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Eocene greenhouse climate revealed by coupled clumped isotope-Mg/Ca thermometry

机译:团簇同位素Mg / Ca测温法揭示的始新世温室气候

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摘要

Past greenhouse periods with elevated atmospheric CO2 were characterized by globally warmer sea-surface temperatures (SST). However, the extent to which the high latitudes warmed to a greater degree than the tropics (polar amplification) remains poorly constrained, in particular because there are only a few temperature reconstructions from the tropics. Consequently, the relationship between increased CO2, the degree of tropical warming, and the resulting latitudinal SST gradient is not well known. Here, we present coupled clumped isotope (Δ47)-Mg/Ca measurements of foraminifera from a set of globally distributed sites in the tropics and midlatitudes. Δ47 is insensitive to seawater chemistry and therefore provides a robust constraint on tropical SST. Crucially, coupling these data with Mg/Ca measurements allows the precise reconstruction of Mg/Casw throughout the Eocene, enabling the reinterpretation of all planktonic foraminifera Mg/Ca data. The combined dataset constrains the range in Eocene tropical SST to 30–36 °C (from sites in all basins). We compare these accurate tropical SST to deep-ocean temperatures, serving as a minimum constraint on high-latitude SST. This results in a robust conservative reconstruction of the early Eocene latitudinal gradient, which was reduced by at least 32 ± 10% compared with present day, demonstrating greater polar amplification than captured by most climate models.
机译:过去温室气体含量较高的温室时期的特征是全球海表温度(SST)升高。但是,高纬度比热带暖化的程度(极性放大)的程度仍然受到限制,特别是因为热带地区仅有很少的温度重构。因此,二氧化碳增加,热带变暖程度和由此产生的纬向海表温度梯度之间的关系尚不清楚。在这里,我们介绍了来自热带和中纬度地区一组全球分布地点的有孔虫的成簇聚集同位素(Δ47)-Mg / Ca测量。 Δ47对海水化学反应不敏感,因此对热带SST提供了强大的约束条件。至关重要的是,将这些数据与Mg / Ca测量值结合在一起可以在整个始新世精确地重建Mg / Casw,从而能够重新解释所有浮游有孔虫Mg / Ca数据。合并的数据集将始新世热带海表温度范围限制在30–36°C(来自所有盆地的站点)。我们将这些准确的热带海表温度与深海温度进行了比较,以此作为对高纬度海表温度的最小限制。这导致了始新世纬度梯度的稳健保守重建,与今天相比,该梯度至少降低了32±10%,这表明极性放大倍数比大多数气候模型都大。

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