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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. C...

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Autores principales: Freissinet, C, Glavin, D P, Mahaffy, P R, Miller, K E, Eigenbrode, J L, Summons, R E, Brunner, A E, Buch, A, Szopa, C, Archer, P D, Franz, H B, Atreya, S K, Brinckerhoff, W B, Cabane, M, Coll, P, Conrad, P G, Des Marais, D J, Dworkin, J P, Fairén, A G, François, P, Grotzinger, J P, Kashyap, S, ten Kate, I L, Leshin, L A, Malespin, C A, Martin, M G, Martin-Torres, F J, McAdam, A C, Ming, D W, Navarro-González, R, Pavlov, A A, Prats, B D, Squyres, S W, Steele, A, Stern, J C, Sumner, D Y, Sutter, B, Zorzano, M-P
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Ltd 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4672966/
https://www.ncbi.nlm.nih.gov/pubmed/26690960
http://dx.doi.org/10.1002/2014JE004737
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author Freissinet, C
Glavin, D P
Mahaffy, P R
Miller, K E
Eigenbrode, J L
Summons, R E
Brunner, A E
Buch, A
Szopa, C
Archer, P D
Franz, H B
Atreya, S K
Brinckerhoff, W B
Cabane, M
Coll, P
Conrad, P G
Des Marais, D J
Dworkin, J P
Fairén, A G
François, P
Grotzinger, J P
Kashyap, S
ten Kate, I L
Leshin, L A
Malespin, C A
Martin, M G
Martin-Torres, F J
McAdam, A C
Ming, D W
Navarro-González, R
Pavlov, A A
Prats, B D
Squyres, S W
Steele, A
Stern, J C
Sumner, D Y
Sutter, B
Zorzano, M-P
author_facet Freissinet, C
Glavin, D P
Mahaffy, P R
Miller, K E
Eigenbrode, J L
Summons, R E
Brunner, A E
Buch, A
Szopa, C
Archer, P D
Franz, H B
Atreya, S K
Brinckerhoff, W B
Cabane, M
Coll, P
Conrad, P G
Des Marais, D J
Dworkin, J P
Fairén, A G
François, P
Grotzinger, J P
Kashyap, S
ten Kate, I L
Leshin, L A
Malespin, C A
Martin, M G
Martin-Torres, F J
McAdam, A C
Ming, D W
Navarro-González, R
Pavlov, A A
Prats, B D
Squyres, S W
Steele, A
Stern, J C
Sumner, D Y
Sutter, B
Zorzano, M-P
author_sort Freissinet, C
collection PubMed
description 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 C(2) to C(4) 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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spelling pubmed-46729662015-12-16 Organic molecules in the Sheepbed Mudstone, Gale Crater, Mars Freissinet, C Glavin, D P Mahaffy, P R Miller, K E Eigenbrode, J L Summons, R E Brunner, A E Buch, A Szopa, C Archer, P D Franz, H B Atreya, S K Brinckerhoff, W B Cabane, M Coll, P Conrad, P G Des Marais, D J Dworkin, J P Fairén, A G François, P Grotzinger, J P Kashyap, S ten Kate, I L Leshin, L A Malespin, C A Martin, M G Martin-Torres, F J McAdam, A C Ming, D W Navarro-González, R Pavlov, A A Prats, B D Squyres, S W Steele, A Stern, J C Sumner, D Y Sutter, B Zorzano, M-P J Geophys Res Planets Research Articles 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 C(2) to C(4) 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 ; John Wiley & Sons, Ltd 2015-03 2015-03-21 /pmc/articles/PMC4672966/ /pubmed/26690960 http://dx.doi.org/10.1002/2014JE004737 Text en ©2015. The Authors. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the terms of the Creative Commons Attribution-NonCommercial-NoDerivs License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non-commercial and no modifications or adaptations are made.
spellingShingle Research Articles
Freissinet, C
Glavin, D P
Mahaffy, P R
Miller, K E
Eigenbrode, J L
Summons, R E
Brunner, A E
Buch, A
Szopa, C
Archer, P D
Franz, H B
Atreya, S K
Brinckerhoff, W B
Cabane, M
Coll, P
Conrad, P G
Des Marais, D J
Dworkin, J P
Fairén, A G
François, P
Grotzinger, J P
Kashyap, S
ten Kate, I L
Leshin, L A
Malespin, C A
Martin, M G
Martin-Torres, F J
McAdam, A C
Ming, D W
Navarro-González, R
Pavlov, A A
Prats, B D
Squyres, S W
Steele, A
Stern, J C
Sumner, D Y
Sutter, B
Zorzano, M-P
Organic molecules in the Sheepbed Mudstone, Gale Crater, Mars
title Organic molecules in the Sheepbed Mudstone, Gale Crater, Mars
title_full Organic molecules in the Sheepbed Mudstone, Gale Crater, Mars
title_fullStr Organic molecules in the Sheepbed Mudstone, Gale Crater, Mars
title_full_unstemmed Organic molecules in the Sheepbed Mudstone, Gale Crater, Mars
title_short Organic molecules in the Sheepbed Mudstone, Gale Crater, Mars
title_sort organic molecules in the sheepbed mudstone, gale crater, mars
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4672966/
https://www.ncbi.nlm.nih.gov/pubmed/26690960
http://dx.doi.org/10.1002/2014JE004737
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