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Modulation of the ENSO on Winter Aerosol Pollution in the Eastern Region of China
Author(s) -
Sun Jiaren,
Li Haiyan,
Zhang Wenjun,
Li Tairu,
Zhao Wei,
Zuo Zhiyan,
Guo Shu,
Wu Dui,
Fan Shaojia
Publication year - 2018
Publication title -
journal of geophysical research: atmospheres
Language(s) - English
Resource type - Journals
eISSN - 2169-8996
pISSN - 2169-897X
DOI - 10.1029/2018jd028534
Subject(s) - china , climatology , east asia , dominance (genetics) , aerosol , el niño southern oscillation , environmental science , pollution , monsoon , chemical transport model , east asian monsoon , atmospheric sciences , geography , geology , meteorology , chemistry , ecology , archaeology , biology , biochemistry , gene
The modulation of the El Niño/Southern Oscillation (ENSO) on winter aerosol pollution (WAP) in the eastern region of China (ERC) was investigated from a climatological perspective. The results show that the weakened East Asian winter monsoon during El Niño events has an important influence on increased WAP in ERC, especially over northern China. The enhancement of the East Asian winter monsoon related to La Niña events reduces WAP in northeast, east, and south China but increases it in central and western China. Compared to northern China, anomalies in dynamic and thermodynamic conditions related to ENSO lead to more uncertainties in its effect on aerosol pollution over southern China. El Niño (La Niña) events tend to cause southwesterly (northeasterly) wind anomalies in winter southern China, along with the blocking effect of Nanling Mountains on southward (northward) air pollution, which is not (is) beneficial for the transport outside or dilution in local aerosols over southern China. Meanwhile, positive (negative) water vapor convergence and rainfall anomalies caused by El Niño (La Niña) are (are not) beneficial for the local removal of aerosols. The dominance of both factors determines the ENSO modulation on aerosols over southern China. An atmospheric global climate model largely reproduces the observed findings. Consistent with the observation, El Niño events exacerbate WAP in most of ERC, whereas La Niña ones reduce it except for western China.