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Temperature seasonality in the North American continental interior during the Early Eocene Climatic Optimum

机译:始新世早期气候最佳时期北美大陆内部的温度季节性

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摘要

Paleogene greenhouse climate equability has long been a paradox in paleoclimate research. However, recent developments in proxy and modeling methods have suggested that strong seasonality may be a feature of at least some greenhouse Earth periods. Here we present the first multi-proxy record of seasonal temperatures during the Paleogene from paleofloras, paleosol geochemistry, and carbonate clumped isotope thermometry in the Green River Basin (Wyoming, USA). These combined temperature records allow for the reconstruction of past seasonality in the continental interior, which shows that temperatures were warmer in all seasons during the peak Early Eocene Climatic Optimum and that the mean annual range of temperatures was high, similar to the modern value (similar to 26 degrees C). Proxy data and down-scaled Eocene regional climate model results suggest amplified seasonality during greenhouse events. Increased seasonality reconstructed for the early Eocene is similar in scope to the higher seasonal range predicted by downscaled climate model ensembles for future high-CO2 emissions scenarios. Overall, these data and model comparisons have substantial implications for understanding greenhouse climates in general, and may be important for predicting future seasonal climate regimes and their impacts in continental regions.
机译:古基因温室气候公平性一直是古气候研究中的一个悖论。但是,代理和建模方法的最新发展表明,强烈的季节性可能是至少某些温室地球时期的特征。在这里,我们展示了古河流域古生物,古土壤地球化学和格林河盆地(美国怀俄明州)的碳酸盐成簇同位素温度计的古近纪季节温度的第一份多代理记录。这些综合的温度记录可以重建大陆内部过去的季节性,这表明在始新世最佳气候最佳高峰期间,所有季节的温度都较高,并且平均年温度范围较高,与现代值相似(相似至26摄氏度)。代理数据和按比例缩小的始新世区域气候模型结果表明,温室事件期间的季节性增加。始新世早期重建的增加的季节性与范围缩小的气候模型预测的较高季节范围相似,该模型适用于未来的高二氧化碳排放情景。总体而言,这些数据和模型比较对于总体理解温室气候具有重要意义,并且对于预测未来的季节性气候状况及其对大陆地区的影响可能很重要。

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  • 来源
    《Climate of the past》 |2018年第10期|1391-1404|共14页
  • 作者单位

    Columbia Univ, Lamont Doherty Earth Observ, Palisades, NY 10964 USA;

    North Carolina State Univ, Dept Marine Earth & Atmospher Sci, Box 8208, Raleigh, NC 27695 USA;

    Univ Washington, Dept Earth & Space Sci, Seattle, WA 98195 USA;

    Univ Michigan, Dept Earth & Environm Sci, Ann Arbor, MI 48104 USA;

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