Regional and global benthic δ18O stacks for the last glacial cycle

L. Lisiecki, J. Stern
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引用次数: 100

Abstract

Although detailed age models exist for some marine sediment records of the last glacial cycle (0–150 ka), age models for many cores rely on the stratigraphic correlation of benthic δ18O, which measures ice volume and deep ocean temperature change. The large amount of data available for the last glacial cycle offers the opportunity to improve upon previous benthic δ18O compilations, such as the “LR04” global stack. Not only are the age constraints for the LR04 stack now outdated but a single global alignment target neglects regional differences of several thousand years in the timing of benthic δ18O change during glacial terminations. Here we present regional stacks that characterize mean benthic δ18O change for 8 ocean regions and a volume-weighted global stack of data from 263 cores. Age models for these stacks are based on radiocarbon data from 0 to 40 ka, correlation to a layer-counted Greenland ice core from 40 to 56 ka, and correlation to radiometrically dated speleothems from 56 to 150 ka. The regional δ18O stacks offer better stratigraphic alignment targets than the LR04 global stack and, furthermore, suggest that the LR04 stack is biased 1–2 kyr too young throughout the Pleistocene. Finally, we compare global and regional benthic δ18O responses with sea level estimates for the last glacial cycle.
末次冰期旋回的区域和全球底栖生物δ18O栈
虽然存在一些末次冰期(0-150 ka)海洋沉积物记录的详细年龄模型,但许多岩心的年龄模型依赖于底栖生物δ18O的地层对比,该模型测量冰体积和深海温度变化。最后一次冰期旋回的大量可用数据为改进以前的底栖生物δ18O汇编提供了机会,例如“LR04”全球堆栈。不仅LR04叠的年龄限制现在已经过时,而且单一的全球对准目标忽略了在冰川终止期间底栖生物δ18O变化时间上几千年的区域差异。在这里,我们提供了表征8个海洋区域平均底栖生物δ18O变化的区域堆栈和来自263个岩心的体积加权全球数据堆栈。这些叠层的年龄模型是基于0至40 ka的放射性碳数据,与40至56 ka的分层计数格陵兰冰芯的相关性,以及与56至150 ka的放射性测年洞穴的相关性。区域性δ18O叠组比LR04全球叠组提供了更好的地层找准目标,进一步表明LR04叠组在更新世的年龄偏小1 ~ 2 kyr。最后,我们将全球和区域底栖生物δ18O响应与末次冰期的海平面估计进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Paleoceanography
Paleoceanography 地学-地球科学综合
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6-12 weeks
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