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Increased polar stratospheric ozone losses and delayed eventual recovery owing to increasing greenhouse-gas concentrations

机译:由于温室气体浓度增加,平流层极地臭氧损失增加,最终恢复延迟

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摘要

The chemical reactions responsible for stratospheric ozone depletion are extremely sensitive to temperature. Greenhouse gases warm the Earth's surface but cool the stratosphere radiatively and therefore affect ozone depletion. Here we investigate the interplay between projected future emissions of greenhouse gases and levels of ozone-depleting halogen species using a global climate model that incorporates simplified ozone-depletion chemistry. Temperature and wind changes induced by the increasing greenhouse-gas concentrations alter planetary-wave propagation in pur model, reducing the frequency of sudden stratospheric warmings in the Northern Hemisphere. This results in a more stable Arctic polar vortex, with significantly colder temperatures in the lower stratosphere and concomitantly increased ozone depletion. Increased concentrations of greenhouse gases might therefore be at least partly responsible for the very large Arctic ozone losses observed in recent winters. Arctic losses reach a maximum in the decade 2010 to 2019 in our model, roughly a decade after the maximum in stratospheric chlorine abundance. The mean losses are about the same as those over the Antarctic during the early 1990s, with geographically localized losses of up to two-thirds of the Arctic ozone column in the worst years. The severity and the duration of the Antarctic ozone hole are also predicted to increase because of greenhouse-gas-induced stratospheric cooling over the coming decades.
机译:导致平流层臭氧消耗的化学反应对温度极为敏感。温室气体使地球表面变暖,但辐射平流层变冷,因此影响臭氧消耗。在这里,我们使用整合了简化的臭氧消耗化学物质的全球气候模型,研究了预计的未来温室气体排放量与消耗臭氧层卤素物种水平之间的相互作用。在pur模型中,温室气体浓度增加引起的温度和风的变化改变了行星波的传播,从而降低了北半球平流层突然变暖的频率。这将导致北极极地涡旋更加稳定,平流层下部的温度显着降低,同时臭氧消耗也随之增加。因此,温室气体浓度的增加至少可以部分归因于最近冬季观测到的北极臭氧的大量损失。在我们的模型中,北极损失在2010年至2019年的十年间达到了最大值,大约是平流层氯丰度最大值之后的十年。平均损失与1990年代初的南极损失大致相同,在最坏的年份,按地理区域划分的损失高达北极臭氧柱的三分之二。由于在未来几十年中温室气体引起的平流层降温,预计南极臭氧洞的严重性和持续时间也会增加。

著录项

  • 来源
    《Nature》 |1998年第6676期|p.589-592|共4页
  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自然科学总论;
  • 关键词

  • 入库时间 2022-08-18 00:57:37

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