蒂曼构造周期与乌拉尔构造周期的分界线:极地乌拉尔地区下古生界同步断裂复合体基底层的碎屑锆石定年结果及火成岩年龄数据报告

A. Soboleva, N. Nikulova, V. Khubanov
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引用次数: 0

摘要

上寒武统-下奥陶统陆相地层与乌拉尔北部蒂马尼德造山带的上里皮安-文地安岩不整合,与同时代的双峰火山岩和侵入岩被认为是标志着断裂开始的复合体,断裂导致了后来古乌拉尔洋的开辟。文章介绍了对极地乌拉尔马来乌萨河盆地裂谷复合体断面底部砂岩中的碎屑锆石进行 U-Pb (LA-ICP-MS)定年的结果。研究发现,碎屑岩序列(被确定为霍伊迪索尔岩层)开始堆积的时间不会早于寒武纪-奥陶纪过渡时期。锆石年龄位于文迪纪至奥陶纪早期(575-478Ma)的连续区间内,峰值为 512Ma。这一年龄范围与流纹岩的年龄重叠,流纹岩与砂岩和侵入霍伊迪索尔地层的流纹岩斑岩长钉相吻合,从而表明可能有合成火山活动的产物混入其中。根据锆石的窄年龄模式,我们可以得出结论,砂岩中的锆石碎片主要来源于早-中寒武世的火成岩,这些火成岩形成于前裂谷隆升阶段,其次是晚寒武世-早奥陶世的裂谷成因岩浆复合体(标志着乌拉尔构造周期的开始),以及底层提曼尼德造山带的晚文登世火成岩。从 Th/U 比值来看,砂岩中的大部分碎屑锆石来自早古生代硅质火山岩和次深成岩以及文登期的花岗岩和闪长岩。乌拉尔北部同时期砂岩的典型特征是几乎完全没有较古老的颗粒,这可能表明所考虑的砂岩是在当地海槽中与当地碎屑物质来源一起堆积而成的。对极地乌拉尔地区火成岩和变质岩中锆石的 U-Pb 年龄进行的概率密度估算表明,该地区的晚更新世至奥陶纪早期的内生活动没有间断。主要峰值出现在 552、521 和 500 Ma,另一个峰值出现在 665 Ma。对霍伊迪索尔岩层砂岩中的锆石碎片进行的年代测定结果,以及作者编制的极地乌拉尔火成岩和变质岩 U-Pb 同位素年龄数据库(119 项)表明,地球动力机制从晚文迭纪的碰撞造山运动到早中寒武纪的裂谷前隆起以及晚寒武纪裂谷之后的变化,并没有伴随着岩浆活动的长期中断。
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BOUNDARY BETWEEN THE TIMANIAN AND URALIAN TECTONIC CYCLES: RESULTS OF DATING OF DETRITAL ZIRCONS FROM BASAL HORIZONS OF THE LOWER PALEOZOIC SYNRIFT COMPLEX OF THE POLAR URALS, AND IGNEOUS ROCK AGE DATA REPORT
The Upper Cambrian-Lower Ordovician terrigenous strata, unconformably overlying the Upper Riphean-Vendian rocks of the Timanide orogen in the north of the Urals, and contemporaneous bimodal volcanics and intrusive rocks are considered complexes marking the beginning of rifting which led to the opening of the Paleo-Ural Ocean later on. The article presents the results of U-Pb (LA-ICP-MS) dating of detrital zircons from sandstones lying at the base of the section of the rift complex in the Malaya Usa River basin in the Polar Urals. It was found that the clastic sequence (identified as the Khoydyshor formation) began to accumulate no earlier than the Cambrian–Ordovician transition. Zircon ages fall within the continuous Vendian to Early Ordovician (575–478 Ma) interval with peak at 512 Ma. This age range overlaps with the age of rhyolites interlayered conformably with sandstones and rhyolite porphyry dikes intruding the Khoydyshor formation, thus indicating a possible admixture of products of synsedimentary volcanism. A narrow zircon age pattern allows us to conclude that the main sources of detrital zircons in sandstones were the Early-Middle Cambrian igneous rocks formed at the stage of pre-rift uplift, and, to a lesser extent, the Late Cambrian-Early Ordovician riftogenic magmatic complexes, marking the beginning of the Uralian tectonic cycle, as well as the Late Vendian igneous rocks of the underlying Timanide orogen. Judging by the Th/U ratio, most of the detrital zircons within the sandstones were derived from the Early Paleozoic silicic volcanic and hypabyssal rocks and the Vendian granitoids and diorites. The almost complete absence of older grains, which are typical of coeval sandstones of the northern part of the Urals, may indicate the accumulation of the considered sandstones in a local trough with local clastic material sources. Probability density estimation of U-Pb ages for zircon from igneous and metamorphic rocks of the Polar Urals indicates that there were no gaps in the Late Riphean to Early Ordovician endogenous activity in this region. The main peaks occur at 552, 521 and 500 Ma, and an additional peak – at 665 Ma. The results of dating of detrital zircons from sandstones of the Khoydyshor formation together with the database of U-Pb isotope ages of igneous and metamorphic rocks of the Polar Urals (119 items), compiled by the authors, indicate that the change in geodynamic regime from collisional orogenesis in the Late Vendian to the Early-Middle Cambrian pre-rift uplift and following Late Cambrian rifting was not accompanied by a longterm discontinuity in magmatic activity.
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