Reactive uptake of NO3 by liquid and frozen organics -: art. no. 4014

被引:64
作者
Moise, T [1 ]
Talukdar, RK
Frost, GJ
Fox, RW
Rudich, Y
机构
[1] Weizmann Inst Sci, Dept Environm Sci, IL-76100 Rehovot, Israel
[2] NOAA, Aeron Lab, Boulder, CO 80305 USA
[3] Univ Colorado, Cooperat Inst Res Environm Sci, Boulder, CO 80309 USA
[4] Natl Inst Stand & Technol, Div Time & Frequency, Boulder, CO 80305 USA
关键词
nitrate radical; organic aerosols; aerosol processing;
D O I
10.1029/2001JD000334
中图分类号
P4 [大气科学(气象学)];
学科分类号
0706 ; 070601 ;
摘要
[1] The reactive uptake of the NO3 radical by liquid and frozen organics was studied in a rotating wall flow tube coupled to a Whit e cell. The organic liquids used included alkanes, alkenes, an alcohol, and carboxylic acids with conjugated and nonconjugated unsaturated bonds. The reactive uptake coefficients, gamma, of NO3 on n-hexadecane, 1-octadecene, 1-hexadecene, cis + trans 7-tetradecene, n-octanoic acid, 2,2,4,4,6,8,8 heptamethyl nonane, 1-octanol, cis, trans 9,11 and 10,12 octadecadienoic acid, cis-9, cis-12 octadecadienoic acid were determined. The reactive uptake coefficients measured with the organic liquids varied from 1.4 x 10(-3) to 1.5 x 10(-2). The uptake coefficients of NO3 by n-hexadecane and n-octanoic acid decreased by a factor of similar to5 upon freezing. This behavior is explained by reaction occurring in the bulk of the organic liquid as well as on the surface. For the rest of the compounds the change in values of gamma upon freezing of the liquids was within the experimental uncertainty. This is attributed to predominant uptake of NO3 by the top few molecular surface layers of the organic substrate and continuous replenishment of the surface layer by evaporation and/or mobility of the surface. These conclusions are corroborated by estimation of the diffuso-reactive length and solubility constant of NO3 in these liquids. The reactivity of NO3 with the organic surfaces is shown to correlate well with the known gas-phase chemistry of NO3. The effect on the atmospheric chemistry of the NO3 radical due to its interaction with organic aerosols is studied using an atmospheric box model applying realistic atmospheric scenarios. The inclusion of NO3 uptake on organic aerosol can decrease the NO3 lifetime by 10% or more.
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页数:9
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