Changes in the Distribution Pattern of PM2.5 Pollution over Central China
暂无分享,去创建一个
Yongqing Bai | Shaofei Kong | Yan Zhu | Lijuan Shen | Weiyang Hu | Tianliang Zhao | Honglei Wang | T. Zhao | Yongqing Bai | Shaofei Kong | Weiyang Hu | Li-juan Shen | Honglei Wang | Yan Zhu
[1] Renjian Zhang,et al. Chemical composition, water content and size distribution of aerosols during different development stages of regional haze episodes over the North China Plain , 2021 .
[2] T. Zhao,et al. Climate modulation of the Tibetan Plateau on haze in China , 2015 .
[3] T. Zhao,et al. Quantifying oceanic moisture exports to mainland China in association with summer precipitation , 2018, Climate Dynamics.
[4] S. Sherwood,et al. Climate Effects of Aerosol-Cloud Interactions , 2014, Science.
[5] Jos Lelieveld,et al. Long-term (2001-2012) concentrations of fine particulate matter (PM2.5) and the impact on human health in Beijing, China , 2015 .
[6] Zifa Wang,et al. Investigating the Transport Mechanism of PM2.5 Pollution during January 2014 in Wuhan, Central China , 2019, Advances in Atmospheric Sciences.
[7] Y. Q. Wang,et al. Atmospheric aerosol compositions in China: Spatial/temporal variability, chemical signature, regional haze distribution and comparisons with global aerosols , 2011 .
[8] A. Stohl,et al. Technical note: The Lagrangian particle dispersion model FLEXPART version 6.2 , 2005 .
[9] X. An,et al. Model assessment of atmospheric pollution control schemes for critical emission regions , 2016 .
[10] Hong Wang,et al. Satellite-derived PM2.5 concentration trends over Eastern China from 1998 to 2016: Relationships to emissions and meteorological parameters. , 2019, Environmental pollution.
[11] Y. H. Zhang,et al. Characteristics and formation mechanism of continuous hazes in China: a case study during the autumn of 2014 in the North China Plain , 2015 .
[12] Jizhi Wang,et al. Factors contributing to haze and fog in China , 2013 .
[13] M. Molina,et al. An unexpected catalyst dominates formation and radiative forcing of regional haze , 2020, Proceedings of the National Academy of Sciences.
[14] M. Molina,et al. Elucidating severe urban haze formation in China , 2014, Proceedings of the National Academy of Sciences.
[15] I. Pisso,et al. FLEXPART v10.1 simulation of source contributions to Arctic black carbon , 2020 .
[16] Meigen Zhang,et al. Modeling the feedback between aerosol and meteorological variables in the atmospheric boundary layer during a severe fog–haze event over the North China Plain , 2015 .
[17] A. Stohl,et al. Source attribution using FLEXPART and carbon monoxide emission inventories: SOFT-IO version 1.0 , 2017 .
[18] Zifa Wang,et al. Modeling study of the 2010 regional haze event in the North China Plain , 2015 .
[19] X. Zhao,et al. Analysis of a winter regional haze event and its formation mechanism in the North China Plain , 2013 .
[20] Weijian Zhou,et al. Severe haze in northern China: A synergy of anthropogenic emissions and atmospheric processes , 2019, Proceedings of the National Academy of Sciences.
[21] L. Sheng,et al. The Effects of the Trans-Regional Transport of PM2.5 on a Heavy Haze Event in the Pearl River Delta in January 2015 , 2019, Atmosphere.
[22] Han-qing Kang,et al. Potential impacts of cold frontal passage on air quality over the Yangtze River Delta, China , 2019, Atmospheric Chemistry and Physics.
[23] T. Zhao,et al. Regional transport patterns for heavy PM2.5 pollution driven by strong cold airflows in Twain-Hu Basin, Central China , 2021, Atmospheric Environment.
[24] X. Xiang. “Harbor” effect of large topography on haze distribution in eastern China and its climate modulation on decadal variations in haze , 2015 .
[25] Tim Li,et al. Modeling study of PM 2.5 pollutant transport across cities in China's Jing-Jin-Ji region during a severe haze episode in December 2013 , 2015 .
[26] Jane Liu,et al. Importance of meteorology in air pollution events during the city lockdown for COVID-19 in Hubei Province, Central China , 2020, Science of The Total Environment.
[27] Gerhard Wotawa,et al. The Lagrangian particle dispersion model FLEXPART-WRF version 3.1 , 2013 .
[28] Jane Liu,et al. Characterizing regional aerosol pollution in central China based on 19 years of MODIS data: Spatiotemporal variation and aerosol type discrimination , 2020 .
[29] R. Martin,et al. Relating geostationary satellite measurements of aerosol optical depth (AOD) over East Asia to fine particulate matter (PM2.5): insights from the KORUS-AQ aircraft campaign and GEOS-Chem model simulations , 2021, Atmospheric Chemistry and Physics.
[30] T. Zhao,et al. Importance of regional PM2.5 transport and precipitation washout in heavy air pollution in the Twain-Hu Basin over Central China: Observational analysis and WRF-Chem simulation. , 2020, The Science of the total environment.
[31] Zifa Wang,et al. Assessing the effects of trans-boundary aerosol transport between various city clusters on regional haze episodes in spring over East China , 2013 .
[32] Yihui Ding,et al. Analysis of long-term variations of fog and haze in China in recent 50 years and their relations with atmospheric humidity , 2013, Science China Earth Sciences.
[33] C. Chan,et al. Air pollution in mega cities in China , 2008 .
[34] Wenhai Shen,et al. Spatial and temporal variation of haze in China from 1961 to 2012. , 2016, Journal of environmental sciences.
[35] Zhanqing Li,et al. Aerosol and boundary-layer interactions and impact on air quality , 2017 .
[36] A. Ding,et al. Impact of synoptic weather patterns and inter-decadal climate variability on air quality in the North China Plain during 1980-2013 , 2016 .
[37] Yunpeng Wang,et al. What drives the aerosol distribution in Guangdong - the most developed province in Southern China? , 2014, Scientific Reports.
[38] Li-juan Shen,et al. Air pollutant variations in Suzhou during the 2019 novel coronavirus (COVID-19) lockdown of 2020: High time-resolution measurements of aerosol chemical compositions and source apportionment , 2020, Environmental Pollution.
[39] Tian Feng,et al. Critical role of meteorological conditions in a persistent haze episode in the Guanzhong basin, China. , 2016, The Science of the total environment.
[40] Meng Zhang,et al. The impacts of the meteorology features on PM2.5 levels during a severe haze episode in central-east China , 2019, Atmospheric Environment.
[41] Lu Shen,et al. Fine particulate matter (PM2.5) trends in China, 2013–2018: separating contributions from anthropogenic emissions and meteorology , 2019, Atmospheric Chemistry and Physics.
[42] Petra Seibert,et al. Source-receptor matrix calculation with a Lagrangian particle dispersion model in backward mode , 2004 .
[43] Z. Ling,et al. Source Contributions to PM2.5 under Unfavorable Weather Conditions in Guangzhou City, China , 2018, Advances in Atmospheric Sciences.
[44] T. Zhao,et al. Heavy air pollution with a unique “non-stagnant” atmospheric boundary layer in the Yangtze River middle basin aggravated by regional transport of PM2.5 over China , 2020 .