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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >The duration of prograde garnet crystallization in the UHP eclogites at Lago di Cignana, Italy
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The duration of prograde garnet crystallization in the UHP eclogites at Lago di Cignana, Italy

机译:意大利Lago di Cignana的UHP榴辉岩中石榴石石榴石结晶的持续时间

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摘要

The distinct core-to-rim zonation of different REEs in garnet in metamorphic rocks, specifically Sm relative to Lu, suggests that Sm-Nd and Lu-Hf isochron ages will record different times along a prograde garnet growth history. Therefore, REE zonations in garnet must be measured in order to correctly interpret the isochron ages in terms of the garnet growth interval, which could span several m.y. New REE profiles, garnet crystal size distributions, and garnet growth modeling, combined with previously published Sm-Nd and Lu-Hf geochronology on a UHP eclogite of the Zermatt-Saas Fee (ZSF) ophiolite, Lago di Cignana (Italy), demonstrate that prograde garnet growth of this sample occurred over a ~ 30 to 40 m.y. interval. Relative to peak metamorphism at 38 to 40 Ma, garnet growth is estimated to have begun at ~ 11 to 14 kbar pressure at ~ 70 to 80 Ma. Although such a protracted garnet growth interval is surprising, this is supported by plate tectonic reconstructions which suggest that subduction of the Liguro-Piemont ocean occurred through slow and oblique convergence. These results demonstrate that REE zonations in garnet, coupled to crystal size distributions, provide a powerful means for understanding prograde metamorphic paths when combined with Sm-Nd and Lu-Hf geochronology.
机译:变质岩中石榴石(特别是Sm相对于Lu)在石榴石中不同REE的不同的核到边缘带划分,表明Sm-Nd和Lu-Hf等时年龄将沿着石榴石的生长历史记录不同的时间。因此,必须测量石榴石中的REE带,以便根据石榴石的生长间隔正确地解释等时线,该间隔可能跨越数个月。新的REE剖面,石榴石晶体尺寸分布和石榴石生长模型,再加上先前在Zermatt-Saas Fee(ZSF)蛇绿岩Lago di Cignana(意大利)的UHP榴辉岩上的Sm-Nd和Lu-Hf年代学,证明了这一点。该样品的石榴石生长会在约30至40 my间隔。相对于38至40 Ma的峰值变质作用,石榴石的生长估计已在70至80 Ma的约11至14 kbar压力下开始。尽管如此长的石榴石生长间隔令人惊讶,但板块构造重建支持了这一点,这表明利古罗-皮埃蒙特大洋的俯冲是通过缓慢和倾斜的收敛发生的。这些结果表明,与Sm-Nd和Lu-Hf地质年代学相结合时,石榴石中的REE分区与晶体的尺寸分布相结合,为理解渐进变质路径提供了强有力的手段。

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