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Temporal-Spatial Variations of ropospheric SO2 over China Using SCIAMACHY Satellite Observations

机译:利用SCIAMACHY卫星观测资料,中国大气层SO2的时空变化

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The data products of monthly average troposphric SO2 vertical column densities over China from January 2004 to November 2009 are acquired from the SCIAMACHY instrument on board ENVISAT. The results of monthly average tropospheric SO2 vertical column densities were analyzed to research the temporalspatial distribution and change trends of tropospheric SO2 over China. In this paper, we selected four typical SO2 high concentration regions and described the spatial distribution, interannual change and seasonal variation, and the changes before and after the Beijing Olympic Games in these four regions. Additional, we analyzed the possible reasons for those change trends. The results showed that human activities play a key role in the distribution and variation of tropospheric SO2. The North China region is provided with the highest concentration of SO2 mainly because it’s the major area of coal producing and consuming. Tropospheric SO2 concentration declined in North China in 2008 while it dropped in South China since 2007. The seasonal variation of the SO2 column densities exhibits a structure with peak in winter and spring on account of central heating and lowest in summer in North China, yet it appears oppositely in the Pearl River Delta area. And the temporal-spatial change trends are remarkably affected by sulfur control policies. We found that the tropospheric SO2 column densities decreased strongly during and after the Beijing Olympic Games opened in August 2008. The tropospheric SO2 column densities in August 2008 dropped by 50% compared to SO2 concentration in August 2007. Furthermore our study finally confirms that remote sensing has a high application value in measuring trace gases and monitoring air pollution on a larger scale compared to traditional methods.
机译:从ENVISAT上的SCIAMACHY仪器获得了2004年1月至2009年11月中国对流层SO2垂直柱月平均密度的数据产品。对月平均对流层SO2垂直柱密度进行了分析,以研究中国对流层SO2的时空分布和变化趋势。在本文中,我们选择了四个典型的SO2高浓度区域,并描述了这四个区域的空间分布,年际变化和季节变化以及北京奥运会前后的变化。此外,我们分析了这些变化趋势的可能原因。结果表明,人类活动在对流层SO2的分布和变化中起着关键作用。华北地区的SO2浓度最高,主要是因为它是煤炭生产和消费的主要地区。 2008年华北地区对流层SO2浓度下降,而2007年以来华南对流层SO2浓度下降。由于集中供热,SO2柱密度的季节变化在冬季和春季呈现峰值,而在华北夏季则最低。在珠江三角洲地区则相反。硫控制政策对时空变化趋势有显着影响。我们发现,在2008年8月北京奥运会开幕期间及之后,对流层SO2柱密度急剧下降。与2007年8月的SO2浓度相比,2008年8月的对流层SO2柱密度下降了50%。此外,我们的研究最终证实了遥感与传统方法相比,在大规模测量痕量气体和监测空气污染方面具有很高的应用价值。

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