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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Comparison of 7 years of satellite-borne and ground-based tropospheric NO2 measurements around Milan, Italy
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Comparison of 7 years of satellite-borne and ground-based tropospheric NO2 measurements around Milan, Italy

机译:7年的星载和比较地面对流层NO2测量米兰,意大利

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Tropospheric NO2 vertical column densities (VCDs) over the Lombardy region were retrieved from measurements of the Global Ozone Monitoring Experiment (GOME) spectrometer for the period 1996–2002 using a differential optical absorption method. This data set was compared with in situ measurements of NO2 at around 100 ground stations in the Lombardy region, northern Italy. The tropospheric NO2 VCDs are reasonably well correlated with the near-surface measurements under cloud-free conditions. However, the slope of the tropospheric VCDs versus ground measurements is higher in autumn-winter than in spring-summer. This effect is clearly reduced when the peroxyacetyl nitrate and nitric acid (HNO3) interferences of conventional NO x analyzers are taken into account. For a more quantitative comparison, the NO2 ground measurements were scaled to tropospheric VCDs using a seasonal NO2 vertical profile over northern Italy calculated by the Model of Ozone and Related Tracers 2 (MOZART-2). The tropospheric VCDs retrieved from satellite and those determined from ground measurements agree well, with a correlation coefficient R = 0.78 and a slope close to 1 for slightly polluted stations. GOME cannot reproduce the high NO2 amounts over the most polluted stations, mainly because of the large spatial variability in the distribution of pollution within the GOME footprint. The yearly and weekly cycles of the tropospheric NO2 VCDs are similar for both data sets, with significantly lower values in the summer months and on Sundays, respectively. Considering the pollution level and high aerosol concentrations of this region, the agreement is very good. Furthermore, uncertainties in the ground-based measurements, including the extrapolation to NO2 VCDs, might be as important as those of the NO2 satellite retrieval itself.
机译:对流层NO2垂直柱密度(vcd)在伦巴第地区检索测量全球臭氧的监测实验(国美)光谱仪的时期使用差分光学吸收1996 - 2002方法。测量NO2在100左右的地面站意大利北部伦巴第地区。对流层NO2 vcd都相当不错与近地表测量在无云的条件下。对流层的vcd和地面测量在秋冬季比高春夏装。当硝酸过氧化乙酰和硝酸(硝酸)干扰的传统没有x分析考虑。定量比较,NO2的地面测量了对流层vcd使用一个季节性NO2垂直剖面意大利北部的模型计算臭氧和相关的示踪剂2 (MOZART-2)。从卫星和对流层vcd检索这些决定从地面测量同意好,相关系数R = 0.78轻微污染的斜率接近1电台。主要是数量在污染最严重的电台因为大型空间变异性分布在国美的污染足迹。对流层NO2 vcd是相似的两个数据集值明显较低分别为夏季和星期天。考虑到污染水平和高气溶胶这个区域的浓度,协议很好。地面测量,包括推断NO2 vcd,可能同样重要NO2卫星获取的本身。

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