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首页> 外文期刊>Journal of Petrology >Petrology and U–Pb Zircon Geochronology of Amphibole-rich Cumulates with Sanukitic Affinity from Husky Ridge (Northern Victoria Land, Antarctica): Insights into the Role of Amphibole in the Petrogenesis of Subduction-related Magmas
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Petrology and U–Pb Zircon Geochronology of Amphibole-rich Cumulates with Sanukitic Affinity from Husky Ridge (Northern Victoria Land, Antarctica): Insights into the Role of Amphibole in the Petrogenesis of Subduction-related Magmas

机译:赫斯基山(南极维多利亚州北部)富沙闪石亲和力丰富的闪石富集的岩石学和U-Pb锆石年代学:对闪石在俯冲相关岩浆成岩作用中的作用的见解

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摘要

A microanalytical trace element and geochronological study was carried out on mafic amphibole-rich cumulates (quartz diorites) cropping out in northern Victoria Land (Antarctica). Associated tonalites and basement rocks were also investigated. Rock textures and major and trace element mineral compositions reveal the presence in quartz diorites of two mineral assemblages: (1) clinopyroxene-I + brown amphibole ± dark mica; (2) clinopyroxene-II + green amphibole + plagioclase + quartz. Both mineral assemblages contain mafic phases with elevated Mg-number, but their trace element signatures differ significantly. In situ U–Pb zircon geochronology was carried out to support petrogenetic and geological interpretations. Quartz diorites were emplaced in the mid-crust probably at 516 ± 3 Ma. Parental melts of quartz diorites were computed by applying solid/liquid partition coefficients. The melt in equilibrium with the first mineral assemblage (melt-I) is extremely depleted in heavy rare earth elements (HREE), Y, Ti, Zr and Hf (at about 0·2 times normal mid-ocean ridge basalt) and enriched in B, Th, U, the large ion lithophile elements and light REE (LREE). It shares many similarities with sanukitic melts (e.g. Setouchi andesites), which originated by equilibration of subduction-derived sediment melts with a refractory mantle. The melt in equilibrium with the second mineral assemblage (melt-II) is characterized by a steep LREE enrichment (LaN/YbN up to 39), a U-shaped HREE pattern and low Ti, which is depleted relative to HREE. The trace element signature of melt-II can be acquired through amphibole crystallization starting from a sanukitic melt similar to melt-I, probably in a deeper magma chamber. Our results allow us to constrain that melts from the subducted slab were produced on a regional scale, in accordance with literature data, below a large sector of the east Gondwana margin during the mid-Cambrian. Implications for the role of amphibole in petrogenesis of subduction-related magmas are also discussed.
机译:对维多利亚州北部(南极洲)种植的富含镁铁闪石的堆积物(石英闪长岩)进行了微量分析和年代学研究。还研究了相关的同色岩和基底岩石。岩石质地以及主要和微量元素矿物组成揭示了在石英闪长岩中存在两种矿物组合:(1)斜辉石I +棕色闪石±暗云母; (2)Clinopyroxene-II +绿色闪石+斜长石+石英。两种矿物组合都含有镁含量较高的镁铁矿相,但其痕量元素特征明显不同。进行了原位U-Pb锆石年代学,以支持成岩作用和地质解释。石英闪长岩可能在516±3 Ma处沉积在地壳中部。通过应用固/液分配系数计算石英重晶石的母体熔体。与第一个矿物组合(熔体I)处于平衡状态的熔体极度贫化了重稀土元素(HREE),Y,Ti,Zr和Hf(约为中洋脊玄武岩的0·2倍)并富集了B,Th,U,大离子亲石元素和轻稀土(LREE)。它与不规则熔体(如濑户内安山岩)有许多相似之处,后者是由俯冲衍生的熔体与难熔的地幔平衡引起的。与第二种矿物组合(熔体II)处于平衡状态的熔体的特征是陡峭的LREE富集(La N / Yb N 高达39),呈U形HREE模式和低Ti,相对于HREE已耗尽。熔体-II的痕量元素特征可以通过闪石结晶从类似熔体-I的薄铁质熔体开始获得,可能在更深的岩浆室内。根据文献资料,我们的结果使我们能够约束俯冲板块的熔体是在寒武纪中期冈多瓦纳东部边缘大片区以下的区域范围内生产的。还讨论了闪石在俯冲相关岩浆成岩作用中的作用。

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  • 来源
    《Journal of Petrology》 |2008年第5期|p.937-970|共34页
  • 作者单位

    1CNR–Istituto Di Geoscienze E Georisorse, U.O. Di Pavia, Via Ferrata 1, I27100 Pavia, Italy 2Dipartimento Di Scienze Della Terra, Università Di Pavia, Via Ferrata 1, I27100 Pavia, Italy;

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