图书馆学
引用
生物地球科学
冰期
下载
地质学
地球科学
万维网
计算机科学
古生物学
作者
Brian A. Schubert,A. Hope Jahren
出处
期刊:Geology
[Geological Society of America]
日期:2015-03-20
卷期号:43 (5): 435-438
被引量:122
摘要
Changes in the carbon isotope composition of terrestrial plant tissue (d13C) are widely cited for evidence of shifts in climate, vegeta-tion, or atmospheric chemistry across a wide range of time scales. A global compilation of d13C data from fossil leaves and bulk terrestrial organic matter (TOM) spanning the past 30 k.y., however, shows wide variability and no discernable trend. Here we analyze these data in terms of a relative change in net carbon isotope fractionation between the d13C value of plant tissue and that of atmospheric CO2 [D13C = (d13CCO2 – d13C)/(1 + d13C/1000)] and identify a global 2.1 ‰ shift in leaf and TOM D13C that is synchronous with a global rise in pCO2 documented from ice core data. We apply a relationship describing the effect of pCO2 on D13C to the global record of D13C change docu-mented here to reconstruct pCO2 levels across the past 30 k.y. Our reconstructed pCO2 levels are in excellent agreement with the ice core data and underscore the potential of the global terrestrial d13C record to serve as an accurate pCO2 proxy.
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