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首页> 外文期刊>Contributions to Mineralogy and Petrology >Mineralogical and strontium isotopic record of hydrothermal processes in the lower ocean crust at and near the East Pacific Rise
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Mineralogical and strontium isotopic record of hydrothermal processes in the lower ocean crust at and near the East Pacific Rise

机译:东太平洋上升及其附近低层洋壳热液过程的矿物学和锶同位素记录

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Tectonic exposures of upper plutonics (>800 m) that are part of a contiguous section of young East Pacific Rise (EPR) crust at the Hess Deep Rift provide the first regional-scale constraints on hydrothermal processes in the upper plutonic crust formed at a fast-spreading ridge. Submersible-collected samples recovered over a 4-km-wide region show that the sheeted dike complex is largely underlain by a 150- to 200-m-thick gabbro unit, followed by a more primitive gabbronorite unit. Gabbroic samples are variably altered by pervasive fluid flow along fracture networks to amphibole-dominated assemblages. The gabbroic rocks are significantly less altered (average 11% hydrous phases) than the overlying sheeted dike complex (average 24%), and the percentage of hydrous alteration diminishes with depth. Incipient, pervasive fluid flow occurred at amphibolite facies conditions (average 720°C), with slightly higher temperatures in the lower 500 m of the section. The extent of subsequent lower-temperature alteration is generally low and regionally variable. The gabbroic samples are slightly elevated in 87Sr/86Sr relative to fresh rock values (0.7024) and less enriched than the overlying sheeted dike complex. 87Sr/86Sr for the pervasively altered gabbroic samples ranges from 0.70244 to 0.70273 (mean 0.70257), tonalites is 0.7038, and pyroxene hornfels ranges from 0.70259 to 0.70271. 87Sr/86Sr does not vary with depth, and there is a strong positive correlation with the percentage of hydrous phases. Strontium contents of igneous and hydrothermal minerals, combined with bulk rock 87Sr/86Sr, indicate that Sr-isotopic exchange is largely controlled by the uptake of fluid 87Sr/86Sr in hydrous minerals and does not require Sr gain or loss. The minimum, time-integrated fluid–rock ratio for the sheeted dike complex and upper plutonics is 0.55–0.66, and the fluid flux calculated by mass balance is ~2.1 to 2.5 × 106 kg m−2, 30–60% higher than fluid fluxes calculated in the same manner for sheeted dike complexes on their own at Hess and Pito Deeps, and Ocean Drilling Program Hole 504B. Alteration patterns within the upper plutonics evolved in response to axial magma chamber (AMC) dynamics at the EPR, such that magma replenishment led to assimilation and thermal metamorphism of the country rock, and the position of the hydrothermal root-zone tracked the vertical migration of the AMC. The freshness of the lowermost gabbroic rocks suggests that pervasive fluid flow does not lead to significant fluid and heat fluxes at and near fast-spreading ridges.
机译:赫斯深裂谷东太平洋年轻(EPR)地壳连续部分的上部岩体(> 800 m)的构造暴露为快速形成的上部岩体地壳的热液过程提供了第一个区域尺度的约束。蔓延的山脊。在4公里宽的区域中采集的潜水器采集的样品显示,该片状堤坝复合物主要由150至200 m厚的辉长岩单元,然后是一个更原始的辉长岩单元。沿裂隙网络普遍的流体流向闪石为主的组合,从而改变了火山样样品。辉长岩的变化(平均含水相为11%)要比上覆薄片状堤防复合物(平均为24%)少得多,含水率变化的百分比随深度而减小。在闪石岩相条件下(平均720°C)发生了初期的普遍性流体流动,在该剖面的下500m处温度略高。随后的较低温度变化的程度通常较低,且区域差异很大。相对于新鲜岩石值(0.7024),辉长岩样品的 87 Sr / 86 Sr略有升高,且富集程度低于上覆的片状堤防复合体。普遍改变的辉长岩样品的 87 Sr / 86 Sr范围为0.70244至0.70273(平均0.70257),钠钙石为0.7038,辉石角f的范围为0.70259至0.70271。 87 Sr / 86 Sr不随深度变化,并且与含水相的百分比呈强正相关。火成岩和热液矿物中的锶含量与块状岩石 87 Sr / 86 Sr结合,表明Sr同位素交换很大程度上受 87流体的吸收控制含水矿物中的 Sr / 86 Sr,不需要Sr的增加或减少。薄片状堤坝复合体和上层岩体的最小时间积分流体-岩石比为0.55-0.66,通过质量平衡计算的流体通量为〜2.1至2.5×10 6 kg m −2 ,比在Hess和Pito Deeps以及Ocean Drilling Program Hole 504B上以相同方式自行计算的片状堤防综合体的流体通量高30-60%。上部岩体内部的蚀变模式响应于EPR处的轴向岩浆腔(AMC)动力学而演化,从而岩浆补给导致了乡村岩石的同化和热变质,并且热液根区的位置跟踪了该岩体的垂直迁移。 AMC。最底层辉长岩的新鲜度表明,普遍的流体流动不会在快速扩散的山脊及其附近产生明显的流体和热通量。

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