• Title of article

    Stable isotope composition of smectite in suevites at the Ries crater, Germany: Implications for hydrous alteration of impactites

  • Author/Authors

    Muttik، نويسنده , , Nele and Kirsimنe، نويسنده , , Kalle and Vennemann، نويسنده , , Torsten W.، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2010
  • Pages
    6
  • From page
    190
  • To page
    195
  • Abstract
    The 24-km diameter Ries crater, Germany, exhibits well-preserved crater filling and surficial melt-rich breccia deposits that are believed to have been altered by post-impact hydrothermal fluids. The alteration mineralogy of the crater filling breccias is characterized by clay (smectite, chlorite) and a zeolite assemblage, and secondary clay phases (smectite, minor halloysite) in surficial melt-bearing breccia deposits. Using stable isotope analysis of secondary smectitic clay fractions, evidence of significant hydrous alteration of impactites at large water/rock ratios was found. The estimated fluid temperatures, using data derived by δ18O and δD fractionation, suggest smectite precipitation in surficial breccias in equilibrium with meteoric fluids at temperatures 16 ± 5 °C in agreement with the long-term variation of modern precipitation in the area. The stable isotope composition of smectite in crater-fill breccia, however, suggests a trend of monotonously increasing temperatures from 43 to 112 °C, with increasing depth through the breccia sequence. This demonstrates a different origin of alteration and temperature distribution for the surficial and crater filling melt-bearing impact breccias in the Ries crater. Our results suggest that the inverted structure of hydrothermal systems observed in some terrestrial impact craters, including the Ries crater, could indicate the initial configuration of a thermal anomaly in the crater filling sequence, but which is replaced with a normal hydrothermal convection in crater proper, during the course of post-impact cooling.
  • Keywords
    Ries Crater , Stable isotope composition , suevite , smectite , fluid temperature , Hydrothermal alteration
  • Journal title
    Earth and Planetary Science Letters
  • Serial Year
    2010
  • Journal title
    Earth and Planetary Science Letters
  • Record number

    2328660