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首页> 外文期刊>Precambrian Research >Reconstruction of an extensive Archaean dacitic submarine volcanic complex associated with the komatiite-hosted Mt Keith nickel deposit, Agnew-Wiluna Greenstone Belt, Yilgarn Craton, Western Australia
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Reconstruction of an extensive Archaean dacitic submarine volcanic complex associated with the komatiite-hosted Mt Keith nickel deposit, Agnew-Wiluna Greenstone Belt, Yilgarn Craton, Western Australia

机译:与西澳大利亚州伊尔加恩克雷顿的阿格纽-威卢纳绿石带,由科马蒂特岩山基思(Kt)镍矿相关的广泛的古生代高寒洋山海底火山复合体的重建

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摘要

Felsic volcanic rock units characterise a large portion of the 2.7 Ga. Agnew-Wiluna Greenstone Belt (Western Australia) stratigraphy and form the hangingwall and footwall sequences to several komatiite-hosted nickel sulphide deposits in the region. The Mt Keith region of the Agnew-Wiluna Greenstone Belt (AWB) comprises a sequence of felsic, mafic and ultramafic extrusive and intrusive units. The felsic volcanic dominated footwall and hangingwall sequences to the Mt Keith nickel deposit comprise cyclical packages of coherent dacite lavas, with associated monomictic in situ to resedimented breccias. Clasts in the monomictic breccia facies are identical to the coherent dacite and the two facies are often in gradational contact. The dacites are interpreted as submarine lavas and the breccias as associated autoclastic facies (hyaloclastite, autobreccia). These dacite lavas are inferred to have been emplaced into a deep water environment which retarded volatile exsolution suppressing explosive fragmentation and increasing lava mobility, resulting in large tabular flow units. The AWB sequence has undergone multiple periods of deformation and metamorphism subsequent to emplacement resulting in strain and alteration in large sections of the coherent lava facies. A notable textural variant within the lavas is a set of pseudo-textures/structures resembling tuffaceous and brecciated dacitic units. The process of pseudo-clastic texture/structure generation is related to a combination of polyphase alteration, brecciation and development of a secondary structural/metamorphic layering. Understanding the origin of these pseudo-clastic textures/structures has allowed recognition of the lateral and vertical facies variation of the felsic sequence and reconstruction of the original volcanic architecture.
机译:长丝质火山岩单元是2.7 Ga Agnew-Wiluna绿岩带(西澳大利亚州)地层的很大一部分,并形成了该地区几个由高锰铁矿承载的硫化镍矿床的上盘和下盘序列。 Agnew-Wiluna绿岩带(AWB)的Mt Keith地区包括一系列长英质,镁铁质和超镁铁质挤压和侵入单元。基思山镍矿床的长丝质火山为主的下盘山和下盘山序列包括连贯的钠铁矿熔岩的周期性包裹,以及原位与再沉积角砾岩相关的单体。单体角砾岩相中的碎屑与相干的辉绿岩完全相同,并且两个相通常处于渐变接触中。 dacites被解释为海底熔岩,角砾岩被解释为相关的自碎屑相(透明质岩,自角砾岩)。推测这些达西特熔岩已被置于深水环境中,该环境阻碍了挥发物的释放,从而抑制了爆炸碎片并增加了熔岩的流动性,从而形成了大的板状流动单元。安置之后,AWB序列经历了多个变形和变质期,从而导致相干熔岩相大面积的应变和蚀变。熔岩中一个显着的构造变体是一组伪造的质地/结构,类似于凝灰质和角砾状的洋山状单元。伪碎屑质地/结构的生成过程与多相蚀变,断裂和次生构造/变质层发育的组合有关。了解这些伪碎屑纹理/结构的起源,可以认识到长英质层序的横向和垂直相变以及原始火山构造的重建。

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