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古新世-始新世极热事件起始持续时间的限制因素。

Constraints on the onset duration of the Paleocene-Eocene Thermal Maximum.

作者信息

Turner Sandra Kirtland

机构信息

Department of Earth Sciences, University of California, Riverside, CA 92521, USA

出版信息

Philos Trans A Math Phys Eng Sci. 2018 Oct 13;376(2130). doi: 10.1098/rsta.2017.0082.

Abstract

The Paleocene-Eocene Thermal Maximum (PETM, approx. 56 Ma) provides a test case for investigating how the Earth system responds to rapid greenhouse gas-driven warming. However, current rates of carbon emissions are approximately 10 Pg C yr, whereas those proposed for the PETM span orders of magnitude-from ≪1 Pg C yr to greater than the anthropogenic rate. Emissions rate estimates for the PETM are hampered by uncertainty over the total mass of PETM carbon released as well as the PETM onset duration. Here, I review constraints on the onset duration of the carbon isotope excursion (CIE) that is characteristic of the event with a focus on carbon cycle model-based attempts that forgo the need for a traditional sedimentary age model. I also review and compare existing PETM carbon input scenarios employing the Earth system model cGENIE and suggest another possibility-that abrupt input of an isotopically depleted carbon source combined with elevated volcanic outgassing over a longer interval can together account for key features of the PETM CIE.This article is part of a discussion meeting issue 'Hyperthermals: rapid and extreme global warming in our geological past'.

摘要

古新世-始新世极热事件(PETM,约5600万年前)为研究地球系统如何应对由温室气体驱动的快速变暖提供了一个测试案例。然而,当前的碳排放速率约为每年10Pg碳,而据推测PETM时期的碳排放速率跨越了几个数量级——从每年远低于1Pg碳到高于人为排放速率。PETM碳排放速率的估算受到PETM释放的碳总量以及PETM开始持续时间不确定性的阻碍。在此,我回顾了对该事件具有特征性的碳同位素偏移(CIE)开始持续时间的限制条件,重点关注基于碳循环模型的尝试,这些尝试无需传统的沉积年龄模型。我还回顾并比较了使用地球系统模型cGENIE的现有PETM碳输入情景,并提出了另一种可能性——同位素贫化碳源的突然输入与较长时间内火山排气增加共同作用,可以解释PETM CIE的关键特征。本文是“高温事件:地质历史时期快速而极端的全球变暖”讨论会议文集的一部分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6409/6127381/7cf1512d61cb/rsta20170082-g2.jpg

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