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A DISCUSSION ON THE STRUCTURE AND TECTONIC EVOLUTION OF THE ALTUN OROGENIC ZONE 被引量:22
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作者 Liu Liang,Che Zicheng,Luo Jinhai,Wang Yan,Chen Danling 《地学前缘》 EI CAS CSCD 2000年第S1期206-206,共1页
The Altun faulted Zone has been focused by lots of geologists for many years because it lies in a boundary area of several main tectonic units in the western China and is a geographically northern boundary line of Tib... The Altun faulted Zone has been focused by lots of geologists for many years because it lies in a boundary area of several main tectonic units in the western China and is a geographically northern boundary line of Tibet plateau.The latest achievements show that the Altun faulted zone is not only a Cenozoic strike\|slip faulted system but also an orogenic zone which underwent mutually subduction\|collision among paleo\|plates (or terrains) in its early stage and consists of geological bodies of different ages and tectonic environments. Based on the results of geological characteristics,petrology, geochemistry and isotopic dating, the Altun Orogenic Zone can be divided into four tectonic units and is considered to have undergone five stages during its tectonic evolution.The four tectonics units are :(1) Abei metamorphic block, which consists of Archean metamorphic complex of granulite facies;.(2) Hongliugou—Lapeiquan tectonic melange belt, which is composed of ophiolite blocks(belt), OIB blocks, pelagic silicalite, shallow\|bathyal sedimentary rock blocks and high\|pressure metamorphi c rock blocks. (3) Milanhe—Jinyanshan island\|arc block, which consists of mid\|uplifting belt and the south and north active margins. The uplifting belt is composed of metasandstone, marble, overlying thick stromatolite (Jinyanshan Group of Jixian System). Metamorphic rocks of 450Ma occur in both south and north hactive margin. Post\|collision bimodal volcanic rocks and A\|type granite occur in the middle and the north side.(4) Apa—Mangya tectonic melange belt, which consists of ophiolite(including ultramafic rocks, gabbro, plagiogranite and basalt) and flysch and eclogite of late Ordovician. 展开更多
关键词 TECTONIC EVOLUTION Altun orogenIC ZONE
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COUPLING RELATIONSHIPS BETWEEN OROGENS AND BASINS,LOWER CRUST AND UPPER CRUST IN THE QINGHAI—TIBET PLATEAU 被引量:5
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作者 Li Dewei 《地学前缘》 EI CAS CSCD 2000年第S1期312-312,共1页
Uplift\|related geological and geophysical data available from regional geological mapping , detailed structural, tectonic, granitic, volcanic, metamorphic , geochronological studies, deep seismic reflection, wide\|an... Uplift\|related geological and geophysical data available from regional geological mapping , detailed structural, tectonic, granitic, volcanic, metamorphic , geochronological studies, deep seismic reflection, wide\|angle seismic experiment, seismic tomography, broadband seismic network, and magnetotelluric sounding of key areas of the Qinghai—Tibet plateau are radically different from models of plate subduction or collision. Key geological features include: (1) obvio us time difference between plate collision and uplift of the plateau; (2) developments of intracrustal low\|velocity layers , low resistivity layers and discontinuous subhorizontal reflectors; (3) similar results between the rate and time of uplift of the Qinghai\|Tibet plateau and the time and rate of subsidence of its surrounding basins; (4) subhorizontal detachments and metamorphic core complexes occurred in Himalayan and Longmenshan; (5) weak deformation of late Cenozoic sediments and development of major steeply to gently dipping normal faults in the central part of the plateau; (6) discovery of high pressure and ultrahigh pressure metamorphic rocks in Nanbajiawa; (7) young volcanic rocks distributed from the northern plateau to the southern plateau; (8) nearly concordant processes among thrusting , mountain building, horizontal extension and intrusion of leucogranite in Himalayans. 展开更多
关键词 orogen basin coupling CRUST
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PETROLOGY AND AGE OF THE KINNAR KAILAS GRANITE:EVIDENCES FOR AN ORDOVICIAN POST-OROGENIC EXTENSION IN THE HIGHER HIMALAYAN CRYSTALLINE, SUTLEJ, INDIA 被引量:4
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作者 H. S. Chawla\+1, D. Marquer\+1, J. D. Kramers\+2, I. M. Villa\+2, F. Bussy\+3(1 Geological Institute, Emile Argand, 11, 2007, Neuchatel, Switzerland 2 Isotopengeologie, Erlachstrasse 9a, 3012 Bern, Switzerland 3 Institute of Mineralogy and Geochemi 《地学前缘》 EI CAS CSCD 2000年第S1期50-51,共2页
