首页> 外文期刊>American Mineralogist >Structural parameters of chromite included in diamond and kimberlites from Siberia: A new tool for discriminating ultramafic source
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Structural parameters of chromite included in diamond and kimberlites from Siberia: A new tool for discriminating ultramafic source

机译:西伯利亚钻石和金伯利岩中包含的亚铬铁矿的结构参数:区分超镁铁矿来源的新工具

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摘要

Siberian chromite included in diamond, kimberlite, and spinel peridotite as well as Cr-spinel from garnet-spinel peridotite have been studied by single-crystal X-ray diffraction and electron microprobe analysis. Cell edges and oxygen positional parameters, u, of chromite in diamond and in kimberlite are comparable (cell edge, 8.3249–8.3390 Å; u, 0.26175–0.26213). The structural parameters of chromite in the spinel peridotite are similar to those of chromite grains from ophiolitic complexes, and those of Cr-spinel from garnet-spinel peridotite are comparable to those of Cr-spinel in lherzolitic mantle xenoliths. With the exception of the chromite in garnet-spinel peridotite, all analyzed spinels have a high Cr content. Recasting the chemical analyses according to spinel stoichiometry reveals negligible or no Fe3+. Chrome spinel may be present in heavy concentrates derived from serpentinized mafic and ultramafic rocks as the sole surviving primary mineral and, as such, their particular structural and chemical parameters may represent a new prospecting tool for discriminating the ultramafic source.
机译:用单晶X射线衍射和电子方法研究了金刚石,金伯利岩和尖晶石 橄榄岩中的西伯利亚铬铁矿以及石榴石-尖晶石橄榄岩 中的Cr-尖晶石。 sup> 微探针分析。钻石和金伯利岩中亚铬铁矿的晶胞边缘和氧气位置参数 u是可比较的(cell edge,8.3249–8.3390Å; u,0.26175–0.26213)。 > 尖晶石橄榄岩中亚铬铁矿的结构参数与脂石质复合物中的铬铁矿晶粒,石榴石-尖晶石橄榄石的铬-尖晶石的结构参数相似与亮晶石地幔异种岩中的Cr-spinel具有可比性 。除了石榴石-尖晶石橄榄岩中的亚铬酸盐外,所有 分析的尖晶石都具有较高的Cr含量。根据尖晶石化学计量法重塑化学分析结果显示 或无Fe 3 + 。铬尖晶石可能存在于蛇纹石化的镁铁质和超镁铁质岩石中的重质精矿中,是唯一幸存的主要矿物,因此具有特殊的 结构和化学参数可能代表了一种新的探矿 判别超镁铁质来源的工具。

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  • 来源
    《American Mineralogist》 |2009年第7期|1067-1070|共4页
  • 作者单位

    Department of Earth Sciences, University of Trieste, Via Weiss 8, I-34127, Trieste, Italy;

    Institute of Mineralogy and Petrography, Russian Academy of Sciences, Siberian Branch, Koptyuga ave. 3, 630090, Novosibirsk, Russian Federation;

    Department of Earth Sciences, University of Trieste, Via Weiss 8, I-34127, Trieste, Italy;

    Institute of Mineralogy and Petrography, Russian Academy of Sciences, Siberian Branch, Koptyuga ave. 3, 630090, Novosibirsk, Russian Federation;

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