• Title of article

    Search for the mantle nitrogen in the ultramafic xenoliths from San Carlos, Arizona

  • Author/Authors

    Mohapatra، نويسنده , , R.K and Murty، نويسنده , , S.V.S، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2000
  • Pages
    16
  • From page
    305
  • To page
    320
  • Abstract
    Mineral separates (olivine (Ol), clinopyroxene (Cp), and orthopyroxene (Op)) of ultramafic xenoliths from San Carlos have been analyzed for nitrogen and noble gases in an effort to evaluate the isotopic signatures for the sub-continental mantle. The concentrations of noble gases are generally small, but in one clinopyroxene separate (Cp1) they are about an order of magnitude higher. The gases seem mostly to be sited in fluid inclusions. Elevated isotopic ratios of 20Ne/22Ne, 40Ar/36Ar, 129,134,136Xe/132Xe with respect to air clearly show the presence of mantle noble gas components in San Carlos xenoliths. Isotopic ratios of Xe and Ar show that the noble gas systematics in San Carlos xenoliths can be explained as a mixture of MORB and air-like components. Nitrogen contents in these separates range from 0.1 to 1.5 ppm, the δ15N varying from 2 to 5‰ in totals and from −9 to +10‰ in the temperature fractions. The nitrogen data can be explained by the presence of at least three components: (a) a light nitrogen component (δ15N ≤−9‰) of mantle origin, (b) a heavy nitrogen component (δ15N≥15‰) from recycled materials and (c) an air-like nitrogen component (δ15N=0‰) which is incorporated during the emplacement of the host magma. While the noble gas isotopic ratios cannot clearly distinguish between an atmospheric and a recycled component, δ15N clearly resolves these two. Using the noble gas and nitrogen isotopic systematics and the end member values from the literature, a contribution of 30 to 60% recycled nitrogen component has been estimated in the mantle source region of San Carlos xenoliths.
  • Keywords
    Sub-continental mantle , Nitrogen , Ultramafic xenoliths , noble gases , Recycled component
  • Journal title
    Chemical Geology
  • Serial Year
    2000
  • Journal title
    Chemical Geology
  • Record number

    2256493