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    Radiocarbon Age of Vertisols and its Interpretation Using Data on Gilgai Complex in the North Caucasus

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    Author
    Kovda, Irina
    Lynn, Warren
    Williams, Dewayne
    Chichagova, Olga
    Issue Date
    2001-01-01
    Keywords
    gilgai
    slopes
    parent materials
    Vertisols
    horizons
    Caucasus
    Northern Caucasus
    Stavropol region
    Stavropol Russian Federation
    soil profiles
    pedogenesis
    Holocene
    soils
    Russian Federation
    Europe
    Commonwealth of Independent States
    Cenozoic
    Quaternary
    C 14
    carbon
    dates
    isotopes
    radioactive isotopes
    absolute age
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    Citation
    Kovda, I., Lynn, W., Williams, D., & Chichagova, O. (2001). Radiocarbon age of Vertisols and its interpretation using data on gilgai complex in the north Caucasus. Radiocarbon, 43(2B), 603-610.
    Publisher
    Department of Geosciences, The University of Arizona
    Journal
    Radiocarbon
    Description
    From the 17th International Radiocarbon Conference held in Jerusalem, Israel, June 18-23, 2000.
    URI
    http://hdl.handle.net/10150/654567
    DOI
    10.1017/S0033822200041254
    Additional Links
    http://radiocarbon.webhost.uits.arizona.edu/
    Abstract
    Radiocarbon dates were analyzed to assess Vertisols age around the world. They show an increase of radiocarbon age from mainly modern-3000 BP in 0-100 cm layer up to 10,000 BP at a depth 100-200 cm. Older dates reflect the age of parent material. The inversion of 14C dates seems to be a frequent phenomenon in Vertisols. A series of new dates of Vertisols from gilgai microhigh, microslope and microlow in the North Caucasus was done in order to understand the nature of this inversion. 14C age in the gilgai soil complex ranges from 70 +/45 BP in the microlow to 5610 +/180 BP in the microhigh. A trend of similar depths being younger in the microslope and microlow was found. We explain this by intensive humus rejuvenation in the microlows due to water downward flow. The older date in the microhigh represents the old humus horizon sheared laterally close to the surface and preserved by impermeable water regime. We explain inversions of 14C age-depth curves by the sampling procedures. In a narrow pit, genetically different parts of former gilgai could easily be as a genetically uniform soil profile. Because of this strong microvariability, Vertisols require sampling in a trench accounting for gilgai elements, even when gilgai are not obvious.
    Type
    Proceedings
    text
    Language
    en
    ISSN
    0033-8222
    ae974a485f413a2113503eed53cd6c53
    10.1017/S0033822200041254
    Scopus Count
    Collections
    Radiocarbon, Volume 43, Number 2B (2001)

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