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Crystal chemistry of the natrojarosite-jarosite and natrojarosite-hydronium jarosite solid-solution series: A synthetic study with full Fe site occupancy

机译:钠铁黄铁矾-钠铁黄铁矾和钠铁黄铁矾-黄钾铁矾固溶体系列的晶体化学:全铁位点占据的合成研究

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摘要

Members of the natrojarosite-hydronium jarosite [(Na,H3O)Fe3(SO4)2(OH)6] and jarosite-natrojarosite [(K,Na)Fe3(SO4)2(OH)6] solid-solution series were synthesized and investigated by Rietveld analysis of X-ray powder diffraction data. The synthesized samples have full Fe occupancy, where in many previous studies there were significant vacancies in the B site. Well-defined trends can be seen in the unit-cell parameters across the solid-solution series in the synthetic samples. The majority of the samples in this study were directly synthesized under hydrothermal conditions at 140 °C. End-member natrojarosite was synthesized using a two-step method, where the initial sample was heated in a 1.0 m H2SO4–0.5Na2SO4 solution at 200 °C for 3 days, yielding a sample with 100% Na occupancy. Many of the samples were initially zoned and required grinding and re-heating in the reactant solution for homogenization. Substitution of H3O and K into natrojarosite changes unit-cell parameters in a linear fashion. The unit-cell parameters presented here are significantly different than the majority of previous studies on synthetic samples, as samples in the current study have full Fe occupancy and the Na-K jarosite series has no H3O substitution in the A site. Substitution in the A site mainly affects unit-cell parameter c with little change in a. As Na occupancy increases there is a decrease in A-O2 and A-O3 distances and a consequent increase in Fe-O2 and Fe-O3 distance leading to an overall decrease in unit-cell parameter c in both the Na-H3O and Na-K jarosite series. The synthetic samples are compared to natural samples from mine waste deposits in Rio Tinto (Huelva, Spain), Ely Mine (Vermont), and a mineral collecting locality near Sharbot Lake (Ontario), as well as natural and synthetic samples documented in the literature. Based on unit-cell parameters many of the natural samples appear to have full Fe occupancy and correlate well with the synthetic samples from this study. The infrared spectra of the samples were analyzed, and there is a gradual change in the spectral features across the solid-solution series between end-members. The results from this study will aid in the interpretation of the possible chemical compositions of natural jarosite group minerals in mine waste and on Mars.
机译:钠铁黄铁矿-水合黄钾铁矾[(Na,H 3 O)Fe 3 (SO 4 2 (OH) 6 ] 和黄钾铁矾([K,Na)Fe 3 (SO 4 )<合成并通过X射线粉末衍射的Rietveld分析 研究了sub> 2 (OH) 6 ]固溶体系列。数据。合成的样品具有 的Fe占有率,在以前的许多研究中,B位置均存在 显着的空位。可以在合成样品的固溶 系列中的晶胞参数中看到明确定义的趋势。本研究中的大多数样品 是在140°C的水热条件下直接合成的。使用 两步法合成端基钠铁矾,其中初始样品在 1.0 m H 2 SO 中加热4 –0.5Na 2 SO 4 溶液在200°C下放置3天, 获得Na占100%的样品。最初对许多样品 进行了分区,并需要在反应液中对它们进行研磨和重新加热以进行均质化。将H 3 O 和K代入钠铁矾,以线性 方式改变单位细胞参数。此处显示的晶胞参数与先前大多数关于合成 样品的研究存在显着差异,因为当前研究中的样品具有充分的Fe占有率 ,并且Na-K黄钾铁矾系列在 A站点中没有H 3 O取代。 A位置的替代主要影响单位单元参数 c,而a的变化很小。随着Na占有率的增加 ,A-O2和A-O3距离减小,随之而来的 增大,Fe-O2和Fe-O3距离导致整体减小< Na> H 3 O和Na-K黄钾铁矾 系列的晶胞参数c中的sup> 。将合成样品与来自里约热内卢(西班牙韦尔瓦),Ely Mine (佛蒙特州)的矿山废物矿床中的天然样品 以及沙博特湖附近的矿产采集地点< sup> (安大略省),以及文献中记录的 的天然和合成样品。基于晶胞参数,许多 天然样品似乎具有完全的Fe占有率,并且与本研究的合成样品具有很好的相关性。分析了样品的红外 光谱,并且两端成员之间的固溶体系列 的光谱特征有逐渐的 变化。 。这项研究的结果将有助于 解释矿山废物和火星中 天然黄钾铁矾族矿物的可能化学成分。

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  • 来源
    《American Mineralogist》 |2008年第6期|853-862|共10页
  • 作者单位

    Department of Geological Sciences and Geological Engineering, Queen’s University, Kingston, Ontario, Canada;

    Department of Geological Sciences and Geological Engineering, Queen’s University, Kingston, Ontario, Canada;

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  • 正文语种 eng
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  • 入库时间 2022-08-17 23:14:39

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