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首页> 外文期刊>Geological Journal >Zircon U-Pb geochronology, Hf isotopic compositions, and petrogenetic study of Abor volcanic rocks of Eastern Himalayan Syntaxis, Northeast India: Implications for eruption during breakup of Eastern Gondwana
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Zircon U-Pb geochronology, Hf isotopic compositions, and petrogenetic study of Abor volcanic rocks of Eastern Himalayan Syntaxis, Northeast India: Implications for eruption during breakup of Eastern Gondwana

机译:锆石U-PB地理学,HF同位素组成,HIMALAYAN SYCTAXIS的ABOR VOLCANIC岩石,印度东北地区:爆发爆发的影响

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This paper reports new zircon U-Pb ages and Hf isotopic compositions of felsic units of the Abor volcanic rocks (AVR) of Eastern Himalayan Syntaxis (EHS), Northeast India, and discusses their relationship to the Kerguelen plume activity. The AVR are bimodal and predominantly constituted by mafic rocks with minor felsic units. Mafic volcanics are identified as basalt and basaltic andesite with light rare earth elements (LREE) enriched and slightly depleted heavy rare earth elements (HREE) pattern without Eu anomalies. Low concentrations of LILE, high contents of Fe2O3, and other incompatible trace elements ratios reflect enriched nature of these mafic volcanics. Felsic volcanic rocks are dacitic to rhyolitic in composition, which have high REE content, high LREE/HREE, and pronounced negative Eu anomalies. Enriched LREE, high Th/Nb, Ce/Nb ratios, and variations in Rb/Zr, K/Rb, La/Sm ratios with negative anomalies of Ba, Nb, Sr, P, Ti in felsic rocks suggest substantial contribution of crustal contamination at the time of eruption. Zircons from felsic units yield an average U-Pb age of similar to 132 Ma and unradiogenic ((Hf)(t) < 0) Hf isotope values of -7.0 to -13.3 with model ages between 1.5 and 2.1 Ga, suggesting old crustal assimilation in their genesis. The AVR were emplaced in the continental rift tectonic setting, and depth of the magma source is confirmed as near spinel stability zone. The AVR are positively comparable with other flood basalts that were formed due to the Kerguelen plume activity. Therefore, our combined new geochemical and geochronological data show that the AVR were emplaced at early stage (similar to 132 Ma) of eastern Gondwana breakup due to outbreak of the Kerguelen plume. This study thus supports the idea of the Kerguelen plume affecting a large area of Eastern India, Western Australia, and Antarctica during early stage of Gondwana breakup.
机译:本文报告了新的锆石U-PB年龄和HF同位素组成的Abor Marcanic Syntaxis(EHS),东北印度,印度,并讨论了与Kerguelen羽流活动的关系。 AVR是双峰,主要由MAFIC ROCKS构成,具有次要肠道单元。 MAFIC Volcanics被鉴定为玄武岩和玄武岩,具有轻质稀土元素(LREE)富含富含欧盟异常的富含稀有的稀有稀土元素(HREE)模式。低浓度的乳液,高含量的Fe2O3,以及其他不相容的微量元素比率反映了这些镁铁粉的富集本质。猪肉岩石是一种成分中的卵霉菌,其具有高雷含量,高淋浴/嗡嗡声和明显的负欧盟异常。富含Ba,Nb,Sr,P,Ti阴性异常的RB / Zr,K / Rb,La / SM比例的富集的LREE,高Th / Nb,Ce / Nb比率和患者中的Ba,Nb,Sr,P,Ti的变化表明了地壳污染的大量贡献在爆发时。来自肠道单位的氧化股收得出平均U-PB时代,类似于132 mA和未致生的((HF)(T)<0)HF同位素值-7.0至-13.3,其中模型年龄在1.5和2.1Ga之间,旨在造成旧的地壳同化在他们的创世记中。 AVR在大陆裂缝构造环境中施加,岩浆源的深度被确认为尖晶石稳定区附近。 AVR与由于kerguelen羽流活动而形成的其他洪水基础相比。因此,我们的新地球化学和地质学论数据表明,由于Kerguelen羽流爆发,AVR在东部Gondwana分手的早期阶段(类似于132 mA)。因此,这项研究支持在Gondwana分手的早期阶段,影响了影响印度东印度大面积的Kergucen羽流的想法。

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