Literature DB >> 31880468

First Detections of Dichlorobenzene Isomers and Trichloromethylpropane from Organic Matter Indigenous to Mars Mudstone in Gale Crater, Mars: Results from the Sample Analysis at Mars Instrument Onboard the Curiosity Rover.

Cyril Szopa1,2, Caroline Freissinet1, Daniel P Glavin3, Maeva Millan1,3,4, Arnaud Buch5, Heather B Franz3, Roger E Summons6, Dawn Y Sumner7, Brad Sutter8, Jennifer L Eigenbrode3, Ross H Williams3,9, Rafael Navarro-González10, Melissa Guzman1, Charles Malespin3, Samuel Teinturier3,11, Paul R Mahaffy3, Michel Cabane1.   

Abstract

Chromatographic analysis of the Cumberland mudstone in Gale crater by the Sample Analysis at Mars (SAM) instrument revealed the detection of two to three isomers of dichlorobenzene. Their individual concentrations were estimated to be in the 0.5-17 ppbw range relative to the sample mass. We also report the first detection of trichloromethylpropane and the confirmation of the detection of chlorobenzene previously reported. Supporting laboratory experiments excluded the SAM internal background as the source of those compounds, thus confirming the organic carbon and chlorine of the newly detected chlorohydrocarbons are indigenous to the mudstone sample. Laboratory experiments also demonstrated that the chlorohydrocarbons were mainly produced from chemical reactions occurring in the SAM ovens between organic molecules and oxychlorines contained in the sample. The results we obtained show that meteoritic organics and tested chemical species (a polycyclic aromatic hydrocarbon, an amino acid, and a carboxylic acid) were plausible organic precursors of the chlorinated aromatic molecules detected with SAM, thus suggesting that they could be among the organic molecules present in the mudstone. Results from this study coupled with previously reported detections of chlorinated aromatics (<300 ppbw) indigenous to the same mudstone highlight that organics can be preserved from the harsh surface conditions even at shallow depth. The detection of new chlorohydrocarbons with SAM confirms that organic molecules should have been available in an environment favorable to life forms, strengthening the habitability aspect of Gale crater.

Entities:  

Keywords:  Chlorinated organic molecules; Gale crater; In situ measurements; Mars; Mudstone; Sample Analysis at Mars

Year:  2019        PMID: 31880468     DOI: 10.1089/ast.2018.1908

Source DB:  PubMed          Journal:  Astrobiology        ISSN: 1557-8070            Impact factor:   4.335


  3 in total

Review 1.  Clays and the Origin of Life: The Experiments.

Authors:  Jacob Teunis Theo Kloprogge; Hyman Hartman
Journal:  Life (Basel)       Date:  2022-02-09

Review 2.  Mission Overview and Scientific Contributions from the Mars Science Laboratory Curiosity Rover After Eight Years of Surface Operations.

Authors:  Ashwin R Vasavada
Journal:  Space Sci Rev       Date:  2022-04-05       Impact factor: 8.943

3.  A Low-Pressure, N2/CO2 Atmosphere Is Suitable for Cyanobacterium-Based Life-Support Systems on Mars.

Authors:  Cyprien Verseux; Christiane Heinicke; Tiago P Ramalho; Jonathan Determann; Malte Duckhorn; Michael Smagin; Marc Avila
Journal:  Front Microbiol       Date:  2021-02-16       Impact factor: 5.640

  3 in total

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