作者
Yuxuan Wang, Qianqian Zhang, Jingkun Jiang, Wei Zhou, Buying Wang, Kebin He, Fengkui Duan, Qian Zhang, Sajeev Philip, Yuanyu Xie
发表日期
2014/9/16
期刊
Journal of Geophysical Research: Atmospheres
卷号
119
期号
17
页码范围
10,425-10,440
简介
A regional haze with daily PM2.5 (fine particulate matters with diameters less than 2.5 µm) exceeding 500 µg/m3 lasted for several days in January 2013 over North China, offering an opportunity to evaluate models. Observations show that inorganic aerosols (sulfate, nitrate, and ammonium) are the largest contributor to PM2.5 during the haze period, while sulfate shows the largest enhancement ratio of 5.4 from the clean to haze period. The nested‐grid GEOS‐Chem model reproduces the distribution of PM2.5 and simulates up to 364 µg/m3 of daily maximum PM2.5. Yet on average, the model is a factor of 3 and 4 lower in PM2.5 and fails to capture the large sulfate enhancement from the clean to haze period. A doubling of SO2 emissions over North China, along with daily meteorology corrections, would be required to reconcile model results with surface SO2 observations, but it is not sufficient to explain the …
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