A hydrophilic/hydrophobic organic (H2O) aerosol model: Development, evaluation and sensitivity analysis

被引:70
作者
Couvidat, Florian [1 ]
Debry, Edouard [1 ]
Sartelet, Karine [1 ]
Seigneur, Christian [1 ]
机构
[1] Univ Paris Est, CEREA, Joint Lab Ecole Ponts ParisTech EDF R&D, F-77455 Marne La Vallee, France
关键词
SOA FORMATION; ALPHA-PINENE; CARBONACEOUS AEROSOL; EMISSION INVENTORY; TECHNICAL NOTE; MEXICO-CITY; FOSSIL-FUEL; OXIDATION; PHOTOOXIDATION; SEMIVOLATILE;
D O I
10.1029/2011JD017214
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
A secondary organic aerosol (SOA) model, the Hydrophilic/Hydrophobic Organic model ((HO)-O-2), is presented and evaluated over Europe. (HO)-O-2 uses surrogate organic molecules to represent the myriad of SOA species and distinguishes two kinds of surrogate species: hydrophilic species (which condense preferentially into an aqueous phase) and hydrophobic species (which condense only into an organic phase). These surrogate species are formed from the oxidation in the atmosphere of volatile organic compounds. (HO)-O-2 includes several important processes, including the effect of nitrogen oxides (NOX) on SOA formation, the dissociation of organic acids in an aqueous phase, the oligomerization of aldehydes, the non-ideality of the particle phase and the hygroscopicity of organics. Concentrations of organic aerosols were simulated over Europe from July 2002 to July 2003 for comparison with measurements of the European Monitoring Evaluation Program (EMEP). In (HO)-O-2, primary organic aerosols (POA) are considered as semi-volatile organic compounds (SVOC) present in both the gas phase and the particle phase. Taking into account the gas-phase fraction of SVOC increases significantly organic PM concentrations, particularly in winter, in better agreement with observations. The impacts on organic aerosol formation of ideality, of the choice of the parameterization for isoprene SOA formation, and of the OM/OC ratio of the model were also investigated. Assuming ideality in (HO)-O-2 was found to lead to a small decrease in OM. Compared to a two-product parameterization, the parameterization of Couvidat and Seigneur [2011] for SOA formation from isoprene oxidation leads to a significant increase in isoprene SOA by taking into account their hydrophilic properties and suggests that most models may currently underestimate isoprene SOA.
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页数:19
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共 81 条
  • [21] Global secondary organic aerosol from isoprene oxidation
    Henze, Daven K.
    Seinfeld, John H.
    [J]. GEOPHYSICAL RESEARCH LETTERS, 2006, 33 (09)
  • [22] Modeling organic aerosols in a megacity: potential contribution of semi-volatile and intermediate volatility primary organic compounds to secondary organic aerosol formation
    Hodzic, A.
    Jimenez, J. L.
    Madronich, S.
    Canagaratna, M. R.
    DeCarlo, P. F.
    Kleinman, L.
    Fast, J.
    [J]. ATMOSPHERIC CHEMISTRY AND PHYSICS, 2010, 10 (12) : 5491 - 5514
  • [23] A global simulation of tropospheric ozone and related tracers: Description and evaluation of MOZART, version 2
    Horowitz, LW
    Walters, S
    Mauzerall, DL
    Emmons, LK
    Rasch, PJ
    Granier, C
    Tie, XX
    Lamarque, JF
    Schultz, MG
    Tyndall, GS
    Orlando, JJ
    Brasseur, GP
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2003, 108 (D24)
  • [24] Semiempirical model for organic aerosol growth by acid-catalyzed heterogeneous reactions of organic carbonyls
    Jang, MS
    Czoschke, NM
    Northcross, AL
    [J]. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2005, 39 (01) : 164 - 174
  • [25] Evolution of Organic Aerosols in the Atmosphere
    Jimenez, J. L.
    Canagaratna, M. R.
    Donahue, N. M.
    Prevot, A. S. H.
    Zhang, Q.
    Kroll, J. H.
    DeCarlo, P. F.
    Allan, J. D.
    Coe, H.
    Ng, N. L.
    Aiken, A. C.
    Docherty, K. S.
    Ulbrich, I. M.
    Grieshop, A. P.
    Robinson, A. L.
    Duplissy, J.
    Smith, J. D.
    Wilson, K. R.
    Lanz, V. A.
    Hueglin, C.
    Sun, Y. L.
    Tian, J.
    Laaksonen, A.
    Raatikainen, T.
    Rautiainen, J.
    Vaattovaara, P.
    Ehn, M.
    Kulmala, M.
    Tomlinson, J. M.
    Collins, D. R.
    Cubison, M. J.
    Dunlea, E. J.
    Huffman, J. A.
    Onasch, T. B.
    Alfarra, M. R.
    Williams, P. I.
    Bower, K.
    Kondo, Y.
    Schneider, J.
    Drewnick, F.
    Borrmann, S.
    Weimer, S.
    Demerjian, K.
    Salcedo, D.
    Cottrell, L.
    Griffin, R.
    Takami, A.
    Miyoshi, T.
    Hatakeyama, S.
    Shimono, A.
    [J]. SCIENCE, 2009, 326 (5959) : 1525 - 1529
  • [26] A global emission inventory of carbonaceous aerosol from historic records of fossil fuel and biofuel consumption for the period 1860-1997
    Junker, C.
    Liousse, C.
    [J]. ATMOSPHERIC CHEMISTRY AND PHYSICS, 2008, 8 (05) : 1195 - 1207
  • [27] Modeling aerosol formation from α-pinene plus NOx in the presence of natural sunlight using gas-phase kinetics and gas-particle partitioning theory
    Kamens, RM
    Jaoui, M
    [J]. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2001, 35 (07) : 1394 - 1405
  • [28] Organic aerosol and global climate modelling: a review
    Kanakidou, M
    Seinfeld, JH
    Pandis, SN
    Barnes, I
    Dentener, FJ
    Facchini, MC
    Van Dingenen, R
    Ervens, B
    Nenes, A
    Nielsen, CJ
    Swietlicki, E
    Putaud, JP
    Balkanski, Y
    Fuzzi, S
    Horth, J
    Moortgat, GK
    Winterhalter, R
    Myhre, CEL
    Tsigaridis, K
    Vignati, E
    Stephanou, EG
    Wilson, J
    [J]. ATMOSPHERIC CHEMISTRY AND PHYSICS, 2005, 5 : 1053 - 1123
  • [29] A new European plant-specific emission inventory of biogenic volatile organic compounds for use in atmospheric transport models
    Karl, M.
    Guenther, A.
    Koble, R.
    Leip, A.
    Seufert, G.
    [J]. BIOGEOSCIENCES, 2009, 6 (06) : 1059 - 1087
  • [30] Chemical Composition of Gas- and Aerosol-Phase Products from the Photooxidation of Naphthalene
    Kautzman, K. E.
    Surratt, J. D.
    Chan, M. N.
    Chan, A. W. H.
    Hersey, S. P.
    Chhabra, P. S.
    Dalleska, N. F.
    Wennberg, P. O.
    Flagan, R. C.
    Seinfeld, J. H.
    [J]. JOURNAL OF PHYSICAL CHEMISTRY A, 2010, 114 (02) : 913 - 934