Quantifying the effect of organic aerosol aging and intermediate-volatility emissions on regional-scale aerosol pollution in China

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作者
Bin Zhao
Shuxiao Wang
Neil M. Donahue
Shantanu H. Jathar
Xiaofeng Huang
Wenjing Wu
Jiming Hao
Allen L. Robinson
机构
[1] State Key Joint Laboratory of Environment Simulation and Pollution Control,
[2] School of Environment,undefined
[3] State Environmental Protection Key Laboratory of Sources and Control of Air Pollution Complex,undefined
[4] Center for Atmospheric Particle Studies,undefined
[5] Carnegie Mellon University,undefined
[6] Civil and Environmental Engineering,undefined
[7] University of California,undefined
[8] Key Laboratory for Urban Habitat Environmental Science and Technology,undefined
[9] School of Environment and Energy,undefined
[10] Peking University Shenzhen Graduate School,undefined
[11] Present address: Joint Institute for Regional Earth System Science and Engineering and Department of Atmospheric and Oceanic Sciences,undefined
[12] University of California,undefined
[13] Los Angeles,undefined
[14] CA 90095,undefined
[15] USA.,undefined
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摘要
Secondary organic aerosol (SOA) is one of the least understood constituents of fine particles; current widely-used models cannot predict its loadings or oxidation state. Recent laboratory experiments demonstrated the importance of several new processes, including aging of SOA from traditional precursors, aging of primary organic aerosol (POA), and photo-oxidation of intermediate volatility organic compounds (IVOCs). However, evaluating the effect of these processes in the real atmosphere is challenging. Most models used in previous studies are over-simplified and some key reaction trajectories are not captured, and model parameters are usually phenomenological and lack experimental constraints. Here we comprehensively assess the effect of organic aerosol (OA) aging and intermediate-volatility emissions on regional-scale OA pollution with a state-of-the-art model framework and experimentally constrained parameters. We find that OA aging and intermediate-volatility emissions together increase OA and SOA concentrations in Eastern China by about 40% and a factor of 10, respectively, thereby improving model-measurement agreement significantly. POA and IVOCs both constitute over 40% of OA concentrations, and IVOCs constitute over half of SOA concentrations; this differs significantly from previous apportionment of SOA sources. This study facilitates an improved estimate of aerosol-induced climate and health impacts, and implies a shift from current fine-particle control policies.
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