimics

Neha Sareen; Allison N. Schwier; E. L. Shapiro; D. Mitroo; V. F. McNeill


Atmospheric Chemistry and Physics | 2015

Examining the effects of anthropogenic emissions on isoprene-derived secondary organic aerosol formation during the 2013 Southern Oxidant and Aerosol Study (SOAS) at the Look Rock, Tennessee ground site

S. H. Budisulistiorini; X. Li; S. T. Bairai; J. Renfro; Yingjun Liu; Y. J. Liu; Karena A. McKinney; Scot T. Martin; V. F. McNeill; Havala O. T. Pye; Athanasios Nenes; M. E. Neff; Elizabeth A. Stone; Stephen F. Mueller; Christoph Knote; Stephanie L. Shaw; Zhenfa Zhang; Avram Gold; Jason D. Surratt


Atmospheric Chemistry and Physics | 2014

A review of air-ice chemical and physical interactions (AICI): Liquids, quasi-liquids, and solids in snow

Thorsten Bartels-Rausch; Hans-Werner Jacobi; Tara F. Kahan; Jennie L. Thomas; Erik S. Thomson; J. P. D. Abbatt; Markus Ammann; J. R. Blackford; Hendrik Bluhm; C. Boxe; Florent Domine; M. M. Frey; Ivan Gladich; Marcelo I. Guzman; Dominik Heger; Th. Huthwelker; Petr Klán; W. F. Kuhs; M. H. Kuo; S. Maus; S. G. Moussa; V. F. McNeill; J. T. Newberg; Jan B. C. Pettersson; Martina Roeselová; John R. Sodeau


Atmospheric Chemistry and Physics | 2016

Aqueous-phase mechanism for secondary organic aerosol formation from isoprene: application to the southeast United States and co-benefit of SO 2 emission controls

Eloise A. Marais; Daniel J. Jacob; Jose L. Jimenez; Pedro Campuzano-Jost; Douglas A. Day; Weiwei Hu; Jordan E. Krechmer; Lei Zhu; Patrick S. Kim; Christopher Miller; Jenny A. Fisher; Katherine R. Travis; Karen Yu; T. F. Hanisco; G. M. Wolfe; H. L. Arkinson; Havala O. T. Pye; Karl D. Froyd; Jin Liao; V. F. McNeill


Atmospheric Chemistry and Physics | 2012

Organics in Environmental Ices: Sources, Chemistry, and Impacts

V. F. McNeill; Amanda M. Grannas; J. P. D. Abbatt; Markus Ammann; Parisa A. Ariya; Thorsten Bartels-Rausch; Florent Domine; D. J. Donaldson; Marcelo I. Guzman; Dominik Heger; Tara F. Kahan; Petr Klán; S. Masclin; C. Toubin; Didier Voisin


Atmospheric Chemistry and Physics | 2011

Reactive processing of formaldehyde and acetaldehyde in aqueous aerosol mimics: surface tension depression and secondary organic products

Z. Li; Allison N. Schwier; Neha Sareen; V. F. McNeill


Atmospheric Chemistry and Physics | 2012

Relationship between snow microstructure and physical and chemical processes

Thorsten Bartels-Rausch; H.-W. Jacobi; Tara F. Kahan; Jennie L. Thomas; Erik S. Thomson; J. P. D. Abbatt; Markus Ammann; J. R. Blackford; Hendrik Bluhm; C. S. Boxe; Florent Domine; Markus M. Frey; I. Gladich; Marcelo I. Guzman; Dominik Heger; Th. Huthwelker; Petr Klán; Werner F. Kuhs; M. H. Kuo; S. Maus; S. G. Moussa; V. F. McNeill; J. T. Newberg; Jan B. C. Pettersson; M. Roeselová; John R. Sodeau


Atmospheric Chemistry and Physics | 2013

Inorganic salts interact with oxalic acid in submicron particles to form material with low hygroscopicity and volatility

Greg T. Drozd; Joseph Woo; S. A. K. Hakkinen; Athanasios Nenes; V. F. McNeill

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Athanasios Nenes

Georgia Institute of Technology

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