首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Understanding Re-Os systematics and model ages in metamorphosed Archean ultramafic rocks: A single mineral to whole-rock investigation
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Understanding Re-Os systematics and model ages in metamorphosed Archean ultramafic rocks: A single mineral to whole-rock investigation

机译:了解变质太古代超基性岩中的Re-Os系统学和模型年龄:从单一矿物到整个岩石的研究

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(187)Rhenium-Os-187 model ages are used to infer the timing of crust-mantle differentiation events and evolution of lithospheric mantle. However, ancient samples often have long and complex histories of metamorphism, metasomatism and deformation that may be problematic if these processes caused disturbance the Re-Os system. Such processes have been shown to disturb the Re-Os systematics of ophiolitic chromitites, but the effect on stratiform chromitites has not previously been investigated. Here we present a detailed petrographic and Re-Os isotopic study of chromitites, chromite-bearing meta-peridotites and single chromite grains from the Ujaragssuit nunat layered ultramafic intrusion, southwest Greenland, which has experienced intense deformation and at least two episodes of metamorphism up to amphibolite facies. We report the first ever Re-Os isotope and platinum-group element concentration data for single chromite grains achieved by single grain dissolution and isotope dilution. Micrometric Os-, Ir-, Ru - sulphide and sulpharsenide inclusions in chromite occur in the massive chromitites; these accessory phases host a significant portion of the Os, Ir and Ru in these samples. The remaining Os-Ir-Ru budget, along with Pt and Pd, appears to be homogeneously distributed within the chromite, occurring either in the lattice itself, as evenly distributed sub-micrometric alloy inclusions in chromite (unresolvable using the techniques applied in this study) or a combination of both. Rhenium is hosted in silicates, as predicted by previous studies. Both single-grain and whole-rock Re-Os isotope systematics yield unfeasibly young Re-Os model ages due to their radiogenic Os-187/Os-188 compositions. This could result from country rock contamination of the original melt from which the Ujaragssuit nunat intrusion crystallised, and/or from disturbance of the Re-Os isotope systematics of these rocks during regional metamorphic events at similar to 2.8 and/or similar to 3.75 Ga. We conclude that it is vital to establish a complete sample history before interpreting Re-Os isotope data and the validity of model ages, as the Re-Os system is sensitive to disturbance. It is feasible that in some cases single chromite grains or chromite mineral separates may offer a more robust and meaningful isotopic record than silicates, because Re is preferentially hosted in silicates relative to chromite. Alternatively, the Pt-190-Os-186 decay system, applied to whole-rock samples, may provide a more reliable chronometer than Re-187-Os-187 model ages in samples that have experienced crustal contamination and/or metamorphic disturbance. (C) 2015 Elsevier Ltd. All rights reserved.
机译:(187)Rhenium-Os-187模型年龄被用来推断地幔幔分化事件和岩石圈地幔演化的时间。但是,古代样本通常具有悠久而复杂的变质,交代和变形历史,如果这些过程引起Re-Os系统的扰动,可能会出现问题。业已证明,此类过程会干扰脂橄榄性铬铁矿的Re-Os系统,但以前尚未研究过对层状铬铁矿的影响。在这里,我们对格陵兰西南部Ujaragssuit nunat层状超镁铁质侵入岩中的铬铁矿,含铬铁矿的橄榄岩和单个铬铁矿的岩相和Re-Os同位素进行了详细的研究,该岩体经历了强烈的变形和至少两次变质作用,直至闪石相。我们报告了通过单颗粒溶解和同位素稀释获得的单铬铁矿颗粒的首个Re-Os同位素和铂族元素浓度数据。铬铁矿中微量的Os-,Ir-,Ru-硫化物和亚硫化物夹杂物存在于块状铬铁矿中。这些辅助相包含这些样品中Os,Ir和Ru的很大一部分。剩余的Os-Ir-Ru预算以及Pt和Pd似乎均匀地分布在铬铁矿中,发生在晶格本身中,因为铬铁矿中的亚微米合金夹杂物分布均匀(使用本研究中的技术无法解析) )或两者的组合。如先前的研究所预测的,is以硅酸盐为主体。由于单核和全岩Re-Os的放射源性Os-187 / Os-188成分,它们产生的Re-Os模型年龄都不太可行。这可能是由于Ujaragssuit裸岩侵入物从其结晶而来的原始熔体的乡村岩石污染所致,和/或由于区域变质事件中这些岩石的Re-Os同位素系统在2.8和/或3.75 Ga附近的扰动而引起的。我们认为,在解释Re-Os同位素数据和模型年龄的有效性之前,建立完整的样本历史至关重要,因为Re-Os系统对干扰很敏感。在某些情况下,单铬铁矿晶粒或铬铁矿矿物分离物可能比硅酸盐提供更坚固和有意义的同位素记录是可行的,因为相对于铬铁矿,Re优先存在于硅酸盐中。可替代地,在经历了地壳污染和/或变质扰动的样品中,应用于整块岩石样品的Pt-190-Os-186衰减系统可以提供比Re-187-Os-187模型年龄更可靠的计时器。 (C)2015 Elsevier Ltd.保留所有权利。

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