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首页> 外文期刊>The Journal of Geology: a semi-quarterly magazine of geology and related sciences >Crustal evolution in the southern Appalachian orogen: Evidence from Hf isotopes in detrital zircons
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Crustal evolution in the southern Appalachian orogen: Evidence from Hf isotopes in detrital zircons

机译:阿巴拉契亚南部造山带的地壳演化:碎屑锆石中H同位素的证据

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摘要

Paired U-Pb and Lu-Hf isotopic compositions of individual detrital zircons reveal that Mesoproterozoic lithosphere in the southernmost Appalachian orogen evolved almost continuously from similar to 1200 to similar to 900 Ma, with a noticeable concentration only at similar to 1050 Ma. The evolution of the Lu-Hf system in this crust is characterized by a systematic, linear evolution pattern of Hf-176/Hf-177 versus age over this interval, which suggests a limited range of mixing ratios between juvenile and older crustal components to create a new Mesoproterozoic lithospheric reservoir. Extrapolation of the Lu-Hf systematics of this reservoir from the Mesoproterozoic to the Paleozoic using typical crustal values shows general coincidence with the lower part of the Hf isotopic array defined by Paleozoic detrital zircons. Because the Paleozoic array extends to both much higher and much lower epsilon Hf values than are likely to develop from extrapolations of the Mesoproterozoic array, the Paleozoic array is most compatible with an orogen formed largely from the accretion of numerous discrete crustal blocks that may or may not have derived partly from the southern Appalachian Mesoproterozoic lithosphere. These data are most compatible with existing models for Appalachian orogenesis that invoke accretion of exotic terranes, few, if any, of which were true juvenile terranes.
机译:单个碎屑锆石的U-Pb和Lu-Hf同位素组成配对显示,最南端的阿巴拉契亚造山带中元古代岩石圈几乎从大约1200 Ma连续演化到大约900 Ma,仅在大约1050 Ma才有明显的浓度。该地壳中Lu-Hf系统的演化特征是Hf-176 / Hf-177在该时间间隔内随年龄的系统线性演化模式,这表明在幼年和较早的地壳组分之间的混合比范围有限一个新的中元古代岩石圈储层。使用典型地壳值对该储层的Lu-Hf系统从中元古生界到古生界进行外推显示,其与古生碎屑锆石定义的Hf同位素阵列的下部大致吻合。由于古生代阵列延伸到比中元古生代阵列外推可能产生的εHf值高得多和低得多的位置,因此古生代阵列与造山带最兼容,该造山带主要由大量离散地壳块的积聚形成并非部分源于阿巴拉契亚南部中元古代岩石圈。这些数据与阿巴拉契亚造山运动的现有模型最兼容,后者可引起异国土层的增生,很少有(如果有的话)是真正的幼年土层。

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