【摘 要】
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In order to determine the provenance and variation characteristics of sandstone-type uranium deposits located in the southwest Ordos Basin, U-Pb geochronology and Hf isotope analyses were conducted on detrital zircons from the Late Mesozoic strata of the
【机 构】
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State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation,Chengdu University of Technol
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In order to determine the provenance and variation characteristics of sandstone-type uranium deposits located in the southwest Ordos Basin, U-Pb geochronology and Hf isotope analyses were conducted on detrital zircons from the Late Mesozoic strata of the SD01 well in the Zhenyuan ar- ea. The detrital zircon U-Pb ages of four samples exhibited four main peaks at 250–330, 420–500, 1720– 2000, and 2340–2580 Ma, with a small number of zircons dated at 770–1100 Ma. The detrital zircon age spectrum and further restriction provided by the in-situ Hf isotopic data suggest that the prove- nance of each stratum was mainly derived from the crystalline basement rock series (Khondalites, in- termediate-acidic intrusive rocks, and metamorphic rocks) of the Alxa Block to the northwest and the Yinshan Block to the north, with minor amounts of Caledonian magmatic rocks and Jingning Period rocks from the western part of the northern Qilian orogenic belt to the west and the northern Qinling orogenic belt to the south. The provenance of the sandbody has not changed significantly and is of the Middle Jurassic–Early Cretaceous. The clear variations in the zircon ages of the samples from the Zhi- luo and Anding formations were likely influenced by climate change during the Middle–Late Jurassic. The Triassic zircon age (<250 Ma) first appeared in Early Cretaceous strata, suggesting that tectonic activity was relatively strong in the northern Qinling orogenic belt during the Late Jurassic and pro- duced extensive outcrops of Indo-Chinese granite, which were a source of basin sediments.
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