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首页> 外文期刊>Precambrian Research >SHRIMP U-Pb zircon age constraints on the Late Archaean tectonostratigraphic architecture of the Eastern Goldfields Superterrane, Yilgarn Craton, Western Australia
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SHRIMP U-Pb zircon age constraints on the Late Archaean tectonostratigraphic architecture of the Eastern Goldfields Superterrane, Yilgarn Craton, Western Australia

机译:西澳大利亚伊尔加恩·克拉顿东部金矿田地层的晚古生代地层构造上的SHRIMP U-Pb锆石年龄约束

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摘要

Reassessment of Late Archaean tectonostratigraphic architecture of the Eastern Goldfields Superterrane is based oil 35 new SHRIMP U-Pb zircon ages of supracrustal sequences. The Superterrane comprises at least five terranes with similar to 2810 to <= 2657 Ma volcanic and sedimentary rocks amalgamated by similar to 2660 Ma. Each terrane has distinctive stratigraphy, volcanic facies, geochemistry and timing of volcanism. The Kalgoorlie Terrane comprises a > 2715 to similar to 2692 Ma plume-influenced, but deep-marine, mafic-ultramafic succession (Kambalda Sequence) overlain unconformably by a 2686 +/- 5 to <= 2666 +/- 6 Ma arc-related, deep-marine felsic volcaniclastic-shale succession of tonalite-trondjemite-diorite (TTD) affinity (Kalgoorlie Sequence). Felsic volcaniclastic rocks of the Agnew Domain and northern Yandal Belt are included in the Kalgoorlie Terrane, based on their similar age and geochemistry. The terrane also contains enclaves of > 2740 Ma volcanic sequences that are remnants of autochthonous basement to the Kambalda Sequence. Arc-related bimodal and intermediate volcanic rocks of the Gindalbie Terrane, ranging in age from 2693 +/- 14 to 2676 +/- 5 Ma, are coeval with but geochemically distinct from the Kalgoorlie Sequence. They overlie sequences similar in age and composition to volcanic rocks of the Kurnalpi Terrane. The Kurnalpi Terrane comprises deep-marine, calc-alkalic mafic and intermediate volcanic rocks (Kurnalpi Sequence) ranging in age from 2715 +/- 5 to 2704 +/- 4 Ma, overlain conformably by mafic to ultramafic lavas (Minerie Sequence). Although of overlapping age, arc-related rocks in the Kambalda and Kurnalpi-Minerie Sequences are geochemically different. SHRIMP dating has identified older volcanic sequences in the Laverton (<= 2808 +/- 8 Ma) and Duketon-Burtville (2805 +/- 5 Ma) Terranes, with komadite-hosted Ni-SUlphide deposits at Windarra, in the Laverton Sequence, linked to mafic-ultramafic magmatism similar to 100 million years older than in the Kalgoorlie Terrane. Older sequences in the Laverton Terrane are autochthonous basement to the Kurnalpi Sequence. Synorogenic siliciclastic sequences occur as erosional remnants either in synclinal structures or adjacent to terrane-scale faults, and overlie a regional-scale unconformity. Detrital zircon ages indicate deposition after 2657 +/- 4 Ma, placing important age constraints on the principal shortening event (D-2) and peak metamorphism. Detrital zircon ages also indicate older sources at similar to 2730, similar to 2800, similar to 2950, similar to 3000 Ma and, less commonly, > 3400 Ma. Many zircon age-populations correspond to known supracrustal and crustal rocks in the Yilgarn Craton, but some have no known Source in the Eastern Goldfields Superterrane. Superterrane-wide distribution and evidence for erosion of all crustal and supracrustal rocks >= 2660 Ma in age requires deposition of these sequences after terrane amalgamation, most likely synorogenic to collision between the Eastern 41 Goldfields Superterrane and the Yilgarn Craton.
机译:重新评估东部金矿地区超古时代的古太古地层构造是基于35个壳上层序的新SHRIMP U-Pb锆石年龄。上层地层至少包括5个地貌,它们的火山岩和沉积岩合并成类似于2810到<= 2657 Ma的火山岩,沉积岩类似于2660 Ma。每个地层都有独特的地层,火山相,地球化学和火山活动时间。 Kalgoorlie Terrane包括> 2715到类似于2692 Ma羽流影响的,但深海,镁铁质-超音序演替(Kambalda序列)不整合地覆盖了2686 +/- 5至<= 2666 +/- 6 Ma弧相关,斜长白榴石-长白榴石-闪长岩(TTD)亲和力(卡尔古列序列)的深海长英质火山碎屑页岩演替。根据其相似的年龄和地球化学,Agnew领域和Yandal北部的长英质火山碎屑岩被包括在Kalgoorlie Terrane中。地层还包含大于2740 Ma火山序列的飞地,这些飞地是Kambalda序列的自发基底的残留物。 Gindalbie Terrane的与弧有关的双峰和中火山岩年龄在2693 +/- 14到2676 +/- 5 Ma之间,与Kalgoorlie序列同时期,但在地球化学上却与之不同。它们覆盖着与库纳尔皮地貌的火山岩年龄和成分相似的序列。库纳尔皮地层包括深海,钙碱性镁铁质和中层火山岩(库纳尔皮层序),年龄从2715 +/- 5至2704 +/- 4 Ma,覆盖在镁铁质至超镁铁质熔岩上(Minerie序列)。尽管年龄重叠,但Kambalda和Kurnalpi-Minerie层序中与弧有关的岩石在地球化学上是不同的。 SHRIMP测年发现了Laverton序列中Laverton(<= 2808 +/- 8 Ma)和Duketon-Burtville(2805 +/- 5 Ma)地层中较老的火山岩层,在Windarra的温达拉地区存在着由闪石组成的镍硫化物沉积,与镁铁质-超镁铁质岩浆作用有关,比卡尔古利地带的岩浆作用早一亿年。 Laverton Terrane中的较旧序列是Kurnalpi序列的自发地下室。同步成因的硅质碎屑序列以侵蚀残余的形式出现在斜向构造中或邻近于地表尺度的断层,并覆盖了区域尺度的不整合面。锆石的碎屑年龄表明2657 +/- 4 Ma之后沉积,这对主要缩短事件(D-2)和峰值变质作用形成了重要的年龄限制。锆石的碎屑年龄也表明来源较旧,与2730年相似,与2800年相似,与2950年相似,与3000 Ma类似,较少见于> 3400 Ma。许多锆石年龄种群对应于Yilgarn Craton中已知的表壳和地壳岩石,但有些不知道东部Goldfields Superterrane中的来源。整个上层地层的分布以及年龄大于等于2660 Ma的所有地壳和上地壳岩的侵蚀的证据都要求在这些地层合并后沉积这些层序,最有可能与东部41金矿田上层地层和Yilgarn Craton发生碰撞。

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