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首页> 外文期刊>Geological Magazine >SHRIMP zircon study of a micromonzodiorite dyke in the Karkonosze Granite, Sudetes (SW Poland): age constraints for late variscan magmatism in Central Europe
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SHRIMP zircon study of a micromonzodiorite dyke in the Karkonosze Granite, Sudetes (SW Poland): age constraints for late variscan magmatism in Central Europe

机译:SHRIMP锆石研究苏德特斯(南非波兰)Karkonosze花岗岩中的微单闪闪岩脉:年龄限制,中欧晚变扫描岩浆作用

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The large Variscan Karkonosze Granite in the West Sudetes, representative of the vast Variscan granite plutonism in Central Europe and located adjacent to regional tectonic suture and strike-slip-zones, has been difficult to date precisely; a range of published data varies between c. 304 and 328 Ma. However, the granite is cut by locally numerous lamprophyre and other dykes. Dating of the dyke rocks, emplaced shortly after the granite intrusion and cooled more rapidly, provides a promising tool for the verification of published SHRIMP results on the granite itself. SHRIMP zircon geochronology of a studied micromonzodiorite dyke indicates substantial admixture of inherited zircons of c. 2.0, 1.4 Ga (Pb-207-Pb-206 minimum ages), and c. 570 (and 500?) Ma. The average concordia age of the main magmatic Population of the zircons in the dyke is 313 +/- 3 Ma (2 sigma); however, the true magmatic age might be older, around 318 Ma. This would constrain the age of the hypabyssal magmatism in the Karkonosze Massif and the minimum age of the host Karkonosze Granite. Thus, the Karkonosze Granite is confirmed as representative of an early phase of Variscan granite plutonic activity in the central-European Variscides.
机译:西苏德特人的大型Variscan Karkonosze花岗岩是中欧地区广泛的Variscan花岗岩岩体的代表,与区域构造缝合线和走滑带相邻,很难精确地确定日期。一系列发布的数据在c。 304和328 Ma。然而,花岗岩被当地众多的煌斑岩和其他堤坝切割。花岗岩侵入后不久就放置了堤坝的日期,并且冷却得更快,这为验证已发布的关于花岗岩本身的SHRIMP结果提供了有希望的工具。研究的微单闪闪龙岩的SHRIMP锆石年代学表明c的继承锆石大量混合。 2.0、1.4 Ga(最小年龄Pb-207-Pb-206)和c。 570(和500?)马。堤内锆石主要岩浆种群的平均共生年龄为313 +/- 3 Ma(2 sigma)。但是,真正的岩浆时代可能会更早,大约318 Ma。这将限制Karkonosze断层中的低层岩浆作用的年龄和主体Karkonosze Granite的最小年龄。因此,在中欧的Variscides中,Karkonosze花岗岩被确认为Variscan花岗岩深成岩活动的早期代表。

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