Abstract
Particle acidity serves as a key determinant in atmospheric chemical processes. Emerging concerns regarding aerosol acidity trends have been highlighted amid China’s sustained initiatives to mitigate emissions of both acidic and alkaline precursors, especially in North China, which is significantly affected by dust aerosol. 12-year observational data in Zhengzhou reveal that the annual average PM2.5 concentration decreased from 162±81 µg m−3 in 2011 to 60±41 µg m−3 in 2022, with the largest reduction in sulfate (73 %). Correspondingly, the annual particle pH increased by 0.10 units from 2011–2019. In addition, the elevated particle pH in 2015 and 2018 was notably influenced by the increase in TNHx (NH3+NH+4 ). Note that the crustal material concentrations and their proportions increased significantly during 2019–2022, which might be responsible for the resuspension of surrounding soil dust. Even though the TNHx concentration was decreasing, the annual average growth rate of pH values increased to 0.21 units from 2019–2022. This phenomenon is not unique to Zhengzhou, as major cities in the North China Plain have also experienced a pronounced upward trend in coarse particles after 2019. Therefore, the long-term evolution of particle acidity in North China will require comprehensive consideration of synergistic effects involving acidic precursors, ammonia, and crustal materials.
Cite
CITATION STYLE
Zhang, H., Wang, S., Dong, Z., Li, X., & Zhang, R. (2025). Measurement report: Crustal materials play an increasing role in elevating particle pH – insights from 12-year records in a typical inland city of China. Atmospheric Chemistry and Physics, 25(13), 6943–6955. https://doi.org/10.5194/acp-25-6943-2025
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.