期刊文献+
共找到8篇文章
< 1 >
每页显示 20 50 100
Geochronology, Geochemistry and Tectonic Setting of the Bairiqiete Granodiorite Intrusion(Rock Mass) from the Buqingshan Tectonic Mélange Belt in the Southern Margin of East Kunlun 被引量:6
1
作者 LI Zuochen PEI Xianzhi +8 位作者 LI Ruibao PEI Lei LIU Chengjun CHEN Youxin LIU Zhanqing CHEN Guochao XU Tong YANG Jie WEI Bo 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2014年第2期584-597,共14页
This study focuses on the zircon U-Pb geochronology and geochemistry of the Bairiqiete granodiorite intrusion (rock mass) from the Buqingshan tectonic mélange belt in the southern margin of East Kunlun.The resu... This study focuses on the zircon U-Pb geochronology and geochemistry of the Bairiqiete granodiorite intrusion (rock mass) from the Buqingshan tectonic mélange belt in the southern margin of East Kunlun.The results show that the zircons are characterized by internal oscillatory zoning and high Th/U (0.14-0.80),indicative of an igneous origin.LA-ICP-MS U-Pb dating of zircons from the Bairiqiete granodiorite yielded an age of 439.0 ± 1.9 Ma (MSWD =0.34),implying that the Bairiqiete granodiorite formed in the early Silurian.Geochemical analyses show that the rocks are medium-K calc-alkaline,relatively high in Al2O3 (14.57-18.34 wt%) and metaluminous to weakly peraluminous.Rare-earth elements have low concentrations (45.49-168.31 ppm) and incline rightward with weak negative to weak positive Eu anomalies (δEu =0.64-1.34).Trace-element geochemistry is characterized by negative anomalies of Nb,Ta,Zr,Hf and Ti and positive anomalies of Rb,Th and Ba.Moreover,the rocks have similar geochemical features with adakites.The Bairiqiete granodiorite appears to have a continental crust source and formed in a subduction-related island-arc setting.The Bairiqiete granodiorite was formed due to partial melting of the lower crust and suggests subduction in the Buqingshan area of the Proto-Tethys Ocean. 展开更多
关键词 granodiorite zircon LA-ICP-mS U-Pb age Early Paleozoic buqingshan tectonic mélange belt Proto-Tethys
下载PDF
Characteristics of Blueschist in Shuangjiang Tectonic Mélange Zone,West Yunnan Province 被引量:6
2
作者 ZhangZhibin LiJing +2 位作者 LuGuxian YuHua WangFangzheng 《Journal of China University of Geosciences》 SCIE CSCD 2004年第2期224-231,共8页
Glaucophane in Shuangjiang area, West Yunnan Province, supplies a chance for studying south segment of Lancangjiang tectonic zone. But people are at odds as to whether two stage glaucophane exists or not, glaucophane... Glaucophane in Shuangjiang area, West Yunnan Province, supplies a chance for studying south segment of Lancangjiang tectonic zone. But people are at odds as to whether two stage glaucophane exists or not, glaucophane is the result of dynamic metamorphism later, or indicates a high P/T metamorphic belt when Paleozoic Tethys Sea closed. Authors discover in a recent research that there is only one stage glaucophane in Shuangjiang area, and three blueschist belts are distributed near N S tending, and glaucophane in Shuangjiang area is related to the eastward subduction of Changning Menglian basin. 展开更多
关键词 tectonic mélange zone blueschist belt GLAUCOPHANE
下载PDF
Oceanic Island Basalts within the West Junggar Ophiolitic Mélanges: Petrogenetic and Tectonic Implications 被引量:3
3
作者 YANG Gaoxue LI Yongjun +3 位作者 TONG Lili LI Ganyu SHEN Rui CHAO Wendi 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2015年第1期306-306,共1页
Recently, we focused on the Darbut and Karamay ophiolitic m41anges in West Junggar of the Central Asian Orogenic Belt (CAOB, SengOr et al., 1993; Windley et al., 2007; Xiao and Santosh, 2014), and made much progress... Recently, we focused on the Darbut and Karamay ophiolitic m41anges in West Junggar of the Central Asian Orogenic Belt (CAOB, SengOr et al., 1993; Windley et al., 2007; Xiao and Santosh, 2014), and made much progress. This study was supported by the National Nature Science Foundation of China (No. 41303027) and Special Fund for Basic Scientific Research of Central Colleges Project (No. 2014G1271058). The achievements are illustrated as follows. 展开更多
关键词 WEST OIB Petrogenetic and tectonic Implications langes Oceanic Island Basalts within the West Junggar Ophiolitic m
下载PDF
