首页> 外文OA文献 >Si-metasomatism in serpentinized peridotite: the effects of talc-alteration on strontium and boron isotopes in abyssal peridotites from Hole 1268a, ODP Leg 209
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Si-metasomatism in serpentinized peridotite: the effects of talc-alteration on strontium and boron isotopes in abyssal peridotites from Hole 1268a, ODP Leg 209

机译:蛇纹石橄榄岩中的硅交代作用:滑石改变对1268a孔ODp腿209深海橄榄岩中锶和硼同位素的影响

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摘要

Ultramafic rocks recovered from Hole 1268a, Ocean Drilling Program Leg 209, to the south of the 15°20′N Fracture Zone on the Mid-Atlantic ridge have experienced a complex history of melt depletion and subsequent interaction with a series of fluids under varying temperature and pH conditions. After intense melt depletion, varying degrees of serpentinization at 100–200 °C took place, initially under seawater-like pH conditions. Subsequently, interaction with a higher temperature (300–350 °C) fluid with low (4–5) pH and low MgO/SiO2 resulted in the heterogeneous alteration of these serpentinites to talc-bearing ultramafic lithologies. The proximity of the currently active, high temperature Logatchev hydrothermal field, located on the opposite flank of the Mid-Atlantic ridge, suggests that unlike more distal localities sampled during ODP Leg 209, Hole 1268a has experienced Si-metasomatism (i.e. talc-alteration) by a Logatchev-like hydrothermal fluid. Serpentinite strontium isotope ratios were not materially shifted by interaction with the subsequent high-T fluid, despite the likelihood that this fluid had locally interacted with mid-ocean ridge gabbro. 87Sr/86Sr in the ultramafic lithologies of Hole 1268a are close to that of seawater (c.0.709) and even acid leached serpentinites retain 87Sr/86Sr in excess of 0.707, indistinguishable from Logatchev hydrothermal fluid. On the other hand, boron isotope ratios appear to have been shifted from seawater-like values in the serpentinites (δ11B = c.+40‰) to much lighter values in talc-altered serpentinites (δ11B = +9 to +20‰). This is likely a consequence of the effects of changing ambient pH and temperature during the mineralogical transition from serpentine to talc. Heterogeneous boron isotope systematics have consequences for the composition of ultramafic portions of the lithosphere returned to the convecting mantle by subduction. Inhomogeneities in δ11B, [B] and mineralogy introduce significant uncertainties in the prediction of the composition of slab fluids released during the early- to mid-stages of subduction.
机译:从大西洋中部15°20′N断裂带以南的海洋钻探计划第209条洞1268a洞中回收的超镁铁质岩石经历了复杂的熔体耗竭历史以及随后在温度不同的情况下与一系列流体的相互作用和pH条件。强烈的熔体耗竭后,最初在类似海水的pH条件下,在100–200°C发生了不同程度的蛇纹石化。随后,与较高温度(300–350°C),低(4–5)pH值和低MgO / SiO2的流体相互作用,导致这些蛇纹岩向含滑石的超镁铁质岩性发生异质变化。位于大西洋中脊相对侧的当前活跃的高温Logatchev热液场的接近性表明,与ODP腿209期间采样的更多远端区域不同,Hole 1268a经历了Si换岩作用(即滑石变质)类似于Logatchev的热液。蛇纹岩锶同位素比值并未因与随后的高T流体相互作用而发生实质性变化,尽管这种流体可能已与中海脊辉长岩局部相互作用。 1268a孔的超镁铁岩性中的87Sr / 86Sr接近海水(约0.709),甚至酸浸蛇纹岩也保留超过0.707的87Sr / 86Sr,这与Logatchev热液没有区别。另一方面,硼同位素比似乎已从蛇纹岩中的海水状值(δ11B= c。+ 40‰)转变为滑石改变的蛇纹岩中的轻得多的值(δ11B= +9至+ 20‰)。这可能是由于从蛇纹石到滑石的矿物学转变过程中环境pH值和温度变化的影响。异质硼同位素系统学对通过俯冲返回对流地幔的岩石圈超镁铁质部分的组成有影响。 δ11B,[B]和矿物学中的不均匀性为俯冲早期至中期释放的平板流体成分的预测带来了显着的不确定性。

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