Higher Himalayan Crystalline (HHC) rocks often show metamorphic zonations from lower greenschist facies to migmatites associated with leucogranite intrusions that are classically described as examples of Tertiary inve... Higher Himalayan Crystalline (HHC) rocks often show metamorphic zonations from lower greenschist facies to migmatites associated with leucogranite intrusions that are classically described as examples of Tertiary inverted metamorphism. The present study, based on structural, petrological and geochronological investigations in the Kinnar Kailas Granite (KKG) and surrounding HHC sequence, evidences a discordant intrusive contact of the Ordovician KKG with respect to Pre\|Alpine high grade deformed HHC sequence in the Sutlej valley.Four main phases of deformation are recorded in this HHC sequence and pre\|Ordovician sediments. The first three phases of deformation occurred under high\|grade metamorphic conditions, before the intrusion of the KKG. The geometry of the main progressive ductile deformation (D2—D3) results from SW vergent doming and migmatisation. The latest deformation is expressed by local shearing under greenschist facies conditions. This late D4 deformation corresponds to N—S oriented ductile normal faults lowering the eastern blocks. The KKG is a shallow depth intrusion, showing discordant contacts with the surrounding basement rocks and large scale magmatic stoping. The KKG crosscuts the high\|grade deformation structures (D2—D3) but is locally affected by the local late D4 extensional deformation. The granite textures reflect only slight orientation related to magmatic deformation and even at few centimetres from the intrusion contact, the granite appears undeformed in contrast to the surrounding highly foliated rocks. Furthermore, xenoliths of Kyanite\|Sillimanite bearing basement rocks are present within the KKG. 展开更多
关键词 HIGHER Himalaya CRYSTALLINE GRANITE ORDOVICIAN post\|orogenic EXTENSION
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GEOLOGICAL EVOLUTION AND OROGENY OF EAST KUNLUN TERRAIN ON THE NORTHERN QINGHAI—TIBET PLATEAU 被引量:2
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作者 Xu Zhiqin, Yang Jingsui, Li Haibing(Institute of Geology, Chinese Academy of Geological Sciences, Beijing 100037,China) 《地学前缘》 EI CAS CSCD 2000年第S1期234-235,共2页
The East Kunlun terrain is located on the northern Qinghai—Tibet plateau, composed of the East Kunlun Mountain and the Qaidam Basin and bounded by the Qilian terrain on the north and Bayanhar—Songpan Ganze terrain o... The East Kunlun terrain is located on the northern Qinghai—Tibet plateau, composed of the East Kunlun Mountain and the Qaidam Basin and bounded by the Qilian terrain on the north and Bayanhar—Songpan Ganze terrain on the south. It is regarded as a composite orogenic belt characterized by having developed superimposed ductile tectonic regimes reflecting the collision orogeny during Early Paleozoic and Triassic periods. It has also experienced transformation from ductile to brittle deformation caused by the post orogeny, since Jurassic after the formation of the East Kunlun Mountain and the Qaidam Basin. A Paleozoic subduction complex zone was recently recognized along the north border of the East Kunlun terrain from Da Qaidam to Dulan (Xu,et al, 1 999). It is composed of ophiolite (of Early Paleozoic age?), tectonic melange and very high\|pressure metamorphic rocks with eclogite (\%p\%=2 2GPa, \%t\%=720℃) (Yang,et al.,1998) and garnet\|peridotite (\%p\%=2 5GPa, t =837℃). The Anyemaqin Triassic subduction complex zone trending in NWW\|SEE was developed along the eastern segment of the south border of the East Kunlun terrain. It is mainly composed of ultramafic and mafic rocks, pillow basalt, radiolaria\|bearing clastic rocks, tectonic melange and mylonite. The subduction complex zone contains a series of the southward overthrusting imbricated slices. Instead of this subduction complex zone, a 2 km\|wide sinistral strike\|slip ductile shear zone trending in E\|W was developed along the western segment. On the basis of macroscopic and microscopic studies on a series of structural sections, we divide the East Kunlun Mountain into four tectonic units as follows: (1) North Proterozoic Metamorphic Basement Zone; (2) South Early Paleozoic—Triassic Superimposed Fold Zone; (3) South Triassic Transpression Zone; (4) Anyemaqin Back\|Arc Decollement\|Thrust Zone. 展开更多
关键词 EAST KUNLUN TERRAIN composite orogenic belt subduction compl ex ZONE TRANSPRESSION shear ZONE
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Geochronology, petrogenesis and tectonic significance of Dahongliutan pluton in Western Kunlun orogenic belt, NW China 被引量:12
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作者 DING Kun LIANG Ting +5 位作者 YANG Xiu-qing ZHOU Yi FENG Yong-gang LI Kan TENG Jia-xin WANG Rui-ting 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第12期3420-3435,共16页
