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In-situ ambient quantification of monoterpenes, sesquiterpenes, and related oxygenated compounds during BEARPEX 2007: implications for gas- and particle-phase chemistry
被引:130
作者:
Bouvier-Brown, N. C.
[1
]
Goldstein, A. H.
[1
]
Gilman, J. B.
[2
,3
]
Kuster, W. C.
[2
]
de Gouw, J. A.
[2
,3
]
机构:
[1] Univ Calif Berkeley, Dept Environm Sci Policy & Management, Berkeley, CA 94720 USA
[2] NOAA, Earth Syst Res Lab, Boulder, CO USA
[3] Univ Colorado, Cooperat Inst Res Environm Sci, Boulder, CO 80309 USA
基金:
美国国家科学基金会;
关键词:
PONDEROSA PINE PLANTATION;
VOLATILE ORGANIC-COMPOUNDS;
EMISSION RATE;
ATMOSPHERIC CHEMISTRY;
BIOGENIC HYDROCARBONS;
PRODUCTS DISTRIBUTION;
OXIDATION-PRODUCTS;
BETA-CARYOPHYLLENE;
FOREST;
OZONE;
D O I:
10.5194/acp-9-5505-2009
中图分类号:
X [环境科学、安全科学];
学科分类号:
08 ;
0830 ;
摘要:
We quantified ambient mixing ratios of 9 monoterpenes, 6 sesquiterpenes, methyl chavicol, the oxygenated terpene linalool, and nopinone using an in-situ gas chromatograph with a quadrupole mass spectrometer (GC-MS). These measurements were a part of the 2007 Biosphere Effects on AeRosols and Photochemistry EXperiment (BEARPEX) at Blodgett Forest, a ponderosa pine forest in the Sierra Nevada Mountains of California. To our knowledge, these observations represent the first direct in-situ ambient quantification of the sesquiterpenes alpha-bergamotene, longifolene, alpha-farnesene, and beta-farnesene. From average diurnal mixing ratio profiles, we show that alpha-farnesene emissions are dependent mainly on temperature whereas alpha-bergamotene and beta-farnesene emissions are temperature- and light-dependent. The amount of sesquiterpene mass quantified above the canopy was small (averaging a total of 3.3 ppt during the day), but nevertheless these compounds contributed 7.6% to the overall ozone-olefin loss rate above the canopy. Assuming that the monoterpene-to-sesquiterpene emission rate in the canopy is similar to that observed in branch enclosure studies at the site during comparable weather conditions, and the average yield of aerosol mass from these sesquiterpenes is 10-50%, the amount of sesquiterpene mass reacted within the Blodgett Forest canopy alone accounts for 6-32% of the total organic aerosol mass measured during BEARPEX. The oxygenated monoterpene linalool was also quantified for the first time at Blodgett Forest. The linalool mass contribution was small (9.9 ppt and 0.74 ppt within and above the canopy, respectively), but it contributed 1.1% to the total ozone-olefin loss rate above the canopy. Reactive and semi-volatile compounds, especially sesquiterpenes, significantly impact the gas- and particle-phase chemistry of the atmosphere at Blodgett Forest and should be included in both biogenic volatile organic carbon emission and atmospheric chemistry models.
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页码:5505 / 5518
页数:14
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