The Dole effect and its variations during the last 130,000 years as measured in the Vostok ice core

International audience We review the current understanding of the Dole effect (the observed difference between the •5180 of atmospheric 0 2 and that of seawater) and its causes, extend the record of variations in the Dole effect back to 130 kyr before present using data on the •5180 of 0 2 obtained...

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Bibliographic Details
Published in:Global Biogeochemical Cycles
Main Authors: Bender, Michael, Sowers, Todd, Labeyrie, Laurent
Other Authors: University of Rhode Island (URI), Centre des Faibles Radioactivités, Commissariat à l'énergie atomique et aux énergies alternatives (CEA)-Centre National de la Recherche Scientifique (CNRS)
Format: Article in Journal/Newspaper
Language:English
Published: HAL CCSD 1994
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Online Access:https://hal.science/hal-03587354
https://hal.science/hal-03587354/document
https://hal.science/hal-03587354/file/Global%20Biogeochemical%20Cycles%20-%20September%201994%20-%20Bender%20-%20The%20Dole%20Effect%20and%20its%20variations%20during%20the%20last%20130%20000%20years.pdf
https://doi.org/10.1029/94GB00724
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Summary:International audience We review the current understanding of the Dole effect (the observed difference between the •5180 of atmospheric 0 2 and that of seawater) and its causes, extend the record of variations in the Dole effect back to 130 kyr before present using data on the •5180 of 0 2 obtained from studying the Vostok ice core (Sowers et al., 1993), and discuss the significance of temporal variations. The Dole effect reflects oxygen isotope fractionation during photosynthesis, respiration, and hydrologic processes (evaporation, precipitation, and evapotranspiration). Our best prediction of the present-day Dole effect, +20.8 %0, is considerably lower than the observed value, + 23.5 %0, and we discuss possible causes of this discrepancy. During the past 130 kyr, the Dole effect has been 0.05 %0 lower than the present value, on average. The standard deviation of the Dole effect from the mean has been only _+ 0.2 %0, and the Dole effect is nearly unchanged between glacial maxima and interglacial periods. The small variability in the Dole effect suggests that relative rates of primary production in the land and marine realms have been relatively constant. Most periodic variability in the Dole effect is in the precession band, suggesting that changes in this global biogeochemical term reflects variations in low-latitude land hydrology and productivity or possibly variability in low-latitude oceanic productivity.