Measurement report: Size-resolved secondary organic aerosol formation modulated by aerosol water uptake in wintertime haze

Abstract 2.5) in Xi'an, northwestern China. The composition of inorganic aerosol showed significant changes in winter 2018–2019 compared to winter 2013–2014, shifting from a sulfate-rich profile to a nitrate-rich profile. In particular, the fraction of sulfate and chloride decreased, but that of nitrate increased in the entire size range, while ammonium mainly increased at larger particle sizes. These changes thus resulted in a size-dependent evolution in water uptake. Increased water uptake was observed in most cases, mainly associated with enhanced contributions of both nitrate and ammonium, with the highest increase ratio reaching 5 %–35 % at larger particle sizes and higher relative humidity (RH > 70  %). The non-negligible influence of chloride on aerosol water uptake was also emphasized. The random forest analysis coupled with a Shapley additive explanation algorithm (SHAP) further showed an enhanced relative importance of aerosol water in impacting SOA formation. Aerosol water exhibited a significant contribution to SOA formation during winter 2018–2019, particularly at larger particle sizes. The SHAP value of aerosol water increased alongside higher levels of aerosol water, indicating an enhanced contribution of aerosol water to SOA formation. This implies that the majority of enhanced aerosol water uptake at larger particle sizes and high RH might facilitate the efficient aqueous-phase SOA formation. This study highlights the key role of aerosol water as a medium to link inorganics and organics in their multiphase processes. As challenges to further improve China's air quality remain and because SOA plays an increasing role in haze pollution, these results provide insight into the size-resolved evolution characteristics and offer guidance for future controls.

Location
Deutsche Nationalbibliothek Frankfurt am Main
Extent
Online-Ressource
Language
Englisch

Bibliographic citation
Measurement report: Size-resolved secondary organic aerosol formation modulated by aerosol water uptake in wintertime haze ; volume:24 ; number:13 ; year:2024 ; pages:7687-7698 ; extent:12
Atmospheric chemistry and physics ; 24, Heft 13 (2024), 7687-7698 (gesamt 12)

Creator
Duan, Jing
Huang, Ru-Jin
Wang, Ying
Xu, Wei
Zhong, Haobin
Lin, Chunshui
Huang, Wei
Gu, Yifang
Ovadnevaite, Jurgita
Ceburnis, Darius
O'Dowd, Colin

DOI
10.5194/acp-24-7687-2024
URN
urn:nbn:de:101:1-2408061138038.092410328854
Rights
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Last update
14.08.2025, 10:59 AM CEST

Data provider

This object is provided by:
Deutsche Nationalbibliothek. If you have any questions about the object, please contact the data provider.

Associated

  • Duan, Jing
  • Huang, Ru-Jin
  • Wang, Ying
  • Xu, Wei
  • Zhong, Haobin
  • Lin, Chunshui
  • Huang, Wei
  • Gu, Yifang
  • Ovadnevaite, Jurgita
  • Ceburnis, Darius
  • O'Dowd, Colin

Other Objects (12)