首页> 外文期刊>Atmospheric environment >Analysis of multi-year near-surface ozone observations at the WMO/GAW 'Concordia' station (75°06'S, 123°20'E, 3280 m a.s.1. - Antarctica)
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Analysis of multi-year near-surface ozone observations at the WMO/GAW 'Concordia' station (75°06'S, 123°20'E, 3280 m a.s.1. - Antarctica)

机译:WMO / GAW“康科迪亚”站(南纬75°06,东经123°20',3280 m a.s.1。-南极洲)多年近地表臭氧观测结果分析。

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摘要

This work focuses on the near-surface O-3 variability over the eastern Antarctic Plateau. In particular, eight years (2006-2013) of continuous observations at the WMO/GAW contributing station "Concordia" (Dome C-DMC: 75 degrees 06'S, 123 degrees 20'E, 3280 m) are presented, in the framework of the Italian Antarctic Research Programme (PNRA). First, the characterization of seasonal and diurnal O-3 variability at DMC is provided. Then, for the period of highest data coverage (2008-2013), we investigated the role of specific atmospheric processes in affecting near-surface summer O-3 variability, when O-3 enhancement events (OEEs) are systematically observed at DMC (average monthly frequency peaking up to 60% in December). As deduced by a statistical selection methodology, these OEEs are affected by a significant interannual variability, both in their average 03 values and in their frequency. To explain part of this variability, we analyzed OEEs as a function of specific atmospheric variables and processes: (i) total column of O-3 (TCO) and UV-A irradiance, (ii) long-range transport of air masses over the Antarctic Plateau (by Lagrangian back-trajectory analysis - LAGRANTO), (iii) occurrence of "deep" stratospheric intrusion events (by using the Lagrangian tool STLEFLUX). The overall near-surface O-3 variability at DMC is controlled by a day-to-day pattern, which strongly points towards a dominating influence of processes occurring at "synoptic" scales rather than "local" processes. Even if previous studies suggested an inverse relationship between OEEs and TCO, we found a slight tendency for the annual frequency of OEEs to be higher when TCO values are higher over DMC. The annual occurrence of OEEs at DMC seems related to the total time spent by air masses over the Antarctic plateau before their arrival to DMC, suggesting the accumulation of photochemically-produced O-3 during the transport, rather than a more efficient local production. Moreover, the identification of recent (i.e., 4-day old) stratospheric intrusion events by STEFLUX suggested only a minor influence (up to 3% of the period, in November) of "deep" events on the variability of near-surface summer O-3 at DMC.
机译:这项工作着重于南极高原东部近地表O-3的变化。特别是在WMO / GAW贡献站“ Concordia”(圆顶C-DMC:75度06'S,123度20'E,3280 m)上进行了连续八年(2006-2013年)观测。意大利南极研究计划(PNRA)。首先,提供了DMC季节性和昼夜O-3变异的特征。然后,在数据覆盖率最高的时期(2008-2013年),当在DMC上系统地观测到O-3增强事件(OEE)时,我们调查了特定大气过程在影响近地表夏季O-3变异中的作用。每月频率在12月达到峰值60%)。根据统计选择方法推论,这些OEE的平均值03值和频率均受到重大的年际变化的影响。为了解释这种可变性的一部分,我们分析了OEEs作为特定大气变量和过程的函数:(i)O-3(TCO)和UV-A辐照度的总列,(ii)在南极高原(通过拉格朗日反向轨迹分析-LAGRANTO),(iii)发生“深层”平流层侵入事件(通过使用拉格朗日工具STLEFLUX)。 DMC的总体近地表O-3变异性是由日常模式控制的,该模式强烈指出了以“天气”尺度而不是“局部”尺度发生的过程的主要影响。即使先前的研究表明OEE与TCO之间存在反比关系,但我们发现,当TCO值高于DMC时,OEE的年频率会略有增加。 OMC在DMC的年度发生似乎与南极高原上的空气团到达DMC之前所花费的总时间有关,这表明在运输过程中光化学生成的O-3的积累,而不是更有效的本地生产。此外,STEFLUX对最近(即4天大的)平流层入侵事件的识别表明,“深”事件对近地表夏季O的变异性影响较小(11月的3%)。 DMC处为-3。

著录项

  • 来源
    《Atmospheric environment》 |2018年第3期|54-63|共10页
  • 作者单位

    Inst Atmospher Sci & Climate, Natl Res Council Italy, CNR, Via Gobetti 101, I-40129 Bologna, Italy;

    Inst Atmospher Sci & Climate, Natl Res Council Italy, CNR, Via Gobetti 101, I-40129 Bologna, Italy;

    Inst Atmospher Sci & Climate, Natl Res Council Italy, CNR, Via Gobetti 101, I-40129 Bologna, Italy;

    Inst Atmospher Sci & Climate, Natl Res Council Italy, CNR, Via Gobetti 101, I-40129 Bologna, Italy;

    Inst Atmospher Sci & Climate, Natl Res Council Italy, CNR, Via Gobetti 101, I-40129 Bologna, Italy;

    ENEA, CR Casaccia, Lab Observat & Anal Earth & Climate, I-00123 Santa Maria Di Galeria, RM, Italy;

    ENEA, CR Casaccia, Lab Observat & Anal Earth & Climate, I-00123 Santa Maria Di Galeria, RM, Italy;

    Inst Atmospher Sci & Climate, Natl Res Council Italy, CNR, Via Gobetti 101, I-40129 Bologna, Italy;

    Inst Atmospher Sci & Climate, Natl Res Council Italy, CNR, Via Gobetti 101, I-40129 Bologna, Italy;

    Univ Florence, Dept Chem Ugo Schiff, Via Lastruccia 3, I-50019 Sesto Fiorentino, FI, Italy;

    Univ Florence, Dept Chem Ugo Schiff, Via Lastruccia 3, I-50019 Sesto Fiorentino, FI, Italy;

    Inst Atmospher Sci & Climate, Natl Res Council Italy, CNR, Via Gobetti 101, I-40129 Bologna, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Near-surface; O-3; Antarctica; STT; Photochemistry;

    机译:近表面;O-3;南极洲;STT;光化学;

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