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High Earth-system climate sensitivity determined from Pliocene carbon dioxide concentrations

机译:由上新世二氧化碳浓度确定的高地球系统气候敏感性

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Climate sensitivity-the mean global temperature response to a doubling of atmospheric CO2 concentrations through radiative forcing and associated feedbacks-is estimated at 1.5-4.5 degrees C (ref. 1). However, this value incorporates only relatively rapid feedbacks such as changes in atmospheric water vapour concentrations, and the distributions of sea ice, clouds and aerosols(2). Earth-system climate sensitivity, by contrast, additionally includes the effects of long-term feedbacks such as changes in continental ice-sheet extent, terrestrial ecosystems and the production of greenhouse gases other than CO2. Here we reconstruct atmospheric carbon dioxide concentrations for the early and middle Pliocene, when temperatures were about 3-4 degrees C warmer than preindustrial values(3-5), to estimate Earth-system climate sensitivity from a fully equilibrated state of the planet. We demonstrate that only a relatively small rise in atmospheric CO2 levels was associated with substantial global warming about 4.5 million years ago, and that CO2 levels at peak temperatures were between about 365 and 415 ppm. We conclude that the Earth-system climate sensitivity has been significantly higher over the past five million years than estimated from fast feedbacks alone.
机译:气候敏感性(通过辐射强迫和相关反馈对大气中CO2浓度翻倍的平均全球温度响应)估计为1.5-4.5摄氏度(参考文献1)。但是,该值仅包含相对较快的反馈,例如大气中水蒸气浓度的变化以及海冰,云​​和气溶胶的分布(2)。相比之下,地球系统对气候的敏感性还包括长期反馈的影响,例如大陆冰盖范围的变化,陆地生态系统以及除二氧化碳以外的温室气体的产生。在这里,我们重建了上新世早期和中期的大气二氧化碳浓度,当时温度比工业化前的温度高3-5摄氏度(3-5),以从行星的完全平衡状态估算地球系统的气候敏感性。我们证明,大约450万年前,大气中二氧化碳水平的相对较小的升高与全球变暖有关,峰值温度的二氧化碳水平在365至415 ppm之间。我们得出的结论是,在过去的五百万年中,地球系统对气候的敏感性远高于仅根据快速反馈估算的敏感性。

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