Indosinian anatexis of Paleoproterozoic granites in the east Cathaysia Block, South China

被引:1
作者
Zhang, Wei [1 ]
Zhou, Hanwen [2 ,3 ,4 ]
Zhou, Xiaohua [1 ]
Zhao, Xilin [1 ,5 ]
Liu, Huan [1 ]
Jiang, Yang [1 ]
Li, Chunzhong [6 ]
机构
[1] China Geol Survey, Nanjing Ctr, Nanjing, Peoples R China
[2] China Univ Geosci, Sch Earth Sci, Wuhan, Peoples R China
[3] Minist Educ, Three Gorges Res Ctr Geohazards, Wuhan, Peoples R China
[4] China Univ Geosci, Badong Natl Observat & Res Stn Geohazards, Wuhan, Peoples R China
[5] Hefei Univ Technol, Sch Resources & Environm Engn, Hefei, Peoples R China
[6] 7th Geol Team Zhejiang Prov, Lishui, Peoples R China
关键词
crustal anatexis; east Cathaysia Block; granulite facies; Indosinian; Southwest Zhejiang Province; PB ZIRCON GEOCHRONOLOGY; A-TYPE GRANITES; U-PB; HF-ISOTOPE; CRUSTAL EVOLUTION; SOUTHWESTERN ZHEJIANG; SOUTHEASTERN CHINA; MELT EXTRACTION; COLLISION; ROCKS;
D O I
10.1111/iar.12510
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Granulite facies metamorphism and crustal anatexis exist in the East Cathaysia Block, the exact timing of granulite facies partial melting and its link with orogenesis have not been well constrained. In this study, we carried out petrography, whole rock geochemistry, and zircon U-Pb dating, trace elements and Hf isotopes analyses on Dazhe gneissic granite and banded migmatite from the Badu Group in southwest Zhejiang province in the East Cathaysia Block. The melts were produced through the dehydration of biotite, such as biotite + quartz + plagioclase = orthopyroxene + K-feldspar + melt and biotite + quartz + plagioclase + sillimanite = garnet + K-feldspar + melt. Zircons from these rocks show clear core-rim structure and yield rim and core concordant ages at 233 Ma and 1.83 Ga, respectively. The zircon rims suggesting the melts and the cores are suggesting the protolith of Dazhe gneissic granite and banded migmatite were crystallized from an evolving magma. The zircon cores and rims have negative epsilon Hf(t) = -2.2 similar to -6.3 and epsilon Hf(t) = -22.8 similar to -32.4, and they give suggestion of the presence of Neoarchean components. Although the major-element compositions of the gneissic granite and banded migmatite are slightly different, the trace-element spider diagram and REE pattern show they are similar, and then we find that the protoliths are A-type granodiorite/diorite. Combined with the published data, we suggested that the Dazhe gneissic granite and banded migmatite were formed through granulite facies partial melting at 233 Ma, which was promoted by crustal shortening and thickening of the collision orogeny between East Cathaysia Block and an unknown terrane with a NNE trend structure line. The protoliths (granite or granodiorite) of Dazhe gneissic granite and banded migmatite crystallized at 1.83 Ga by reworking of the Neoarchean components of East Cathaysia Block. The Paleoproterozoic (1912-1819 Ma) collisional orogeny and the later intraplate rifting stage are corresponding to the aggregation and breakup of the Columbia supercontinent.
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页数:19
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共 75 条
[1]   Crustal melting in nature: Prosecuting source processes [J].
Brown, M ;
Pressley, RA .
PHYSICS AND CHEMISTRY OF THE EARTH PART A-SOLID EARTH AND GEODESY, 1999, 24 (03) :305-316
[2]   THE GENERATION, SEGREGATION, ASCENT AND EMPLACEMENT OF GRANITE MAGMA - THE MIGMATITE-TO-CRUSTALLY-DERIVED-GRANITE CONNECTION IN THICKENED OROGENS [J].
BROWN, M .
EARTH-SCIENCE REVIEWS, 1994, 36 (1-2) :83-130
[3]  
Brown M., 2006, Evolution and Differentiation of the Continental Crust, P332
[4]   Crustal melting and melt extraction, ascent and emplacement in orogens: mechanisms and consequences [J].
Brown, Michael .
JOURNAL OF THE GEOLOGICAL SOCIETY, 2007, 164 :709-730
[5]   Assembling Australia: Proterozoic building of a continent [J].
Cawood, P. A. ;
Korsch, R. J. .
PRECAMBRIAN RESEARCH, 2008, 166 (1-4) :1-38
[6]   The building of south China: Collision of Yangzi and Cathaysia blocks, problems and tentative answers [J].
Charvet, J ;
Shu, LS ;
Shi, YS ;
Guo, LZ ;
Faure, M .
JOURNAL OF SOUTHEAST ASIAN EARTH SCIENCES, 1996, 13 (3-5) :223-235
[7]   The Triassic reworking of the Yunkai massif (South China): EMP monazite and U-Pb zircon geochronologic evidence [J].
Chen, Cheng-Hong ;
Liu, Yung-Hsin ;
Lee, Chi-Yu ;
Sano, Yuji ;
Zhou, Han-Wen ;
Xiang, Hua ;
Takahata, Naoto .
TECTONOPHYSICS, 2017, 694 :1-22
[8]   Crustal evolution of southeastern China: Nd and Sr isotopic evidence [J].
Chen, JF ;
Jahn, BM .
TECTONOPHYSICS, 1998, 284 (1-2) :101-133
[9]  
Chen Z. H. Xing G. F. Jiang Y. Kuang F. X., 2013, Geotectonica et Metllogenia, V37, P499
[10]   Pb and Nd isotopic constraints on Paleoproterozoic crustal evolution of the northeastern Yeongnam massif, South Korea [J].
Cheong, CS ;
Kwon, ST ;
Park, KH .
PRECAMBRIAN RESEARCH, 2000, 102 (3-4) :207-220