Intra-arc rifting induced the fragmentation of microplate from the continental margin

Limin Wu, Guochun Zhao, Jianfeng Gao, Xiaohan Dong, Aimei Zhang, Touping Peng
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Abstract

Although abundant Neoproterozoic igneous rocks exposed along the periphery of the Yangtze Block of the South China Craton record the tectonic processes of the assembly and breakup of the Rodinia supercontinent, the mechanism that induced the rifting of the South China Craton from Rodinia and reconstruction of the paleogeographic position of the South China Craton in Rodinia remain controversial. We document two episodes of bimodal intrusions with emplacement ages of ca. 785 Ma and ca. 750 Ma in the Diancangshan Massif that provide critical constraints on the rifting processes and mechanisms. The rock association and the elemental and Hf-O isotopic signatures of these two episodes of bimodal intrusions illustrate that they are an important component of the Panxi-Hannan magmatic arc in the western Yangtze Block. The spatial pattern of Neoproterozoic sedimentary rocks to the west of the Panxi-Hannan arc and their provenance indicate that intra-arc rifting promoted the separation of microplates such as the Xuelongshan and Diancangshan massifs and even the Yidun Block from the western Yangtze Block and the mechanism induced synchronous deposits in these regions.
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弧内断裂导致大陆边缘微板块破碎
尽管华南克拉通扬子地块外围出露的丰富的新近新生代火成岩记录了罗迪尼亚超大陆组装和解体的构造过程,但诱发华南克拉通从罗迪尼亚断裂的机制以及华南克拉通在罗迪尼亚古地理位置的重建仍存在争议。我们在滇苍山地块记录了两期双峰侵入体,其成岩年龄分别为约785Ma和约750Ma,为断裂过程和机制提供了重要的约束条件。这两期双峰侵入体的岩石关联、元素和Hf-O同位素特征表明,它们是长江地块西部攀西-汉南岩浆弧的重要组成部分。盘溪-汉南岩浆弧西侧新近新生代沉积岩的空间格局及其成因表明,弧内断裂促进了雪龙山、滇藏山地块乃至宜墩地块等微板块从长江地块西部的分离,并在这些地区形成了同步沉积。
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