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      Indigenous Organic‐Oxidized Fluid Interactions in the Tissint Mars Meteorite

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          Search for Past Life on Mars: Possible Relic Biogenic Activity in Martian Meteorite ALH84001

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            Identification of hydrated silicate minerals on Mars using MRO-CRISM: Geologic context near Nili Fossae and implications for aqueous alteration

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              Organic molecules in the Sheepbed Mudstone, Gale Crater, Mars

              The Sample Analysis at Mars (SAM) instrument on board the Mars Science Laboratory Curiosity rover is designed to conduct inorganic and organic chemical analyses of the atmosphere and the surface regolith and rocks to help evaluate the past and present habitability potential of Mars at Gale Crater. Central to this task is the development of an inventory of any organic molecules present to elucidate processes associated with their origin, diagenesis, concentration, and long-term preservation. This will guide the future search for biosignatures. Here we report the definitive identification of chlorobenzene (150–300 parts per billion by weight (ppbw)) and C2 to C4 dichloroalkanes (up to 70 ppbw) with the SAM gas chromatograph mass spectrometer (GCMS) and detection of chlorobenzene in the direct evolved gas analysis (EGA) mode, in multiple portions of the fines from the Cumberland drill hole in the Sheepbed mudstone at Yellowknife Bay. When combined with GCMS and EGA data from multiple scooped and drilled samples, blank runs, and supporting laboratory analog studies, the elevated levels of chlorobenzene and the dichloroalkanes cannot be solely explained by instrument background sources known to be present in SAM. We conclude that these chlorinated hydrocarbons are the reaction products of Martian chlorine and organic carbon derived from Martian sources (e.g., igneous, hydrothermal, atmospheric, or biological) or exogenous sources such as meteorites, comets, or interplanetary dust particles. Key Points First in situ evidence of nonterrestrial organics in Martian surface sediments Chlorinated hydrocarbons identified in the Sheepbed mudstone by SAM Organics preserved in sample exposed to ionizing radiation and oxidative condition
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                Author and article information

                Journal
                Geophysical Research Letters
                Geophys. Res. Lett.
                American Geophysical Union (AGU)
                0094-8276
                1944-8007
                March 28 2019
                March 28 2019
                March 18 2019
                March 28 2019
                : 46
                : 6
                : 3090-3098
                Affiliations
                [1 ]Department of ChemistryTufts University Medford MA USA
                [2 ]Now at Jet Propulsion LaboratoryCalifornia Institute of Technology Pasadena CA USA
                [3 ]Department of Earth Science and EngineeringImperial College London London UK
                [4 ]School of Earth and Environmental Sciences and Centre for Exoplanet ScienceUniversity of St. Andrews Saint Andrews UK
                [5 ]Blue Marble Space Institute of Science Seattle WA USA
                Article
                10.1029/2018GL081335
                dcc946aa-b5fb-4a55-9d43-e66939ca4919
                © 2019

                http://creativecommons.org/licenses/by-nc-nd/4.0/

                http://doi.wiley.com/10.1002/tdm_license_1.1

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