机构地区:[1]Institute of Surface-Earth System Science,School of Earth System Science,Tianjin University,Tianjin 300072,China [2]Department of Atmospheric and Oceanic Sciences,Fudan University,Shanghai 200438,China [3]IRDR ICoE on Risk Interconnectivity and Governance on Weather/Climate Extremes Impact and Public Health,Fudan University,Shanghai 200438,China [4]Ministry of Education Key Laboratory for Earth System Modeling,Department of Earth System Science,Tsinghua University,Beijing 100084,China [5]Air Environmental Modeling and Pollution Controlling Key Laboratory of Sichuan Higher Education Institute,Chengdu University of Information Technology,Chengdu 610225,China [6]Division of Environmental Health&Risk Management,School of Geography,Earth&Environmental Sciences,University of Birmingham,Birmingham B152TT,UK [7]School of Environmental Science and Engineering,Tianjin University,Tianjin 300072,China [8]State Key Laboratory of Atmospheric Boundary Layer Physics and Atmospheric Chemistry,Institute of Atmospheric Physics,Chinese Academy of Sciences,Beijing 100029,China [9]Key Laboratory of Forest Ecology and Management,Institute of Applied Ecology,Chinese Academy of Sciences,Shenyang 110164,China [10]Yale-NUIST Center on Atmospheric Environment,International Joint Laboratory on Climate and Environment Change,Nanjing University of Information Science and Technology,Nanjing 210044,China [11]Department of Atmospheric Sciences,School of Environmental Studies and Department of Environmental Science and Technology,School of Environmental Studies,China University of Geosciences,Wuhan 430074,China [12]Department of Environmental Science and Engineering,Fudan University,Shanghai 200438,China [13]Collaborative Innovation Center of Atmospheric Environment and Equipment Technology,Jiangsu Key Laboratory of Atmospheric Environment Monitoring and Pollution Control,Nanjing University of Information Science and Technology,Nanjing 210044,China [14]Department of Environmental Sciences/Center of Excellence in Environmental Studies,King Abdul
出 处:《Science Bulletin》2024年第7期978-987,共10页科学通报(英文版)
基 金:supported by the National Natural Science Foundation of China(42130513,41905110,and 41961130384);the Royal Society Newton Advanced Fellowship,United Kingdom(NAFR1191220);the Research Grants Council of the Hong Kong Special Administrative Region,China(T24/504/17 and A-Poly U502/16)。
摘 要:Aerosol ammonium(NH_(4)^(+)),mainly produced from the reactions of ammonia(NH_(3))with acids in the atmosphere,has significant impacts on air pollution,radiative forcing,and human health.Understanding the source and formation mechanism of NH_(4)^(+)can provide scientific insights into air quality improvements.However,the sources of NH_(3)in urban areas are not well understood,and few studies focus on NH_(3)/NH_(4)^(+)at different heights within the atmospheric boundary layer,which hinders a comprehensive understanding of aerosol NH_(4)^(+).In this study,we perform both field observation and modeling studies(the Community Multiscale Air Quality,CMAQ)to investigate regional NH_(3)emission sources and vertically resolved NH_(4)^(+)formation mechanisms during the winter in Beijing.Both stable nitrogen isotope analyses and CMAQ model suggest that combustion-related NH_(3)emissions,including fossil fuel sources,NH_(3)slip,and biomass burning,are important sources of aerosol NH_(4)^(+)with more than 60%contribution occurring on heavily polluted days.In contrast,volatilization-related NH_(3)sources(livestock breeding,N-fertilizer application,and human waste)are dominant on clean days.Combustion-related NH_(3)is mostly local from Beijing,and biomass burning is likely an important NH_(3)source(~15%–20%)that was previously overlooked.More effective control strategies such as the two-product(e.g.,reducing both SO_(2)and NH_(3))control policy should be considered to improve air quality.
关 键 词:Particulate ammonium Nitrogen isotope PM2.5 The Community Multiscale Air Quality(CMAQ) Control policy
分 类 号:X51[环境科学与工程—环境工程]
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