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New insights into multiple provenances evolution of the Jurassic from heavy minerals characteristics in southern Junggar Basin, NW China

机译:中国西北准Jung尔盆地南部重矿物特征对侏罗纪多种物源演化的新见解

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The method of random forest was used to classify the heavy mineral assemblages of 2 418 Jurassic samples in the southern Junggar Basin, and determine the distribution of the heavy mineral assemblages from the same provenance systems. Based on the analysis of heavy minerals assemblages,ZTRindex, sedimentary characteristics, U-Pb zircon ages, whole-rock geochemical and paleocurrent direction analysis, the study reveals that five important provenances were providing sediments to the southern Junggar Basin in the Jurassic period: The North Tianshan (NTS), Central Tianshan (CTS), Bogda Mountains, Zhayier Mountains and Kalamaili Mountains. During the Early Jurassic, NTS-CTS, Kalamaili Mountains and Zhayier Mountains are primary provenances, Bogda Mountains started to uplift and supply clastic materials in the Middle Jurassic. There are three sedimentary area in the Jurassic of southern Junggar Basin: the western part, the central part and the eastern part. In the western part, the clastic materials of the Early Jurassic was mainly from NTS blocks and Zhayier Mountains, and the sediments were dominantly derived from the Zhayier Mountains during the Middle–Late Jurassic. In the central part, the main provenance of the Early Jurassic switched from NTS to CTS. In the Xishanyao Formation, the main source went back to NTS again. The NTS was the primary provenance during the sedimentary periods of Toutunhe Formation and Qigu Formation. In the eastern part, the contribution of CTS and Kalamaili Mountains were considered as major provenances in the Early Jurassic?Xishanyao Formation, small proportion of sediments were from NTS. The Bogda mountains uplifted and started to provide sediments to the Junggar Basin in the sedimentary period of Xishanyao Formation, and became the major source during the Toutunhe Formation period, with small amount of sediments from CTS. The provenance from CTS was hindered during the sedimentary period of Qigu Formation owing to the uplifting of the Bogda mountains, and the sediments were mainly from the Bogda mountains and NTS.
机译:使用随机森林方法对准Jung尔盆地南部的2 418个侏罗纪样品的重矿物组合进行分类,并确定来自相同出处系统的重矿物组合的分布。通过对重矿物组合,ZTR指数,沉积特征,U-Pb锆石年龄,全岩地球化学和古流向分析的分析,该研究表明,在侏罗纪时期,准five尔盆地南部有五个重要的物源提供了沉积物:北天山(NTS),中天山(CTS),博格达山,扎耶尔山和卡拉麦里山。在侏罗纪早期,NTS-CTS,卡拉马里山和扎耶尔山是主要起源,博格达山脉开始抬升并供应侏罗纪中部的碎屑物质。准gar尔盆地南部侏罗纪有三个沉积区:西部,中部和东部。在西部,侏罗纪早期的碎屑物质主要来自NTS地块和扎伊尔山脉,而沉积物主要来自侏罗纪中晚期的扎伊尔山脉。在中部,侏罗纪早期的主要物源从NTS转变为CTS。在西山窑组,主要来源又回到了NTS。 NTS是头屯河组和栖古组沉积期的主要物源。在东部地区,CTS和卡拉麦里山的贡献被认为是侏罗纪-西山窑早期的主要物源,少量的沉积物来自NTS。博格达山隆起,在西山药组沉积期开始向准gar尔盆地提供沉积物,在头屯河组期间成为主要源头,CTS沉积物较少。由于波格达山脉的隆升,奇谷组沉积期的CTS物源受到了阻碍,沉积物主要来自波格达山脉和NTS。

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