KMS Nanjing Institute of Geology and Palaeonotology,CAS
Origin and age of the Shenshan tectonic melange in the Jiangshan-Shaoxing-Pingxiang Fault and late Early Paleozoic juxtaposition of the Yangtze Block and the West Cathaysia terrane, South China | |
Wang, Lijun1,2; Zhang, Kexin1,3; Lin, Shoufa2; He, Weihong1; Yin, Leiming(尹磊明)1,4 | |
2022 | |
Source Publication | GEOLOGICAL SOCIETY OF AMERICA BULLETIN
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ISSN | 0016-7606 |
Volume | 134Issue:1-2Pages:113-129 |
Abstract | When and how the Yangtze Block (Yangtze) and the West Cathaysia terrane (West Cathaysia) in South China were amalgamated are critical to a better understanding of the Neoproterozoic to early Paleozoic tectonic evolution of South China and remain highly debatable. A key to this debate is the tectonic significance of the Jiangshan-ShaoxingPingxiang (JSP) Fault, the boundary between Yangtze and West Cathaysia. The Shenshan melange along the JSP Fault has the typical block-in-matrix structure and is composed of numerous shear zone-bounded slivers/ lenses of rocks of different types and ages that formed in different tectonic environments, including middle to late Tonian volcanic and volcanogenic sedimentary rocks (turbidite) of arc/back-arc affinity, a series of middle Tonian ultramafic to mafic plutonic rocks of oceanic island basalt affinity, a carbonaceous shale that was deposited in a deep marine environment, and a red mudstone. U-Pb zircon ages and acritarch assemblages (Leios-phaeridia-Brocholaminaria association) found in the turbidite confirm its Tonian age, and fossils from the carbonaceous shale (Asterid-ium-Comasphaeridium and Skiagia-Celtiberium-Leiofusa) constrains its age to the Early to Middle Cambrian. Field relationships and available age data leave no doubt that the ultramafic-mafic rocks are exotic blocks (rather than intrusions) in the younger metasedimentary rocks. We conclude that the Shenshan melange is not an ophiolitic melange, but rather a tectonic melange that formed as a result of movement along the JSP Fault in the early Paleozoic. We suggest that Yangtze and West Cathaysia were two separate microcontinents, were accreted to two different parts of the northern margin of Gondwana in the early Early Paleozoic, and juxtaposed in the late Early Paleozoic through strike-slip movement along the JSP Fault. We further suggest that the ca. 820 Ma collision in the Jiangnan Orogen took place between Yangtze and a (micro)continent that is now partly preserved as the Huaiyu terrane and was not related to West Cathaysia. We compare our model for South China with the accretion of terranes in the North American Cordillera and propose a similar model for the relationship between the Avalon and Meguma terranes in the Canadian Appalachians, i.e., the two terranes were accreted to two different parts of the Laurentian margin and were later juxtaposed through margin-parallel strike slip faulting. |
DOI | 10.1130/B35963.1 |
Indexed By | SCI |
Language | 英语 |
WOS Keyword | SHRIMP U-PB ; WILSON CYCLE MODEL ; GEOCHRONOLOGICAL CONSTRAINTS ; SUBDUCTION-ACCRETIONARY ; CONTINENTAL-MARGIN ; LAURENTIAN MARGIN ; FORMING PROCESSES ; JIANGNAN OROGEN ; ZIRCON ; EVOLUTION |
Funding Project | National Natural Science Foundation[41772107] ; National Natural Science Foundation[41888101] ; National Natural Science Foundation[41472166] ; People's Republic of China[DD20190370] ; People's Republic of China[DD20190811] ; 13th Five-Year Plan of the Ministry of Science and Technology of China[2016ZX05034-002-003] ; Natural Sciences and Engineering Research Council of Canada ; Fundamental Research Funds for National Univer-sities, China University of Geosciences (Wuhan) ; China Scholarship Council |
WOS Research Area | Geology |
WOS Subject | Geosciences, Multidisciplinary |
WOS ID | WOS:000740437800007 |
Funding Organization | National Natural Science Foundation ; People's Republic of China ; 13th Five-Year Plan of the Ministry of Science and Technology of China ; Natural Sciences and Engineering Research Council of Canada ; Fundamental Research Funds for National Univer-sities, China University of Geosciences (Wuhan) ; China Scholarship Council |
Publisher | GEOLOGICAL SOC AMER, INC |
Document Type | 期刊论文 |
Identifier | http://ir.nigpas.ac.cn/handle/332004/40345 |
Collection | 中国科学院南京地质古生物研究所 |
Corresponding Author | Lin, Shoufa |
Affiliation | 1.China Univ Geosci, Sch Earth Sci, State Key Lab Biogeol & Environm Geol, Wuhan 430074, Peoples R China 2.Univ Waterloo, Dept Earth & Environm Sci, Waterloo, ON N2L 3G1, Canada 3.China Univ Geosci, Inst Geol Survey, Wuhan 430074, Peoples R China 4.Chinese Acad Sci, Nanjing Inst Geol & Paleontol, Nanjing 210008, Peoples R China |
Recommended Citation GB/T 7714 | Wang, Lijun,Zhang, Kexin,Lin, Shoufa,et al. Origin and age of the Shenshan tectonic melange in the Jiangshan-Shaoxing-Pingxiang Fault and late Early Paleozoic juxtaposition of the Yangtze Block and the West Cathaysia terrane, South China[J]. GEOLOGICAL SOCIETY OF AMERICA BULLETIN,2022,134(1-2):113-129. |
APA | Wang, Lijun,Zhang, Kexin,Lin, Shoufa,He, Weihong,&Yin, Leiming.(2022).Origin and age of the Shenshan tectonic melange in the Jiangshan-Shaoxing-Pingxiang Fault and late Early Paleozoic juxtaposition of the Yangtze Block and the West Cathaysia terrane, South China.GEOLOGICAL SOCIETY OF AMERICA BULLETIN,134(1-2),113-129. |
MLA | Wang, Lijun,et al."Origin and age of the Shenshan tectonic melange in the Jiangshan-Shaoxing-Pingxiang Fault and late Early Paleozoic juxtaposition of the Yangtze Block and the West Cathaysia terrane, South China".GEOLOGICAL SOCIETY OF AMERICA BULLETIN 134.1-2(2022):113-129. |
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