Composition and spatiotemporal evolution of the mixed turbidite-contourite systems from the Middle Ordovician, in western margin of the North China Craton

2021 ◽  
pp. 105943
Author(s):  
Zhen Wang ◽  
Ruoying Fan ◽  
Ruiwen Zong ◽  
Yiming Gong
2021 ◽  
Vol 118 (34) ◽  
pp. e2107859118
Author(s):  
Zhonghe Zhou ◽  
Qingren Meng ◽  
Rixiang Zhu ◽  
Min Wang

The Early Cretaceous Jehol Biota is a terrestrial lagerstätte that contains exceptionally well-preserved fossils indicating the origin and early evolution of Mesozoic life, such as birds, dinosaurs, pterosaurs, mammals, insects, and flowering plants. New geochronologic studies have further constrained the ages of the fossil-bearing beds, and recent investigations on Early Cretaceous tectonic settings have provided much new information for understanding the spatiotemporal distribution of the biota and dispersal pattern of its members. Notably, the occurrence of the Jehol Biota coincides with the initial and peak stages of the North China craton destruction in the Early Cretaceous, and thus the biotic evolution is related to the North China craton destruction. However, it remains largely unknown how the tectonic activities impacted the development of the Jehol Biota in northeast China and other contemporaneous biotas in neighboring areas in East and Central Asia. It is proposed that the Early Cretaceous rift basins migrated eastward in the northern margin of the North China craton and the Great Xing’an Range, and the migration is regarded to have resulted from eastward retreat of the subducting paleo-Pacific plate. The diachronous development of the rift basins led to the lateral variations of stratigraphic sequences and depositional environments, which in turn influenced the spatiotemporal evolution of the Jehol Biota. This study represents an effort to explore the linkage between terrestrial biota evolution and regional tectonics and how plate tectonics constrained the evolution of a terrestrial biota through various surface geological processes.


2021 ◽  
pp. SP518-2021-45
Author(s):  
Peng Peng ◽  
Huiru Xu ◽  
Chong Wang ◽  
Xiangdong Su ◽  
Fengbo Sun ◽  
...  

AbstractThe North China craton is encircled by four successive triple-conjugated rifts, which are respectively centers of large igneous provinces (LIPs) of bimodal compositions, i.e., Xiong'er rift (south, ca. 1.78 Ga Taihang LIP), Yanliao rift (north, ca. 1.32 Ga Yanliao LIP), Xuhuai rift (east, ca. 1.23 Ga Licheng and ca. 0.92 Ga Dashigou LIPs), and Langshan rift (west, ca. 0.82 Ga Qianlishan LIP). These rifts are genetically related with their contemporaneous LIPs based on their consistent geometry. Spatial migration of these rifts and LIPs indicates their propagation from along one marginal side to the opposite side of the craton, which may results in the sequential breakup of the proto-North China craton from one side to another during 1.8-0.8 Ga. However, the observation that the lithosphere under the LIP-associated rift regions is less destructed (decratonized) in the Mesozoic indicates a possible role of LIPs in strengthening intracratonic steady state. This study shows that LIPs may change craton stability in either direction.


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