首页> 外文期刊>Journal of the Geological Society >Provenance and geochemistry of sedimentary components in the Volcano-Sedimentary Complex, Iberian Pyrite Belt: discrimination between the sill–sediment-complex and volcanic-pile models
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Provenance and geochemistry of sedimentary components in the Volcano-Sedimentary Complex, Iberian Pyrite Belt: discrimination between the sill–sediment-complex and volcanic-pile models

机译:伊比利亚黄铁矿带火山-沉积带中沉积成分的来源和地球化学:基岩-沉积复合体和火山-堆积模型之间的区别

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摘要

Two highly contrasting models have been proposed for the palaeovolcanological setting of the massive sulphide deposits in the Iberian Pyrite Belt. The long-standing view of the host rocks is that they are a pile of effusive and pyroclastic rocks but this position has now been challenged by the proposal that high-level peperitic sills predominate. Discrimination between the volcanic-pile and sill–sediment-complex models is important because they lead to very different conclusions about such key metallogenic features as the timing of mineralization, the nature of the ore-forming convective system and the source of the metals. Sedimentary geochemistry, particularly REE and Ti/Nb, shows that there is no correspondence between the chemistries of mafic igneous sheets and intercalated stratified-volcaniclastic rocks that range from andesite to rhyodacite in composition. Therefore none of the mafic sheets supplied detritus to the sedimentary environment. Sedimentary rocks of continental provenance persist throughout the host-rock sequence, especially in mineralized regions, implying confinement of the majority of primary volcanic facies in the form of high-level intrusions. Some andesitic and felsic intrusions created a minor, stratified volcaniclastic component via hydrovolcanic eruptions. The volcanic-pile model is invalidated because the expected provenance patterns for this volcanic style are not present and the sill–sediment-complex setting of the sulphide deposits is confirmed.
机译:对于伊比利亚黄铁矿带中大量硫化物矿床的古火山环境,已经提出了两种高度对比的模型。长期以来,人们一直认为基质岩是一堆喷吐性和火山碎屑岩,但现在这一观点受到了高阶岩性基石占主导地位的提议的挑战。区分火山-堆积和底泥-沉积物-复杂模型很重要,因为它们对成矿时间,成矿对流系统的性质和金属来源等关键成矿特征得出了截然不同的结论。沉积地球化学,尤其是REE和Ti / Nb,表明镁铁质火成岩的化学性质与层状火山岩碎屑岩的成分(从安山岩到流纹岩)之间没有对应关系。因此,没有镁铁质片向沉积环境提供碎屑。大陆起源的沉积岩在整个宿主岩层中持续存在,特别是在矿化区域,这意味着大多数初级火山岩相以高侵入性的形式被限制。一些安山岩和长英质侵入体通过水火山喷发形成了较小的分层火山碎屑成分。火山-桩模型是无效的,因为不存在这种火山样式的预期物源模式,并且已确认了硫化物沉积物的基岩-沉积-复杂环境。

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