Ground-Based Monitoring of Stratospheric Ozone and Temperature Over Germany Since the 1960s

IF 2.9 3区 地球科学 Q2 ASTRONOMY & ASTROPHYSICS
W. Steinbrecht, V. A. Velazco, R. Dirksen, L. Doppler, P. Oelsner, R. Van Malderen, H. De Backer, E. Maillard Barras, R. Stübi, S. Godin-Beekmann, A. Hauchecorne
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Abstract

Routine ground-based measurements of total ozone column (TOC), as well as ozone profile soundings started in the late 1960s in Germany. The resulting ozone and temperature records at Hohenpeissenberg and Berlin/Potsdam/Lindenberg show long-term changes similar to other stations in Central Europe, and to the changes seen globally. Following the increase of ozone depleting substances (ODS), stratospheric ozone has declined from the 1960s until the 1990s. Since about 2000, ozone has leveled or slightly increased, consistent with declining amounts of ODS. The stratosphere has been cooling and the troposphere has been warming, in agreement with general expectations due to increasing greenhouse gas concentrations. The clearest signs of recovering ozone are seen around 40 km altitude. Two factors contribute to this increase: the decrease of stratospheric chlorine loading and cooling of the upper stratosphere, which slows gas-phase ozone destruction cycles, and enhances the ter-molecular reaction producing ozone. Tropospheric ozone has increased substantially from the 1960s to the early 1990s. Since then, it has remained more or less constant, on a level higher compared to the 1960 and 1970s. Particularly low tropospheric ozone was observed in 2020, due to reduced precursor emissions during the COVID-19 related lockdowns. The atmospheric concentrations of greenhouse gases will likely continue to rise, while the concentrations of ozone depleting substances are expected to slowly decline. To see how the atmosphere responds, and to help understand future changes, continued monitoring will be required for many years to come, both over Germany and worldwide.

Abstract Image

自1960年代以来德国上空平流层臭氧和温度的地面监测
常规的地面总臭氧柱(TOC)测量以及臭氧剖面探测始于20世纪60年代末的德国。霍恩佩森堡和柏林/波茨坦/林登堡的臭氧和温度记录显示了与中欧其他台站相似的长期变化,也与全球的变化相似。随着消耗臭氧物质(ODS)的增加,从1960年代到1990年代,平流层臭氧有所减少。大约自2000年以来,臭氧水平持平或略有增加,与消耗臭氧层物质的减少相一致。由于温室气体浓度的增加,平流层一直在降温,对流层一直在变暖,这与人们的普遍预期相符。臭氧恢复的最明显迹象出现在海拔40千米左右。有两个因素促成了这种增加:平流层氯负荷的减少和平流层上层的冷却,这减缓了气相臭氧破坏循环,并增强了产生臭氧的后分子反应。从1960年代到1990年代初,对流层臭氧已大量增加。从那以后,它基本上保持不变,与上世纪60年代和70年代相比,它的水平更高。由于在与COVID-19相关的封锁期间减少了前体排放,2020年观测到对流层臭氧水平特别低。大气中温室气体的浓度可能继续上升,而消耗臭氧物质的浓度预计将缓慢下降。为了了解大气如何反应,并帮助了解未来的变化,在未来的许多年里,德国和世界各地都需要持续监测。
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来源期刊
Earth and Space Science
Earth and Space Science Earth and Planetary Sciences-General Earth and Planetary Sciences
CiteScore
5.50
自引率
3.20%
发文量
285
审稿时长
19 weeks
期刊介绍: Marking AGU’s second new open access journal in the last 12 months, Earth and Space Science is the only journal that reflects the expansive range of science represented by AGU’s 62,000 members, including all of the Earth, planetary, and space sciences, and related fields in environmental science, geoengineering, space engineering, and biogeochemistry.
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