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STUDY ON THE VISIBILITY REDUCTION CAUSED BY ATMOSPHERIC HAZE IN GUANGZHOU AREA
作者姓名:吴兑  邓雪娇  毕雪岩  李菲  谭浩波  廖国莲
作者单位:Institute of Tropical and Marine Meteorology CMA,Department of Atmospheric Science School of Environmental Science and Engineer Sun Yat-sen University,Guangzhou 510275 China,Department of Atmospheric Science School of Environmental Science and Engineer Sun Yat-sen University,Institute of Tropical and Marine Meteorology CMA,Institute of Tropical and Marine Meteorology CMA,Institute of Tropical and Marine Meteorology CMA,Department of Atmospheric Science School of Environmental Science and Engineer Sun Yat-sen University,Guangzhou 510080 China,Guangzhou 510275 China,Guangzhou 510080 China,Guangzhou 510080 China,Guangzhou 510080 China,Guangzhou 510275 China
基金项目:国家重点基础研究发展计划(973计划);广东省自然科学基金;广东省科技基金重点项目;广东省广州市应用基础研究项目
摘    要:In recent years the pollution of aerosol is getting worse and worse in Guangzhou area. The haze weather mainly occurs from October to April of the following year, resulting in visibility deterioration. From the beginning of the 1980's the visibility dramatically deteriorated, obviously increasing haze weather, in which there are three big fluctuations, respectively showing the periods of pollution of dust, sulphate and dust, fine particle from photochemical process and sulphate and dust accompanying the development of economy. The long-term tendency of visibility caused by fog and light fog does not have the tendency due to human activity or economical development and the variation mainly show the inner interannual and interdecadal variation of climate. The deterioration of visibility has close relation to the fine particles in Guangzhou area, with half of PM10 surpassing the limits set by national second graded standard, meanwhile, all values of PM2.5 rise above the day-mean limits of American national standard, indicating very high fine particle concentration. The ratio of PM2.5 to PM10 is also very high, reaching 62% - 69%, especially higher in dry seasons than in rainy seasons.

关 键 词:浮质  广州市  气象环境  污染状态

STUDY ON THE VISIBILITY REDUCTION CAUSED BY ATMOSPHERIC HAZE IN GUANGZHOU AREA
WU Dui,DENG Xue-jiao,BI Xue-yan,LI Fei,TAN Hao-bo,LIAO Guo-lian.STUDY ON THE VISIBILITY REDUCTION CAUSED BY ATMOSPHERIC HAZE IN GUANGZHOU AREA[J].Journal of Tropical Meteorology,2007,13(1):77-80.
Authors:WU Dui  DENG Xue-jiao  BI Xue-yan  LI Fei  TAN Hao-bo  LIAO Guo-lian
Institution:1. Institute of Tropical and Marine Meteorology, CMA, Guangzhou 510080 China;Departmen t of Atmospheric Science, School of Environmental Science and Engineer, Sun Yat-sen University, Guangzhou 510275 China
2. Departmen t of Atmospheric Science, School of Environmental Science and Engineer, Sun Yat-sen University, Guangzhou 510275 China
3. Institute of Tropical and Marine Meteorology, CMA, Guangzhou 510080 China
Abstract:In recent years the pollution of aerosol is getting worse and worse in Guangzhou area. The haze weather mainly occurs from October to April of the following year, resulting in visibility deterioration.From the beginning of the 1980's the visibility dramatically deteriorated, obviously increasing haze weather,in which there are three big fluctuations, respectively showing the periods of pollution of dust, sulphate and dust, fine particle from photochemical process and sulphate and dust accompanying the development of economy. The long-term tendency of visibility caused by fog and light fog does not have the tendency due to human activity or economical development and the variation mainly show the inner interannual and interdecadal variation of climate. The deterioration of visibility has close relation to the fine particles in Guangzhou area, with half of PM10 surpassing the limits set by national second graded standard, meanwhile,all values of PM2.5 rise above the day-mean limits of American national standard, indicating very high fine particle concentration. The ratio of PM2.5 to PM10 is also very high, reaching 62% - 69%, especially higher in dry seasons than in rainy seasons.
Keywords:Guangzhou area  aerosol cloud  haze weather  visibility deterioration  fine particles pollution
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