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Strontium isotope constraints on fluid flow in the upper oceanic crust at the East Pacific Rise

机译:东太平洋上升带锶同位素对上洋壳中流体流动的约束

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Strontium isotopes are useful tracers of fluid-rock interaction in marine hydrothermal systems and provide a potential way to quantify the amount of seawater that passes through these systems. We have determined the whole-rock Sr-isotopic compositions of a section of upper oceanic crust that formed at the fast-spreading East Pacific Rise, now exposed at Hess Deep. This dataset provides the first detailed comparison for the much-studied Ocean Drilling Program (ODP) drill core from Site 504B. Whole-rock and mineral Sr concentrations indicate that Sr-exchange between hydrothermal fluids and the oceanic crust is complex, being dependent on the mineralogical reactions occurring-, in particular, epidote formation takes up Sr from the fluid increasing the Sr-87/Sr-86 of the bulk-rock. Calculating the fluid-flux required to shift the Sr-isotopic composition of the Hess Deep sheeted-dike complex, using the approach of Bickle and Teagle [1] [M.J. Bickle, DA.H. Teagle, Strontium alteration in the Troodos ophiolite: implications for fluid fluxes and geochemical transport in mid-ocean ridge hydrothermal systems. Earth Planet. Sci. Lett. 113 (1992) 219-237] gives a fluid-flux similar to that determined for CDP Hole 504B. This suggests that the level of isotopic exchange observed in these two regions is probably typical for modem oceanic crust. Unfortunately, uncertainties in the modeling approach do not allow us to determine a fluid-flux that is directly comparable to fluxes calculated by other methods. (c) 2005 Elsevier B.V. All rights reserved.
机译:锶同位素是海洋热液系统中流体-岩石相互作用的有用示踪剂,并提供了量化通过这些系统的海水量的潜在方法。我们已经确定了在快速扩展的东太平洋上升带上形成的一部分上层洋壳的全岩石Sr同位素组成,该区域现已暴露于Hess Deep。该数据集为站点504B中经过广泛研究的Ocean Drilling Program(ODP)钻芯提供了首次详细比较。整个岩石和矿物中的Sr浓度表明,热液与海洋地壳之间的Sr交换是复杂的,取决于发生的矿物学反应-特别是,结石的形成从流体中吸收了Sr,从而增加了Sr-87 / Sr- 86块状岩石。用Bickle和Teagle的方法计算改变Hess Deep薄片状二叠合物的Sr同位素组成所需的流体通量[1]。达克·比克Teagle,Troodos蛇绿岩中的锶蚀变:对洋中脊热液系统中流体通量和地球化学迁移的影响。地球行星。科学来吧113(1992)219-237]给出的流体通量类似于为CDP孔504B确定的通量。这表明在这两个地区观察到的同位素交换水平可能是现代大洋地壳的典型特征。不幸的是,建模方法的不确定性不允许我们确定与其他方法计算出的通量直接可比的流体通量。 (c)2005 Elsevier B.V.保留所有权利。

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