首页> 外文期刊>Precambrian Research >U-Pb and Lu-Hf isotopes of detrital zircon grains from Neoproterozoic sedimentary rocks in the central Jiangnan Orogen, South China: Implications for Precambrian crustal evolution
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U-Pb and Lu-Hf isotopes of detrital zircon grains from Neoproterozoic sedimentary rocks in the central Jiangnan Orogen, South China: Implications for Precambrian crustal evolution

机译:江南奥根省中部德国古代沉积岩的甲板锆石谷物的U-Pb和Lu-HF同位素:对前哨地壳进化的影响

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The Neoproterozoic sedimentary strata in the central Jiangnan Orogen of South China are separated into the Lengjiaxi and Banxi groups by a mid-Neoproterozoic angular unconformity. This unconformity, previously interpreted as the evidence of continental collision between the Yangtze and Cathaysia blocks, is crucial for understanding the Neoproterozoic tectonic regime in the South China Craton. Here we report U-Pb ages and in situ Lu-Hf isotopes of detrital zircon grains from the sedimentary rocks near this unconformity. Zircon grains in meta-sandstone samples collected from the top part of Lengjiaxi Group yield maximum depositional ages of similar to 827 Ma, similar to 828 Ma and 836 Ma, and combined with other available age data, we suggest that the upper limit of the sedimentation for Lengjiaxi Group is at ca. 825 Ma. Zircon U-Pb analysis for two sandstone samples collected from the bottom of Banxi Group and Nanhuan strata yields two youngest ages of 797 Ma and 719 Ma, marking the initial depositional ages for these strata. All the samples contain abundant Neoproterozoic euhedral zircon grains, suggesting their near-source provenance. The Hf isotopic model ages of detrital zircons with positive epsilon(Hf)(t) values reveal two periods of juvenile crustal growth at 1.5-0.9 Ga and 2.8-1.6 Ga in the Yangtze Block. Several grains display core-rim structure with ages of rim part ranging from 864 to 851 Ma. We correlate these metamorphic ages with the amalgamation of Yangtze and Cathaysia blocks in the central segments. Our data in combination with those from other studies suggest that a back-arc basin existed in the central Jiangnan belt during ca. 860 Ma to ca. 825 Ma. We propose a four-phase crustal evolution model for the central Jiangnan belt. (C) 2017 Elsevier B.V. All rights reserved.
机译:江南中部南方造山虫的新典型古代沉积地层通过中间单张世纪的角度无关分开进入Lengjiaxi和Banxi群体。这种无关,以前被解释为长江和长江之间的大陆碰撞证据,这对于了解南方克拉顿的新典型子宫政权至关重要。在这里,我们向U-Pb年龄报告U-Pb Ages,以及来自沉积岩石的碎屑锆石谷物的原位Lu-HF同位素来自此不整合的沉积岩。 Zircon谷物在衡器集团顶部收集的Meta砂岩样品中的最大沉积年龄类似于827 mA,类似于828 mA和836 mA,并结合其他可用年龄数据,我们建议沉淀的上限对于Lengjiaxi集团在CA。 825 mA。从Banxi组底部收集的两个砂岩样品的锆石U-Pb分析产生了两个797 mA和719 mA最小的两年,标志着这些地层的初始沉积年龄。所有样品含有丰富的新典型古代Euhedral锆石谷物,暗示了它们的近源来源。具有阳性ε(HF)(T)值的滴乳锆的HF同位素模型年龄揭示了在长江块中1.5-0.9 GA和2.8-1.6 GA的少年地壳增长的两个时期。几颗谷物显示核心边缘结构,带有864至851 mA的轮辋部分。我们将这些变质年龄与中央段中的长江和长江块的融合相关联。我们的数据与其他研究中的数据结合建议,在加利福尼亚州中央江南带中存在反弧盆地。 860 ma到ca. 825 mA。我们为江南市中心提出了一款四相地壳演进模型。 (c)2017 Elsevier B.v.保留所有权利。

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