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Chemistry, mineralogy, and grain properties at Namib and High dunes, Bagnold dune field, Gale crater, Mars: A synthesis of Curiosity rover observations

The Mars Science Laboratory Curiosity rover performed coordinated measurements to examine the textures and compositions of aeolian sands in the active Bagnold dune field. The Bagnold sands are rounded to subrounded, very fine to medium sized (~45–500 μm) with ≥6 distinct grain colors. In contrast to...

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Autores principales: Ehlmann, B. L., Edgett, K. S., Sutter, B., Achilles, C. N., Litvak, M. L., Lapotre, M. G. A., Sullivan, R., Fraeman, A. A., Arvidson, R. E., Blake, D. F., Bridges, N. T., Conrad, P. G., Cousin, A., Downs, R. T., Gabriel, T. S. J., Gellert, R., Hamilton, V. E., Hardgrove, C., Johnson, J. R., Kuhn, S., Mahaffy, P. R., Maurice, S., McHenry, M., Meslin, P.‐Y., Ming, D. W., Minitti, M. E., Morookian, J. M., Morris, R. V., O'Connell‐Cooper, C. D., Pinet, P. C., Rowland, S. K., Schröder, S., Siebach, K. L., Stein, N. T., Thompson, L. M., Vaniman, D. T., Vasavada, A. R., Wellington, D. F., Wiens, R. C., Yen, A. S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5815393/
https://www.ncbi.nlm.nih.gov/pubmed/29497589
http://dx.doi.org/10.1002/2017JE005267
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author Ehlmann, B. L.
Edgett, K. S.
Sutter, B.
Achilles, C. N.
Litvak, M. L.
Lapotre, M. G. A.
Sullivan, R.
Fraeman, A. A.
Arvidson, R. E.
Blake, D. F.
Bridges, N. T.
Conrad, P. G.
Cousin, A.
Downs, R. T.
Gabriel, T. S. J.
Gellert, R.
Hamilton, V. E.
Hardgrove, C.
Johnson, J. R.
Kuhn, S.
Mahaffy, P. R.
Maurice, S.
McHenry, M.
Meslin, P.‐Y.
Ming, D. W.
Minitti, M. E.
Morookian, J. M.
Morris, R. V.
O'Connell‐Cooper, C. D.
Pinet, P. C.
Rowland, S. K.
Schröder, S.
Siebach, K. L.
Stein, N. T.
Thompson, L. M.
Vaniman, D. T.
Vasavada, A. R.
Wellington, D. F.
Wiens, R. C.
Yen, A. S.
author_facet Ehlmann, B. L.
Edgett, K. S.
Sutter, B.
Achilles, C. N.
Litvak, M. L.
Lapotre, M. G. A.
Sullivan, R.
Fraeman, A. A.
Arvidson, R. E.
Blake, D. F.
Bridges, N. T.
Conrad, P. G.
Cousin, A.
Downs, R. T.
Gabriel, T. S. J.
Gellert, R.
Hamilton, V. E.
Hardgrove, C.
Johnson, J. R.
Kuhn, S.
Mahaffy, P. R.
Maurice, S.
McHenry, M.
Meslin, P.‐Y.
Ming, D. W.
Minitti, M. E.
Morookian, J. M.
Morris, R. V.
O'Connell‐Cooper, C. D.
Pinet, P. C.
Rowland, S. K.
Schröder, S.
Siebach, K. L.
Stein, N. T.
Thompson, L. M.
Vaniman, D. T.
Vasavada, A. R.
Wellington, D. F.
Wiens, R. C.
Yen, A. S.
author_sort Ehlmann, B. L.
collection PubMed
description The Mars Science Laboratory Curiosity rover performed coordinated measurements to examine the textures and compositions of aeolian sands in the active Bagnold dune field. The Bagnold sands are rounded to subrounded, very fine to medium sized (~45–500 μm) with ≥6 distinct grain colors. In contrast to sands examined by Curiosity in a dust‐covered, inactive bedform called Rocknest and soils at other landing sites, Bagnold sands are darker, less red, better sorted, have fewer silt‐sized or smaller grains, and show no evidence for cohesion. Nevertheless, Bagnold mineralogy and Rocknest mineralogy are similar with plagioclase, olivine, and pyroxenes in similar proportions comprising >90% of crystalline phases, along with a substantial amorphous component (35% ± 15%). Yet Bagnold and Rocknest bulk chemistry differ. Bagnold sands are Si enriched relative to other soils at Gale crater, and H(2)O, S, and Cl are lower relative to all previously measured Martian soils and most Gale crater rocks. Mg, Ni, Fe, and Mn are enriched in the coarse‐sieved fraction of Bagnold sands, corroborated by visible/near‐infrared spectra that suggest enrichment of olivine. Collectively, patterns in major element chemistry and volatile release data indicate two distinctive volatile reservoirs in Martian soils: (1) amorphous components in the sand‐sized fraction (represented by Bagnold) that are Si‐enriched, hydroxylated alteration products and/or H(2)O‐ or OH‐bearing impact or volcanic glasses and (2) amorphous components in the fine fraction (<40 μm; represented by Rocknest and other bright soils) that are Fe, S, and Cl enriched with low Si and adsorbed and structural H(2)O.
