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DOI | 10.5194/acp-19-13741-2019 |
Aerosol mass yields of selected biogenic volatile organic compounds - A theoretical study with nearly explicit gas-phase chemistry | |
Xavier C.; Rusanen A.; Zhou P.; Dean C.; Pichelstorfer L.; Roldin P.; Boy M. | |
发表日期 | 2019 |
ISSN | 16807316 |
起始页码 | 13741 |
结束页码 | 13758 |
卷号 | 19期号:22 |
英文摘要 | In this study we modeled secondary organic aerosol (SOA) mass loadings from the oxidation (by O3, OH and NO3) of five representative biogenic volatile organic compounds (BVOCs): isoprene, endocyclic bond-containing monoterpenes (α-pinene and limonene), exocyclic double-bond compound (β-pinene) and a sesquiterpene (β-caryophyllene). The simulations were designed to replicate an idealized smog chamber and oxidative flow reactors (OFRs). The Master Chemical Mechanism (MCM) together with the peroxy radical autoxidation mechanism (PRAM) were used to simulate the gas-phase chemistry. The aim of this study was to compare the potency of MCM and MCM + PRAM in predicting SOA formation. SOA yields were in good agreement with experimental values for chamber simulations when MCM + PRAM was applied, while a stand-alone MCM underpredicted the SOA yields. Compared to experimental yields, the OFR simulations using MCM + PRAM yields were in good agreement for BVOCs oxidized by both O3 and OH. On the other hand, a stand-alone MCM underpredicted the SOA mass yields. SOA yields increased with decreasing temperatures and NO concentrations and vice versa. This highlights the limitations posed when using fixed SOA yields in a majority of global and regional models. Few compounds that play a crucial role (>95 % of mass load) in contributing to SOA mass increase (using MCM + PRAM) are identified. The results further emphasized that incorporating PRAM in conjunction with MCM does improve SOA mass yield estimation. . © 2019 Copernicus GmbH. All rights reserved. |
语种 | 英语 |
scopus关键词 | aerosol formation; atmospheric chemistry; gas phase reaction; nitric oxide; oxidation; peroxy radical; theoretical study; volatile organic compound |
来源期刊 | Atmospheric Chemistry and Physics
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文献类型 | 期刊论文 |
条目标识符 | http://gcip.llas.ac.cn/handle/2XKMVOVA/144046 |
作者单位 | Institute for Atmospheric and Earth Systems Research (INAR), Physics, University of Helsinki, Helsinki, Finland; Division of Nuclear Physics, Lund University, Box 118, Lund, 22100, Sweden |
推荐引用方式 GB/T 7714 | Xavier C.,Rusanen A.,Zhou P.,et al. Aerosol mass yields of selected biogenic volatile organic compounds - A theoretical study with nearly explicit gas-phase chemistry[J],2019,19(22). |
APA | Xavier C..,Rusanen A..,Zhou P..,Dean C..,Pichelstorfer L..,...&Boy M..(2019).Aerosol mass yields of selected biogenic volatile organic compounds - A theoretical study with nearly explicit gas-phase chemistry.Atmospheric Chemistry and Physics,19(22). |
MLA | Xavier C.,et al."Aerosol mass yields of selected biogenic volatile organic compounds - A theoretical study with nearly explicit gas-phase chemistry".Atmospheric Chemistry and Physics 19.22(2019). |
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