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火星马沃斯谷分层露头中的多个矿质层表明早期火星上地球化学环境的变化。

Multiple mineral horizons in layered outcrops at Mawrth Vallis, Mars, signify changing geochemical environments on early Mars.

作者信息

Bishop Janice L, Gross Christoph, Danielsen Jacob, Parente Mario, Murchie Scott L, Horgan Briony, Wray James J, Viviano Christina, Seelos Frank P

机构信息

SETI Institute, Mountain View, CA, United States of America.

Freie Universität Berlin, Berlin, Germany.

出版信息

Icarus. 2020 May 1;341. doi: 10.1016/j.icarus.2020.113634. Epub 2020 Jan 17.

Abstract

Refined calibrations of CRISM images are enabling identification of smaller deposits of unique aqueous materials on Mars that reveal changing environmental conditions at the region surrounding Mawrth Vallis. Through characterization of these clay-sulfate assemblages and their association with the layered, phyllosilicate units of this region, more details of the aqueous geochemical history can be gleaned. A stratigraphy including five distinct mineral horizons is mapped using compositional data from CRISM over CTX and HRSC imagery across 100s of km and from CRISM over HiRISE imagery across 100s of meters. Transitions in mineralogic units were characterized using visible/near-infrared (VNIR) spectral properties and surface morphology. We identified and characterized complex "doublet" type spectral signatures with two bands between 2.2 and 2.3 μm at one stratigraphic horizon. Based on comparisons with terrestrial sites, the spectral "doublet" unit described here may reflect the remnants of a salty, evaporative period that existed on Mars during the transition from formation of Fe-rich phyllosilicates to Al-rich phyllosilicates. Layered outcrops observed at Mawrth Vallis are thicker than in other altered regions of Mars, but may represent processes that were more widespread in wet regions of the planet during its early history. The aqueous geochemical environments supporting the outcrops observed here include: (i) the formation of Fe+-rich smectites in a warm and wet environment, (ii) overlain by a thin ferrous-bearing clay unit that could be associated with heating or reducing conditions, (iii) followed by a transition to salty and/or acidic alteration phases and sulfates (characterized by the spectral "doublet" shape) in an evaporative setting, (iv) formation of Al-rich phyllosilicates through pedogenesis or acid leaching, and (v) finally persistence of poorly crystalline aluminosilicates marking the end of the warm climate on early Mars. The "doublet" type units described here are likely composed of clay-sulfate assemblages formed in saline, acidic evaporative environments similar to those found in Western Australia and the Atacama desert. Despite the chemically extreme and variable waters present at these terrestrial, saline lake environments, active ecosystems are present; thus, these "doublet" type units may mark exciting areas for continued exploration important to astrobiology on Mars.

摘要

对CRISM图像进行的精细校准,能够识别出火星上独特含水物质的较小沉积物,这些沉积物揭示了马沃斯谷周围地区不断变化的环境条件。通过对这些粘土 - 硫酸盐组合及其与该地区层状叶硅酸盐单元的关联进行表征,可以收集到更多关于水地球化学历史的细节。利用CRISM在跨越数百公里的CTX和HRSC图像上以及在跨越数百米的HiRISE图像上的成分数据,绘制了一个包含五个不同矿物层的地层图。利用可见/近红外(VNIR)光谱特性和表面形态对矿物单元的转变进行了表征。我们在一个地层层面上识别并表征了复杂的“双峰”型光谱特征,在2.2至2.3μm之间有两个波段。基于与地球站点的比较,这里描述的光谱“双峰”单元可能反映了火星从富铁叶硅酸盐形成向富铝叶硅酸盐转变期间存在的一个咸的、蒸发期的残余物。在马沃斯谷观察到层状露头比火星其他蚀变区域的更厚,但可能代表了在该行星早期历史期间在潮湿区域更广泛存在的过程。支持这里观察到的露头的水地球化学环境包括:(i)在温暖潮湿环境中形成富铁蒙脱石,(ii)被一个可能与加热或还原条件相关的薄含铁粘土单元覆盖,(iii)随后在蒸发环境中转变为咸的和/或酸性蚀变阶段及硫酸盐(以光谱“双峰”形状为特征),(iv)通过土壤发生作用或酸浸形成富铝叶硅酸盐,以及(v)最后是 poorly crystalline aluminosilicates 的持续存在,标志着早期火星温暖气候的结束。这里描述的“双峰”型单元可能由在类似于澳大利亚西部和阿塔卡马沙漠发现的咸的、酸性蒸发环境中形成的粘土 - 硫酸盐组合组成。尽管在这些陆地盐湖环境中存在化学性质极端且多变的水体,但仍有活跃的生态系统存在;因此,这些“双峰”型单元可能标志着对火星天体生物学持续探索的令人兴奋的重要区域。

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