Arid
DOI10.1089/ast.2009.0421
Hygroscopic Salts and the Potential for Life on Mars
Davila, Alfonso F.1; Gago Duport, Luis2; Melchiorri, Riccardo3; Jaenchen, Jochen4; Valea, Sergio5; de los Rios, Asuncion5; Fairen, Alberto G.1; Moehlmann, Diedrich6; McKay, Christopher P.7; Ascaso, Carmen5; Wierzchos, Jacek5
通讯作者Davila, Alfonso F.
来源期刊ASTROBIOLOGY
ISSN1531-1074
EISSN1557-8070
出版年2010
卷号10期号:6页码:617-628
英文摘要

Hygroscopic salts have been detected in soils in the northern latitudes of Mars, and widespread chloride-bearing evaporitic deposits have been detected in the southern highlands. The deliquescence of hygroscopic minerals such as chloride salts could provide a local and transient source of liquid water that would be available for microorganisms on the surface. This is known to occur in the Atacama Desert, where massive halite evaporites have become a habitat for photosynthetic and heterotrophic microorganisms that take advantage of the deliquescence of the salt at certain relative humidity (RH) levels. We modeled the climate conditions (RH and temperature) in a region on Mars with chloride-bearing evaporites, and modeled the evolution of the water activity (a(w)) of the deliquescence solutions of three possible chloride salts (sodium chloride, calcium chloride, and magnesium chloride) as a function of temperature. We also studied the water absorption properties of the same salts as a function of RH. Our climate model results show that the RH in the region with chloride-bearing deposits on Mars often reaches the deliquescence points of all three salts, and the temperature reaches levels above their eutectic points seasonally, in the course of a martian year. The a(w) of the deliquescence solutions increases with decreasing temperature due mainly to the precipitation of unstable phases, which removes ions from the solution. The deliquescence of sodium chloride results in transient solutions with a(w) compatible with growth of terrestrial microorganisms down to 252 K, whereas for calcium chloride and magnesium chloride it results in solutions with a(w) below the known limits for growth at all temperatures. However, taking the limits of a(w) used to define special regions on Mars, the deliquescence of calcium chloride deposits would allow for the propagation of terrestrial microorganisms at temperatures between 265 and 253 K, and for metabolic activity (no growth) at temperatures between 253 and 233 K.


英文关键词Hygroscopic salts Evaporites Water activity Temperature Endoliths Atacama Desert Deliquescence Mars Life
类型Article
语种英语
国家USA ; Spain ; Germany
收录类别SCI-E
WOS记录号WOS:000281254100005
WOS关键词WATER-VAPOR ; ATACAMA DESERT ; LIQUID WATER ; DELIQUESCENCE ; TEMPERATURE ; MINERALS ; SURFACE ; SALAR ; CORE
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/2XILL650/163314
作者单位1.SETI Inst, Mountain View, CA USA;
2.Univ Vigo, Vigo 36310, Spain;
3.SRI Int, Mol Phys Lab, Div Phys Sci, Menlo Pk, CA 94025 USA;
4.Tech Univ Appl Sci Wildau, Wildau, Germany;
5.CSIC, CCMA, Inst Recursos Nat, Madrid, Spain;
6.DLR Inst Planetenforsch, Berlin, Germany;
7.NASA, Ames Res Ctr, Moffett Field, CA 94035 USA
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Davila, Alfonso F.,Gago Duport, Luis,Melchiorri, Riccardo,et al. Hygroscopic Salts and the Potential for Life on Mars[J],2010,10(6):617-628.
APA Davila, Alfonso F..,Gago Duport, Luis.,Melchiorri, Riccardo.,Jaenchen, Jochen.,Valea, Sergio.,...&Wierzchos, Jacek.(2010).Hygroscopic Salts and the Potential for Life on Mars.ASTROBIOLOGY,10(6),617-628.
MLA Davila, Alfonso F.,et al."Hygroscopic Salts and the Potential for Life on Mars".ASTROBIOLOGY 10.6(2010):617-628.
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