Arid
DOI10.1017/S1473550410000078
Lithology, mineral assemblages and microbial fingerprints of the evaporite-carbonate sediments of the coastal sabkha of Abu Dhabi and their extraterrestrial implications
Sadooni, Fadhil N.1; Howari, Fares2; Edwards, Howell G. M.3; El-Saiy, Ayman4
通讯作者Sadooni, Fadhil N.
来源期刊INTERNATIONAL JOURNAL OF ASTROBIOLOGY
ISSN1473-5504
出版年2010
卷号9期号:3页码:147-156
英文摘要

Deep-core and surface samples collected from the coastal sabkha of Abu Dhabi were subjected to a multi-proxy study, including petrographic, geochemical and spectroscopic analyses. The sediments studied are composed of biochemical carbonate-evaporite mineral suites, such as calcite, dolomite, aragonite and gypsum, as well as elastic minerals, such as quartz, feldspar and serpentine. These sediments were also strongly influenced by microbial activities as reflected by the presence of cyanobacterial mats, boring, gas bubble structures, pustular and other macro and micro textures. A combination of marine, fluvial, aeolian, and groundwater processes shaped the geomorphology of the area and led to the formation of such mineral suites, as well as their microbial contents. Data collected from Mars indicate that its surface regolith contains sandstone composed of siliciclastic basaltic debris, as well as carbonate (e.g. magnesite) and evaporite (e.g. jarosite and relics of gypsum) mineral assemblages. Additional data suggest the presence of geomorphic features, characteristic of an arid climate, such as sand dunes and desert varnish. The hydrological model for the Late Noachian-Hesperian period of the plant proposed the existence of a surficial layer containing endolithic and stromatolitic cyanobacterial lamina. The combination of the coastal sabkha of Abu Dhabi with its carbonate-evaporite mineral suites, the neighbouring sand dune fields of the Empty Quarter Desert and the basaltic sediments resulted from weathering the ophiolitic Northern Oman Mountains to form a candidate terrestrial geologic province that may explain the mineral association of Mars and its potential biosignatures. The lithological features and the mineral association of the sabkha can be recognized by the present day detection equipment used on Mars, and even if their biosignatures are degraded, their existence may be inferred from these features.


英文关键词carbonates evaporites Mars Microbial sediments Middle East sabkha
类型Article
语种英语
国家Qatar ; USA ; England ; U Arab Emirates
收录类别SCI-E
WOS记录号WOS:000278918700002
WOS关键词MERIDIANI-PLANUM ; BURNS FORMATION ; ARABIAN GULF ; ALGAL MATS ; MARS ; LIFE ; STROMATOLITES ; SIGNATURES ; JAROSITE ; DEPOSITS
WOS类目Astronomy & Astrophysics ; Biology ; Geosciences, Multidisciplinary
WOS研究方向Astronomy & Astrophysics ; Life Sciences & Biomedicine - Other Topics ; Geology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/164645
作者单位1.Qatar Univ, Ctr Environm Studies, Doha, Qatar;
2.Univ Texas Permian Basin, Environm Sci Program, Odessa, TX 79762 USA;
3.Univ Bradford, Sch Life Sci, Bradford BD7 1DO, W Yorkshire, England;
4.United Arab Emirates Univ, Dept Geol, Al Ain, U Arab Emirates
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GB/T 7714
Sadooni, Fadhil N.,Howari, Fares,Edwards, Howell G. M.,et al. Lithology, mineral assemblages and microbial fingerprints of the evaporite-carbonate sediments of the coastal sabkha of Abu Dhabi and their extraterrestrial implications[J],2010,9(3):147-156.
APA Sadooni, Fadhil N.,Howari, Fares,Edwards, Howell G. M.,&El-Saiy, Ayman.(2010).Lithology, mineral assemblages and microbial fingerprints of the evaporite-carbonate sediments of the coastal sabkha of Abu Dhabi and their extraterrestrial implications.INTERNATIONAL JOURNAL OF ASTROBIOLOGY,9(3),147-156.
MLA Sadooni, Fadhil N.,et al."Lithology, mineral assemblages and microbial fingerprints of the evaporite-carbonate sediments of the coastal sabkha of Abu Dhabi and their extraterrestrial implications".INTERNATIONAL JOURNAL OF ASTROBIOLOGY 9.3(2010):147-156.
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