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首页> 外文期刊>Australian Journal of Earth Sciences >Pre-1.8 Ga tectono-magmatic evolution of the Kalkadoon-Leichhardt Belt: implications for the crustal architecture and metallogeny of the Mount Isa Inlier, northwest Queensland, Australia
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Pre-1.8 Ga tectono-magmatic evolution of the Kalkadoon-Leichhardt Belt: implications for the crustal architecture and metallogeny of the Mount Isa Inlier, northwest Queensland, Australia

机译:Kalkadoon-Leichhardt带的1.8 Ga以前的构造-岩浆演化:对澳大利亚昆士兰西北部伊萨因里尔山的地壳构造和成矿意义

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摘要

New geochemical, U-Pb zircon and Nd-Hf isotope data for felsic and mafic components of the Kalkadoon-Leichardt Belt (KLB) in the Mount Isa Inlier of northwest Queensland confirm that the evolution and tectonic make-up of this belt prior to 1.8 Ga was closely aligned with that of the Western Fold Belt. Like pre-1.8 Ga magmatic rocks of the Western Fold Belt, those in the KLB are characterised by late Archean to Paleoproterozoic crustal residence ages (T(DM) ca 2.6-2.3 Ga) but the geochemical data suggest stronger within-plate affinities, implying that the KLB intrusions underwent a greater degree of crustal assimilation and/or were emplaced further inboard of the active subduction margin. A new SHRIMP U-Pb zircon age of ca 1.86 Ga from a felsic intrusion in the northern KLB confirms earlier age constraints for the main phase of the Kalkadoon Granite. Nd isotope patterns for intrusions in the Western Fold Belt and the KLB are distinct from those of ca 1.7-1.5 Ga intrusions in the Eastern Fold Belt. This isotopic discrepancy suggests the Eastern Fold Belt underwent a separate evolutionary history and was accreted to the WFB/KLB at some stage prior to, or during, the ca 1.86 Ga Barramundi Orogeny. The occurrence of widespread, isotopically homogeneous ca 1.72 Ga magmatism (Argylla Event) across the entire Mount Isa Inlier implies that amalgamation of the allochthonous Eastern Fold Belt with the North Australian Craton was completed by that time. The significantly elevated metallogenic potential of the Eastern Fold Belt for ca 1540-1500 Ma Fe-oxide-copper-gold, relatively low endowment of the Kalkadoon-Leichhardt Belt, and predominance of ca 1650-1550 Ma base metal occurrences in the Western Fold Belt, are all consequences of the tectonic interplay and lithospheric processes that controlled the evolution of the Mt Isa Inlier prior to ca 1.8 Ga.
机译:昆士兰西北部伊萨山内加尔卡多-莱卡特带(KLB)的长英质和镁铁质成分的新地球化学,U-Pb锆石和Nd-Hf同位素数据证实了该带在1.8之前的演化和构造构造嘎与西方褶皱带紧密相连。像西部褶皱带的1.8 Ga以前的岩浆岩一样,KLB中的岩浆的特征是晚太古代至古元古代的地壳停留年龄(T(DM)大约为2.6-2.3 Ga),但地球化学数据表明板内亲和力更强,这表明认为KLB入侵经历了更大程度的地壳同化和/或被置于俯冲带的内侧。来自KLB北部的长英质侵入的新的SHRIMP U-Pb锆石年龄约为1.86 Ga,证实了Kalkadoon花岗岩主相的年龄限制较早。西部褶皱带和KLB的Nd同位素分布与东部褶皱带的1.7-1.5 Ga侵入相不同。这种同位素差异表明东部褶皱带经历了单独的演化历史,并在大约1.86 Ga的Barramundi造山运动之前或之中的某个阶段被增生到了WFB / KLB。在整个伊萨伊纳尔山上发生了分布广泛,同位素均一的约1.72 Ga岩浆作用(Argylla事件),这意味着到那时为止,已完成了北澳大利亚克拉通对异源东部褶皱带的合并。东部褶皱带的成矿潜力显着升高,大约为1540-1500 Ma的氧化铁-铜-金,Kalkadoon-Leichhardt带的relatively赋相对较低,并且在西部褶皱带的主要为大约1650-1550 Ma的贱金属矿床,是构造相互作用和岩石圈过程的全部结果,这些过程控制了约1.8 Ga之前的Isa Inlier山的演化。

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