An Early Paleozoic Tectonic Mélange at the Western Margin of West Cathaysia: Constraints from Organic-walled Microfossils 被引量:3
4
作者 WANG Lijun ZHANG Kexin +2 位作者 HE Weihong YIN Leiming Shoufa LIN 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2020年第4期1060-1070,共11页
The Jiangshan-Shaoxing-Pingxiang Fault(JSP Fault) is traditionally considered as the boundary between the Yangtze and Cathaysia blocks in South China. Whether the previously defined Shenshan and Kuli formations locate... The Jiangshan-Shaoxing-Pingxiang Fault(JSP Fault) is traditionally considered as the boundary between the Yangtze and Cathaysia blocks in South China. Whether the previously defined Shenshan and Kuli formations located along the JSP fault and near the Xinyu City, Jiangxi Province, are continuous strata or parts of a tectonic mélange is important for understanding the geological history of South China. A carbonaceous phyllite from the area, previously considered as part of the Neoproterozoic Shenshan and Kuli formations, is analyzed palynologically in this study. The AsteridiumComasphaeridium acritarch assemblage found in the slate can be correlated with the basal Cambrian AsteridiumHeliosphaeridium-Comasphaeridium(AHC) acritarch assemblage in Tarim and the Yangtze Block. The early Cambrian biostratigraphical age assignment for the carbonaceous phyllite indicates the presence of both Neoproterozoic and Cambrian rocks in the sedimentary package, and supports that the package is a part of tectonic mélange rather than a continuous Neoproterozoic strata. The Cambrian slate is the youngest known lithology in the mélange at present. 展开更多
关键词 ACRITARCH Shenshan and Kuli formations Shenshan tectonic mélange West Cathaysia
下载PDF
A New Understanding on the Emplacement of Ophiolitic Mélanges and Its Tectonic Significance: Insights from the Structural Analysis of the Remnant Oceanic Basin-Type Ophiolitic Mélanges
5
作者 WANG Guocan ZHANG Pan 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2020年第S01期60-62,共3页
Ophiolites represent on-land fragments of paleooceanic crust and have been recognized as one of the key markers of suture zones.Here,we provide new insights into the emplacement of ophiolitic mélanges based on de... Ophiolites represent on-land fragments of paleooceanic crust and have been recognized as one of the key markers of suture zones.Here,we provide new insights into the emplacement of ophiolitic mélanges based on detailed geological mapping and structural analysis in the West Junggar and Songpan-Ganzi-Bayan Har orogens(Fig.1 and Fig.2).The results show that some ophiolitic mélange belts cannot be regarded as suture zones.The distribution of these ophiolitic mélange belts are usually associated with the structural processes during the closure of remnant oceanic basins.After the remnant-oceanic basin is filled with thick clastic deposit,the oceanic lithosphere material as the base of the remnant basin can be injected into the overlying sedimentary strata through various faultings under the regional compressive stress,forming the remnant oceanic basintype ophiolitic mélange system with dispersive distribution characteristics.Combining with previous researches,the emplacement mechanism of ophiolitic mélanges can be divided into four categories:subduction type which oceanic lithosphere subducted beneath active continental margin,obduction type which oceanic lithosphere obducted over passive continental margin,collision type between two continental lithospheres,and closure type of remnant-oceanic basin(Fig.3).These different types of ophiolitic mélange belts will be superimposed and even re-emplacement by the tectonic processes of post-plate convergence,complicating their distribution.Therefore,identifying the emplacement mechanism type of ophiolitic mélange belts formed in different tectonic processes and backgrounds is of importance for understanding the process of ocean-continental transition and the evolution of orogenic belts. 展开更多
关键词 ophiolitic mélanges EmPLACEmENT remnant-oceanic basin OROGEN tectonicS
下载PDF
Lower Cretaceous turbidites in the Shiquanhe–Namco Ophiolite Mélange Zone, Asa area, Tibet: Constraints on the evolution of the Meso-Tethys Ocean 被引量:3
6
作者 Xiao-Wen Zeng Ming Wang +3 位作者 Cai Li Hang Li Xian-Jin Zeng Di Shen 《Geoscience Frontiers》 SCIE CAS CSCD 2021年第4期1-20,共20页
