GSTDTAP  > 气候变化
DOI10.1029/2018GL079059
Major Volatiles Evolved From Eolian Materials in Gale Crater
Stern, Jennifer C.1; Sutter, Brad2,3; Archer, P. Douglas2,3; Eigenbrode, Jennifer L.1; McAdam, Amy C.1; Franz, Heather B.1; Knudson, Christine1,4; Ming, Douglas W.3; Wong, Gregory5; Freissinet, Caroline6; Malespin, Charles A.1; Navarro-Gonzalez, Rafael7; Szopa, Cyril8,9; Mahaffy, Paul R.1
2018-10-16
发表期刊GEOPHYSICAL RESEARCH LETTERS
ISSN0094-8276
EISSN1944-8007
出版年2018
卷号45期号:19页码:10240-10248
文章类型Article
语种英语
国家USA; France; Mexico
英文摘要

The Sample Analysis at Mars on the Curiosity rover analyzed the major volatile content of four eolian samples at three locations in Gale crater. The Rocknest sample was taken from an inactive sand shadow with a significant component of dust-sized grains, while Gobabeb and Ogunquit Beach samples were taken from different locations in the Bagnold Dune field and had dust-free, fine sand sized grains. All eolian samples possessed more oxychlorine, carbon, and nitrate relative to sedimentary materials in Gale crater. Evolved CO2 above 450 degrees C was consistent with similar to 0.7 and similar to 0.4 wt. % carbonate in the Bagnold Dunes and Rocknest materials, respectively, with a regional source inside Gale crater. The fine-grained phase of Rocknest was enriched in adsorbed water and perhaps in Fe sulfate and Fe nitrate/nitrite compared to coarser Bagnold materials and was estimated to contain up to similar to 0.1 wt. % of organic carbon.


Plain Language Summary Wind-driven processes have been the dominant force shaping the landscape on Mars for the last 3 billion years. Sands from a Martian dune field were analyzed and compared to other deposits with smaller, dust-sized grains. Samples were heated to release gases and determine their composition, revealing that sandy and dusty samples contained more carbon than rock samples. Sand and dust contained more nitrogen and chlorine bearing molecules made in the atmosphere and grain surfaces, either because they are sitting on the surface accumulating them or because nitrogen and chlorine were removed from rocks in the past by water or other processes. Dusty samples had similar compositions to sandy samples and also contained phases associated only with the small dust grains, including adsorbed water. Dust appeared to contain simple organic carbon molecules, perhaps due to atmospheric and surface processes acting to break down more complex organic molecules in rocks. Sand appeared to contain more inorganic carbon in the form of carbonate, even though the rocks nearby do not contain carbonate. Because sand can only travel a limited distance, this suggests that carbonate is present in rocks somewhere in Gale crater that we have not explored yet.


领域气候变化
收录类别SCI-E
WOS记录号WOS:000448656800025
WOS关键词ROCKNEST AEOLIAN DEPOSIT ; ORGANIC-MOLECULES ; CURIOSITY ROVER ; GAS-ANALYSIS ; MARS ; PERCHLORATE ; CARBONATE ; IDENTIFICATION ; NITRATE ; SURFACE
WOS类目Geosciences, Multidisciplinary
WOS研究方向Geology
引用统计
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/26748
专题气候变化
作者单位1.NASA, Goddard Space Flight Ctr, Greenbelt, MD 20771 USA;
2.Jacobs Technol, Houston, TX USA;
3.NASA, Johnson Space Ctr, Houston, TX USA;
4.Univ Maryland, CRESST, UMCP, College Pk, MD 20742 USA;
5.Penn State Univ, Dept Geosci, University Pk, PA 16802 USA;
6.CNRS, LATMOS, IPSL, Guyancourt, France;
7.Univ Nacl Autonoma Mexico, Inst Ciencias Nucl, Mexico City, DF, Mexico;
8.Univ Versailles St Quentin, Univ Pierre & Marie Curie, LATMOS, Paris, France;
9.CNRS, Paris, France
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GB/T 7714
Stern, Jennifer C.,Sutter, Brad,Archer, P. Douglas,et al. Major Volatiles Evolved From Eolian Materials in Gale Crater[J]. GEOPHYSICAL RESEARCH LETTERS,2018,45(19):10240-10248.
APA Stern, Jennifer C..,Sutter, Brad.,Archer, P. Douglas.,Eigenbrode, Jennifer L..,McAdam, Amy C..,...&Mahaffy, Paul R..(2018).Major Volatiles Evolved From Eolian Materials in Gale Crater.GEOPHYSICAL RESEARCH LETTERS,45(19),10240-10248.
MLA Stern, Jennifer C.,et al."Major Volatiles Evolved From Eolian Materials in Gale Crater".GEOPHYSICAL RESEARCH LETTERS 45.19(2018):10240-10248.
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