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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >ESTIMATES OF TOTAL ORGANIC AND INORGANIC CHLORINE IN THE LOWER STRATOSPHERE FROM IN SITU AND FLASK MEASUREMENTS DURING AASE II
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ESTIMATES OF TOTAL ORGANIC AND INORGANIC CHLORINE IN THE LOWER STRATOSPHERE FROM IN SITU AND FLASK MEASUREMENTS DURING AASE II

机译:第二阶段在原位和瓶面测量中估算下层皮层中有机氯和无机氯的总量

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摘要

Aircraft sampling has provided extensive in situ and flask measurements of organic chlorine species in the lower stratosphere. The recent Airborne Arctic Stratospheric Expedition II (AASE II) included two independent measurements of organic chlorine species using whole air sample and real-time techniques. From the whole air sample measurements we derive directly the burden of total organic chlorine (CCly) in the fewer stratosphere. From the more limited real-time measurements we estimate the CCly burden using mixing ratios and growth rates of the principal CCly species in the troposphere in conjunction with results from a two-dimensional photochemical model. Since stratospheric chlorine is tropospheric in origin and tropospheric mixing ratios are increasing, it is necessary to establish the average age of a stratospheric air parcel to assess its total chlorine (Cl-Total) abundance. Total inorganic chlorine (Cl-y) in the parcel is then estimated by the simple difference, Cl-y = Cl-Total - CCly. The consistency of the results from these two quite different techniques suggests that we can determine the CCly and Cl-y in the lower stratosphere with confidence. Such estimates of organic and inorganic chlorine are crucial in evaluating the photochemistry controlling chlorine partitioning and hence ozone loss processes in the lower stratosphere. [References: 39]
机译:飞机采样提供了平流层下部有机氯物质的大量现场和烧瓶测量。最近的机载北极平流层探险II(AASE II)包括使用整个空气样本和实时技术对有机氯物种进行的两次独立测量。从整个空气样本的测量中,我们可以直接得出较少平流层中总有机氯(CCly)的负担。从更有限的实时测量中,我们使用对流层中主要CCly物种的混合比和增长率以及二维光化学模型的结果,估计CCly负担。由于平流层氯的起源是对流层,并且对流层混合比在增加,因此有必要确定平流层空气包裹的平均年龄,以评估其总氯(Cl-Total)的丰度。然后,通过简单差异Cl-y = Cl-Total-CCly估算包裹中的总无机氯(Cl-y)。这两种完全不同的技术所得到的结果的一致性表明,我们可以自信地确定平流层下部的CCly和Cl-y。这种有机和无机氯的估算对于评估光化学控制氯的分配至关重要,因此可以评估低平流层中的臭氧损失过程。 [参考:39]

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