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Evidence for Multiple Diagenetic Episodes in Ancient Fluvial‐Lacustrine Sedimentary Rocks in Gale Crater, Mars

The Curiosity rover's exploration of rocks and soils in Gale crater has provided diverse geochemical and mineralogical data sets, underscoring the complex geological history of the region. We report the crystalline, clay mineral, and amorphous phase distributions of four Gale crater rocks from...

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Autores principales: Achilles, C. N., Rampe, E. B., Downs, R. T., Bristow, T. F., Ming, D. W., Morris, R. V., Vaniman, D. T., Blake, D. F., Yen, A. S., McAdam, A. C., Sutter, B., Fedo, C. M., Gwizd, S., Thompson, L. M., Gellert, R., Morrison, S. M., Treiman, A. H., Crisp, J. A., Gabriel, T. S. J., Chipera, S. J., Hazen, R. M., Craig, P. I., Thorpe, M. T., Des Marais, D. J., Grotzinger, J. P., Tu, V. M., Castle, N., Downs, G. W., Peretyazhko, T. S., Walroth, R. C., Sarrazin, P., Morookian, J. M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7507756/
https://www.ncbi.nlm.nih.gov/pubmed/32999799
http://dx.doi.org/10.1029/2019JE006295
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author Achilles, C. N.
Rampe, E. B.
Downs, R. T.
Bristow, T. F.
Ming, D. W.
Morris, R. V.
Vaniman, D. T.
Blake, D. F.
Yen, A. S.
McAdam, A. C.
Sutter, B.
Fedo, C. M.
Gwizd, S.
Thompson, L. M.
Gellert, R.
Morrison, S. M.
Treiman, A. H.
Crisp, J. A.
Gabriel, T. S. J.
Chipera, S. J.
Hazen, R. M.
Craig, P. I.
Thorpe, M. T.
Des Marais, D. J.
Grotzinger, J. P.
Tu, V. M.
Castle, N.
Downs, G. W.
Peretyazhko, T. S.
Walroth, R. C.
Sarrazin, P.
Morookian, J. M.
author_facet Achilles, C. N.
Rampe, E. B.
Downs, R. T.
Bristow, T. F.
Ming, D. W.
Morris, R. V.
Vaniman, D. T.
Blake, D. F.
Yen, A. S.
McAdam, A. C.
Sutter, B.
Fedo, C. M.
Gwizd, S.
Thompson, L. M.
Gellert, R.
Morrison, S. M.
Treiman, A. H.
Crisp, J. A.
Gabriel, T. S. J.
Chipera, S. J.
Hazen, R. M.
Craig, P. I.
Thorpe, M. T.
Des Marais, D. J.
Grotzinger, J. P.
Tu, V. M.
Castle, N.
Downs, G. W.
Peretyazhko, T. S.
Walroth, R. C.
Sarrazin, P.
Morookian, J. M.
author_sort Achilles, C. N.
collection PubMed
description The Curiosity rover's exploration of rocks and soils in Gale crater has provided diverse geochemical and mineralogical data sets, underscoring the complex geological history of the region. We report the crystalline, clay mineral, and amorphous phase distributions of four Gale crater rocks from an 80‐m stratigraphic interval. The mineralogy of the four samples is strongly influenced by aqueous alteration processes, including variations in water chemistries, redox, pH, and temperature. Localized hydrothermal events are evidenced by gray hematite and maturation of amorphous SiO(2) to opal‐CT. Low‐temperature diagenetic events are associated with fluctuating lake levels, evaporative events, and groundwater infiltration. Among all mudstones analyzed in Gale crater, the diversity in diagenetic processes is primarily captured by the mineralogy and X‐ray amorphous chemistry of the drilled rocks. Variations indicate a transition from magnetite to hematite and an increase in matrix‐associated sulfates suggesting intensifying influence from oxic, diagenetic fluids upsection. Furthermore, diagenetic fluid pathways are shown to be strongly affected by unconformities and sedimentary transitions, as evidenced by the intensity of alteration inferred from the mineralogy of sediments sampled adjacent to stratigraphic contacts.
