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Spectral reflectance properties of carbonates from terrestrial analogue environments: Implications for Mars

机译:来自地球类似环境的碳酸盐的光谱反射特性:对火星的影响

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摘要

Spectroscopic analysis of carbonate-bearing samples from a variety of terrestrial environments provides important insights into spectroscopy-based investigations of Mars designed to detect the presence of carbonate minerals. In order to better address the spectral detectability of carbonates on Mars, we examined the spectral reflectance properties of carbonates and carbonate-bearing lithologies from a variety of terrestrial environments, including impact structures (Haughton, St. Martin, Eagle Butte), landslides (Frank), quarrying operations (Hecla), carbonates affected by weathering (Haughton, East German Creek), and sulfide-sulfate-carbonate assemblages (Central Manitoba). The goal is to identify processes and environments that can affect spectroscopy-based carbonate detection, for more detailed follow-on studies. Common carbonates appear to be stable, from a spectroscopic perspective, to various tectonic processes. Iron oxides/hydroxides do not appear to significantly affect spectral detectability of carbonates, as the spectrum-altering effects of these phases are largely restricted to the region below ~1 μm, while useful carbonate absorption bands occur longward of ~1.8 μm. Carbonate detection and characterization in the 0.35-2.5-μm region is largely restricted to a single absorption feature in the 2.3-μm region, which can be problematic for robust carbonate identification. While tectonic processes and iron oxide/hydroxide staining do not appear to significantly impair carbonate detection based on the 2.3-μm region absorption band, a number of other factors can affect carbonate detection. These include the fact that this absorption band is weak compared to many other minerals, a number of other minerals also exhibit absorption bands in this wavelength region (leading to possible misidentifications), and that even small abundances of minerals that absorb strongly in this region will reduce the strength of the carbonate absorption band. Identifying the nature of accessory minerals associated with carbonates can be used to constrain possible formation environments. Ongoing research at carbonate-bearing terrestrial analogue sites will continue to provide new insights into the occurrence and detection of carbonates on Mars.
机译:来自各种陆地环境的含碳酸盐样品的光谱分析为基于光谱的火星研究提供了重要的见解,这些研究旨在检测碳酸盐矿物的存在。为了更好地解决火星上碳酸盐的光谱可探测性,我们研究了各种地球环境中碳酸盐和含碳酸盐岩性的光谱反射特性,包括冲击结构(霍顿,圣马丁,伊格·巴特),滑坡(弗兰克),采石场(赫克拉),受风化影响的碳酸盐(霍顿,东德意志溪)和硫化物-硫酸盐-碳酸盐组合(马尼托巴中部)。目标是确定可能影响基于光谱的碳酸盐检测的过程和环境,以进行更详细的后续研究。从光谱学的角度来看,常见的碳酸盐似乎对各种构造过程都是稳定的。氧化铁/氢氧化铁似乎并未显着影响碳酸盐的光谱可检测性,因为这些相的光谱改变效应主要限于约1μm以下的区域,而有用的碳酸盐吸收带则沿〜1.8μm的远处出现。 0.35-2.5-μm区域中的碳酸盐检测和表征在很大程度上限于2.3-μm区域中的单个吸收特征,这对于可靠地识别碳酸盐可能会带来问题。虽然构造过程和氧化铁/氢氧化铁染色似乎并未严重损害基于2.3-μm区域吸收带的碳酸盐探测,但许多其他因素也会影响碳酸盐探测。其中包括以下事实:与许多其他矿物相比,该吸收带较弱;许多其他矿物在该波长区域中也具有吸收带(导致可能的错误识别);即使在此区域中吸收极强的矿物中即使有少量矿物也会吸收。降低碳酸盐吸收带的强度。确定与碳酸盐有关的辅助矿物的性质可用于限制可能的地层环境。在含碳酸盐的地球类似位点正在进行的研究将继续为火星上碳酸盐的发生和探测提供新的见解。

著录项

  • 来源
    《Planetary and space science》 |2010年第4期|p.522-537|共16页
  • 作者单位

    Department of Geography, University of Winnipeg, 515 Portage Avenue, Winnipeg, MB, Canada R3B 2E9;

    rnGeological Survey of Canada-Calgary, Natural Resources Canada, 3303 33rd St. N.W., Calgary, Alberta, Canada T2L-2A7;

    rnDepartment of Geological Sciences, University of Manitoba, Winnipeg, MB, Canada R3T 2N2;

    rnCanadian Space Agency, 6767, route de l'Aeroport, Saint-Hubert, QC, Canada J3Y 8Y9;

    rnDepartment of Earth Sciences, University of Western Ontario, 1151 Richmond Street, London, ON, Canada N6A 5B7 Department of Physics & Astronomy, University of Western Ontario, 1151 Richmond Street, London, ON, Canada N6A 5B7;

    rnDepartment of Geography, University of Winnipeg, 515 Portage Avenue, Winnipeg, MB, Canada R3B 2E9;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    mars; analogue research; carbonates; impact cratering; spectroscopy;

    机译:火星;模拟研究;碳酸盐撞击坑光谱学;

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