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Investigating the stability of aromatic carboxylic acids in hydrated magnesium sulfate under UV irradiation to assist detection of organics on Mars

Alberini, Andrew (författare)
INAF Astrophysical Observatory of Arcetri, Italy
Fornaro, Teresa (författare)
INAF Astrophysical Observatory of Arcetri, Italy
García-Florentino, Cristina (författare)
INAF Astrophysical Observatory of Arcetri, Italy; University of the Basque Country, Spain
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Biczysko, Malgorzata (författare)
Shanghai University, China
Poblacion, Iratxe (författare)
University of the Basque Country, Spain
Aramendia, Julene (författare)
University of the Basque Country, Spain
Madariaga, Juan Manuel (författare)
University of the Basque Country, Spain
Poggiali, Giovanni (författare)
INAF Astrophysical Observatory of Arcetri, Italy; Université Paris Cité, France
Vicente-Retortillo, Álvaro (författare)
Centro de Astrobiología, Spain
Benison, Kathleen C. (författare)
West Virginia University, USA
Siljeström, Sandra (författare)
RISE,Metodik, textil och medicinteknik
Biancalani, Sole (författare)
INAF Astrophysical Observatory of Arcetri, Italy; University of Trento, Italy; Italian Space Angency, Italy; University of Florence, Italy
Lorenz, Christian (författare)
INAF Astrophysical Observatory of Arcetri, Italy; University of Naples Federico II, Italy
Cloutis, Edward A. (författare)
University of Winnipeg, Canada
Applin, Dan M. (författare)
University of Winnipeg, Canada
Gómez, Felipe (författare)
Centro de Astrobiología, Spain
Steele, Andrew (författare)
Carnegie Institute for Science, USA
Wiens, Roger C. (författare)
Purdue University, USA
Hand, Kevin P. (författare)
California Institute of Technology, USA
Brucato, John R. (författare)
INAF Astrophysical Observatory of Arcetri, Italy
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 (creator_code:org_t)
Nature Research, 2024
2024
Engelska.
Ingår i: Scientific Reports. - : Nature Research. - 2045-2322. ; 14:1
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
Stäng  
  • The Scanning Habitable Environments with Raman and Luminescence for Organics and Chemicals (SHERLOC) instrument onboard the Mars 2020 Perseverance rover detected so far some of the most intense fluorescence signals in association with sulfates analyzing abraded patches of rocks at Jezero crater, Mars. To assess the plausibility of an organic origin of these signals, it is key to understand if organics can survive exposure to ambient Martian UV after exposure by the Perseverance abrasion tool and prior to analysis by SHERLOC. In this work, we investigated the stability of organo-sulfate assemblages under Martian-like UV irradiation and we observed that the spectroscopic features of phthalic and mellitic acid embedded into hydrated magnesium sulfate do not change for UV exposures corresponding to at least 48 Martian sols and, thus, should still be detectable in fluorescence when the SHERLOC analysis takes place, thanks to the photoprotective properties of magnesium sulfate. In addition, different photoproduct bands diagnostic of the parent carboxylic acid molecules could be observed. The photoprotective behavior of hydrated magnesium sulfate corroborates the hypothesis that sulfates might have played a key role in the preservation of organics on Mars, and that the fluorescence signals detected by SHERLOC in association with sulfates could potentially arise from organic compounds. 

Ämnesord

NATURVETENSKAP  -- Fysik (hsv//swe)
NATURAL SCIENCES  -- Physical Sciences (hsv//eng)

Nyckelord

aromatic carboxylic acid; carboxylic acid; magnesium sulfate; organic compound; sulfate; abrasion; article; astronomy; biological activity; controlled study; fluorescence; Fourier transform infrared spectroscopy; luminescence; nonhuman; ultraviolet irradiation; ultraviolet radiation

Publikations- och innehållstyp

ref (ämneskategori)
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