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    Changes in Ocean Ventilation Rates Over the Last 7000 Years Based on 14C Variations in the Atmosphere and Oceans

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    Author
    Peng, T.-H.
    Issue Date
    1989-01-01
    Keywords
    sea water
    atmosphere
    methods
    C 14
    carbon
    isotopes
    radioactive isotopes
    geochemistry
    
    Metadata
    Show full item record
    Citation
    Peng, T.-H. (1989). Changes in ocean ventilation rates over the last 7000 years based on 14C variations in the atmosphere and oceans. Radiocarbon, 31(3), 481-492.
    Publisher
    Department of Geosciences, The University of Arizona
    Journal
    Radiocarbon
    Description
    From the 13th International Radiocarbon Conference held in Dubrovnik, Yugoslavia, June 20-25, 1988.
    URI
    http://hdl.handle.net/10150/652961
    DOI
    10.1017/S0033822200012078
    Additional Links
    http://radiocarbon.webhost.uits.arizona.edu/
    Abstract
    Changes in the ocean ventilation rate may be one of the causes for a net decrease of 100 per mil Delta-14C in atmospheric CO2 over the last 8000 years. Ocean ventilation rates of the past can be derived from the 14C record preserved in planktonic and benthic foraminifera in deep-sea sediments. Results of 14C dating using accelerator mass spectrometry on deep sea sediments from the South China Sea show that the age differences between planktonic (G sacculifer) and benthic foraminifera increase from 1350 yr ca 7000 yr ago to 1590 yr at present. An 11-box geochemical model of global ocean circulation was used for this study. Both tree-ring-determined atmospheric 14C values and foraminifera 14C age differences are used as constraints to place limits on patterns of changes in ocean ventilation rates and in atmospheric 14C production rates. Results indicate: 1) 14C production rates in the atmosphere may have decreased by as much as 30% between 7000 and 3000 yr ago, and may have increased again by ca 15% in the past 2000 yr, and 2) the global ocean ventilation rate may not have been at steady state over the last 7000 yr, but may have slowed by as much as 35%.
    Type
    Proceedings
    text
    Language
    en
    ISSN
    0033-8222
    ae974a485f413a2113503eed53cd6c53
    10.1017/S0033822200012078
    Scopus Count
    Collections
    Radiocarbon, Volume 31, Number 3 (1989)

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