• Title of article

    The 9th-Generation International Geomagnetic Reference Field International Association of Geomagnetism and Aeronomy (IAGA), Division V, Working Group 8

  • Author/Authors

    Macmillan، S. نويسنده , , Maus، S. نويسنده , , Bondar، T. نويسنده , , Chambodut، A. نويسنده , , Golovkov، V. نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2003
  • Pages
    -1050
  • From page
    1051
  • To page
    0
  • Abstract
    We report in situ measurements of O-isotopic compositions of magnetite, olivine and pyroxene in chondrules of the Ningqiang anomalous carbonaceous chondrite. The petrographic setting of Ningqiang magnetite is similar to those in oxidized-CV chondrites such as Allende, where magnetite is found together with Ni-rich metal and sulfide in opaque assemblages in chondrules. Both magnetite and silicate oxygen data fall close to the carbonaceous-chondrite-anhydrous-mineral line with relatively large ranges in (delta)18O in magnetite (-4.9 to +4.2‰) and in silicates (-15.2 to -4.5‰). Magnetite and silicates are not in O-isotopic equilibrium: the weighted average (delta)17O (=(delta)17O - 0.52 × (delta)18O) values of magnetite are 1.7 to 3.6‰ higher than those of the silicates in the same chondrules. The petrological characteristics and O-isotopic disequilibrium between magnetite and silicates suggest the formation of Ningqiang magnetite by the oxidation of preexisting metal grains by an aqueous fluid during parent body alteration. The weighted average (delta)17O of -3.3 ± 0.3‰ is the lowest magnetite value measured in unequilibrated chondrites and there is a positive correlation between ?17O values of magnetite and silicates in each chondrule. These observations indicate that, during aqueous alteration in the Ningqiang parent asteroid, the water/rock ratio was relatively low and O-isotopic exchange between the fluid and chondrule silicates occurred on the scale of individual chondrules.
  • Keywords
    IGRF , SECULAR VARIATION , geomagnetic field model , geomagnetic reference field
  • Journal title
    GEOPHYSICAL JOURNAL INTERNATIONAL
  • Serial Year
    2003
  • Journal title
    GEOPHYSICAL JOURNAL INTERNATIONAL
  • Record number

    71193