Long-term variations in ozone levels in the troposphere and lower stratosphere over Beijing: observations and model simulations
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Published:2020-11-11
Issue:21
Volume:20
Page:13343-13354
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ISSN:1680-7324
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Container-title:Atmospheric Chemistry and Physics
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language:en
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Short-container-title:Atmos. Chem. Phys.
Author:
Zhang Yuli, Tao MengchuORCID, Zhang Jinqiang, Liu YiORCID, Chen Hongbin, Cai Zhaonan, Konopka Paul
Abstract
Abstract. Tropospheric ozone is both a major pollutant and a
short-lived greenhouse gas and has therefore caused much concern in
recent years. The ozone profile in the troposphere and lower stratosphere
over Beijing has been observed since 2002 by ozonesondes developed by the
Institute of Atmospheric Physics. Increasing concentrations of tropospheric
ozone from 2002 to 2010 measured by these balloon-based observations have
been reported previously. As more observations are now available, we used
these data to analyse the long-term variability of ozone over Beijing during
the whole period from 2002 to 2018. The ozonesondes measured increasing
concentrations of ozone from 2002 to 2012 in both the troposphere and lower
stratosphere. There was a sudden decrease in observed ozone between 2011 and
2012. After this decrease, the increasing trend in ozone concentrations
slowed down, especially in the mid-troposphere, where the positive trend
became neutral. We used the Chemical Lagrangian Model of the Stratosphere
(CLaMS) to determine the influence of the transport of ozone from the
stratosphere to the troposphere on the observed ozone profiles. CLaMS showed
a weak increase in the contribution of stratospheric ozone before the
decrease in 2011–2012 and a much more pronounced decrease after this time.
Because there is no tropospheric chemistry in CLaMS, the sudden decrease
simulated by CLaMS indicates that a smaller downward transport of ozone from
the stratosphere after 2012 may explain a significant part of the observed
decrease in ozone in the mid-troposphere and lower stratosphere. However,
the influence of stratospheric ozone in the lower troposphere is negligible
in CLaMS, and the hiatus in the positive trend after 2012 can be attributed
to a reduction in ozone precursors as a result of stronger pollution control
measures in Beijing.
Publisher
Copernicus GmbH
Subject
Atmospheric Science
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