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spelling pubmed-58153932018-02-27 Chemistry, mineralogy, and grain properties at Namib and High dunes, Bagnold dune field, Gale crater, Mars: A synthesis of Curiosity rover observations Ehlmann, B. L. Edgett, K. S. Sutter, B. Achilles, C. N. Litvak, M. L. Lapotre, M. G. A. Sullivan, R. Fraeman, A. A. Arvidson, R. E. Blake, D. F. Bridges, N. T. Conrad, P. G. Cousin, A. Downs, R. T. Gabriel, T. S. J. Gellert, R. Hamilton, V. E. Hardgrove, C. Johnson, J. R. Kuhn, S. Mahaffy, P. R. Maurice, S. McHenry, M. Meslin, P.‐Y. Ming, D. W. Minitti, M. E. Morookian, J. M. Morris, R. V. O'Connell‐Cooper, C. D. Pinet, P. C. Rowland, S. K. Schröder, S. Siebach, K. L. Stein, N. T. Thompson, L. M. Vaniman, D. T. Vasavada, A. R. Wellington, D. F. Wiens, R. C. Yen, A. S. J Geophys Res Planets Research Articles The Mars Science Laboratory Curiosity rover performed coordinated measurements to examine the textures and compositions of aeolian sands in the active Bagnold dune field. The Bagnold sands are rounded to subrounded, very fine to medium sized (~45–500 μm) with ≥6 distinct grain colors. In contrast to sands examined by Curiosity in a dust‐covered, inactive bedform called Rocknest and soils at other landing sites, Bagnold sands are darker, less red, better sorted, have fewer silt‐sized or smaller grains, and show no evidence for cohesion. Nevertheless, Bagnold mineralogy and Rocknest mineralogy are similar with plagioclase, olivine, and pyroxenes in similar proportions comprising >90% of crystalline phases, along with a substantial amorphous component (35% ± 15%). Yet Bagnold and Rocknest bulk chemistry differ. Bagnold sands are Si enriched relative to other soils at Gale crater, and H(2)O, S, and Cl are lower relative to all previously measured Martian soils and most Gale crater rocks. Mg, Ni, Fe, and Mn are enriched in the coarse‐sieved fraction of Bagnold sands, corroborated by visible/near‐infrared spectra that suggest enrichment of olivine. Collectively, patterns in major element chemistry and volatile release data indicate two distinctive volatile reservoirs in Martian soils: (1) amorphous components in the sand‐sized fraction (represented by Bagnold) that are Si‐enriched, hydroxylated alteration products and/or H(2)O‐ or OH‐bearing impact or volcanic glasses and (2) amorphous components in the fine fraction (<40 μm; represented by Rocknest and other bright soils) that are Fe, S, and Cl enriched with low Si and adsorbed and structural H(2)O. John Wiley and Sons Inc. 2017-12-07 2017-12 /pmc/articles/PMC5815393/ /pubmed/29497589 http://dx.doi.org/10.1002/2017JE005267 Text en ©2017. The Authors. This is an open access article under the terms of the Creative Commons Attribution‐NonCommercial‐NoDerivs (http://creativecommons.org/licenses/by-nc-nd/4.0/) 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
Ehlmann, B. L.
Edgett, K. S.
Sutter, B.
Achilles, C. N.
Litvak, M. L.
Lapotre, M. G. A.
Sullivan, R.
Fraeman, A. A.
Arvidson, R. E.
Blake, D. F.
Bridges, N. T.
Conrad, P. G.
Cousin, A.
Downs, R. T.
Gabriel, T. S. J.
Gellert, R.
Hamilton, V. E.
Hardgrove, C.
Johnson, J. R.
Kuhn, S.
Mahaffy, P. R.
Maurice, S.
McHenry, M.
Meslin, P.‐Y.
Ming, D. W.
Minitti, M. E.
Morookian, J. M.
Morris, R. V.
O'Connell‐Cooper, C. D.
Pinet, P. C.
Rowland, S. K.
Schröder, S.
Siebach, K. L.
Stein, N. T.
Thompson, L. M.
Vaniman, D. T.
Vasavada, A. R.
Wellington, D. F.
Wiens, R. C.
Yen, A. S.
Chemistry, mineralogy, and grain properties at Namib and High dunes, Bagnold dune field, Gale crater, Mars: A synthesis of Curiosity rover observations
title Chemistry, mineralogy, and grain properties at Namib and High dunes, Bagnold dune field, Gale crater, Mars: A synthesis of Curiosity rover observations
title_full Chemistry, mineralogy, and grain properties at Namib and High dunes, Bagnold dune field, Gale crater, Mars: A synthesis of Curiosity rover observations
title_fullStr Chemistry, mineralogy, and grain properties at Namib and High dunes, Bagnold dune field, Gale crater, Mars: A synthesis of Curiosity rover observations
title_full_unstemmed Chemistry, mineralogy, and grain properties at Namib and High dunes, Bagnold dune field, Gale crater, Mars: A synthesis of Curiosity rover observations
title_short Chemistry, mineralogy, and grain properties at Namib and High dunes, Bagnold dune field, Gale crater, Mars: A synthesis of Curiosity rover observations
title_sort chemistry, mineralogy, and grain properties at namib and high dunes, bagnold dune field, gale crater, mars: a synthesis of curiosity rover observations
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5815393/
https://www.ncbi.nlm.nih.gov/pubmed/29497589
http://dx.doi.org/10.1002/2017JE005267
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