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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Sources and timing of pyroxenite formation in the sub-arc mantle: Case study of the Cabo Ortegal Complex, Spain
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Sources and timing of pyroxenite formation in the sub-arc mantle: Case study of the Cabo Ortegal Complex, Spain

机译:亚弧地幔中Pyroxenite形成的来源和时间:Cabo ortegal Complex,西班牙的案例研究

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摘要

Pyroxenites exposed in ophiolites and orogenic peridotite massifs may record petrogenetic processes occurring in mantle domains generated and/or transferred in supra-subduction environments. However, the timing of their formation and the geochemical characteristics of their source region commonly are obscured by metamorphic and metasomatic overprints. This is especially critical in arc-related environments, where pyroxenites may be formed during the differentiation of primitive magmas. Our approach combines Sr- and Nd-isotope geochemistry and geochronology, and modelling of REE diffusion, to further constrain the origin of a well-characterized set of pyroxenites from the arc related Cabo Ortegal Complex, Spain. In the light of petrological constraints, Sr- and Nd-isotope systematics consistently indicate that cpx and amphibole have acquired disequilibrium during two main episodes: (1) a magmatic/metasomatic episode that led to the formation of the pyroxenites, coeval with that of Cabo Ortegal granulites and corresponding to the incipient stage of a potential Cadomian arc (459-762 Ma; isochron and second-stage Nd model ages); (2) an episode of metamorphic amphibolitization upon the percolation of relatively unradiogenic and LREE-enriched hydrous fluids, subsequent to the delamination of the pyroxenites from their arc-root settings during Devonian subduction. Calculations of diffusional timescale for the re-equilibration of REE are consistent with this scenario but provide only poor additional constraints due to the sensitivity of this method to grain size and sub-solidus temperature. We thus emphasize the necessity to combine isochron ages and Nd model ages corrected for radiogenic ingrowth to put time constraints on the formation of subduction- and/or collision-related pyroxenites, along with petrological and geochemical constraints. Homogeneous age-corrected Nd-143/Nd-144 of 0.5121-0.5125 (epsilon(Nd) between 0 and +7.5) and Sr-87/Sr-86 of 0.7037-0.7048 provide information on the sources of the metasomatic agents involved (and potentially the parental melts) and notably indicate the contributions from enriched mantle components (EM I and/or II). This suggests the involvement of an old crustal component, which is consistent with the derivation of the pyroxenites and granulites from an ensialic island arc, potentially built on the northern margin of either Gondwana or a pre-Gondwanan continental block. This case study thus documents the role of melt-rock reactions as major pyroxenite-forming processes in the sub-arc mantle, providing further constraints on their sources and timing in the Cabo Ortegal Complex. (C) 2017 Elsevier B.V. All rights reserved.
机译:在眼骨和oregenic的恒星土壤中暴露的焦曲酸盐可以记录在Supra-俯冲环境中产生和/或转移的披风区域中发生的细胞生成过程。然而,它们的形成和它们的源区的地球化学特征通常由变质和态型叠印模糊。这在弧形相关环境中尤其重要,其中可以在原始岩浆的分化期间形成Pyroxenites。我们的方法结合了SR-and ND-IsoTope地球化学和地理学论,以及Ree扩散的建模,进一步限制了来自西班牙弧相关Cabo ortegal Complex的圆弧相关Cabo ortegal综合体的繁荣集合的起源。鉴于思科约束,SR-和ND-同位素系统始终表明CPX和锥形吡啶在两个主要发作期间获得了不平衡:(1)Magmatic /代态插曲导致了形成Pyroxenites的形成,与Cabo的Coeval Ortegal颗粒体和对应于潜在的Cadomian弧的初期(459-762 mA;等色和第二阶段ND模型年龄); (2)在探测器俯冲期间从其弧根设置分层后,在富集的富含富含富含富含富集的含水流体的渗透物的渗透到相对不匀的和烧伤和烧结的含水流体的渗透。 REE的重新平衡的扩散时间尺度的计算与这种情况一致,但由于该方法对晶粒尺寸和亚固体温度的灵敏度,仅提供差的额外约束。因此,我们强调必须结合同种子年龄和ND模型年龄的必要性,以校正辐射性发起,以将时间限制与近肠和地球化学约束一起形成次次和/或碰撞相关的曲义的形成。 0.5121-0.5125的均匀年龄校正的Nd-143 / Nd-144(0到+7.5之间的ε(nd))和0.7037-0.7048的SR-87 / sr-86提供有关所涉及的态态剂的来源(和潜在的父母融化)并显着地表明了丰富的地幔组分的贡献(EM I和/或II)。这表明旧地壳组分的参与,这与来自Ensialic Islance弧的冰义和肉芽籽的推导一致,可能构建在Gondwana或Pre-Gondwanan大陆块的北边缘。因此,这种情况研究根据亚弧地幔中的主要曲克伯氏岩成形过程记录了熔融岩反应的作用,在Cabo oregal综合体中提供了对它们的来源和时序的进一步限制。 (c)2017年Elsevier B.V.保留所有权利。

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