Ab'/> Use and misuse of Mg- and Mn-rich ilmenite in diamond exploration: A petrographic and trace element approach
首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Use and misuse of Mg- and Mn-rich ilmenite in diamond exploration: A petrographic and trace element approach
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Use and misuse of Mg- and Mn-rich ilmenite in diamond exploration: A petrographic and trace element approach

机译:在钻石勘探中使用和滥用富含Mg-and Mn的Ilmenite:一种岩笔和微量元素方法

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AbstractMagnesian ilmenite is a common kimberlite indicator mineral, although its use in diamond exploration is still controversial. Complex crystallisation and replacement processes have been invoked to explain the wide compositional and textural ranges of ilmenite found in kimberlites. This work aims to shed light on these processes, as well as their implications for diamond exploration. Petrographic studies were combined for the first time with both major- and trace-element analyses to characterise the ilmenite populations found in xenoliths and xenocrysts in two Angolan kimberlites (Congo-Kasai craton).A multi-stage model describes the evolution of ilmenite in these pipes involving: i) crystallisation of ferric and Mg-rich ilmenite either as metasomatic phases or as megacrysts, both in crustal and in metasomatised mantle domains; ii) kimberlite entrainment and xenolith disaggregation producing at least two populations of ilmenite nodules differing in composition; iii) interaction of both types with the kimberlitic magma during eruption, leading to widespread replacement by Mg-rich ilmenite along grain boundaries and fractures. This process produced similar major-element compositions in ilmenites regardless of their primary (i.e., pre-kimberlitic) origin, although the original enrichment in HFSE (Zr, Hf, Ta, Nb) observed in Fe3+-rich xenocrysts is preserved. Finally (iv) formation of secondary Mn-ilmenite by interaction with a fluid of carbonatitic affinity or by infiltration of a late hydrothermal fluid, followed in some cases by subsolidus alteration in an oxidising environment.The complexities of ilmenite genesis may lead to misinterpretation of the diamond potential of a kimberlite during the exploration stage if textural and trace-element information is disregarded. Secondary Mg-enrichment of ilmenite xenocrysts is common and is unrelated to reducing conditions that could favour diamond formation/preservation in the mantle. Similarly, Mn-rich ilmenite should be disregarded as a diamond indicator mineral, unless textural studies can prove its primary origin.Graphical abstractDisplay OmittedHighlights?Ilmenite genesis in kimberlites is a complex, multi-stage process.?Mg-rich ilmenite is produced by interaction with the kimberlitic magma.?Conventional discriminatory diagrams cannot be used to assess the diamond grade.?Combined textural and trace-element studies are essential for diamond exploration.
机译:<![cdata [ 抽象 Magnesian Ilmenite是一个常见的Kimberlite指示器矿物,但其在钻石勘探中的使用仍然存在争议。已经调查了复合的结晶和替代方法以解释在金伯利岩中发现的伊尔梅钛矿的广泛组成和纹理范围。这项工作旨在揭示这些过程,以及他们对钻石勘探的影响。首次将岩体研究合并,主要和微量元素分析,以表征在Xenoliths和XenoCrysts中发现的伊尔梅氏素种群在两个安哥拉金伯利莱(刚果 - Kasai Craton)中。 多级模型描述了涉及的这些管道中的ILMENITE的演变:i)富含铁和Mg的钛矿的结晶,也可以作为偏离阶段或甲酰基,在地壳和外壳中在弥撒的地幔域中; ii)Kimberlite夹带和Xenolith分解产生组成中不同两种钛铁矿结节的群体; III)两种类型在喷发过程中与Kimberlitic Magma的相互作用,导致Mg富含Mg的钛矿沿晶界和骨折的广泛替代。该方法在Ilmenites中产生了类似的主要元素组合物,而不管其主要(即,kimberlitic)起源,尽管在Fe 3 + -RICH XENOCRYSTS保存。最后(iv)通过与碳酸根亲和力的流体的相互作用或通过渗透晚水热流体的相互作用形成二次Mn-Ilmenite,在某些情况下通过氧化环境中的子瘤改变进行。 如果忽视探测阶段,ilmenite genesis的复杂性可能导致探测阶段的金伯拉特金刚石电位的误解。伊尔梅钛矿XenoCrysts的二次Mg富集是常见的,与减少可以有利于地幔中的金刚石形成/保存的条件无关。同样地,富含Mn的钛铁矿应该被忽略作为金刚石指示剂矿物质,除非纹理研究可以证明其主要原因。 图形摘要 显示省略 突出显示 金伯利特中的Ilmenite Genesis是一个复杂的多阶段ESS。 富含Kimberlitic Magma的富含ilmenite。 传统歧视图不能用于评估钻石等级。 组合的纹理和跟踪元素研究对于钻石勘探至关重要。< / ce:para>

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