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Enhanced haze pollution by black carbon in megacities in China

Geophysical Research Letters · 2016 · Vol. 43(6) · pp. 2873–2879
Aijun DingXin HuangWei NieJianning SunVeli‐Matti KerminenTuukka PetäjäHang SuYafang ChengXiaoqin YangMengyao WangX. G.J. P. WangAki VirkkulaWeidong GuoJie YuanShuodi WangRenjian ZhangYunfei WuYu SongTong ZhuSergej ZilitinkevichMarkku KulmalaCongbin Fu

Abstract

Abstract Aerosol‐planetary boundary layer (PBL) interactions have been found to enhance air pollution in megacities in China. We show that black carbon (BC) aerosols play the key role in modifying the PBL meteorology and hence enhancing the haze pollution. With model simulations and data analysis from various field observations in December 2013, we demonstrate that BC induces heating in the PBL, particularly in the upper PBL, and the resulting decreased surface heat flux substantially depresses the development of PBL and consequently enhances the occurrences of extreme haze pollution episodes. We define this process as the “dome effect” of BC and suggest an urgent need for reducing BC emissions as an efficient way to mitigate the extreme haze pollution in megacities of China.

Atmospheric chemistry and aerosolsAtmospheric aerosols and cloudsAir Quality and Health ImpactsHazeMegacityPollutionEnvironmental scienceAerosolCarbon blackAtmospheric sciencesAir pollutionPlanetary boundary layerChina

Funding

  • National Natural Science Foundation of China
Citations
946
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Cited by
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The Science of The Total Environment · 2016 · 1,292 citations
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