Ab'/> Geochronological and geochemical constraints on the origin of the Yunzhug ophiolite in the Shiquanhe–Yunzhug–Namu Tso ophiolite belt, Lhasa Terrane, Tibetan Plateau
首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Geochronological and geochemical constraints on the origin of the Yunzhug ophiolite in the Shiquanhe–Yunzhug–Namu Tso ophiolite belt, Lhasa Terrane, Tibetan Plateau
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Geochronological and geochemical constraints on the origin of the Yunzhug ophiolite in the Shiquanhe–Yunzhug–Namu Tso ophiolite belt, Lhasa Terrane, Tibetan Plateau

机译:云芝蒙皮尔 - 南部云拉蒙皮岩的起源地球化学和地球化学约束 - 玉树眼镜岩,拉萨特兰,藏高原

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AbstractThe formation of the Shiquanhe–Yunzhug–Namu Tso ophiolite mélange zone (SNMZ) within the Lhasa Terrane, Tibetan Plateau, is key to understanding the Mesozoic tectonic evolution of this terrane, which remains controversial. We show that the Yunzhug ophiolite in the central segment of the SNMZ formed at ~150Ma, based on U–Pb dating of zircons from a gabbroic sample in a well-developed sheeted dike complex. Geochemically, these mafic rocks are dominated by E-MORB-type compositions, along with minor amounts of rocks with P-MORB-type compositions. The samples also exhibit high εNd(t) values and lack negative Nb and Ta anomalies. Data for all the samples plot within the MORB array on a Th/Yb–Nb/Yb diagram. Therefore, these mafic rocks most likely formed in either a slow spreading oceanic setting or an embryonic ocean, and not in a back-arc basin as has been previously assumed. Taking into account the regional geology, we propose that the Yunzhug ophiolite is part of a distinct ophiolitic belt and represents material formed in an embryonic ocean within the Lhasa Terrane, which provides new insights into the Jurassic tectonic evolution of the Lhasa Terrane.Highlights?The reliable zircon U-Pb age (~150Ma) of the Yunzhug ophiolite is reported.?The Yunzhug ophiolite was part of an independent ophiolite belt within the Lhasa Terrane.?The Yunzhug ophiolite formed in a MOR-setting rather than in a back-arc basin.]]>
机译:<![cdata [ 抽象 在Lhasa Terrane,藏高高原中的Shiquanhe-Yunzhug-Namu TSO OphioliteMélange(SNMZ)的形成,了解这一滴大的中生代构造演化的关键,这仍然存在争议。我们表明,在〜150mA中形成的SNMZ中央段中的Yunzhug Ophiolite,基于Zircons的ZiRcons在发达的片状堤岸复合物中的ZiRcons的Zircons的延长。地球化学上,这些乳头岩石由E-Morb型组合物占主导地位,以及少量具有p-Morb型组合物的岩石。样品还表现出高ε nd (t)值,缺少阴性Nb和ta异常。在TH / YB-NB / YB图中的Morb阵列中的所有样本绘图的数据。因此,这些MAFIC岩石最有可能形成在缓慢的海洋环境或胚胎海洋中,而不是先前假设的背弧盆地。考虑到区域地质,我们建议云拉蛋白是不同的眼镜皮带的一部分,代表拉萨特拉内部胚胎海洋中形成的材料,这为拉萨特拉的侏罗纪构造演变提供了新的见解。 突出显示 可靠的锆石U-PB年龄( 〜150mA)报告了yunzhug ophiolite。 Yunzhug Ophiolite是Lhasa Te内的独立眼镜腰带的一部分rrane。 Yunzhug Ophiolite在Mor-Setting中形成而不是在后弧盆地中形成。 ]]>

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