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Timing and climate forcing of volcanic eruptions for the past 2,500 years

机译:过去2500年火山喷发的时间和气候强迫

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摘要

Volcanic eruptions contribute to climate variability, but quantifying these contributions has been limited by inconsistencies in the timing of atmospheric volcanic aerosol loading determined from ice cores and subsequent cooling from climate proxies such as tree rings. Here we resolve these inconsistencies and show that large eruptions in the tropics and high latitudes were primary drivers of interannual-to-decadal temperature variability in the Northern Hemisphere during the past 2,500 years. Our results are based on new records of atmospheric aerosol loading developed from high-resolution, multi-parameter measurements from an array of Greenland and Antarctic ice cores as well as distinctive age markers to constrain chronologies. Overall, cooling was proportional to the magnitude of volcanic forcing and persisted for up to ten years after some of the largest eruptive episodes. Our revised timescale more firmly implicates volcanic eruptions as catalysts in the major sixth-century pandemics, famines, and socioeconomic disruptions in Eurasia and Mesoamerica while allowing multi-millennium quantification of climate response to volcanic forcing.
机译:火山喷发导致气候变化,但对这些贡献的量化受到制于由冰芯确定的大气火山气溶胶装填时间和随后由诸如树木年轮等气候代理物降温的时间不一致的限制。在这里,我们解决了这些矛盾,并表明,在过去的2500年中,热带和高纬度地区的大喷发是北半球年际至年代际温度变化的主要驱动因素。我们的结果基于对大气气溶胶负荷的新记录,这些记录来自对格陵兰岛和南极冰芯的高分辨率,多参数测量以及独特的年龄标记,以约束年代。总体而言,降温与火山强迫的大小成正比,并在某些最大的爆发事件后持续了长达十年。我们修订后的时间表更坚定地暗示火山爆发是欧亚大陆和中美洲六世纪主要流行病,饥荒和社会经济破坏的催化剂,同时允许对千年气候变化对火山强迫的反应进行量化。

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