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spelling pubmed-75077562020-09-28 Evidence for Multiple Diagenetic Episodes in Ancient Fluvial‐Lacustrine Sedimentary Rocks in Gale Crater, Mars Achilles, C. N. Rampe, E. B. Downs, R. T. Bristow, T. F. Ming, D. W. Morris, R. V. Vaniman, D. T. Blake, D. F. Yen, A. S. McAdam, A. C. Sutter, B. Fedo, C. M. Gwizd, S. Thompson, L. M. Gellert, R. Morrison, S. M. Treiman, A. H. Crisp, J. A. Gabriel, T. S. J. Chipera, S. J. Hazen, R. M. Craig, P. I. Thorpe, M. T. Des Marais, D. J. Grotzinger, J. P. Tu, V. M. Castle, N. Downs, G. W. Peretyazhko, T. S. Walroth, R. C. Sarrazin, P. Morookian, J. M. J Geophys Res Planets Research Articles The Curiosity rover's exploration of rocks and soils in Gale crater has provided diverse geochemical and mineralogical data sets, underscoring the complex geological history of the region. We report the crystalline, clay mineral, and amorphous phase distributions of four Gale crater rocks from an 80‐m stratigraphic interval. The mineralogy of the four samples is strongly influenced by aqueous alteration processes, including variations in water chemistries, redox, pH, and temperature. Localized hydrothermal events are evidenced by gray hematite and maturation of amorphous SiO(2) to opal‐CT. Low‐temperature diagenetic events are associated with fluctuating lake levels, evaporative events, and groundwater infiltration. Among all mudstones analyzed in Gale crater, the diversity in diagenetic processes is primarily captured by the mineralogy and X‐ray amorphous chemistry of the drilled rocks. Variations indicate a transition from magnetite to hematite and an increase in matrix‐associated sulfates suggesting intensifying influence from oxic, diagenetic fluids upsection. Furthermore, diagenetic fluid pathways are shown to be strongly affected by unconformities and sedimentary transitions, as evidenced by the intensity of alteration inferred from the mineralogy of sediments sampled adjacent to stratigraphic contacts. John Wiley and Sons Inc. 2020-08-13 2020-08 /pmc/articles/PMC7507756/ /pubmed/32999799 http://dx.doi.org/10.1029/2019JE006295 Text en ©2020. The Authors. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Achilles, C. N.
Rampe, E. B.
Downs, R. T.
Bristow, T. F.
Ming, D. W.
Morris, R. V.
Vaniman, D. T.
Blake, D. F.
Yen, A. S.
McAdam, A. C.
Sutter, B.
Fedo, C. M.
Gwizd, S.
Thompson, L. M.
Gellert, R.
Morrison, S. M.
Treiman, A. H.
Crisp, J. A.
Gabriel, T. S. J.
Chipera, S. J.
Hazen, R. M.
Craig, P. I.
Thorpe, M. T.
Des Marais, D. J.
Grotzinger, J. P.
Tu, V. M.
Castle, N.
Downs, G. W.
Peretyazhko, T. S.
Walroth, R. C.
Sarrazin, P.
Morookian, J. M.
Evidence for Multiple Diagenetic Episodes in Ancient Fluvial‐Lacustrine Sedimentary Rocks in Gale Crater, Mars
title Evidence for Multiple Diagenetic Episodes in Ancient Fluvial‐Lacustrine Sedimentary Rocks in Gale Crater, Mars
title_full Evidence for Multiple Diagenetic Episodes in Ancient Fluvial‐Lacustrine Sedimentary Rocks in Gale Crater, Mars
title_fullStr Evidence for Multiple Diagenetic Episodes in Ancient Fluvial‐Lacustrine Sedimentary Rocks in Gale Crater, Mars
title_full_unstemmed Evidence for Multiple Diagenetic Episodes in Ancient Fluvial‐Lacustrine Sedimentary Rocks in Gale Crater, Mars
title_short Evidence for Multiple Diagenetic Episodes in Ancient Fluvial‐Lacustrine Sedimentary Rocks in Gale Crater, Mars
title_sort evidence for multiple diagenetic episodes in ancient fluvial‐lacustrine sedimentary rocks in gale crater, mars
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7507756/
https://www.ncbi.nlm.nih.gov/pubmed/32999799
http://dx.doi.org/10.1029/2019JE006295
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