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Updated: May 20, 2025

Measuring Carbon Content in Airway Macrophages Exposed to Carbon-Containing Particulate Matters
Published on: July 12, 2024
Characteristics and sources of PM2.5 in diverse central China cities under various scenarios: Maximum simulated
Jingshen Zhang1, Yunfei Wei2, Jiasen Guo3
1College of Chemistry, Zhengzhou University, Zhengzhou 450001, China; Huang Huai Laboratory, Henan Academy of Sciences, Zhengzhou 450046, China.
Abstract:
To control COVID-19, strict restrictions were implemented in China, leading to a decline in pollutant emissions. However, in the post-pandemic era, pollutants rebounded rapidly, particularly in the Central Plains region, without PM2.5 concentrations meeting national standard. This study analyzed Water-soluble inorganic ions (WSIIs) concentration and sources across different pandemic periods using long-term high-resolution PM2.5, WSIIs and meteorological data from Zhengzhou (ZZ), Anyang (AY), and Xinyang (XY). Results indicated that during the lockdown, WSIIs concentration in the three cities were significantly lower compared to other periods, but rebounded shortly after lifting of restrictions due to human activity resumption. Positive Matrix Factorization analysis showed that secondary aerosol sources were dominant in all cities. Simulations revealed a 90 % reduction of secondary aerosol sources in ZZ could lead to an additional decrease of 2.6 μg·m⁻³ of PM2.5 due to pH change. In AY, a 30 % reduction of secondary aerosol sources resulted in an extra reduction of 14.9 μg·m⁻³ in PM2.5. When the contribution of secondary aerosol sources in XY was decreased to 18 %, PM2.5 concentration decreased by 30 %, achieving an additional reduction of 9.5 μg·m⁻³ . This study offers strategies for achieving PM2.5 compliance and mitigating its impact on health and environment in the post-pandemic era.
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