Continental pollutants modulate organic nitrogen and light absorption of marine organic aerosols over East Asian marginal seas

Organic nitrogen (ON) in marine aerosols is not only an important fraction of atmospheric nitrogen deposition but also a vital contributor to light-absorbing organic aerosols. However, observational evidence is lacking on the driving factors of ON formation or its role in organic aerosol absorption, especially in marine atmosphere. Here, shipboard observations were conducted in spring, summer, and autumn over the Yellow Sea and Bohai Sea (YBS) to understand the spatiotemporal distributions and sources of aerosol ON over East Asian marginal seas. Aerosol ON was 0.35 ± 0.25 µg N m −3 , accounting for 4 %–60 % of total nitrogen across seasons. Concentrations of ON were the highest in autumn due to severe impacts of anthropogenic pollutants, followed by those in spring and summer. Anthropogenic secondary pollutants (aged biomass burning and secondary nitrate formation) contributed 36 %–76 % of ON, 46 %–83 % of water-soluble ON, and 39 %–89 % of water-insoluble ON. In spring, 55 % of ON, 45 % of water-soluble ON, and 54 % of water-insoluble ON were attributed to dust, and its contribution increased to > 80 % during a dust episode. In summer, marine sources associated with biological activity were important for aerosol ON formation. Nitrogen-containing organic compounds played vital roles in regulating light absorption by organic aerosols over the YBS. Elevated organic aerosol absorption was attributed not only to higher ON concentrations but also to increased absorption capability at higher ON / OC ratios. Our results highlight that transported continental ON drove the light absorption by marine organic aerosols over marginal seas.

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Publication Details

Journal
Atmospheric chemistry and physics
Published
2026-09-18
DOI
https://doi.org/10.5194/acp-26-13175-2026
Primary Topic
Atmospheric chemistry and aerosols
Type
article
Field-Weighted Citation Impact
0.00

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article

Continental pollutants modulate organic nitrogen and light absorption of marine organic aerosols over East Asian marginal seas

Huiwang Gao, Yujue Wang, Jian Zhen Yu, Xu Yu et al.
Atmospheric chemistry and physics
Atmospheric chemistry and aerosols
article

Continental pollutants modulate organic nitrogen and light absorption of marine organic aerosols over East Asian marginal seas

Huiwang Gao, Yujue Wang, Jian Zhen Yu, Xu Yu, Meijing Guo, Kyoung-Soon Jang, Yuqi Guo, Sisi Song, Chao Yu, Xiaohong Yao, Lin Zheng
article en

Abstract

Organic nitrogen (ON) in marine aerosols is not only an important fraction of atmospheric nitrogen deposition but also a vital contributor to light-absorbing organic aerosols. However, observational evidence is lacking on the driving factors of ON formation or its role in organic aerosol absorption, especially in marine atmosphere. Here, shipboard observations were conducted in spring, summer, and autumn over the Yellow Sea and Bohai Sea (YBS) to understand the spatiotemporal distributions and sources of aerosol ON over East Asian marginal seas. Aerosol ON was 0.35 ± 0.25 µg N m −3 , accounting for 4 %–60 % of total nitrogen across seasons. Concentrations of ON were the highest in autumn due to severe impacts of anthropogenic pollutants, followed by those in spring and summer. Anthropogenic secondary pollutants (aged biomass burning and secondary nitrate formation) contributed 36 %–76 % of ON, 46 %–83 % of water-soluble ON, and 39 %–89 % of water-insoluble ON. In spring, 55 % of ON, 45 % of water-soluble ON, and 54 % of water-insoluble ON were attributed to dust, and its contribution increased to > 80 % during a dust episode. In summer, marine sources associated with biological activity were important for aerosol ON formation. Nitrogen-containing organic compounds played vital roles in regulating light absorption by organic aerosols over the YBS. Elevated organic aerosol absorption was attributed not only to higher ON concentrations but also to increased absorption capability at higher ON / OC ratios. Our results highlight that transported continental ON drove the light absorption by marine organic aerosols over marginal seas.

Atmospheric chemistry and physicsVol. 26(18)
Hong Kong University of Science and Technology (HK), Nanjing University of Information Science and Technology (CN), Qingdao National Laboratory for Marine Science and Technology (CN), Korea Basic Science Institute (KR), Ocean University of China (CN), University of Hong Kong (HK)
National Natural Science Foundation of China, Natural Science Foundation of Shandong Province, Fundamental Research Funds for the Central Universities
Life below water
Openalex Percentile: Top 15%
Atmospheric chemistry and aerosols
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