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首页> 外文期刊>Acta Geologica Sinica >SHRIMP Geochronology of Volcanics of the Zhangjiakou and Yixian Formations, Northern Hebei Province, with a Discussion on the Age of the Xing'anling Group of the Great Hinggan Mountains and Volcanic Strata of the Southeastern Coastal Area of China
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SHRIMP Geochronology of Volcanics of the Zhangjiakou and Yixian Formations, Northern Hebei Province, with a Discussion on the Age of the Xing'anling Group of the Great Hinggan Mountains and Volcanic Strata of the Southeastern Coastal Area of China

机译:冀北张家口组和宜县组火山岩的SHRIMP年代学,兼论兴安岭大兴安岭群的年龄和中国东南沿海地区的火山岩层

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摘要

A zircon U-Pb geochronological study on the volcanic rocks reveals that both of the Zhangjiakou and Yixian Formations, northern Hebei Province, are of the Early Cretaceous, with ages of 135-130 Ma and 129-120 Ma, respectively. It is pointed out that the ages of sedimentary basins and volcanism in the northern Hebei -western Liaoning area become younger from west to east, i. e. the volcanism of the Luanping Basin commenced at c. 135 Ma, the Luotuo Mount area of the Chengde Basin c. 130 Ma, and western Liaoning c. 128 Ma. With a correlation of geochronological stratigraphy and biostratigraphy, we deduce that the Xing'anling Group, which comprises the Great Hinggan Mountains volcanic rock belt in eastern China, is predominantly of the early-middle Early Cretaceous, while the Jiande and Shimaoshan Groups and their equivalents, which form the volcanic rock belt in the southeastern coast area of China, are of the mid-late Early Cretaceous, and both the Jehol and Jiande Biotas are of the Early Cretaceous, not Late Jurassic or Late Jurassic-Early Cretaceous. Combining the characteristics of the volcanic rocks and, in a large area, hiatus in the strata of the Late Jurassic or Late Jurassic-early Early Cretaceous between the formations mentioned above and the underlying sequences, we can make the conclusion that, in the Late Jurassic-early Early Cretaceous, the eastern China region was of high relief or plateau, where widespread post-orogenic volcanic series of the Early Cretaceous obviously became younger from inland in the west to continental margin in the east. This is not the result of an oceanward accretion of the subduction belt between the Paleo-Pacific ocean plate and the Asian continent, but rather reflects the extension feature, i.e. after the closure of the Paleo-Pacific ocean, the Paleo-Pacific ancient continent collided with the Asian continent and reached the peak of orogenesis, and then the compression waned and resulted in the retreating of the post-orogenic extension from outer orogenic zone to inner part (or collision zone). The determination of the eruption age of the volcanics of the Zhangjiakou Formation definitely constrains the switch period, which began in the Indosinian and finished in the Yanshanian, that is, 140-135 Ma. The switch is concretely the change from the approximate E-W Paleo-Asian tectonic system to the NE to NNE Pacific system, and the period is also the apex of a continent-continent collision and orogenesis of subduction, being consumed and eventually disappearing of the Paleo-Pacific ancient continent, and all the processes commenced in the Indosinian. While the following post-orogenic large-scale eruption in the Early Cretaceous marks the final completeness of the Paleo-Pacific structure dynamics system.
机译:对火山岩的锆石U-Pb年代学研究表明,河北省张家口组和亦县组均属于早白垩世,年龄分别为135-130 Ma和129-120 Ma。指出,河北北部-辽西地区的沉积盆地和火山作用的年龄从西向东逐渐年轻。 e。 an平盆地的火山活动始于c。承德盆地骆驼山地区135 Ma c。 130 Ma,辽西c。 128毫安通过地层学和生物地层学的相关性,我们推断包括中国东部兴安岭大火山岩带的兴安岭群主要是早白垩世中早期,而建德和世茂山群及其等价体在中国东南沿海地区形成火山岩带的是白垩纪中晚期,热河和建德生物群都是早白垩世的,而不是侏罗纪晚期或侏罗纪晚期-早白垩纪。结合上述地层和下伏层序之间的火山岩特征以及大范围的晚侏罗世或晚侏罗世-早白垩世地层中的裂隙,我们可以得出以下结论: -白垩纪早期,中国东部地区为高起伏或高原,白垩纪早期广泛的造山后火山系列显然从西部内陆到东部大陆边缘变得年轻。这不是古太平洋板块与亚洲大陆之间俯冲带向海增生的结果,而是反映了扩展特征,即古太平洋封闭之后,古太平洋古大陆相撞在亚洲大陆上,造山运动达到了顶峰,然后压缩减弱,并导致造山后扩张从外造山带向内部(或碰撞带)退缩。确定张家口组火山喷发的年龄肯定会限制转换期,转换期始于印度支那期,结束于燕山期,即140-135 Ma。具体而言,这一转变是从近东东亚古构造体系向东北向北非太平洋体系转变的时期,也是大陆-大陆碰撞和俯冲造山运动的顶点,被古罗马消耗和最终消失。太平洋古大陆,所有过程始于印度支那。随后在早白垩世发生的造山后大规模喷发标志着古太平洋结构动力学系统的最终完成。

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