Published June 1997 | Version Published
Journal Article Open

Changing atmospheric Δ^(14)C and the record of deep water paleoventilation ages

Abstract

We propose a new calculation method to better estimate the deep water ventilation age from benthic-planktonic foraminifera ^(14)C ages. Our study is motivated by the fact that changes in atmospheric Δ^(14)C through time can cause contemporary benthic and planktonic foraminifera to have different initial Δ^(14)C values. This effect can cause spurious ventilation age changes to be interpreted from the geologic data. Using a new calculation method, ^(14)C projection ages, we recalculate the data from the Pacific Ocean. Contrary to previous results, we find that the Pacific intermediate and deep waters were about 600 years older than today at the last glacial maximum. In addition, there are possible signals of ventilation age change prior to ice sheet melting and at the Younger Dryas. However, the data are still too sparse to constrain these ventilation transients.

Additional Information

© 1997 American Geophysical Union. Received 19 September 1996; accepted 26 January 1997; published 1 June 1997. We would like to thank Delia Oppo, Nick Shackleton and Daniel Sigman for helpful discussions. Edouard Bard, J. R. Toggweiler and M. L. Delaney provided constructive reviews of the manuscript. J. F. A. was supported by a NASA Global Change Fellowship and a grant from the Tokyo Electric and Power Company. We gratefully acknowledge the support of NSF grant# OCE-94-02198 and NOAA grant # NA46GP0282.

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Identifiers

Eprint ID
33600
Resolver ID
CaltechAUTHORS:20120828-100049534

Funding

NASA Global Change Fellowship
Tokyo Electric and Power Company
NSF
OCE-94-02198
NOAA
NA46GP0282

Dates

Created
2012-08-28
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Updated
2021-11-09
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