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Stratospheric ozone loss in the Arctic winters between 2005 and 2013 derived with ACE-FTS measurements

机译:2005年至2013年北极冬季的平流层臭氧损失衍生在ACE-FTS测量中

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Stratospheric ozone loss inside the Arctic polar vortex for the winters between 2004-2005 and 2012-2013 has been quantified using measurements from the space-borne Atmospheric Chemistry Experiment Fourier Transform Spectrometer (ACE-FTS). For the first time, an evaluation has been performed of six different ozone loss estimation methods based on the same single observational dataset to determine the Arctic ozone loss (mixing ratio loss profiles and the partial-column ozone losses between 380 and 550 K). The methods used are the tracer-tracer correlation, the artificial tracer correlation, the average vortex profile descent, and the passive subtraction with model output from both Lagrangian and Eulerian chemical transport models (CTMs). For the tracer-tracer, the artificial tracer, and the average vortex profile descent approaches, various tracers have been used that are also measured by ACE-FTS. From these seven tracers investigated (CH4, N2O, HF, OCS, CFC-11, CFC-12, and CFC-113), we found that CH4, N2O, HF, and CFC-12 are the most suitable tracers for investigating polar stratospheric ozone depletion with ACE-FTS v3.5. The ozone loss estimates (in terms of the mixing ratio as well as total column ozone) are generally in good agreement between the different methods and among the different tracers. However, using the average vortex profile descent technique typically leads to smaller maximum losses (by approximately 15-30 DU) compared to all other methods. The passive subtraction method using output from CTMs generally results in slightly larger losses compared to the techniques that use ACE-FTS measurements only. The ozone loss computed, using both measurements and models, shows the greatest loss during the 2010-2011 Arctic winter. For that year, our results show that maximum ozone loss (2.1-2.7 ppmv) occurred at 460 K. The estimated partial-column ozone loss inside the polar vortex (between 380 and 550 K) using the different methods is 66103, 61-95, 59-96, 41-89,
机译:2004-2005和2012-2013之间的北极极性涡旋内部的平流层臭氧损耗已经使用来自空间的大气化学实验傅立叶变换光谱仪(ACE-FTS)的测量来量化。首次,基于相同的单个观察数据集进行了六种不同的臭氧损失估计方法,以确定北极臭氧损失(混合比率损耗谱和380和550 k之间的部分柱臭氧损耗)。所用方法是示踪剂 - 示踪剂相关性,人工示踪剂相关性,平均涡流曲线下降,以及来自拉格朗日和欧拉化学传输模型(CTMS)的模型输出的被动减法。对于示踪剂示踪剂,人工示踪剂和平均涡流剖面性曲面,已经使用了由ACE-FTS测量的各种示踪剂。从这七种示踪剂研究(CH4,N2O,HF,OC,CFC-11,CFC-12和CFC-113),我们发现CH4,N2O,HF和CFC-12是用于研究极地平流层最合适的示踪剂臭氧耗尽ACE-FTS V3.5。臭氧损失估计(在混合比和总塔臭氧)通常在不同方法和不同示踪剂之间吻合良好。然而,与所有其他方法相比,使用平均涡流剖面性血液血液血液下降技术通常导致较小的最大损耗(约15-30杜)。与仅使用ACE-FTS测量的技术相比,使用CTMS输出的无源减法方法通常导致略大的损耗。使用测量和模型计算的臭氧损失显示在2010-2011北极冬季的最大损失。我们的结果表明,最大臭氧损失(2.1-2.7ppmv)发生在460 k上。使用不同方法的极性涡旋(380和550 k之间)内的估计的部分柱臭氧丢失是66103,61-95 ,59-96,41-89,

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