Tectonic escape from the Pangean megamonsoon via oceanic isolation modulated low-latitude hydroclimate
Abstract
The assembly of the Pangea supercontinent during the late Paleozoic ice age drove Earth’s most intense megamonsoon. Although climate models predict a humid low-latitude eastern Pangean margin, widespread red-bed records indicate extreme seasonal oxidation, creating a conspicuous “model-sediment” paradox. Located directly on this margin, the Xilinhot-Songliao block captures a “red-gray-red” sedimentary cycle that physically toggled between these conflicting arid and humid states. Here, we report ca. 315 Ma high-quality paleomagnetic data from the block to reconstruct its full drift trajectory (315−265 Ma). Integrated with geological proxies, the block is inferred to have maintained a close tectonic affinity with the Pangean margin initially (ca. 315 Ma), hosting megamonsoon-dominated red beds. Following the expansion of the Hegenshan Ocean to a N-S width of ∼2300 km by ca. 300 Ma, the block underwent “tectonic decoupling,” transitioning into a stable zonal climate depositing pure carbonates. Subsequent reattachment to the supercontinent (280−265 Ma) triggered a rapid reversion to arid megamonsoonal conditions. Occurring under a constant global icehouse, this “red-gray-red” oscillation demonstrates that tectonic distance to the supercontinent acted as the primary switch modulating land-sea thermal feedback. Our findings challenge paradigms relying solely on global climate cycles, highlighting how ocean basin evolution independently reshapes regional climatic landscapes.
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Authors: Qiang Ren, Huaichun Wu, Anqing Chen, Jian Zhang, 王宁伟, Shihong Zhang, Tianshui Yang, Haiyan Li, Hanting Zhong, Haipeng Li, James G. Ogg, Mingcai Hou
Institutions: Institute of Tibetan Plateau Research, China University of Geosciences (Beijing), Purdue University West Lafayette, Chengdu University of Technology, State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation, Ministry of Natural Resources