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中国苏鲁造山带深部俯冲榴辉岩的部分熔融。

Partial melting of deeply subducted eclogite from the Sulu orogen in China.

作者信息

Wang Lu, Kusky Timothy M, Polat Ali, Wang Songjie, Jiang Xingfu, Zong Keqing, Wang Junpeng, Deng Hao, Fu Jianmin

机构信息

1] State Key Laboratory of Geological Processes and Mineral Resources, China University of Geosciences Wuhan, Wuhan 430074, China [2] Center for Global Tectonics, China University of Geosciences Wuhan, Wuhan 430074, China.

1] State Key Laboratory of Geological Processes and Mineral Resources, China University of Geosciences Wuhan, Wuhan 430074, China [2] Center for Global Tectonics, China University of Geosciences Wuhan, Wuhan 430074, China [3] Three Gorges Research Center for Geohazards, Ministry of Education, China University of Geosciences Wuhan, Wuhan 430074, China.

出版信息

Nat Commun. 2014 Dec 17;5:5604. doi: 10.1038/ncomms6604.

Abstract

We report partial melting of an ultrahigh pressure eclogite in the Mesozoic Sulu orogen, China. Eclogitic migmatite shows successive stages of initial intragranular and grain boundary melt droplets, which grow into a three-dimensional interconnected intergranular network, then segregate and accumulate in pressure shadow areas and then merge to form melt channels and dikes that transport magma to higher in the lithosphere. Here we show, using zircon U-Pb dating and petrological analyses, that partial melting occurred at 228-219 Myr ago, shortly after peak metamorphism at 230 Myr ago. The melts and residues are complimentarily enriched and depleted in light rare earth element (LREE) compared with the original rock. Partial melting of deeply subducted eclogite is an important process in determining the rheological structure and mechanical behaviour of subducted lithosphere and its rapid exhumation, controlling the flow of deep lithospheric material, and for generation of melts from the upper mantle, potentially contributing to arc magmatism and growth of continental crust.

摘要

我们报道了中国中生代苏鲁造山带中一块超高压榴辉岩的部分熔融现象。榴辉质混合岩呈现出初始粒内和晶界熔体滴的连续阶段,这些熔体滴生长成三维相互连通的粒间网络,然后在压力影区域分离并聚集,接着合并形成熔体通道和岩脉,将岩浆输送到岩石圈更高处。在此,我们通过锆石U-Pb定年和岩石学分析表明,部分熔融发生在2.28 - 2.19亿年前,即2.30亿年前峰值变质作用之后不久。与原岩相比,熔体和残余物在轻稀土元素(LREE)方面呈互补性富集和亏损。深度俯冲榴辉岩的部分熔融是确定俯冲岩石圈流变结构和力学行为及其快速折返、控制深部岩石圈物质流动以及从上地幔产生熔体的重要过程,可能有助于弧岩浆作用和大陆地壳生长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/242f/4284643/1a853a9ea283/ncomms6604-f1.jpg

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