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Global ozone depletion and increase of UV radiation caused by pre-industrial tropical volcanic eruptions

机译:全球臭氧消耗和紫外线辐射的增加,引起的热带火山爆发引起

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摘要

Large explosive tropical volcanic eruptions inject high amounts of gases into the stratosphere, where they disperse globally through the large-scale meridional circulation. There is now increasing observational evidence that volcanic halogens can reach the upper troposphere and lower stratosphere. Here, we present the first study that combines measurement-based data of sulfur, chlorine and bromine releases from tropical volcanic eruptions with complex coupled chemistry climate model simulations taking radiative-dynamical-chemical feedbacks into account. Halogen model input parameters represent a size-time-region-wide average for the Central American eruptions over the last 200 ka ensuring a comprehensive perspective. The simulations reveal global, long-lasting impact on the ozone layer affecting atmospheric composition and circulation for a decade. Column ozone drops below 220 DU (ozone hole conditions) in the tropics, Arctic and Antarctica, increasing biologically active UV by 80 to 400%. Our model results could potentially be validated using high-resolution proxies from ice cores and pollen records.
机译:大型爆炸性热带火山喷发将大量气体注入平流层,在那里通过大规模的经络循环全球化。现在存在越来越多的观察证据,即火山卤素可以达到上层对流层和较低的平流层。在这里,我们提出了将基于测量的硫,氯和溴的数据与热带火山爆发结合的第一研究与复杂的耦合化学气候模拟模拟考虑辐射动态化学反馈。卤素模型输入参数代表过去200 kA的中美洲爆发的尺寸时级平均值,确保了全面的观点。模拟揭示了对影响大气成分和十年循环的臭氧层的全球性,长期影响。臭氧滴落在热带,北极和南极洲的220 du(臭氧孔条件)以下,将生物活性紫外线增加80%至400%。我们的模型结果可能会使用来自冰核和花粉记录的高分辨率代理进行验证。

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