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The influence of the stratospheric Quasi-Biennial Oscillation on trace gas levels at the Earth's surface

机译:平流层准二年期振荡对地球表面痕量气体水平的影响

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摘要

The Quasi-Biennial Oscillation (QBO) of tropical zonal wind is one of the most important modes of interannual variability in the stratosphere. It is well established that the QBO influences the distribution of trace gases throughout the global stratosphere. What has not been clearly shown thus far is whether the stratospheric QBO has a consistent and significant impact on tropospheric trace gases. Here we clearly demonstrate that the effects of QBO variability in stratospheric transport and trace gas distributions regularly and persistently extend into the troposphere, which influences the interannual variability of long-lived trace gas mole fractions at the Earth's surface. We show that the variability in the surface mole fractions on one- to five-year timescales is primarily driven by the QBO. The QBO influence on tropospheric constituent mole fractions arises from the modulation of the stratosphere to troposphere mass flux and is apparent in surface measurements, as well as throughout the stratosphere and troposphere in chemistry-climate model simulations of chlorofluorocarbon-11, chlorofluorocarbon-12 and nitrous oxide. The global total emissions estimated from measured changes in the global mean surface mole fractions of these ozone-depleting species, as well as other long-lived trace gases, will be improved by accurately accounting for the QBO-driven variability.
机译:热带地风的准双年振荡(QBO)是平流层中最重要的持续变异方式之一。 QBO在整个全球平行层中影响痕量气体的分布是很好的。到目前为止还没有清楚地表明是平流层QBO是否对对流层痕量气体具有一致而显着的影响。在这里,我们清楚地表明,QBO可变性在平流层运输和痕量气体分布中的影响定期并持续延伸到对流层中,这影响了地球表面长寿命痕量气体摩尔分数的续变性。我们表明,表面摩尔分数的可变性是一到五年时间尺寸的主要由QBO驱动。对流层对流层对对流层质量助熔剂的调节产生的QBO影响,并且在表面测量中显而易见,以及整个平流层和对流层中的化学 - 气候模型模拟氯氟烃-11,氯氟烃-12和亚氮氧化物。通过准确地核对QBO驱动的可变性,将改善从这些臭氧耗尽物种的全局平均表面摩尔分数以及其他长寿的痕量气体的测量变化的全局总排放。

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  • 来源
    《Nature geoscience》 |2020年第1期|共14页
  • 作者单位

    NOAA Chem Sci Div Earth Syst Res Lab Boulder CO 80305 USA;

    NOAA Chem Sci Div Earth Syst Res Lab Boulder CO 80305 USA;

    NOAA Chem Sci Div Earth Syst Res Lab Boulder CO 80305 USA;

    NOAA Chem Sci Div Earth Syst Res Lab Boulder CO 80305 USA;

    NOAA Global Monitoring Div Earth Syst Res Lab Boulder CO USA;

    Univ Colorado Cooperat Inst Res Environm Sci Boulder CO 80309 USA;

    NOAA Global Monitoring Div Earth Syst Res Lab Boulder CO USA;

    Univ Colorado Cooperat Inst Res Environm Sci Boulder CO 80309 USA;

    NOAA Chem Sci Div Earth Syst Res Lab Boulder CO 80305 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

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