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Silicic volcanism on Mars evidenced by tridymite in high-SiO2 sedimentary rock at Gale crater

机译:大风火山口高SiO2沉积岩中的辉绿岩证明火星上的硅质火山作用

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摘要

Tridymite, a low-pressure, high-temperature (>870 °C) SiO2 polymorph, was detected in a drill sample of laminated mudstone (Buckskin) at Marias Pass in Gale crater, Mars, by the Chemistry and Mineralogy X-ray diffraction instrument onboard the Mars Science Laboratory rover Curiosity. The tridymitic mudstone has ∼40 wt.% crystalline and ∼60 wt.% X-ray amorphous material and a bulk composition with ∼74 wt.% SiO2 (Alpha Particle X-Ray Spectrometer analysis). Plagioclase (∼17 wt.% of bulk sample), tridymite (∼14 wt.%), sanidine (∼3 wt.%), cation-deficient magnetite (∼3 wt.%), cristobalite (∼2 wt.%), and anhydrite (∼1 wt.%) are the mudstone crystalline minerals. Amorphous material is silica-rich (∼39 wt.% opal-A and/or high-SiO2 glass and opal-CT), volatile-bearing (16 wt.% mixed cation sulfates, phosphates, and chlorides−perchlorates−chlorates), and has minor TiO2 and Fe2O3T oxides (∼5 wt.%). Rietveld refinement yielded a monoclinic structural model for a well-crystalline tridymite, consistent with high formation temperatures. Terrestrial tridymite is commonly associated with silicic volcanism, and detritus from such volcanism in a “Lake Gale” catchment environment can account for Buckskin’s tridymite, cristobalite, feldspar, and any residual high-SiO2 glass. These cogenetic detrital phases are possibly sourced from the Gale crater wall/rim/central peak. Opaline silica could form during diagenesis from high-SiO2 glass, as amorphous precipitated silica, or as a residue of acidic leaching in the sediment source region or at Marias Pass. The amorphous mixed-cation salts and oxides and possibly the crystalline magnetite (otherwise detrital) are primary precipitates and/or their diagenesis products derived from multiple infiltrations of aqueous solutions having variable compositions, temperatures, and acidities. Anhydrite is post lithification fracture/vein fill.
机译:在化学和矿物学X射线衍射仪上,在火星Gale火山口的Marias Pass的层状泥岩(Buckskin)钻探样品中检测到了Tridymite(一种低压,高温(> 870°C)的SiO2多晶型物)。登上火星科学实验室漫游者好奇号。三叠层泥岩具有〜40 wt。%的晶体和〜60 wt。%的X射线无定形材料,以及具有〜74 wt。%SiO2的整体组成(Alpha粒子X射线光谱仪分析)。斜长石(〜17 wt。%的大块样品),鳞石英(〜14 wt。%),山idine(〜3 wt。%),缺阳离子磁铁矿(〜3 wt。%),方石英(〜2 wt。%) ,硬石膏(〜1 wt。%)是泥岩晶体矿物。非晶态材料富含二氧化硅(约39 wt。%的opal-A和/或高SiO2玻璃和opal-CT),挥发性成分(16 wt。%的混合阳离子硫酸盐,磷酸盐和氯化物-高氯酸盐-氯酸盐),并且含有少量的TiO2和Fe2O3T氧化物(〜5 wt。%)。 Rietveld精炼产生了结晶良好的鳞石英的单斜晶结构模型,与高地层温度一致。陆生的硅藻土通常与硅质火山作用有关,在“大风湖”集水环境中,这种火山岩的碎屑可能构成了Buckskin的硅藻土,方石英,长石和任何残留的高SiO2玻璃。这些共生碎屑相可能来自大风火山口壁/边缘/中央峰。透明硅石可能在高SiO2玻璃成岩过程中以无定形沉淀二氧化硅的形式形成,或以酸性浸出的残留物形式出现在沉积物源区或Marias Pass处。无定形的混合阳离子盐和氧化物以及可能的结晶磁铁矿(否则是碎屑的)是主要的沉淀物和/或它们的成岩产物,它们来自具有不同组成,温度和酸度的水溶液的多次渗透。硬石膏是石化后的裂缝/静脉填充。

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