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首页> 外文期刊>Environmental Science and Pollution Research >Trend and variability of atmospheric ozone over middle Indo-Gangetic Plain: impacts of seasonality and precursor gases
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Trend and variability of atmospheric ozone over middle Indo-Gangetic Plain: impacts of seasonality and precursor gases

机译:中间难以浮动普通植物的大气臭氧变异性:季节性和前体气体的影响

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Ozone dynamics in two urban background atmospheres over middle Indo-Gangetic Plain (IGP) were studied in two contexts: total columnar and ground-level ozone. In terms of total columnar ozone (TCO), emphases were made to compare satellite-based retrieval with ground-based observation and existing trend in decadal and seasonal variation was also identified. Both satellite-retrieved (Aura Ozone Monitoring Instrument-Differential Optical Absorption Spectroscopy (OMI-DOAS)) and ground-based observations (IMD-O-3) revealed satisfying agreement with OMI-DOAS observation over predicting TCO with a positive bias of 7.24 % under all-sky conditions. Minor variation between daily daytime (r = 0.54; R (2) = 29 %; n = 275) and satellite overpass time-averaged TCO (r = 0.58; R (2) = 34 %; n = 208) was also recognized. A consistent and clear seasonal trend in columnar ozone (2005-2015) was noted with summertime (March-June) maxima (Varanasi, 290.9 +/- 8.8; Lucknow, 295.6 +/- 9.5 DU) and wintertime (December-February) minima (Varanasi, 257.4 +/- 10.1; Lucknow, 258.8 +/- 8.8 DU). Seasonal trend decomposition based on locally weighted regression smoothing technique identified marginally decreasing trend (Varanasi, 0.0084; Lucknow, 0.0096 DU year(-1)) especially due to reduction in monsoon time minima and summertime maxima. In continuation to TCO, variation in ground-level ozone in terms of seasonality and precursor gases were also analysed from September 2014 to August 2015. Both stations registered similar pattern of variation with Lucknow representing slightly higher annual mean (44.3 +/- 30.6; range, 1.5-309.1 mu g/m(3)) over Varanasi (38.5 +/- 17.7; range, 4.9-104.2 mu g/m(3)). Variation in ground-level ozone was further explained in terms water vapour, atmospheric boundary layer height and solar radiation. Ambient water vapour content was found to associate negatively (r = -0.28, n = 284) with ground-level ozone with considerable seasonal variation in Varanasi. Implication of solar radiation on formation of ground-level ozone was overall positive (Varanasi, 0.60; Lucknow, 0.26), while season-specific association was recorded in case of atmospheric boundary layer.
机译:在中文中研究了两个城市背景大气中的臭氧动力学在两个语境中进行了两种语境:总柱状和地面臭氧。就总柱状臭氧(TCO)而言,对基于地面的观察结果进行了比较基于卫星的检索,并且还识别了Decadal和季节变异的现有趋势。卫星检索(Aura臭氧监测仪器 - 差分光学吸收光谱(OMI-DOA))和地面观测(IMD-O-3)揭示了与OMI-DOAS观察的令人满意的协议,以预测TCO,阳性偏差为7.24%在全天候条件下。每天白天(r = 0.54; r(2)= 29%; n = 275)和卫星立交桥时间平均tco(r = 0.58; r(2)= 34%; n = 208)之间的次要变化。夏季(六月)最大(varanasi,290.9 +/- 8.8; Lucknow,295.6 +/- 9.5 du)和冬季(12月至2月)最小值,对柱子臭氧(2005-2015)进行了一致而清晰的季节性趋势(varanasi,257.4 +/- 10.1;勒克瑙,258.8 +/- 8.8 du)。基于局部加权回归平滑技术的季节性趋势分解识别略微下降趋势(varanasi,0.0084;勒克瑙,0.0096 u年(-1)),特别是由于季风时间最小值和夏季最大值。在延续TCO时,还从2014年9月到2015年9月分析了季节性和前体气体方面的地面臭氧的变化。两个站都注册了类似的勒克瑙的变异模式,年龄略高于年平均值(44.3 +/- 30.6;范围,1.5-309.1μg/ m(3))通过瓦拉纳西(38.5 +/- 17.7;范围,4.9-104.2μg/ m(3))。在水蒸气,大气边界层高度和太阳辐射中进一步解释了地层臭氧的变化。发现环境水蒸汽含量与瓦拉纳西相当季节性变化的地层臭氧产生负(R = -0.28,n = 284)。太阳辐射对地面臭氧形成的影响总体阳性(Varanasi,0.60;勒克瑙,0.26),而在大气边界层的情况下记录了特定于季节的关联。

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