特大城市
空气质量指数
波动性(金融)
环境科学
北京
环境化学
增长率
粒子(生态学)
大气科学
空气污染
化学
气象学
中国
生态学
地理
地质学
生物
业务
几何学
财务
数学
有机化学
考古
作者
Lizi Tang,Zeyu Feng,Dongjie Shang,Linghan Zeng,Zhijun Wu,Hui Wang,Shiyi Chen,Xin Li,Limin Zeng,Jianlin Hu,Min Hu
标识
DOI:10.1038/s41467-025-62011-6
摘要
Abstract Atmospheric new particle growth in diameter is the crucial process determining air quality effects raised by secondary aerosols. However, uncertain mechanisms and long-term trends of new particle growth limit the assessments of urban air quality evolution. Here we report an increasing trend of new particle growth rate in responds to anthropogenic emission abatement in urban Beijing during autumn from 2017 to 2021. Oxygenated organic vapors is the key compounds driving this variation of growth rate. While the anthropogenic volatile organic precursor abatement has decreased their total concentrations, the concurrent NO x abatement has increased the fractions thus the concentrations of the low-volatility condensable parts, which are the most relevant contributors for growth. The coeffect of anthropogenic abatement on the volatility distribution of oxygenated organic vapors is the mystery of the increasing growth rate. Our findings highlight the importance of coordinated anthropogenic emission controls on air quality improvement.
科研通智能强力驱动
Strongly Powered by AbleSci AI