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首页> 外文期刊>Geoscience frontiers >Carboniferous ridge subduction in the Xingmeng Orogenic Belt: Constraints from geochronological, geochemical, and Sr-Nd-Hf isotopic analysis of strongly peraluminous granites and gabbro-diorites in the Xilinhot micro-continent
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Carboniferous ridge subduction in the Xingmeng Orogenic Belt: Constraints from geochronological, geochemical, and Sr-Nd-Hf isotopic analysis of strongly peraluminous granites and gabbro-diorites in the Xilinhot micro-continent

机译:兴兵造山带中的石炭系脊架介绍:Xilinhot Micro-orcondent中的地理学,地球化学和SR-ND-HF同位素分析的约束

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摘要

The Xingmeng Orogenic Belt evolved through a long-lived orogeny involving multiple episodes of subduction and accretion. However, there is a debate on its tectonic evolution during the Late Paleozoic. Here, we report geochemical, geochronological, and isotopic data from strongly peraluminous granites and gabbro-diorites from the Sunidzuoqi–Xilinhot region. Zircon U–Pb ages suggest that the intrusive rocks were emplaced during the Early Carboniferous (333–322 Ma). The granites exhibit geochemical characteristics similar to S-type granites, with high SiO2(72.34–76.53 wt.%), Al2O3(12.45–14.65 wt.%), and A/CNK (1.07–1.16), but depleted Sr, Nb, and Ta contents. They exhibit positiveεNd(t) andεHf(t) values (?0.3 to 2.8 and 2.7–5.7, respectively) and young Nd and Hf model ages (TDM2(Nd)=853–1110 Ma andTDM2(Hf)=975–1184 Ma), suggesting that they may be the partial melting products of heterogeneous sources with variable proportions of pelite, psammite, and metabasaltic rocks. The meta-gabbro-diorites from the Maihantaolegai pluton have low SiO2(47.06–53.49 wt.%) and K2O (0.04–0.99 wt.%) contents, and demonstrate slight light rare earth element (REE) depletion in the chondrite-normalized REE diagrams. They have high zirconεHf(t) values (14.41–17.34) and young Hf model ages (TDM2(Hf)= 230–418 Ma), indicating a more depleted mantle source. The variations of the Sm/Yb and La/Sm ratios can thus be used to assess the melting degree of the mantle source from 5% to 20%, suggesting a quite shallow mantle melting zone. We propose that the petrogenesis and distribution of the strongly peraluminous granites and gabbro-diorites, as well as the tectonic architecture of the region, can be explained by a ridge subduction model. Based on these results, and previous studies, we suggest a southward ridge subduction model for the Sunidzuoqi–Xilinhot region.
机译:兴兵造山带通过一种涉及多次俯冲和增生的长期organy的洋底生成。但是,在古生代后的构造演变就存在辩论。在这里,我们从Sunidzuoqi-Xilinhot地区从强衰弱的花岗岩和Gabbro-Diorites报告地球化学,地质学和同位素数据。锆石U-PB Ages表明,在早期的石炭系(333-322 mA)期间侵入性岩石被置于侵入性岩石。花岗岩表现出类似于S型花岗岩的地球化学特性,具有高SiO2(72.34-76.53重量%),Al2O3(12.45-14.65重量%)和A / CNK(1.07-1.16),但耗尽SR,NB,和ta内容。它们表现出正εnd(t)和εhf(t)值(Δ0.3至2.8和2.7-5.7)和年轻的Nd和HF模型年龄(TDM2(ND)= 853-1110 mA和TDM2(HF)= 975-1184 mA) ,建议它们可以是具有可变比例的鹈,Psammite和乙基岩石的异质源的部分熔化产物。来自Maihantaolegai芦苇的Meta-Gabbro-Diorites具有低SiO 2(47.06-53.49重量%)和K2O(0.04-0.99重量%)含量,并展示了在Chondrite归一化的REE中的轻微稀土元素(REE)枯竭图表。它们具有高锆石(T)值(14.41-17.34)和年轻的HF模型年龄(TDM2(HF)= 230-418 mA),表示更耗尽的地幔源。因此,SM / Yb和La / SM比率的变化可用于评估地幔源的熔化程度从5%〜20%,表明浅层熔化区。我们提出通过脊俯冲模型来解释,我们提出了强衰弱的花岗岩和巨大的花岗岩和古桥 - Diorites的纤维化和分布,以及区域的构造架构。基于这些结果和之前的研究,我们建议南岭桥Xilinhot地区的南岭俯冲模型。

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