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首页> 外文期刊>Advances in Meteorology >Tropospheric NO2 Trends over South Asia during the Last Decade (2004-2014) Using OMI Data
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Tropospheric NO2 Trends over South Asia during the Last Decade (2004-2014) Using OMI Data

机译:使用OMI数据得出的最近十年(2004-2014)南亚对流层NO2趋势

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摘要

The focus of this study is to assess spatiotemporal variability of tropospheric NO2 over South Asia using data from spaceborne OMI during the past decade (2004-2015). We find an average value of NO2 1.0 +/- 0.05 x 10(15) molec/cm(2) and a significant decadal increase of 14%. The elevating NO2 pollution over the region is linked to rise in motor vehicles and industrial and agricultural activities and increase in biomass fuel usage. The observed seasonality of NO2 is associated with change in meteorological conditions and seasonal cycles of anthropogenic emissions. OMI data reveal a seasonal peak in spring followed by winter largely linked to metrological conditions and anthropogenic emissions from crop residue and biomass burning for heating purpose, and low concentration in summer is mostly attributed to meteorological conditions. Significant increase, up to 42%, in NO2 concentrations over northwestern IGB, is observed connected to large scale postmonsoon crop residue events of 2010 and 2012. It is seen that NO2 is mounting over all the hotspot locations and most of the cities. Dhaka shows the highest increase of 77% followed by Islamabad (69%), Kabul (68%), Korba (64%), Bardhaman (47%), and Lahore (40%). On the contrary, DG Khan has shown negative trend of -11%.
机译:这项研究的重点是使用过去十年(2004-2015年)来自太空OMI的数据评估南亚对流层NO2的时空变化。我们发现NO2的平均值为1.0 +/- 0.05 x 10(15)molec / cm(2),并且年代际显着增加了14%。该地区NO2污染的加剧与机动车和工农业活动的增加以及生物质燃料的使用增加有关。观测到的NO2的季节性与气象条件的变化和人为排放的季节周期有关。 OMI数据显示,春季出现季节性高峰,随后是冬季,这在很大程度上与计量条件,作物残渣和为加热目的而燃烧生物质引起的人为排放有关,夏季的低浓度主要归因于气象条件。观察到西北IGB的NO2浓度显着增加,高达42%,这与2010年和2012年的季风后作物残渣大规模事件有关。可以看出,NO2遍布所有热点地区和大多数城市。达卡的增幅最高,达77%,其次是伊斯兰堡(69%),喀布尔(68%),科尔巴(64%),巴尔达曼(47%)和拉合尔(40%)。相反,可汗DG则显示了-11%的负趋势。

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