Seasonal predictability of winter PM 2.5 pollution severity in India through a strong pollution–extratropical storm connection

India suffers from severe fine particulate matter (PM 2.5 ) air pollution in winter that harms public health and disrupts economic activities. Seasonal prediction of pollution severity could facilitate proactive mitigation planning but is hindered by incomplete understanding of the drivers of pollution variations. Here, using over a decade of quality-controlled Indian government PM 2.5 monitoring data, we find that ∼70% of the interannual variations in winter PM 2.5 pollution across northern India are explained by western disturbances (WDs)—prevailing extratropical storms originating from the Mediterranean region—through PM 2.5 removal via enhanced ventilation and precipitation. These WDs are regulated by the location and strength of the subtropical jet traceable to sea surface temperature (SST) anomalies across the North Atlantic and tropical Indian Ocean during the preceding autumn. Using these preseason SST anomalies, we demonstrate the potential to predict winter WD precipitation and PM 2.5 pollution severity one season ahead, with good agreement with observations ( r 2 = 0.52 to 0.69), which could facilitate proactive public policies and stakeholder mitigation actions.

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Publication Details

Journal
Science Advances
Published
2026-09-09
DOI
https://doi.org/10.1126/sciadv.aee4549
Primary Topic
Atmospheric chemistry and aerosols
Type
article
Field-Weighted Citation Impact
0.00
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article

Seasonal predictability of winter PM 2.5 pollution severity in India through a strong pollution–extratropical storm connection

Yuanyu Xie, Mi Zhou, Kieran M. R. Hunt, Denise L. Mauzerall et al.
Science Advances
Atmospheric chemistry and aerosols
article

Seasonal predictability of winter PM 2.5 pollution severity in India through a strong pollution–extratropical storm connection

Yuanyu Xie, Mi Zhou, Kieran M. R. Hunt, Denise L. Mauzerall, Rohit Gupta, Wenhao Dong, Gargee Goswami
article en

Abstract

India suffers from severe fine particulate matter (PM 2.5 ) air pollution in winter that harms public health and disrupts economic activities. Seasonal prediction of pollution severity could facilitate proactive mitigation planning but is hindered by incomplete understanding of the drivers of pollution variations. Here, using over a decade of quality-controlled Indian government PM 2.5 monitoring data, we find that ∼70% of the interannual variations in winter PM 2.5 pollution across northern India are explained by western disturbances (WDs)—prevailing extratropical storms originating from the Mediterranean region—through PM 2.5 removal via enhanced ventilation and precipitation. These WDs are regulated by the location and strength of the subtropical jet traceable to sea surface temperature (SST) anomalies across the North Atlantic and tropical Indian Ocean during the preceding autumn. Using these preseason SST anomalies, we demonstrate the potential to predict winter WD precipitation and PM 2.5 pollution severity one season ahead, with good agreement with observations ( r 2 = 0.52 to 0.69), which could facilitate proactive public policies and stakeholder mitigation actions.

Science AdvancesVol. 12(37)
Princeton University (US), Center For Policy Research (US), National Centre for Atmospheric Science (GB), University of Reading (GB), Tsinghua University (CN)
Openalex Percentile: Top 15%
Atmospheric chemistry and aerosols
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Seasonal predictability of winter PM 2.5 pollution severity in India through a strong pollution–extratropical storm connection — Yuanyu Xie, Mi Zhou, et al. · Science Advances (2026) | TGRS Research Map | TGRS