Seasonal origin of the thermal maxima at the Holocene and the last interglacial

间冰期 全新世 气候变化 冰原 地质学 自然地理学 冰芯 末次冰期最大值 气候状态 气候模式 气候学 古气候学 代理(统计) 全新世气候适宜期 全球变暖 海洋学 冰期 全球变暖的影响 地理 古生物学 机器学习 计算机科学
作者
Samantha C. Bova,Yair Rosenthal,Zhengyu Liu,Shital P. Godad,Mi Yan
出处
期刊:Nature [Nature Portfolio]
卷期号:589 (7843): 548-553 被引量:278
标识
DOI:10.1038/s41586-020-03155-x
摘要

Proxy reconstructions from marine sediment cores indicate peak temperatures in the first half of the last and current interglacial periods (the thermal maxima of the Holocene epoch, 10,000 to 6,000 years ago, and the last interglacial period, 128,000 to 123,000 years ago) that arguably exceed modern warmth1–3. By contrast, climate models simulate monotonic warming throughout both periods4–7. This substantial model–data discrepancy undermines confidence in both proxy reconstructions and climate models, and inhibits a mechanistic understanding of recent climate change. Here we show that previous global reconstructions of temperature in the Holocene1–3 and the last interglacial period8 reflect the evolution of seasonal, rather than annual, temperatures and we develop a method of transforming them to mean annual temperatures. We further demonstrate that global mean annual sea surface temperatures have been steadily increasing since the start of the Holocene (about 12,000 years ago), first in response to retreating ice sheets (12 to 6.5 thousand years ago), and then as a result of rising greenhouse gas concentrations (0.25 ± 0.21 degrees Celsius over the past 6,500 years or so). However, mean annual temperatures during the last interglacial period were stable and warmer than estimates of temperatures during the Holocene, and we attribute this to the near-constant greenhouse gas levels and the reduced extent of ice sheets. We therefore argue that the climate of the Holocene differed from that of the last interglacial period in two ways: first, larger remnant glacial ice sheets acted to cool the early Holocene, and second, rising greenhouse gas levels in the late Holocene warmed the planet. Furthermore, our reconstructions demonstrate that the modern global temperature has exceeded annual levels over the past 12,000 years and probably approaches the warmth of the last interglacial period (128,000 to 115,000 years ago). Reanalysis of Holocene sea surface temperature records affirms the role of retreating ice and rising greenhouse gases in driving a steady increase in global temperatures over the past 12,000 years.
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