首页> 外文期刊>American Mineralogist >Hydrothermal synthesis of hematite spherules and jarosite: Implications for diagenesis and hematite spherule formation in sulfate outcrops at Meridiani Planum, Mars
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Hydrothermal synthesis of hematite spherules and jarosite: Implications for diagenesis and hematite spherule formation in sulfate outcrops at Meridiani Planum, Mars

机译:水热合成赤铁矿球和黄钾铁矾:对火星Meridiani Planum硫酸盐露头的成岩作用和赤铁矿球形成的影响

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摘要

We synthesized hematite spherules whose mineralogic, chemical, and crystallographic properties are strikingly similar to those for the hematite-rich spherules in lag deposits on the surface and embedded in outcrops at Meridiani Planum, Mars. The spherules were synthesized in the laboratory along with hydronium jarosite and minor hydronium alunite from Fe-Al-Mg-S-Cl acid-sulfate solutions under hydrothermal conditions. The reaction sequence was (1) precipitation of hydronium jarosite; (2) jarosite dissolution and precipitation of hematite spherules; and (3) precipitation of hydronium alunite upon depletion of hydronium jarosite. The spherules exhibit a radial growth texture with the crystallographic c axis aligned along the radial direction, so that thermal emission spectra have no hematite emissivity minimum at ~390 cm–1. Our experiments show that hydrothermal, acid-sulfate solutions are a pathway for formation of jarosite and the hematite spherules at Meridiani Planum, Mars.
机译:我们合成了赤铁矿球体,其矿物学,化学, 和晶体学性质与 的矿物质在表面滞后沉积物中富含赤铁矿球体非常相似 并嵌入火星的Meridiani Planum的露头中。在实验室中,从Fe-Al-Mg-S-Cl酸硫酸盐 溶液中与水合黄钾铁矾 和次要水合亚硫酸氢钠一起在实验室合成了小球在热液条件下。反应顺序 为:(1)水合黄钾铁矾的沉淀; (2)黄铁矿的溶解 和赤铁矿球的沉淀; (3)水合黄铁矿耗竭后,亚硫酸氢钠水合石沉淀 球体呈放射状生长,其结晶学 c轴沿径向对齐,因此,热发射 光谱处的赤铁矿发射率没有最小值〜390 cm –1 我们的实验表明,热液,酸性硫酸盐溶液 是黄铁矿和赤铁矿小球形成的途径。 > 在火星的Meridiani Planum上。

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  • 来源
    《American Mineralogist》 |2008年第9期|1201-1214|共14页
  • 作者单位

    ESCG-Hamilton Sundstrand, Mail Code JE23, Houston, Texas 77058, U.S.A.;

    Astromaterials Research and Exploration Science Directorate, NASA Johnson Space Center, Houston, Texas 77058, U.S.A.;

    Astromaterials Research and Exploration Science Directorate, NASA Johnson Space Center, Houston, Texas 77058, U.S.A.;

    School of Earth and Space Exploration, Mars Spaceflight Facility, Arizona State University, Tempe, Arizona, 85287-6305, U.S.A.;

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