首页> 外文OA文献 >Structural characteristics and Re–Os dating of quartz-pyrite veins in the Lewisian Gneiss Complex, NW Scotland : evidence of an Early Paleoproterozoic hydrothermal regime during terrane amalgamation.
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Structural characteristics and Re–Os dating of quartz-pyrite veins in the Lewisian Gneiss Complex, NW Scotland : evidence of an Early Paleoproterozoic hydrothermal regime during terrane amalgamation.

机译:苏格兰西北西北刘易斯片麻岩复合体中石英黄铁矿脉的结构特征和Re-Os年代:地层合并过程中早期古元古代热液状态的证据。

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摘要

In the Archaean basement rocks of the Assynt and Gruinard terranes of the mainland Lewisian Complex in NW Scotland, a regional suite of quartz-pyrite veins cross-cut regional Palaeoproterozoic (Badcallian, ca. 2700 Ma; Inverian, ca. 2480 Ma) fabrics and associated Scourie dykes. The quartz veins are overprinted by amphibolite-greenschist facies Laxfordian deformation fabrics (ca. 1760 Ma) and later brittle faults. The hydrothermal mineral veins comprise a multimodal system of tensile/hybrid hydraulic fractures which are inferred to have formed during a regional phase of NW-SE extension. The almost orthogonal orientation of the quartz veins (NE-SW) to the Scourie dykes (NW-SE) are incompatible and must result from distinct paleostress regimes suggesting they are related to different tectonic events. This hypothesis is supported by Rhenium–Osmium dating of pyrite that yields an age of 2249 ± 77 Ma, placing the vein-hosted mineralisation event after the oldest published dates for the Scourie Dykes (2420 Ma), but before the youngest ages (1990 Ma). Sulphur isotope analysis suggests that the sulphur associated with the pyrite is isotopically indistinguishable from primitive mantle. The presence of the ca. 2250 Ma quartz-pyrite veins in both the Assynt and Gruinard terranes confirms that these crustal units were amalgamated during or prior to Inverian deformation. The absence of the veins in the Rhiconich Terrane is consistent with the suggestion that it was not finally amalgamated to the Assynt Terrane until the Laxfordian.
机译:在苏格兰西北部大陆刘易斯综合体的Assynt和Gruinard地层的古生岩基底岩石中,一系列的石英-黄铁矿脉横切了古元古代地区(巴德卡利亚,大约2700 Ma; Inverian,大约2480 Ma),并且相关的Scourie堤坝。石英脉被角闪石-绿片岩相Laxfordian变形构造(约1760 Ma)和后来的脆性断层覆盖。热液矿物脉包括张拉/混合水力压裂的多峰系统,据推测是在西北-东南伸展的区域阶段形成的。石英脉(NE-SW)与Scourie堤(NW-SE)几乎正交的取向是不相容的,并且必须来自不同的古应力状态,表明它们与不同的构造事件有关。黄铁矿的-dating定年支持这一假说,其年龄为2249±77 Ma,将脉状矿化事件置于Scourie Dykes的最晚公布日期(2420 Ma)之后,但出现在最年轻的年龄之前(1990 Ma)。 )。硫同位素分析表明,与黄铁矿伴生的硫在同位素上与原始地幔没有区别。 ca的存在。 Assynt和Gruinard地层中的2250 Ma石英黄铁矿脉线证实了这些地壳单元在Inverian变形期间或之前被合并了。 Rhiconich Terrane中没有静脉,这与直到Laxfordian才将其最终合并到Assynt Terrane的建议相符。

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