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杭州大气颗粒物散射消光特性及霾天气污染特征
引用本文:徐昶,叶辉,沈建东,孙鸿良,洪盛茂,焦荔,黄侃.杭州大气颗粒物散射消光特性及霾天气污染特征[J].环境科学,2014,35(12):4422-4430.
作者姓名:徐昶  叶辉  沈建东  孙鸿良  洪盛茂  焦荔  黄侃
作者单位:1. 上海市环境科学研究院,上海 200233; 杭州市环境监测中心站,杭州 310007
2. 杭州市环境监测中心站,杭州,310007
3. 田纳西大学,美国 TN37996
基金项目:浙江省环境保护科研计划项目,杭州市重大科技创新专项,杭州市科技发展计划项目,杭州市环境保护科研计划项目
摘    要:2011年7月~2012年6月期间,对大气散射系数、颗粒物浓度及气象因子进行同步观测,以评估颗粒物散射消光对杭州市大气能见度的影响.结果表明,杭州市大气颗粒物散射系数日均值变化范围为108.4~1 098.1 Mm-1,年均值为428.62Mm-1±200.2 Mm-1.散射系数呈明显的季节变化,秋冬高,夏季低.日变化呈典型的双峰型,早峰出现在08:00,晚峰出现在21:00.PM2.5和PM10的散射效率分别为7.6 m2·g-1和4.4 m2·g-1,颗粒物散射消光占总消光比例的90.2%.灰霾和重度灰霾天气下,散射系数分别为684.4 Mm-1±218.1 Mm-1和1 095.4 Mm-1±397.7 Mm-1,达到非霾天气的2.6和4.2倍,表明颗粒物散射消光作用是导致杭州市大气能见度下降和灰霾天气发生的主要因素.

关 键 词:能见度  PM2.5  散射系数  消光系数  散射效率  灰霾
收稿时间:2014/4/17 0:00:00
修稿时间:8/7/2014 12:00:00 AM

Light Scattering Extinction Properties of Atmospheric Particle and Pollution Characteristics in Hazy Weather in Hangzhou
XU Chang,YE Hui,SHEN Jian-dong,SUN Hong-liang,HONG Sheng-mao,JIAO Li and HUANG Kan.Light Scattering Extinction Properties of Atmospheric Particle and Pollution Characteristics in Hazy Weather in Hangzhou[J].Chinese Journal of Environmental Science,2014,35(12):4422-4430.
Authors:XU Chang  YE Hui  SHEN Jian-dong  SUN Hong-liang  HONG Sheng-mao  JIAO Li and HUANG Kan
Institution:Shanghai Academy of Environmental Sciences, Shanghai 200233, China;Hangzhou Environmental Monitoring Center Station, Hangzhou 310007, China;Hangzhou Environmental Monitoring Center Station, Hangzhou 310007, China;Hangzhou Environmental Monitoring Center Station, Hangzhou 310007, China;Hangzhou Environmental Monitoring Center Station, Hangzhou 310007, China;Hangzhou Environmental Monitoring Center Station, Hangzhou 310007, China;Hangzhou Environmental Monitoring Center Station, Hangzhou 310007, China;The University of Tennessee, TN 37996, USA
Abstract:In order to evaluate the influence of particle scattering on visibility, light scattering coefficient, particle concentrations and meteorological factor were simultaneously monitored from July 2011 to June 2012 in Hangzhou. Daily scattering coefficients ranged from 108.4 to 1098.1 Mm-1, with an annual average concentration of 428.6 Mm-1±200.2 Mm-1. Seasonal variation of scattering coefficients was significant, with the highest concentrations observed in autumn and winter and the lowest in summer. It was found there were two peaks for the average diurnal variations of the scattering coefficient, which could be observed at 08:00 and 21:00. The scattering efficiencies of PM2.5 and PM10 were 7.6 m2·g-1 and 4.4 m2·g-1, respectively. The particle scattering was about 90.2 percent of the total light extinction. The scattering coefficients were 684.4 Mm-1±218.1 Mm-1 and 1095.4 Mm-1±397.7 Mm-1 in hazy and heavy hazy days, respectively, which were 2.6 and 4.2 times as high as in non-hazy weather, indicating that particle scattering is the main factor for visibility degradation and the occurrence of hazy weather in Hangzhou.
Keywords:visibility  PM2  5  scattering coefficient  extinction coefficient  scattering efficiency  haze
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