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    Mineralogical Studies on Bone Apatite and Their Implications for Radiocarbon Dating

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    Author
    Hassan, Afifa A.
    Termine, John D.
    Haynes, C. Vance
    Issue Date
    1977-01-01
    Keywords
    analysis
    collagen
    X ray analysis
    phosphates
    apatite
    minerals
    X ray diffraction analysis
    archaeological sites
    Holocene
    proteins
    organic compounds
    organic materials
    United States
    bones
    Cenozoic
    Quaternary
    methods
    geochronology
    C 14
    carbon
    isotopes
    radioactive isotopes
    absolute age
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    Citation
    Hassan, A. A., Termine, J. D., & Haynes, C. V. (1977). Mineralogical studies on bone apatite and their implications for radiocarbon dating. Radiocarbon, 19(3), 364-374.
    Publisher
    American Journal of Science
    Journal
    Radiocarbon
    URI
    http://hdl.handle.net/10150/652413
    DOI
    10.1017/S0033822200003684
    Additional Links
    http://radiocarbon.webhost.uits.arizona.edu/
    Abstract
    Infrared (IR) spectrophotometry and X-ray diffraction (XRD) were conducted on modern and fossil bone material from archaeological sites in the U S to determine post-mortem changes in bone apatite and to evaluate the effect of these changes on radiocarbon dating. IR absorption bands, XRD peak-broadening parameters, and XRD unit cell measurements indicated that during fossilization, bone apatite, a mineral similar to dahllite, was partially or completely recrystallized to francolite. Post-mortem changes involved then removal of some of the endogenous crystal carbonate both at surfaces and at internal OH-sites and introduction of exogenous carbonate into internal crystal P04 sites. Increased fluorine content accompanied carbonate substitution. Both the carbon isotopic composition and the amount of exogenous carbonate introduced into the apatite structure will affect the radiocarbon dating of bone apatite. Special sample pre-treatment may remove most of the substituted carbonate in some cases. Simulated experiments are suggested for a better understanding of the nature and mechanism of carbonate substitution in bone apatite for the removal of the exogenously substituted carbon and the improvement of radiocarbon dates.
    Type
    Article
    text
    Language
    en
    ISSN
    0033-8222
    ae974a485f413a2113503eed53cd6c53
    10.1017/S0033822200003684
    Scopus Count
    Collections
    Radiocarbon, Volume 19, Number 3 (1977)

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