首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Petrogenesis of Middle-Late Triassic volcanic rocks from the Gangdese belt, southern Lhasa terrane: Implications for early subduction of Neo-Tethyan oceanic lithosphere
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Petrogenesis of Middle-Late Triassic volcanic rocks from the Gangdese belt, southern Lhasa terrane: Implications for early subduction of Neo-Tethyan oceanic lithosphere

机译:拉萨地带南部冈底斯带中晚三叠世火山岩的成岩作用:对新特提斯洋岩石圈早期俯冲的启示

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The Gangdese belt is dominantly composed of igneous rocks that formed during the northward subduction of Neo-Tethyan oceanic lithosphere beneath the Lhasa terrane and has played a crucial role in understanding the pre-collisional evolution of southern Tibet. This paper presents new geochronological and geochemical (whole-rock major and trace element and Sr-Nd and zircon Hf isotope) data for recently identified volcanic rocks exposed in Changguo area, southernmost part of the Lhasa terrane. Zircon U-Pb dating from six samples yields consistent ages of 237.1 +/- 1.1 Ma to 211.7 +/- 1.5 Ma for magma emplacement through volcanic eruption, showing the Middle-Late Triassic magmatic activity in the southernmost Gangdese Belt. The Changguo volcanic rocks are mainly composed of basaltic and andesitic rocks and exhibit LILE enrichment and HFSE depletion. They also exhibit relatively uniform Nd-Hf isotopic compositions (epsilon(Nd)(t) = +5.20 to +7.74 and epsilon(Hf)(t)(zircon) = +10.2 to + 15.9). The basaltic magmas were likely sourced from partial melting of sub-arc mantle wedge that was metasomatized by not only the aqueous fluid derived from subducting altered oceanic crust but also hydrous melt derived from subducting seafloor sediments, and subsequently experienced fractional crystallization and juvenile crustal contamination during ascent. The andesitic magmas were generated by partial melting of maficultramafic metasomes through melt/fluid-peridotite reaction at slab-mantle interface. Taking into account the temporal and spatial distribution of the Early Mesozoic magmatic rocks and regional detrital zircon data, we further propose that the northward subduction of Neo-Tethyan oceanic lithosphere beneath the Lhasa terrane commenced by Middle Triassic. (C) 2016 Elsevier B.V. All rights reserved.
机译:冈底斯带主要由火成岩组成,这些火成岩是在拉萨地体下方的新特提斯海洋岩石圈向北俯冲期间形成的,并且在理解西藏南部碰撞前的演化中起着关键作用。本文介绍了新近发现的在拉萨地带最南端的昌果地区暴露的火山岩的地质年代和地球化学数据(整个岩石主要和微量元素以及Sr-Nd和锆石Hf同位素)。六个火山岩中的锆石U-Pb的火山喷发形成的一致年龄为237.1 +/- 1.1 Ma至211.7 +/- 1.5 Ma,显示了最南端的冈萨斯带中三叠世晚期岩浆活动。昌国火山岩主要由玄武岩和安山岩组成,表现为LILE富集和HFSE耗竭。它们还表现出相对均匀的Nd-Hf同位素组成(ε(Nd)(t)= +5.20至+7.74和epsilon(Hf)(t)(zircon)= +10.2至+ 15.9)。玄武岩浆可能来自亚弧地幔楔的部分融化,不仅通过俯冲蚀变的洋壳得到的含水流体而且也从俯冲海底沉积物得到的含水熔体交化了,随后经历了部分结晶和幼年地壳污染。上升。安山岩浆是通过沿板幔界面的熔体/流体-橄榄岩反应而部分熔解铁镁铁质代谢体而产生的。考虑到早中生代岩浆岩的时空分布和区域碎屑锆石数据,我们进一步提出,中三叠纪开始了拉萨地体以下新特提斯海洋岩石圈向北俯冲。 (C)2016 Elsevier B.V.保留所有权利。

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