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全国年秋冬季气象条件变化对影响研究(5)

来源:全国流通经济 【在线投稿】 栏目:期刊导读 时间:2021-03-01
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摘要:[10] Wang H, Xu J, Zhang M, et al.A study of the meteorological causes of a prolonged and severe haze episode in January 2013 over central-eastern China [J].Atmospheric Environment, 2014,98:146-157.

[10] Wang H, Xu J, Zhang M, et al.A study of the meteorological causes of a prolonged and severe haze episode in January 2013 over central-eastern China [J].Atmospheric Environment, 2014,98:146-157.

[11] Zhang Q, Quan J, Tie X, et of meteorology and secondary particle formation on visibility during heavy haze events in Beijing,China [J].Science of The Total Environment, 2015,502:578-584.

[12] Liu X, Li C, Tu H, et of the effect of meteorological factors on PAHs during autumn-winter in urban Nanchang [J].Aerosol and Air Quality Research, 2016,16:3222-3229.

[13] Kozáková J, Pokorná P, Cern ˇ íková A, et al.The association between intermodal (PM1–2.5) and PM1, PM2.5, coarse fraction and meteorological parameters in various environments in Central Europe[J].Aerosol and Air Quality Research, 2017,17:1234-1243.

[14] Liang P, Zhu T, Fang Y, et al.The role of meteorological conditions and pollution control strategies in reducing air Pollution in Beijing during APEC 2014 and Victory parade 2015 [J].Atmospheric Chemistry and Physics, 2017,17:-.

[15] Chuang M T, Chou C C K, Lin N H, et al.A simulation study on and meteorological characteristics at the northern tip of Taiwan in the early stage of the Asian haze period [J].Aerosol and Air Quality Research, 2017,17:3166-3178.

[16] Cai W J, Li K, Liao H, et conditions conducive to Beijing severe haze more frequent under climate change [J].Nature Climate Change, 2017,7(4):257-262.

[17] Chen H, Wang H.Haze days in North China and the associated atmospheric circulations based on daily visibility data from 1960 to 2012 [J].Journal of Geophysical Research-Atmospheres, 2015,120:5895-5909.

[18] Wu P, Ding Y, Liu circulation and dynamic mechanism for persistent haze events in the Beijing-Tianjin-Hebei region [J].Advances in Atmospheric Sciences, 2017,34:429-440.

[19] Yang Y Q, Wang J Z, Gong S L, et meteorological pollution index for air quality and its applications in fog-haze forecasts in North China [J].Atmospheric Chemistry and Physics,2016,16:1353-1364.

[20] Chen Z Y, Cai J, Gao B, et the causality influence of individual meteorological factors on local in the Jing-Jin-Ji region [J].Scientific Reports, 2017,7,.DOI:10.1038/srep.

[21] Liu T, Gong S, He J, et of meteorological and emission factors to the 2015 winter severe haze pollution episodes in China's Jing-Jin-Ji area [J].Atmospheric Chemistry and Physics, 2017,17:2971-2980.

[22] 王莉莉,王跃思,王迎红,等.北京夏末秋初不同天气形势对大气污染物浓度的影响 [J].中国环境科学,2010,30(7): L L, Wang Y S, Wang Y H, et between different synoptic weather patterns and concentrations of atmospheric pollutants in Beijing during summer and autumn [J].China Environmental Science, 2010,30(7):924-930.

[23] 姚 青,刘敬乐,蔡子颖,等.天津大气稳定度和逆温特征对PM2.5污染的影响 [J].中国环境科学, 2018,38(8): Q, Liu J L, Cai Z Y, et stability and inverse temperature characteristics of Tianjin and its effects on [J].China Environmental Science, 2018,38(8):2865-2872.

[24] Xu Y L, Xue W B, Lei Y, et of Meteorological Conditions on in China during Winter [J].Atmosphere, 2018,9,429, doi:10.3390/atmos.

[25] 孟 宁,贝耐芳,李国辉,等.关中地区冬季人为源减排对PM2.5浓度的影响 [J].中国环境科学, 2017,37(5): N, Bei N F, Li G H, et of the wintertime to anthropogenic emission mitigations in the Guanzhong Environmental Science, 2017,37(5):1646-1656.

[26] 吴文景,常 兴,邢 佳,等.京津冀地区主要排放源减排对PM2.5污染改善贡献评估 [J].环境科学, 2017,38(3): W J, Chang X, Xing J, et of mitigation due to emission reduction from main emission sources in the Beijing-Tianjin-Hebei Science, 2017,38(3):867-875.

[27] Dong X Y, Li J, Fu J S, et aerosols responses to emission changes in Yangtze River Delta, China [J].Science of the Total Environment, 2014,481:522-532.

[28] 于 燕,王泽华,崔雪东,等.长三角地区重点源减排对PM2.5浓度的影响 [J].环境科学, 2019,40(1):11-23.Yu Y, Wang Z H, Cui X D, et of emission reductions of key sources on the s in the Yangtze river delta [J].Environmental Science, 2019,40(1):11-23.

[29] Hu J, Chen J, Ying Q, et simulation of ozone and particulate matter in China using WRF/CMAQ modeling system [J].Atmospheric Chemistry and Physics, 2016,16:-.

[30] Multi-resolution emission inventory for China [EB/OL].http:///.

[31] Guenther A, Karl T, Harley P, et of global terrestrial isoprene emissions using MEGAN (Model of Emissions of Gases and Aerosols from Nature) [J].Atmospheric Chemistry and Physics, 2006,6(11):3181-3210.

[32] National Center for Atmospheric Research Data Archive [EB/OL].http:///datasets/ds083.2.

[33] National Center for Atmospheric Research Data Archive [EB/OL].http:///datasets/ds461.0.

[34] 薛文博,付 飞,王金南,等.基于全国城市PM2.5达标约束的大气环境容量模拟 [J].中国环境科学, 2014,34(10): W B, Fu F, Wang J N, et study on atmospheric environmental capacity of major pollutants constrained by of Chinese cities [J].China Environmental Science, 2014,34(10):2490-2496.

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