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Biosignature Preservation Potential in Playa Evaporites: Impacts of Diagenesis and Implications for Mars Exploration.
Shkolyar, Svetlana; Farmer, Jack D.
Afiliación
  • Shkolyar S; School of Earth and Space Exploration, Arizona State University , Tempe, Arizona.
  • Farmer JD; School of Earth and Space Exploration, Arizona State University , Tempe, Arizona.
Astrobiology ; 18(11): 1460-1478, 2018 11.
Article en En | MEDLINE | ID: mdl-30124326
Assessing biosignature preservation potential (BPP) in ancient habitable environments on Mars is a top NASA priority. We address this goal through the study of Miocene-Pliocene evaporites of the Verde Formation (central Arizona). We assessed the effects of diagenesis on BPP, integrating outcrop-scale observations with six lab analyses: thin-section petrography, X-ray diffraction, Raman spectroscopy, total organic carbon (TOC), electron probe microanalysis (EPMA), and visible to near-infrared (VNIR) reflectance spectroscopy. We recognized five facies and their diagenetic pathways. Two facies included mudstones which contain clusters of displacive growth gypsum (DGG). Early DGG was altered during diagenesis by dissolution forming crystal cavities and later underwent recrystallization, cation substitution, and sulfate dehydration. Another facies was identified by lenticular beds dominated by halite and late diagenetic thenardite (Na2SO4). These pods are overlain by a sequence of interbedded gray and red mudstones which record cyclic oxidation and Fe-oxide cementation. During the Pleistocene, a lacustrine environment developed, accompanied by magnesite cementation of playa mudstones. TOC analyses were used as a proxy for inferring the BPP in each facies. The highest BPP was associated with both red and gray mudstone facies. This study provides a taphonomic framework for playa environments on Earth that record the impacts of diagenesis on BPP, with potential applications to Mars sample return (MSR) missions.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Marte / Exobiología / Medio Ambiente Extraterrestre / Minerales Idioma: En Revista: Astrobiology Asunto de la revista: BIOLOGIA Año: 2018 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Marte / Exobiología / Medio Ambiente Extraterrestre / Minerales Idioma: En Revista: Astrobiology Asunto de la revista: BIOLOGIA Año: 2018 Tipo del documento: Article