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Spectral properties of Lake Superior banded iron formation: Application to martian hematite deposits

机译:苏必利尔湖带状铁层的光谱性质:在火星赤铁矿矿床中的应用

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摘要

Several locations have been identified on Mars that expose bulk, coarsely crystalline gray hematite. These deposits have been interpreted as being sedimentary and formed in aqueous environments. Lake Superior Type (LST) banded iron formation (BIF) was investigated as a spectral and possible process analog to these deposits. In northern Michigan, LST BIF formed in a sedimentary, continental shelf or shallow basin environment under stable tectonic conditions, and the oxide facies contains gray, crystalline hematite. These deposits are Proterozoic in age and contain microfossils associated with the early diversification of life on Earth. Samples of the hematite-bearing oxide facies, as well as the carbonate facies, were collected and analyzed for their spectral and geochemical characteristics. Sample spectra were measured in the visible, near-infrared, and thermal infrared for comparison with remote and in situ spectra obtained at Mars. Thin section analysis, as well as X-ray diffraction and scaning electron microscopy measurements, were performed to determine detailed geochemistry. There is no evidence for BIF at Opportunity's Meridiani landing site, and the results of this work will provide useful data for determining whether BIFs exist elsewhere on Mars and are, thus, relevant to current and future Mars exploration missions.
机译:在火星上已经确定了几个位置,这些位置暴露了散装的粗晶体灰色赤铁矿。这些沉积物已被解释为是沉积物,是在水性环境中形成的。研究了苏必利尔湖型(LST)带状铁形成物(BIF),作为这些矿床的光谱和可能的过程类似物。在密歇根州北部,LST BIF在稳定的构造条件下形成于沉积,大陆架或浅盆地环境中,并且氧化物相含有灰色结晶赤铁矿。这些沉积物年龄是元古代的,包含与地球生命早期多样化有关的微化石。收集了赤铁矿氧化物相以及碳酸盐相的样品,并对其光谱和地球化学特征进行了分析。在可见,近红外和热红外中测量样品光谱,以与在火星获得的远程和原位光谱进行比较。进行了薄层分析以及X射线衍射和扫描电子显微镜测量,以确定详细的地球化学。没有机会在Meridiani登陆点发现BIF的证据,这项工作的结果将为确定BIF是否在火星上其他地方提供有用数据,从而与当前和未来的火星探测任务有关。

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