supported by the National Key Research and Development Program for Young Scientists of China(No.2022YFC3704000);the National Natural Science Foundation of China(No.42275122);the National Key Scientific and Technological Infrastructure project“Earth System Science Numerical Simulator Facility”(EarthLab).
PM_(2.5)constitutes a complex and diversemixture that significantly impacts the environment,human health,and climate change.However,existing observation and numerical simulation techniques have limitations,such as a l...
supported by the National Natural Science Foundation of China(Nos.42277091 and U22A20578);Xiamen Youth Innovation Fund Project(No.3502Z20206094);Fujian Provincial Environmental Protection Science&Technology Plan Projects(No.2023R004);Xiamen Atmospheric Environment Observation and Research Station of Fujian Province.
Aerosol acidity(pH)plays an important role in the multiphase chemical processes of atmospheric particles.In this study,we demonstrated the seasonal trends of aerosol pH calculated with the ISORROPIA-II model in a coas...
supported by the National Natural Science Foundation of China(No.42077192);the National Key Basic Research&Development Program of China(No.2020YFA0607802).
In the context of the prevalent winter air quality issues in China marked by declining PM_(2.5)and rising O_(3),this study employed amodified WRF-Chem model to examine the aerosol radiation interaction(ARI),heterogene...
supported by the National Natural Science Foundation of China(No.42305109);Quzhou Municipal Science and Technology Bureau(No.2023K222).
Inhalation of atmospheric PM_(2.5)can induce the generation of excessive reactive oxygen species(ROS)in human alveoli,triggering local and systemic inflammation,which can directly or indirectly result in respiratory a...