Impact of Marine Shipping Emissions on Ozone Pollution During the Warm Seasons in China

Author:

Zheng Songci1ORCID,Jiang Fei123ORCID,Feng Shuzhuang1,Liu Huan4ORCID,Wang Xiaoyuan5ORCID,Tian Xudong5,Ying Chuanyou6,Jia Mengwei1,Shen Yang1ORCID,Lyu Xiaopu7ORCID,Guo Hai8,Cai Zhe9

Affiliation:

1. Jiangsu Provincial Key Laboratory of Geographic Information Science and Technology International Institute for Earth System Science Nanjing University Nanjing China

2. Jiangsu Center for Collaborative Innovation in Geographical Information Resource Development and Application Nanjing China

3. Frontiers Science Center for Critical Earth Material Cycling Nanjing University Nanjing China

4. School of Environment Tsinghua University Beijing China

5. Zhejiang Ecological and Environmental Monitoring Center Hangzhou China

6. Fuzhou Research Academy of Environmental Sciences Fuzhou China

7. Department of Geography Hong Kong Baptist University Hong Kong China

8. Department of Civil and Environmental Engineering Hong Kong Polytechnic University Hong Kong China

9. Nanjing Climblue Technology Co. LTD Nanjing China

Abstract

AbstractAs China's land‐based anthropogenic emissions are decreasing, the impact of marine shipping emissions (MSEs) on the atmosphere, especially in coastal areas, deserves further attention. This study investigates the impact of MSEs on MDA8 ozone (O3) levels during the warm seasons of 2017 in China, considering different seasons and synoptic patterns. The results indicate that the average impact of MSEs on O3 decreases from offshore to inland, peaking at over 29.0 ppb at sea and 13.8 ppb along the coast of mainland China. Influenced by precursor emissions, meteorology and other factors, MSEs contribute differently to O3 in Beijing‐Tianjin‐Hebei (BTH), Yangtze River Delta (YRD) and Pearl River Delta (PRD), with contributions of 3.0, 5.2, and 4.9 ppb, respectively, and ranging from 2.7 to 7.3 ppb in 13 coastal port cities. The O3 impacts of MSEs are higher on polluted days than on clean days, especially during onshore winds. In the BTH, MSEs increase O3 by 5.5 ppb on polluted days and 3.0 ppb on clean days with northeast winds from the Bohai Sea. In the YRD, MSEs increase O3 by 9.4 ppb on polluted days and 7.3 ppb on clean days with southeast winds. MSEs significantly increase O3 levels in the PRD by 11.0 ppb on polluted days and 5.0 ppb on clean days with southeast winds. Although the emission inventories, initial and boundary conditions, etc. may introduce uncertainties, our results still provide useful information for O3 pollution management in coastal cities as a reasonable way to track mass contributions.

Funder

National Key Research and Development Program of China

Publisher

American Geophysical Union (AGU)

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