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    Robust Radiocarbon Dating of Wood Samples by High-Sensitivity Liquid Scintillation Spectroscopy in the 50–70 kyr Age Range

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    Author
    Hogg, Alan G.
    Fifield, L. Keith
    Palmer, Johnathan G.
    Turney, Chris S. M.
    Galbraith, Rex
    Issue Date
    2007-01-01
    
    Metadata
    Show full item record
    Citation
    Hogg, A. G., Fifield, L. K., Palmer, J. G., Turney, C. S. M., & Galbraith, R. (2007). Robust radiocarbon dating of wood samples by high-sensitivity liquid scintillation spectroscopy in the 50–70 kyr age range. Radiocarbon, 49(2), 379-391.
    Publisher
    Department of Geosciences, The University of Arizona
    Journal
    Radiocarbon
    Description
    From the 19th International Radiocarbon Conference held in Keble College, Oxford, England, April 3-7, 2006.
    URI
    http://hdl.handle.net/10150/653731
    DOI
    10.1017/S0033822200042314
    Additional Links
    http://radiocarbon.webhost.uits.arizona.edu/
    Abstract
    Although high-sensitivity liquid scintillation (LS) spectroscopy is theoretically capable of producing finite radiocarbon ages in the 50,000- to 70,000-yr range, there is little evidence in the literature that meaningful dates in this time period have been obtained. The pressing need to undertake calibration beyond 26 kyr has resulted in the regular publication of 14C results in excess of 50 kyr, yet very little effort has been made to demonstrate their accuracy or precision. There is a paucity of systematic studies of the techniques required to produce reliable dates close to background and the methods needed to assess contamination from either in situ sources or laboratory handling and processing. We have studied the requirements for producing accurate and reliable dates beyond 50 kyr. Laboratory procedures include optimization of LS spectrometers to obtain low and stable non-14C background count rates, use of low-background counting vials, large benzene volumes, long counting times, and preconditioning of vacuum lines. We also discuss the need for multiple analyses of a suitable material containing no original 14C (background blank) and the application of an appropriate statistical model to compensate for variability in background contamination beyond counting statistics. Accurate and reproducible finite ages 60 kyr are indeed possible by high-sensitivity LS spectroscopy, but require corroborating background blank data to be defensible.
    Type
    Proceedings
    text
    Language
    en
    ISSN
    0033-8222
    ae974a485f413a2113503eed53cd6c53
    10.1017/S0033822200042314
    Scopus Count
    Collections
    Radiocarbon, Volume 49, Number 2 (2007)

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