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Experimental and theoretical investigation of stratospheric ozone depletion in the northern hemisphere caused by heterogeneous chemistry.

机译:异质化学作用导致北半球平流层臭氧消耗的实验和理论研究。

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摘要

Stratospheric ozone is of crucial importance for life on Earth. This thin layer protects us from the ultraviolet solar radiation and also works as a greenhouse gas that helps maintaining our climate. Large changes in thickness and vertical distribution of the ozone abundance may have detrimental effects on life on Earth. But even small changes could have considerable impact on UV irradiance, bio-production and cancer rates. During the last decade record low spring time vertical column amounts of stratospheric ozone have been observed over Northern Europe. However, this decrease is not as severe as the depletion observed over Antarctica and at mid-latitudes in the Southern Hemisphere. The discovery of the spring time stratospheric ozone depletion first in Antarctica and later in the Arctic has triggered international research efforts on stratospheric ozone chemistry and the possible effects of human activities on the ozone layer.; Ground-based differential optical absorption spectroscopy measurements of NO2 and ozone have been performed over Fairbanks (65°N) and Ny-Ålesund (79°N) during the 1994–95 season.; In this work we present improvements to ground based differential optical spectroscopy measurements by improving dark current corrections and spectral fitting of spectrographic photo diode array detector measurements. We have also improved the retrieval of vertical column amounts from diffuse light measurements by improving the corrections for seasonal changes in absorber air mass. This is particularly important at high latitudes.; We used these data together with local weather and ozone sounding data, and with trace gas and aerosol data measured by other ground based instruments and by instruments deployed on satellites. This comprehensive dataset was used to investigate the performance of two current state of the art chemical transport models with and without the presence of heterogeneous chemistry. These are the University of Cambridge SLIMCAT model and the University of Oslo SCTM-1 model. They were selected because the SLIMCAT is designed for process studies and comparison with measured data while the SCTM-1 is designed for prognostic and sensitivity studies aimed at predicting future development of the stratospheric ozone layer. We have used the models to study the sensitivity of the heterogeneous chemistry to stratospheric meteorological conditions and the effect of sulfuric acid aerosols and polar stratospheric clouds on the stratospheric ozone abundance and ozone chemistry at high- and mid-latitudes in the Northern Hemisphere.
机译:平流层臭氧对地球上的生命至关重要。这种薄层可以保护我们免受紫外线辐射的伤害,还可以作为温室气体来帮助维持气候。臭氧丰度的厚度和垂直分布的巨大变化可能会对地球上的生命产生不利影响。但是,即使是很小的变化也可能对紫外线辐射,生物生产和癌症发生率产生重大影响。在过去的十年中,北欧地区平流层臭氧的春季垂直柱含量低,创下历史记录。但是,这种下降没有南极和南半球中纬度地区观测到的那样严重。春季首先在南极洲发现北极平流层臭氧消耗,后来在北极发现,这引发了国际上对平流层臭氧化学以及人类活动可能对臭氧层的影响的研究。在1994-95季节,已经在费尔班克斯(65°N)和奈-奥勒松(79°N)上对NO 2 和臭氧进行了基于地面的差分光学吸收光谱测量。在这项工作中,我们通过改进暗电流校正和光谱光电二极管阵列检测器测量的光谱拟合,提出了基于地面的差分光谱测量的改进。通过改进对吸收器空气质量的季节性变化的校正,我们还改善了从漫射光测量中检索垂直柱量的能力。这在高纬度地区尤其重要。我们将这些数据与本地天气和臭氧探测数据以及其他地面仪器和部署在卫星上的仪器测量的痕量气体和气溶胶数据一起使用。该综合数据集用于研究存在和不存在异构化学的两种当前最先进的化学传输模型的性能。它们是剑桥大学的SLIMCAT模型和奥斯陆大学的SCTM-1模型。之所以选择它们,是因为SLIMCAT是为过程研究和与测量数据进行比较而设计的,而SCTM-1是为预测平流层臭氧层的未来发展而进行的预后和敏感性研究而设计的。我们已使用这些模型研究了非均相化学对平流层气象条件的敏感性,以及硫酸气溶胶和极地平流层云对北半球高纬度和中纬度平流层臭氧丰度和臭氧化学的影响。

著录项

  • 作者

    Storvold, Rune.;

  • 作者单位

    University of Alaska Fairbanks.;

  • 授予单位 University of Alaska Fairbanks.;
  • 学科 Physics Atmospheric Science.; Environmental Sciences.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 136 p.
  • 总页数 136
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 大气科学(气象学);环境科学基础理论;
  • 关键词

  • 入库时间 2022-08-17 11:46:50

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