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Correlation between atmospheric O_4 and H_2O absorption in visible band and its implication to dust and haze events in Shanghai, China

机译:上海市可见波段大气O_4和H_2O吸收的相关性及其对粉尘和霾事件的影响

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摘要

Ground-based zenith-sky DOAS observation was carried out from October 1,2009 to September 30,2010 in Shanghai, China to measure the O_4 and H_2O absorption in visible band and to illustrate the dependence of their correlation slope on the aerosol pollution type. Good correlations between O_4 and H_2O DSCDs can be found through linear regression analysis whether it was sunny, cloudy, overcast, or rainy. The correlation slope varied seasonally in the order of summer < autumn, spring < winter. In particular, the correlation slope and fluctuation were small in the summer. It was found that slope values also relied on sky conditions generally in the sequence of dusty > sunny > cloudy > overcast > rainy. The implication of the variation of slope to the aerosol pollution type was discussed for typical heavy dust and haze episodes occurred in March 2010 and October 2009, respectively. As the correlation slope abruptly increased during the heavy dust due to low moisture content and enhanced O_4 absorption caused by abundant suspended dry crustal particles, the slope dropped suddenly in the haze episode owing to the significant augment of H_2O absorption. Thus, the much discrepant correlation patterns may be regarded as a characteristic signature for dust and haze events.
机译:2009年10月1日至2010年9月30日在中国上海进行了天顶天顶DOAS观测,以测量可见带中O_4和H_2O的吸收并说明其相关斜率对气溶胶污染类型的依赖性。无论是晴天,阴天,阴天还是雨天,都可以通过线性回归分析发现O_4与H_2O DSCD之间具有良好的相关性。相关斜率按夏季<秋季,春季<冬季的顺序季节性变化。特别是,夏季的相关斜率和波动很小。已经发现,坡度值通常还依赖于天空条件,其顺序为尘土飞扬>晴天>阴天>阴天>下雨。讨论了分别于2010年3月和2009年10月发生的典型的重度粉尘和霾事件,说明了坡度对气溶胶污染类型的影响。由于低水分含量和大量悬浮的干燥地壳颗粒引起的O_4吸收增加,在重尘期间相关斜率突然增加,由于H_2O吸收显着增加,该斜率在雾霾发作中突然下降。因此,相差很大的相关模式可以看作是尘埃和霾事件的特征信号。

著录项

  • 来源
    《Atmospheric environment》 |2012年第12期|p.164-171|共8页
  • 作者单位

    Department of Environmental Science & Engineering, Fudan University, Shanghai 200433, China;

    Department of Environmental Science & Engineering, Fudan University, Shanghai 200433, China;

    Department of Environmental Science & Engineering, Fudan University, Shanghai 200433, China;

    Department of Environmental Science & Engineering, Fudan University, Shanghai 200433, China;

    Department of Environmental Science & Engineering, Fudan University, Shanghai 200433, China;

    Department of Environmental Science & Engineering, Fudan University, Shanghai 200433, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    aerosol remote sensing; O_4; dust; haze; DOAS;

    机译:气溶胶遥感;O_4;灰尘;阴霾;DOAS;

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