Literature DB >> 32042926

Surface clay formation during short-term warmer and wetter conditions on a largely cold ancient Mars.

Janice L Bishop1,2, Alberto G Fairén3,4, Joseph R Michalski5, Luis Gago-Duport6, Leslie L Baker7, Michael A Velbel8,9, Christoph Gross10, Elizabeth B Rampe11.   

Abstract

The ancient rock record for Mars has long been at odds with climate modelling. The presence of valley networks, dendritic channels and deltas on ancient terrains points towards running water and fluvial erosion on early Mars1, but climate modelling indicates that long-term warm conditions were not sustainable2. Widespread phyllosilicates and other aqueous minerals on the Martian surface3-6 provide additional evidence that an early wet Martian climate resulted in surface weathering. Some of these phyllosilicates formed in subsurface crustal environments5, with no association with the Martian climate, while other phyllosilicate-rich outcrops exhibit layered morphologies and broad stratigraphies7 consistent with surface formation. Here, we develop a new geochemical model for early Mars to explain the formation of these clay-bearing rocks in warm and wet surface locations. We propose that sporadic, short-term warm and wet environments during a generally cold early Mars enabled phyllosilicate formation without requiring long-term warm and wet conditions. We conclude that Mg-rich clay-bearing rocks with lateral variations in mixed Fe/Mg smectite, chlorite, talc, serpentine and zeolite occurrences formed in subsurface hydrothermal environments, whereas dioctahedral (Al/Fe3+-rich) smectite and widespread vertical horizonation of Fe/Mg smectites, clay assemblages and sulphates formed in variable aqueous environments on the surface of Mars. Our model for aluminosilicate formation on Mars is consistent with the observed geological features, diversity of aqueous mineralogies in ancient surface rocks and state-of-the-art palaeoclimate scenarios.

Entities:  

Year:  2018        PMID: 32042926      PMCID: PMC7008931          DOI: 10.1038/s41550-017-0377-9

Source DB:  PubMed          Journal:  Nat Astron        ISSN: 2397-3366            Impact factor:   14.437


  16 in total

Review 1.  Subsurface water and clay mineral formation during the early history of Mars.

Authors:  Bethany L Ehlmann; John F Mustard; Scott L Murchie; Jean-Pierre Bibring; Alain Meunier; Abigail A Fraeman; Yves Langevin
Journal:  Nature       Date:  2011-11-02       Impact factor: 49.962

2.  Redox stratification of an ancient lake in Gale crater, Mars.

Authors:  J A Hurowitz; J P Grotzinger; W W Fischer; S M McLennan; R E Milliken; N Stein; A R Vasavada; D F Blake; E Dehouck; J L Eigenbrode; A G Fairén; J Frydenvang; R Gellert; J A Grant; S Gupta; K E Herkenhoff; D W Ming; E B Rampe; M E Schmidt; K L Siebach; K Stack-Morgan; D Y Sumner; R C Wiens
Journal:  Science       Date:  2017-06-01       Impact factor: 47.728

3.  The origin and implications of clay minerals from Yellowknife Bay, Gale crater, Mars.

Authors:  Thomas F Bristow; David L Bish; David T Vaniman; Richard V Morris; David F Blake; John P Grotzinger; Elizabeth B Rampe; Joy A Crisp; Cherie N Achilles; Doug W Ming; Bethany L Ehlmann; Penelope L King; John C Bridges; Jennifer L Eigenbrode; Dawn Y Sumner; Steve J Chipera; John Michael Moorokian; Allan H Treiman; Shaunna M Morrison; Robert T Downs; Jack D Farmer; David Des Marais; Philippe Sarrazin; Melissa M Floyd; Michael A Mischna; Amy C McAdam
Journal:  Am Mineral       Date:  2015-04-01       Impact factor: 3.003

4.  Phyllosilicates on Mars and implications for early martian climate.

Authors:  F Poulet; J-P Bibring; J F Mustard; A Gendrin; N Mangold; Y Langevin; R E Arvidson; B Gondet; C Gomez; M Berthé; S Erard; O Forni; N Manaud; G Poulleau; A Soufflot; M Combes; P Drossart; T Encrenaz; T Fouchet; R Melchiorri; G Bellucci; F Altieri; V Formisano; S Fonti; F Capaccioni; P Cerroni; A Coradini; O Korablev; V Kottsov; N Ignatiev; D Titov; L Zasova; P Pinet; B Schmitt; C Sotin; E Hauber; H Hoffmann; R Jaumann; U Keller; F Forget
Journal:  Nature       Date:  2005-12-01       Impact factor: 49.962

