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Forming Proterozoic basement within eastern Central Asian Orogenic Belt:Evidence from zircon U-Pb-Hf-O isotopes 被引量:2
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作者 WANG Zhi-wei ZHU Tai-chang +1 位作者 YU Jing-wen YUAN Ling-ling 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第9期3088-3105,共18页
As part of the mosaic of micro-continents within the Central Asian Orogenic Belt(CAOB), the Xing’anAirgin Sum Block(XAB) features increasingly-recognized Meso-Neoproterozoic geological records. However, the origin, t... As part of the mosaic of micro-continents within the Central Asian Orogenic Belt(CAOB), the Xing’anAirgin Sum Block(XAB) features increasingly-recognized Meso-Neoproterozoic geological records. However, the origin, temporal-spatial distribution of ancient materials, and their roles in crust evolution remain to debate. This paper presents an integrated study of zircon U-Pb ages and Hf-O isotopes for Mesoproterozoic and Paleozoic granites from the Erenhot region of central Inner Mongolia, along eastern CAOB. The intrusion of 1450 Ma syenogranite denotes that the Precambrian basement of XAB extends from Sonid Zuoqi westward to Erenhot. The 384 and 281 Ma monzogranites containing Mesoproterozoic xenocrystic zircons possess Proterozoic-dominant two-stage Hf model ages, further suggesting the wide existence of Proterozoic crust beneath western XAB. Cyclic Proterozoic crustal growth and reworking seem to show close linkages with the orogenesis during relevant supercontinent cycles. 1450-1360 Ma juvenile crustal growth at Erenhot and synchronous ancient crust reworking at Sonid Zuoqi and Abagaqi were likely resulted from retreating subduction involved in Columbia breakup, while 1.2-1.0 Ga reworking and 0.9-0.7 Ga growth events within the Erenhot basement might respond to assembly and breakup of Rodinia, respectively. Besides, our work confirms that reworking of Neoproterozoic crust played important roles during Paleozoic multi-stage accretion of CAOB. 展开更多
关键词 proterozoic Central Asian Orogenic Belt Xing’an-Airgin Sum Block crystalline basement GRANITOIDS zircon U-Pb-Hf-O isotopes
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DISCUSSION ON RELATIONSHIP BETWEEN WESTERN MARGIN OF YANGTZE BLOCK AND SOUTHWESTERN SANJIANG REGION IN PROTEROZOIC 被引量:1
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作者 Li Zhongxiong, Cheng Ming, Guan Shiping 《地学前缘》 EI CAS CSCD 2000年第S1期317-318,共2页
The western margin of Yangtze block and southwestern Sanjiang region absorbed much attention from geologists. It has been proved that there occurred a series of plate subduction, collision, assembly, rifting and break... The western margin of Yangtze block and southwestern Sanjiang region absorbed much attention from geologists. It has been proved that there occurred a series of plate subduction, collision, assembly, rifting and breakup processes between them since Palaeozoic and the tectonic evolutionary relationship between them is clear. But in Proterozoic this kind of links between them became unclear. Did they undergo the assembly and breakup processes of the Rodinia super continent? This paper will take a primary discussion on this question on the basis of basement component, structure characteristics and magmatic activities.1\ Basement features\;(1) In western margin of Yangtze block its basement is composed of crystalline basement and folded basement, a so\|called double\|layer structure. The crystalline basement is made up of Kangding group, Pudeng Formation and Dibadu Formation, among them Kangding group is a representative and composed mainly of migmatite, compositing gneiss, hornblende schist and granulitite. The isotopic age of crystalline basement is older than 1900Ma, so its geological time is late Archaean to early Proterozoic. The folded basement is composed of Dahongshan group, Hekou group, Kunyang group, Huili group and Yanbian group. Their rock associations are made up mainly of spilite\|keratophyre formation, carbonate formation, clastic rock and clastic rock formation with some basic volcanic rocks. The folded basement is assigned to be early and middle Proterozoic (1000~1700M a). 展开更多
关键词 proterozoic basement structure ophiolite suite GRENVILLE orogenic belt WESTERN MARGIN of Yangtze block SOUTHWESTERN Sanjiang REGION
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THE MAIN UPLIFT PROCESSES OF DEEP CRUSTAL ROCKS OF THE EARLY PROTEROZOIC OROGENIC BELT IN DAQINGSHAN AREA,INNER MONGOLIA
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作者 Yu Haifeng He Shaoxun(Department of Geology, Central South University of Technology,Changsha 410083, China) 《Journal of Central South University》 SCIE EI CAS 1996年第1期94-97,共4页
Deep crustal rocks of the Early Proterozoic orogenic belt (DCR)in Daqingshan area mainly included the synorogenicmetamorphic khondalite series and reworked Archeanbasement granulites. During the early stage about 1900... Deep crustal rocks of the Early Proterozoic orogenic belt (DCR)in Daqingshan area mainly included the synorogenicmetamorphic khondalite series and reworked Archeanbasement granulites. During the early stage about 1900~1800 Ma, the DCR consisted of five huge slices which obducted over and stacked up along a series of hightemperature shear zone (HTSZ), and were subsequently uplifted from the deep crustal level to the middle one accompanied with granuliteamphibolite facies retrometamorphic reworking in HTSZ. From 1800~1700 Ma, some slices and HTSZ mentioned above were oveprinted by several lowtemperature shear zone (LTSZ), of which the lowangle oblique thrusts caused these DCR to uplift again from the middle crustal level to the shallow one, and experienced retrometamorphic reworking of greenschist facies. These two stages of uplifting processes should be included in an entire Early Proterozoic orogenic cycle. 展开更多
关键词 deep CRUSTAL ROCKS OROGENIC belt upliftprocess Early proterozoic
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吉林东部大蒲柴河adakites锆石U-Pb年龄、Hf同位素特征及其意义 被引量:14
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作者 刘燊 胡瑞忠 +6 位作者 冯彩霞 冯光英 于晓飞 李才 贾大成 齐有强 王涛 《岩石学报》 SCIE EI CAS CSCD 北大核心 2009年第12期3153-3164,共12页
地球化学研究表明,大蒲柴河岩体具有典型的埃达克岩特征,来自加厚下地壳的部分熔融作用。本文采用激光等离子质谱对该岩体进行了U-Pb同位素定年,结果表明该岩体为晚侏罗世(165Ma)岩浆活动的产物。锆石的LA-MC-ICPMS Hf同位素研究结果显... 地球化学研究表明,大蒲柴河岩体具有典型的埃达克岩特征,来自加厚下地壳的部分熔融作用。本文采用激光等离子质谱对该岩体进行了U-Pb同位素定年,结果表明该岩体为晚侏罗世(165Ma)岩浆活动的产物。锆石的LA-MC-ICPMS Hf同位素研究结果显示,ε_(Hf)(165Ma)范围为-5.02~5.43,二阶段Hf模式年龄(t_(DM2)范围为965~1622Ma,暗示原始母岩浆为两种不同源区岩浆的混合。另外,Hf同位素研究表明,研究区在中-新元古代时(965~1304Ma)曾经历了一次重要的地壳增生事件。 展开更多
关键词 吉林 东部 柴河 锆石 U-Pb年龄 同位素特征 age significance partial melting asthenospheric MANTLE 同位素研究 Middle proterozoic during Jilin Province crustal growth MANTLE source Late Jurassic 岩体 岩浆活动 同位素定年
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