GSTDTAP  > 地球科学
DOI10.5194/acp-20-2637-2020
An evaluation of global organic aerosol schemes using airborne observations
Pai, Sidhant J.1; Heald, Colette L.1,2; Pierce, Jeffrey R.3; Farina, Salvatore C.3; Marais, Eloise A.4; Jimenez, Jose L.5,6; Campuzano-Jost, Pedro5,6; Nault, Benjamin A.5,6; Middlebrook, Ann M.7; Coe, Hugh8; Shilling, John E.9; Bahreini, Roya10; Dingle, Justin H.10; Vu, Kennedy10
2020-03-04
发表期刊ATMOSPHERIC CHEMISTRY AND PHYSICS
ISSN1680-7316
EISSN1680-7324
出版年2020
卷号20期号:5页码:2637-2665
文章类型Article
语种英语
国家USA; England
英文摘要

Chemical transport models have historically struggled to accurately simulate the magnitude and variability of observed organic aerosol (OA), with previous studies demonstrating that models significantly underestimate observed concentrations in the troposphere. In this study, we explore two different model OA schemes within the standard GEOS-Chem chemical transport model and evaluate the simulations against a suite of 15 globally distributed airborne campaigns from 2008 to 2017, primarily in the spring and summer seasons. These include the ATom, KORUS-AQ, GoAmazon, FRAPPE, SEAC4RS, SENEX, DC3, CalNex, OP3, EUCAARI, ARCTAS and ARCPAC campaigns and provide broad coverage over a diverse set of atmospheric composition regimes - anthropogenic, biogenic, pyrogenic and remote. The schemes include significant differences in their treatment of the primary and secondary components of OA - a "simple scheme" that models primary OA (POA) as non-volatile and takes a fixed-yield approach to secondary OA (SOA) formation and a "complex scheme" that simulates POA as semi-volatile and uses a more sophisticated volatility basis set approach for non-isoprene SOA, with an explicit aqueous uptake mechanism to model isoprene SOA. Despite these substantial differences, both the simple and complex schemes perform comparably across the aggregate dataset in their ability to capture the observed variability (with an R-2 of 0.41 and 0.44, respectively). The simple scheme displays greater skill in minimizing the overall model bias (with a normalized mean bias of 0.04 compared to 0.30 for the complex scheme). Across both schemes, the model skill in reproducing observed OA is superior to previous model evaluations and approaches the fidelity of the sulfate simulation within the GEOS-Chem model. However, there are significant differences in model performance across different chemical source regimes, classified here into seven categories. Higher-resolution nested regional simulations indicate that model resolution is an important factor in capturing variability in highly localized campaigns, while also demonstrating the importance of well-constrained emissions inventories and local meteorology, particularly over Asia. Our analysis suggests that a semi-volatile treatment of POA is superior to a non-volatile treatment. It is also likely that the complex scheme parameterization overestimates biogenic SOA at the global scale. While this study identifies factors within the SOA schemes that likely contribute to OA model bias (such as a strong dependency of the bias in the complex scheme on relative humidity and sulfate concentrations), comparisons with the skill of the sulfate aerosol scheme in GEOS-Chem indicate the importance of other drivers of bias, such as emissions, transport and deposition, that are exogenous to the OA chemical scheme.


领域地球科学
收录类别SCI-E
WOS记录号WOS:000518805100001
WOS关键词AIR-POLLUTION ; AIRCRAFT OBSERVATIONS ; CHEMICAL-COMPOSITION ; EMISSIONS INVENTORY ; MASS-SPECTROMETER ; DRY DEPOSITION ; UNITED-STATES ; NOX EMISSIONS ; SOA FORMATION ; SOUTH-KOREA
WOS类目Environmental Sciences ; Meteorology & Atmospheric Sciences
WOS研究方向Environmental Sciences & Ecology ; Meteorology & Atmospheric Sciences
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/278662
专题地球科学
作者单位1.MIT, Dept Civil & Environm Engn, 77 Massachusetts Ave, Cambridge, MA 02139 USA;
2.MIT, Dept Earth Atmospher & Planetary Sci, Cambridge, MA 02139 USA;
3.Colorado State Univ, Dept Atmospher Sci, Ft Collins, CO 80523 USA;
4.Univ Leicester, Dept Phys & Astron, Leicester LE1 7RH, Leics, England;
5.Univ Colorado, Dept Chem, Boulder, CO 80309 USA;
6.Univ Colorado, CIRES, Boulder, CO 80309 USA;
7.NOAA, Earth Syst Res Lab, Chem Sci Div, 325 Broadway, Boulder, CO 80305 USA;
8.Univ Manchester, Ctr Atmospher Sci, Sch Earth & Environm Sci, Manchester M13 9PL, Lancs, England;
9.Pacific Northwest Natl Lab, Atmospher Sci & Global Change Div, Richland, WA 99352 USA;
10.Univ Calif Riverside, Dept Environm Sci, Riverside, CA 92521 USA
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Pai, Sidhant J.,Heald, Colette L.,Pierce, Jeffrey R.,et al. An evaluation of global organic aerosol schemes using airborne observations[J]. ATMOSPHERIC CHEMISTRY AND PHYSICS,2020,20(5):2637-2665.
APA Pai, Sidhant J..,Heald, Colette L..,Pierce, Jeffrey R..,Farina, Salvatore C..,Marais, Eloise A..,...&Vu, Kennedy.(2020).An evaluation of global organic aerosol schemes using airborne observations.ATMOSPHERIC CHEMISTRY AND PHYSICS,20(5),2637-2665.
MLA Pai, Sidhant J.,et al."An evaluation of global organic aerosol schemes using airborne observations".ATMOSPHERIC CHEMISTRY AND PHYSICS 20.5(2020):2637-2665.
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