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首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >In-situ oxygen isotope analyses in serpentine minerals: Constraints on serpentinization during tectonic exhumation at slow- and ultraslow-spreading ridges
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In-situ oxygen isotope analyses in serpentine minerals: Constraints on serpentinization during tectonic exhumation at slow- and ultraslow-spreading ridges

机译:蛇形矿物原位氧同位素分析:缓慢和超声扩散脊的构造疏发期间蛇形化的约束

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摘要

Peridotites exhumed along detachment faults at slow- and ultraslow-spreading ridges undergo variable and complex serpentinization. Here, we present in-situ oxygen isotope analyses in serpentine minerals from a textural sequence identified in samples drilled at the Atlantis Massif (Mid-Atlantic ridge, MAR, 30 degrees N) and dredged along the easternmost Southwest Indian ridge (SWIR, 62-65 degrees E). The textural sequence is similar at both locations and involves: mesh texture and bastite formation after olivine and orthopyroxene, mesh texture recrystallization into chrysotile- and antigorite-dominated textures, and banded and fibrous veins. The delta O-18 in serpentine decreases with the textural sequence, which we interpret to record an increase in the time-integrated water-rock ratio under a nearly constant temperature. While mesh texture development starts at stoichiometric water rock ratios and creates an isotopic variability at a scale of similar to 100 mu m, recrystallized textures indicate serpentinization temperatures on the order of 260-290 degrees C (seawater-dominated fluid hypothesis) or 320-360 degrees C (hydrothermally altered seawater hypothesis). The subsequent banded veins record the evolution towards colder and seawater dominated fluids potentially present in shallower levels of the detachment footwall. Serpentinization leading to the mesh textures appears faster and more heterogeneous in Atlantis Massif samples than in SWIR samples. We propose that such features are influenced by the amount of gabbros intruded in the peridotite. In addition to influencing fluid pathways, gabbros also provide a source for observed Si-enrichments in some Atlantis Massif samples and control the pH, which in turn influences the mobility of Al. (C) 2018 Elsevier B.V. All rights reserved.
机译:在慢速和超声扩散脊上沿脱离故障挖出偏离变量和复杂的蛇形化。在这里,我们在亚特兰蒂斯(Atlantis Massif(大西洋中山脉中大西洋山脉中部)钻取的样品中鉴定的样品中鉴定的睾丸矿物中出现原位氧同位素分析,并沿着东部最东南印度山脊(SWIR,62- 65 e)。纹理序列在两个位置相似,包括:橄榄石和矫肌后的网状纹理和糖酸盐形成,网状纹理将重结晶重结晶成菊花和抗真的占主导地纹理,以及带状纤维状静脉和纤维状静脉。蛇纹石中的Delta O-18随着纹理序列而降低,我们解释了在几乎恒定温度下记录了时间累积的水岩比的增加。虽然网格纹理开发在化学计量水岩比上开始,但以类似于100μm的等级产生同位素变异,重结晶纹理表示蛇形化温度为260-290摄氏度(海水主导的流体假说)或320-360度C(水热改变的海水假设)。随后的带状静脉记录了较冷,海水占主导地位的进化,可能存在于脱离脚壁的较浅水平中。导致网眼纹理的蛇形化在亚特兰蒂斯受到的样本中似乎更快,更异质,而不是SWIR样本。我们建议这些特征受到在恒星侵入的Gabbros的影响。除了影响流体途径外,Gabbros还提供了用于观察到的一些亚特兰蒂斯受损样品中的富集的来源并控制pH,这反过来影响Al的迁移率。 (c)2018 Elsevier B.v.保留所有权利。

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