5.  Volatile and organic compositions of sedimentary rocks in Yellowknife Bay, Gale crater, Mars.

Authors:  D W Ming; P D Archer; D P Glavin; J L Eigenbrode; H B Franz; B Sutter; A E Brunner; J C Stern; C Freissinet; A C McAdam; P R Mahaffy; M Cabane; P Coll; J L Campbell; S K Atreya; P B Niles; J F Bell; D L Bish; W B Brinckerhoff; A Buch; P G Conrad; D J Des Marais; B L Ehlmann; A G Fairén; K Farley; G J Flesch; P Francois; R Gellert; J A Grant; J P Grotzinger; S Gupta; K E Herkenhoff; J A Hurowitz; L A Leshin; K W Lewis; S M McLennan; K E Miller; J Moersch; R V Morris; R Navarro-González; A A Pavlov; G M Perrett; I Pradler; S W Squyres; R E Summons; A Steele; E M Stolper; D Y Sumner; C Szopa; S Teinturier; M G Trainer; A H Treiman; D T Vaniman; A R Vasavada; C R Webster; J J Wray; R A Yingst
Journal:  Science       Date:  2013-12-09       Impact factor: 47.728

6.  Mineralogy of a mudstone at Yellowknife Bay, Gale crater, Mars.

Authors:  D T Vaniman; D L Bish; D W Ming; T F Bristow; R V Morris; D F Blake; S J Chipera; S M Morrison; A H Treiman; E B Rampe; M Rice; C N Achilles; J P Grotzinger; S M McLennan; J Williams; J F Bell; H E Newsom; R T Downs; S Maurice; P Sarrazin; A S Yen; J M Morookian; J D Farmer; K Stack; R E Milliken; B L Ehlmann; D Y Sumner; G Berger; J A Crisp; J A Hurowitz; R Anderson; D J Des Marais; E M Stolper; K S Edgett; S Gupta; N Spanovich
Journal:  Science       Date:  2013-12-09       Impact factor: 47.728

7.  Orbital identification of carbonate-bearing rocks on Mars.

Authors:  Bethany L Ehlmann; John F Mustard; Scott L Murchie; Francois Poulet; Janice L Bishop; Adrian J Brown; Wendy M Calvin; Roger N Clark; David J Des Marais; Ralph E Milliken; Leah H Roach; Ted L Roush; Gregg A Swayze; James J Wray
Journal:  Science       Date:  2008-12-19       Impact factor: 47.728

8.  Search for past life on Mars: possible relic biogenic activity in martian meteorite ALH84001.

Authors:  D S McKay; E K Gibson; K L Thomas-Keprta; H Vali; C S Romanek; S J Clemett; X D Chillier; C R Maechling; R N Zare
Journal:  Science       Date:  1996-08-16       Impact factor: 47.728

9.  Hydrated silicate minerals on Mars observed by the Mars Reconnaissance Orbiter CRISM instrument.

Authors:  John F Mustard; S L Murchie; S M Pelkey; B L Ehlmann; R E Milliken; J A Grant; J-P Bibring; F Poulet; J Bishop; E Noe Dobrea; L Roach; F Seelos; R E Arvidson; S Wiseman; R Green; C Hash; D Humm; E Malaret; J A McGovern; K Seelos; T Clancy; R Clark; D D Marais; N Izenberg; A Knudson; Y Langevin; T Martin; P McGuire; R Morris; M Robinson; T Roush; M Smith; G Swayze; H Taylor; T Titus; M Wolff
Journal:  Nature       Date:  2008-07-16       Impact factor: 49.962

10.  Diagenesis and clay mineral formation at Gale Crater, Mars.

Authors:  J C Bridges; S P Schwenzer; R Leveille; F Westall; R C Wiens; N Mangold; T Bristow; P Edwards; G Berger
Journal:  J Geophys Res Planets       Date:  2015-01-18       Impact factor: 3.755

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  4 in total

1.  Multiple mineral horizons in layered outcrops at Mawrth Vallis, Mars, signify changing geochemical environments on early Mars.

Authors:  Janice L Bishop; Christoph Gross; Jacob Danielsen; Mario Parente; Scott L Murchie; Briony Horgan; James J Wray; Christina Viviano; Frank P Seelos
Journal:  Icarus       Date:  2020-01-17       Impact factor: 3.508

2.  Martian subsurface cryosalt expansion and collapse as trigger for landslides.

Authors:  J L Bishop; M Yeşilbaş; N W Hinman; Z F M Burton; P A J Englert; J D Toner; A S McEwen; V C Gulick; E K Gibson; C Koeberl
Journal:  Sci Adv       Date:  2021-02-03       Impact factor: 14.136

3.  Amagmatic hydrothermal systems on Mars from radiogenic heat.

Authors:  Lujendra Ojha; Suniti Karunatillake; Saman Karimi; Jacob Buffo
Journal:  Nat Commun       Date:  2021-03-19       Impact factor: 14.919

4.  Inhabited subsurface wet smectites in the hyperarid core of the Atacama Desert as an analog for the search for life on Mars.

Authors:  Armando Azua-Bustos; Alberto G Fairén; Carlos González Silva; Daniel Carrizo; Miguel Ángel Fernández-Martínez; Cristián Arenas-Fajardo; Maite Fernández-Sampedro; Carolina Gil-Lozano; Laura Sánchez-García; Carmen Ascaso; Jacek Wierzchos; Elizabeth B Rampe
Journal:  Sci Rep       Date:  2020-11-05       Impact factor: 4.379

  4 in total

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