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Characterising tropospheric O3 and CO around Frankfurt over the period 1994–2012 based on MOZAIC–IAGOS aircraft measurements

机译:基于Mozaic-IAGOS飞机测量的1994 - 2012年,在法兰克福,在法兰克福及其周边地区特征

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In the framework of the MOZAIC–IAGOS programme, vertical profiles of ozone (O3) and carbon monoxide (CO) have been available since 1994 and 2002, respectively. This study investigates the variability and trend of both species in three tropospheric layers above the German airports Frankfurt and Munich. About 21?300 flights have taken place over the period 1994–2012, which represents the worldwide densest vertical in situ data set of O3 and CO (with ?~??96 flights per month on average). The mean vertical profile of ozone shows a strong gradient in the first kilometre during the whole year and in the tropopause region in spring and summer. The mean vertical profile of CO is characterised by high mixing ratios at the ground, a strong decrease in the first kilometre, in particular in winter and autumn, and a moderate one in the free troposphere. O3 minimises in November–December and shows a broad spring/summer maximum in the lower and mid-troposphere and a sharp maximum in summer in the upper troposphere. The seasonal variation of CO shows a broad minimum in July–October close to the surface and in September–October it occurs higher in the troposphere, while the maximum occurs in February–April in the whole troposphere. Over the period 1994–2012, O3 has changed insignificantly (at a 95?% confidence level), except in winter where a slightly significant increase (from +0.83?[+0.13;+1.67]?%?yr?1 in the LT to +0.62?[+0.02;+1.22]?%?yr?1 in the UT, relative to the reference year 2000) is found. The O3 5th percentile shows similar upward trends at the annual scale in all three tropospheric layers. All trends remain insignificant for the O3 95th percentile. In contrast, for CO the mean as well as its 5th and 95th percentiles decrease both at the annual scale and at the seasonal scale in winter, spring and summer (although not always in all three tropospheric layers) with trends ranging between ?1.22?[?2.27;?0.47] and ?2.63?[?4.54;?1.42]?%?yr?1, relative to the reference year 2004. However, all CO trends remain insignificant in autumn. The phase of the seasonal variation of O3 was found to change in the troposphere. The O3 maxima moves forward in time at a rate of ?17.8?±?11.5?days?decade?1 in the lower troposphere, in general agreement with previous studies. Interestingly, this seasonal shift is shown to persist in the mid-troposphere (?7.8?±?4.2?days?decade?1) but turns insignificant in the upper troposphere.
机译:在Mozaic-IAGOS程序的框架中,自1994年和2002年以来,臭氧(O3)和一氧化碳(CO)的垂直轮廓分别可用。本研究调查了德国机场法兰克福和慕尼黑的三个对流层层中两种物种的变异性和趋势。在1994 - 2012年期间发生了大约21个?300个航班,它代表了O3和Co的原位数据集的全球垂直垂直垂直(〜??平均每月96航班)。臭氧的平均垂直轮廓在全年和春季的春季和夏季的热门区域中的第一公里显示出强烈梯度。 Co的平均垂直轮廓的特征在于地面的高混合比,在第一公里,特别是在冬季和秋季,以及在自由对流层中的中等的垂直曲线。 O3最大限度地减少了11月至12月,在较低和中层的较大和中间层高的春季/夏季,夏季最大的夏季最大的春季/夏季。 CO的季节变化在7月10月显示了广泛的最低限度,靠近地表,9月至10月,它在对流层中越高,而最大在整个对流层的最大值发生。在1994 - 2012年期间,O3发生了微不一性的(处于95?%的置信水平),除了在略微显着增加(从+0.83?[+ 0.13; +1.67]Δ1中的冬季找到+0.62?[+ 0.02; +1.22]?%?在UT中,相对于参考2000年)。 O3第5百分位数显示了所有三个对流层层的年度相似的上升趋势。所有趋势都对O3 95百分位数仍然微不足道。相比之下,对于冬季,春季和夏季(虽然在所有三个对流层中并非总是在所有三个对流层)之间的季节性和季节规模,但第5次和第5个百分比的平均值和第5百分位数均减少?1.22?[ ?2.27;?0.47]和?2.63?[?4.54;?1.42]?%?YR?1,相对于2004年的参考年份。然而,所有CO趋势在秋季仍然微不足道。发现O3的季节变异的阶段在对流层中变化。 O3 Maxima以速度的速度向前移动?17.8?±11.5?天?十年?1在较低的对流层中,概述与以前的研究一致。有趣的是,这种季节性转变显示在对流层中间(?7.8?±4.2?天?十年?1),但在上层对流层中变得微不足道。

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