首页> 外文期刊>Lithos: An International Journal of Mineralogy, Petrology, and Geochemistry >Zircon U-Pb and K-feldspar megacryst Rb-Sr isotopic ages and Sr-Hf isotopic composition of the Mesozoic Heyu pluton, eastern Qingling orogen, China
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Zircon U-Pb and K-feldspar megacryst Rb-Sr isotopic ages and Sr-Hf isotopic composition of the Mesozoic Heyu pluton, eastern Qingling orogen, China

机译:中国东部庆陵造山带中生代河宇岩体的锆石U-Pb和钾长石超大晶体Rb-Sr同位素年龄和Sr-Hf同位素组成

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摘要

Mesozoic granitoids are ubiquitous in China and have attracted the interests of many geologists not only because of their mineralization potential but also because they carry information on source material, emplacement mechanisms and crustal architecture. Most of the plutons were created by multi-stage magma emplacement and offer particular challenge for unraveling the emplacement and cooling history. A multi-isotope approach combined with single grain dating analyses provides a means to understand magma geneses even in complex magmatic settings. This study presents Rb-Sr isotope data for K-feldspar megacrysts and U-Pb ages and Hf isotopic composition for zircons from the composite Heyu pluton exposed in eastern Qinling orogen, central China. Zircon U-Pb concordia ages of 150 and 140 Ma and single K-feldspar Rb-Sr isochron ages between 133 and 121 Ma were obtained from early and late magmatic stages, respectively, consistent with slow cooling or isotopic re-equilibration of the Rb-Sr K-feldspar system. The distinct K-feldspar morphology of early and late intrusive phases is controlled largely by the emplacement depth, likely to be associated with a gravity-driven sinking model. Corresponding zircon ε_(Hf)(t) values are —21.8 to —18.0 and —17.2 to —10.3 for early and late intrusive phases, respectively, indicating different magma sources.
机译:中生代花岗岩在中国无处不在,不仅吸引了许多地质学家的兴趣,不仅因为它们具有成矿的潜力,而且因为它们携带了有关原材料,安置机制和地壳构造的信息。大多数的小行星都是由多阶段岩浆冲撞形成的,它们对于揭示冲撞和冷却历史提出了特殊的挑战。多同位素方法与单粒测年分析相结合,即使在复杂的岩浆环境中也提供了一种了解岩浆成因的方法。这项研究提供了中国东部秦岭造山带中暴露的复合河榆岩体的钾长石大晶的Rb-Sr同位素数据和锆石的U-Pb年龄以及锆石的Hf同位素组成。从岩浆的早期和晚期分别获得了150和140 Ma的锆石U-Pb共生年龄以及133和121 Ma之间的单个K长石Rb-Sr等时年龄,这与Rb-锶钾长石系统。早期和晚期侵入相的独特的钾长石形态在很大程度上受镶嵌深度控制,这很可能与重力驱动下沉模型有关。早期侵入相和晚期侵入相的相应锆石ε_(Hf)(t)值分别为-21.8至-18.0和-17.2至-10.3,表明岩浆来源不同。

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