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Dual sources of water overprinting on the low zircon δ18O metamorphic country rocks: Disequilibrium constrained through inverse modelling of partial reequilibration

机译:低锆石δ18O变质乡村岩石上水套印的双重来源:通过部分再平衡的逆模型来约束不平衡

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摘要

Since water is only composed of oxygen and hydrogen, δ18O and δ2H values are thus utilized to trace the origin of water(s) and quantify the water-rock interactions. While Triassic high pressure (HP) and ultrahigh pressure (UHP) metamorphic rocks across the Dabie-Sulu orogen in central-eastern China have been well documented, postcollisional magmatism driven hydrothermal systems are little known. Here we show that two sources of externally derived water interactions were revealed by oxygen isotopes for the gneissic country rocks intruded by the early Cretaceous postcollisional granitoids. Inverse modellings indicate that the degree of disequilibrium (doD) of meteoric water interactions was more evident than that of magmatic one (−65 ± 1o vs. −20 ± 2°); the partial reequilibration between quartz and alkali feldspar oxygen isotopes with magmatic water was achieved at 340 °C with a water/rock (W/R) ratio of about 1.2 for an open-hydrothermal system; two-stage meteoric water interactions were unraveled with reequilibration temperatures less than 300 °C and W/R ratios around 0.4. The lifetime of fossil magmatic hydrothermal system overprinted on the low zircon δ18O orthogneissic country rocks was estimated to maintain up to 50 thousand years (Kyr) through oxygen exchange modellings. Four-stage isotopic evolutions were proposed for the magmatic water interacted gneiss.
机译:由于水仅由氧和氢组成,因此利用δ 18 O和δ 2 H值来追踪水的来源并量化水岩互动。尽管在中国中部大别山苏鲁造山带上的三叠纪高压(HP)和超高压(UHP)变质岩已有大量文献记载,但碰撞后岩浆作用驱动的热液系统却鲜为人知。在这里,我们显示了由早白垩世碰撞后花岗岩侵入的片麻岩乡村岩石的氧同位素揭示了外部来源的水相互作用的两个来源。反演模型表明,流水相互作用的不平衡度(doD)比岩浆岩更明显(-65°±1 o vs.-20±2°);在开放水热系统中,在340 C下水/岩(W / R)比约为1.2,使石英和碱长石氧同位素与岩浆水达到了部分再平衡。在低于300 C的温度和W / R比约为0.4的情况下,揭示了两阶段的水相互作用。通过氧交换模型,低锆石δ 18 O片麻岩样乡村岩石上套印的化石岩浆热液系统的寿命估计可以维持到5万年。提出了岩浆水相互作用片麻岩的四阶段同位素演化。

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