• Title of article

    Fe Mِssbauer spectroscopy as a tool in astrobiology

  • Author/Authors

    Schrِder، نويسنده , , Christian and Bailey، نويسنده , , Brad and Klingelhِfer، نويسنده , , Gِstar and Staudigel، نويسنده , , Hubert، نويسنده ,

  • Issue Information
    روزنامه با شماره پیاپی سال 2006
  • Pages
    13
  • From page
    1622
  • To page
    1634
  • Abstract
    The element Fe and Fe-bearing minerals occur ubiquitously throughout the field of astrobiology. Cycling between the various oxidation states of Fe provides a source of energy available for life. Banded iron formations may record the rise of oxygenic photosynthesis. The distribution of Fe between Fe-bearing minerals and its oxidation states can help to characterize and understand ancient environments with respect to the suitability for life by constraining the primary rock type and the redox conditions under which it crystallized, the extent of alteration and weathering, the type of alteration and weathering products, and the processes and environmental conditions for alteration and weathering. Fe Mِssbauer spectroscopy is a powerful tool to investigate Fe-bearing compounds. It can identify Fe-bearing minerals, determine Fe oxidation states with high accuracy, quantify the distribution of Fe between mineralogical phases, and provide clues about crystallinity and particle sizes. Two miniaturized Mِssbauer spectrometers are on board of the NASA Mars Exploration Rovers Spirit and Opportunity. The Fe-bearing minerals goethite, an iron oxide-hydroxide, and jarosite, an iron hydroxide sulfate, were identified by Mِssbauer spectroscopy in Gusev Crater and at Meridiani Planum, respectively, providing in situ proof of an aqueous history of the two landing sites and constraints on their habitability. Hematite identified by Mِssbauer spectroscopy at both landing sites adds further evidence for an aqueous history. On Earth, Mِssbauer spectroscopy was used to monitor possibly microbially-induced changes of Fe-oxidation states in basaltic glass samples exposed at the Loihi Seamount, a deep sea hydrothermal vent system, which might be analogous to possible extraterrestrial habitats on ancient Mars or the Jovian moon Europa today.
  • Keywords
    Biogeochemistry , Mars , hydrothermal vent , Mِssbauer spectroscopy , astrobiology
  • Journal title
    PLANETARY AND SPACE SCIENCE
  • Serial Year
    2006
  • Journal title
    PLANETARY AND SPACE SCIENCE
  • Record number

    2312803