Turbidites fromthe Shiquanhe–Namco OphioliteMélange Zone(SNMZ)record critical information about the tectonic affinity of the SNMZand the evolutionary history of theMeso-Tethys Ocean in Tibet.This paper reports s... Turbidites fromthe Shiquanhe–Namco OphioliteMélange Zone(SNMZ)record critical information about the tectonic affinity of the SNMZand the evolutionary history of theMeso-Tethys Ocean in Tibet.This paper reports sedimentologic,sandstone petrographic,zircon U-Pb geochronologic,and clastic rocks geochemical data of newly identified turbidites(Asa Formation)in the Asa Ophiolite Mélange.The youngest ages of detrital zircon from the turbiditic sandstone samples,together with~115 Ma U-Pb concordant age from the tuff intercalation within the Asa Formation indicate an Early Cretaceous age.The sandstone mineral modal composition data show that the main component is quartz grains and the minor components are sedimentary and volcanic fragments,suggesting that the turbidites were mainly derived froma recycled orogen provenancewith a minor addition of volcanic arc materials.The detrital U-Pb zircon ages of turbiditic sandstones yield main age populations of 170–120 Ma,300–220 Ma,600–500 Ma,1000–700 Ma,1900–1500 Ma,and~2500 Ma,similar to the ages of the Qiangtang Terrane(age peak of 600–500 Ma,1000–900 Ma,~1850 Ma and~2500 Ma)and the accretionary complex in the Bangong–Nujiang Ophiolite Zone(BNMZ)rather than the age of the Central Lhasa Terrane(age peak of~300 Ma,~550 Ma and~1150 Ma).The mineral modal compositions,detrital U-Pb zircon ages,and geochemical data of clastic rocks suggest that the Asa Formation is composed of sediments primarily recycled from the Jurassic accretionary complex within the BNMZ with the secondary addition of intermediate-felsic island arc materials from the South Qiangtang Terrane.Based on our new results and previous studies,we infer that the SNMZ represents a part of the Meso-Tethys Suture Zone,rather than a southward tectonic klippe of the BNMZ or an isolated ophiolitic mélange zone within the Lhasa Terrane.The Meso-Tethys Suture Zone records the continuous evolutionary history of the northward subduction,accretion,arc-Lhasa collision,and Lhasa-Qiangtang collision of the Meso-Tethys Ocean from the Early Jurassic to the Early Cretaceous. 展开更多
关键词 TIBET Shiquanhe–Namco Ophiolite mélange Zone Early Cretaceous Sedimentary provenance tectonic Affinity meso-Tethys Ocean
下载PDF
DEEP Neoarchean Subduction Indicated by Ultra-high Pressure TiO_(2)(Ⅱ) Inclusion in Ophiolitic Podiform Chromitite Block in Mélange, Central(Taihang) Orogenic Belt, North China
7
作者 Tim KUSKY WANG Lu +2 位作者 Paul ROBINSON Richard WIRTH HUANG Yang 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2021年第S01期85-87,共3页
Understanding crust-mantle recycling through time,especially into the Archean,is crucial for understanding how the crust has grown from the mantle,and in turn how crustal material returned to the mantle alters the man... Understanding crust-mantle recycling through time,especially into the Archean,is crucial for understanding how the crust has grown from the mantle,and in turn how crustal material returned to the mantle alters the mantle reservoir.Recycling of crustal material,such as C-H-O-NS-P are especially important for understanding how processes such as subduction,melting,volcanism,and the release of volatiles have regulated climate and life on Earth over billions of years. 展开更多
关键词 Archean tectonics ophiolitic mélange ultrahigh-pressure minerals suduction carbon cycle
下载PDF
班公湖-双湖-怒江-昌宁-孟连新元古代-中生代沉积盆地演化 被引量:8
8
作者 罗亮 安显银 +2 位作者 吴年文 王成刚 战虹宇 《地球科学(中国地质大学学报)》 EI CAS CSCD 北大核心 2014年第8期1169-1184,共16页
在详细理清区内地层格架的基础上,整理和归纳了研究区内各沉积盆地岩石建造组合和时代依据,最后在板块构造学说和大陆动力学观点的理论指导下,划分盆地类型,寻找盆地演化的时空规律,了解原-古特提斯大洋从发生、发展到消亡的过程.通过... 在详细理清区内地层格架的基础上,整理和归纳了研究区内各沉积盆地岩石建造组合和时代依据,最后在板块构造学说和大陆动力学观点的理论指导下,划分盆地类型,寻找盆地演化的时空规律,了解原-古特提斯大洋从发生、发展到消亡的过程.通过归纳总结,将前新生代原-古特提斯大洋在该区的演化划分为与盆地演化对应的4个阶段.对研究区内的3个主要结合带的盆地演化进行了系统总结,其中龙木错-双湖洋盆与昌宁-孟连洋盆都存在奥陶纪的具MORB性质的蛇绿混杂岩,并且二者均在二叠纪末、早三叠世初发生弧-陆碰撞作用,说明二者可能共同代表了一个统一的古特提斯洋在研究区的残余.以班公湖-怒江洋盆为代表的残余古特提斯洋在早石炭世开始扩张并持续演化到早白垩世,它们代表了古特提斯洋盆的最终消亡. 展开更多
关键词 蛇绿混杂岩 古特提斯洋 地层格架 沉积 构造 盆地演化
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部