Switching from advancing to retreating subduction in the Neoproterozoic Tarim Craton, NW China: Implications for Rodinia breakup附视频

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作者
Guanghui Wu [1 ,2 ]
Shuai Yang [1 ]
Wei Liu [3 ]
RDamian Nance [4 ]
Xin Chen [1 ]
Zecheng Wang [3 ]
Yang Xiao [1 ]
机构
[1] School of Geoscience and Technology, Southwest Petroleum University
[2] Southwest Petroleum University, Division of Key Laboratory of Carbonate Reservoirs,CNPC
[3] Petro China Research Institute of Petroleum Exploration & Development
[4] Department of Geological Sciences, Clippinger Laboratories, Ohio
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中图分类号
P542 [构造运动]; P534.3 [元古代(界)];
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摘要
Geodynamic drivers for the supercontinent cycle are generally attributed to either top-down(subduction-related)or bottom-up(mantle-related) processes. Compiled geochemical data and U–Pb ages and Hf isotopic signatures for magmatic and detrital zircons from the Tarim Craton reveal a distinct change in subduction style during the Neoproterozoic. The subduction cycle is recorded in increasing and decreasing intensity of subduction-related magmatic rocks and time-equivalent sedimentary successions, and converse trends of εHf(t) values and corresponding changes in crustal incubation time. These trends are consistent with a switch from advancing to retreating subduction. The switch likely occurred at ca. 760 Ma when zircon εHf(t) values increase and crustal incubation times decrease following a transitional shift between 800 Ma and 760 Ma. A switch at this time is consistent with Rodinia breakup and may have resulted in the late Neoproterozoic Tarim rift basin. The long-lived(ca. 500 Ma) subduction recorded in the Tarim Craton suggests the predominance of a top-down process for Rodinia breakup on this part of its margin.
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页码:161 / 171
页数:11
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