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首页> 外文期刊>Journal of geophysical research. Planets >Mineralogy, provenance, and diagenesis of a potassic basaltic sandstone on Mars: CheMin X-ray diffraction of the Windjana sample (Kimberley area, Gale Crater)
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Mineralogy, provenance, and diagenesis of a potassic basaltic sandstone on Mars: CheMin X-ray diffraction of the Windjana sample (Kimberley area, Gale Crater)

机译:火星上钾盐玄武质砂岩的矿物学,物源和成岩作用:温贾那样品的化学矿物X射线衍射(金伯利地区,大风火山口)

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摘要

The Windjana drill sample, a sandstone of the Dillinger member (Kimberley formation, Gale Crater, Mars), was analyzed by CheMin X-ray diffraction (XRD) in the MSL Curiosity rover. From Rietveld refinements of its XRD pattern, Windjana contains the following: sanidine (21% weight, ~Or_(95)); augite (20%); magnetite (12%); pigeonite; olivine; plagioclase; amorphous and smectitic material (~25%); and percent levels of others including ilmenite, fluorapatite, and bassanite. From mass balance on the Alpha Proton X-ray Spectrometer (APXS) chemical analysis, the amorphous material is Fe rich with nearly no other cations-like ferrihydrite. The Windjana sample shows little alteration and was likely cemented by its magnetite and ferrihydrite. From ChemCam Laser-Induced Breakdown Spectrometer (LIBS) chemical analyses, Windjana is representative of the Dillinger and Mount Remarkable members of the Kimberley formation. LIBS data suggest that the Kimberley sediments include at least three chemical components. The most K-rich targets have 5.6% K_2O, ~1.8 times that of Windjana, implying a sediment component with >40% sanidine, e.g., a trachyte. A second component is rich in mafic minerals, with little feldspar (like a shergottite). A third component is richer in plagioclase and in Na_2O, and is likely to be basaltic. The K-rich sediment component is consistent with APXS and ChemCam observations of K-rich rocks elsewhere in Gale Crater. The source of this sediment component was likely volcanic. The presence of sediment from many igneous sources, in concert with Curiosity's identifications of other igneous materials (e.g.,mugearite), implies that the northern rimof Gale Crater exposes a diverse igneous complex, at least as diverse as that found in similar-age terranes on Earth.
机译:在MSL好奇号流动站中,通过CheMin X射线衍射(XRD)分析了Windjana钻探样品(Dillinger成员的砂岩(金伯利岩层,Gale Crater,火星))。从Rietveld对其XRD图谱的精炼中,Windjana包含以下成分:尿苷(21%重量,〜Or_(95)); ug石(20%);磁铁矿(12%);皂石黄绿;斜长石非晶和近晶材料(〜25%);和其他含量的百分比,包括钛铁矿,氟磷灰石和堇青石。从Alpha质子X射线光谱仪(APXS)化学分析的质量平衡来看,非晶态材料富含铁,几乎没有其他类似阳离子的水铁矿。 Windjana样品几乎没有变化,并且可能被其磁铁矿和水铁矿胶结。通过ChemCam激光诱导击穿光谱仪(LIBS)的化学分析,Windjana代表了金伯利岩层的Dillinger和Mount Remarkable成员。 LIBS数据表明,金伯利沉积物至少包含三种化学成分。富钾目标最多的是K_2O,为5.6%,是Windjana的1.8倍,这意味着沉积物中的Sanidine含量> 40%,例如是曲奇。第二成分富含镁铁矿质,几乎没有长石(像黑钙铁矿)。第三个成分的斜长石和Na_2O含量较高,并且可能是玄武质。富含钾的沉积物成分与大风火山口其他地方的富含钾的岩石的APXS和ChemCam观测结果一致。该沉积物成分的来源可能是火山。来自许多火成岩的沉积物的存在,与好奇心对其他火成岩物质(例如,辉绿岩)的识别相结合,意味着大风火山口的北缘暴露出了一种多样的火成复合体,至少与在类似年龄的地壳中发现的一样。地球。

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