The Dahongliutan granitic pluton,in the eastern part of the West Kunlun orogenic belt,provides significant insights for studying the tectonic evolution of West Kunlun.This paper presents a systematic study of LA-ICP-M... The Dahongliutan granitic pluton,in the eastern part of the West Kunlun orogenic belt,provides significant insights for studying the tectonic evolution of West Kunlun.This paper presents a systematic study of LA-ICP-MS zircon U Pb age,major and trace elements,Sr-Nd-Hf isotopes,and the first detailed Li isotope analysis of the Dahongliutan pluton.LA-ICP-MS zircon U Pb dating shows that the Dahongliutan granites were emplaced in the Late Triassic((213±2.1)Ma).Geochemical data show relatively high SiO2 contents(68.45 wt%73.62 wt%)and aluminum saturation index(A/CNK=1.111.21)indicates peraluminous high-K calc-alkaline granite.The Dahongliutan granites are relatively high in light rare earth elements(LREE)and large ion lithophile elements(LILEs)(e.g.,Rb,K,Th),and relatively depleted in high field strength elements(HFSEs)(e.g.,Nb,Ta,P,Ti).TheεNd(t)values range from 8.71 to 4.73,and(87Sr/86Sr)i=0.70870.71574.Zircons from the pluton yield 176Hf/177Hf values of 0.2826181 to 0.2827683,andεHf(t)values are around 0;the two-stage Hf model ages range from 0.974 to 1.307 Ga.Theδ7Li values are 0.76‰3.25‰,with an average of 2.53‰.Isotopic compositions of the pluton suggest a mixed trend between the partial melting of the Middle Proterozoic ancient crustal material and a juvenile mantle-derived material.This study infers that the Dahongliutan rock mass is formed in the post-collisional extension environment,when the collision between South Kunlun and the Tianshuihai terranes results in the closure of the Palaeo-Tethys.The mantle-derived magma results in partial melting of the lower crust. 展开更多
关键词 LA-ICP-MS zircon U Pb age petrogeochemistry Li-Sr-Nd-Hf isotopic composition Dahongliutan pluton West Kunlun orogen China
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Forming Proterozoic basement within eastern Central Asian Orogenic Belt:Evidence from zircon U-Pb-Hf-O isotopes 被引量:1
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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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GRANITOIDS AND TETONIC EVOLUTION OF THE WEST KUNLUN OROGENIC BELT
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作者 Wang Yuanlong 1,Bi Hua 2, Wang Zhonggang 2, Zhu Xiaoqing 2 (1.Institute of Geology And Geophysics, Chinese Academy of Science, Beijing 100029,China 2 Institute of Geochemistry, Chinese Academy of Science, Guiyang 550002,China) 《地学前缘》 EI CAS CSCD 2000年第S1期228-229,共2页
The West Kunlun orogenic belt, one of the least studied areas in China, is located at the junction between the Qinghai—Tibetan Plateau and Tarim Basin and has undergone intense tectonic action and frequent magmatism.... The West Kunlun orogenic belt, one of the least studied areas in China, is located at the junction between the Qinghai—Tibetan Plateau and Tarim Basin and has undergone intense tectonic action and frequent magmatism.The West Kunlun orogenic belt can be divided into five tectonic\|magmatic evolution stages according to the character of the igneous rocks, metamorphic rocks, sedimentation mode, tectonic phases and isotopic ages(Fig 1).Active stages have dominated with only short intervening stable stages. This kind of evolution is not simply repeated but that a later stage is elevation and development of its former stage.Space\|time distribution of granitoids varies with each different tectonic\| magmatic stage as well as within different periods of the same tectonic\| magmatism stage. Take time into condition , It is an important turning movement of tectonics\|magmatism evolution during the Indo\|Sinian movement, as space the middle fault (Jiang Chunfa 1982) of the West Kunlun orogenic belt is a significant border o f tectonics\|magmatism evolution. Granitoids formed before Indo\|Sinian movement are mainly distributed to the north of the middle fault of West Kunlun. These granitoids are mostly granites of early and middle Proterozoic, Caledonian and Hercynian ages. A unique control on the granitoid evolution is that they become younger from NE to SW, crossing the regional structure line. Granitoids formed after Indo\|Sinian movement are mainly distributed to the south of the middle fault. But distribution of granitoids of early Yanshan cycle cut across the middle fault of West Kunlun Mountain. Their age distribution shows a bidirectional control with the granitoids becoming younger across the regional structural lines from NE and SW boundary fault to the interior of the fracture belts. 展开更多
关键词 the West KUNLUN orogenIC belt tectonic\|magmatic EVOLUTION gr anitoids
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MAGMATISM AND TECTONO-MAGMATIC EVOLUTION OF JINNING CYCLE OF EASTERN KUNLUN OROGENIC BELT
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作者 Zhu Yunhai 1, Pan Yuanming 2, Zhang Kexin 1 2 Department of Geological Sciences, University of Saskatchewan, Canada) 《地学前缘》 EI CAS CSCD 2000年第S1期240-240,共1页
The exposed area of igneous rocks in East Kunlun Mountains is very large and they made a magmatic arc belt broad in scale. The intrusive rocks are mainly of Hercynian—Indo\|Sinian cycle and less of Caledonian and Yan... The exposed area of igneous rocks in East Kunlun Mountains is very large and they made a magmatic arc belt broad in scale. The intrusive rocks are mainly of Hercynian—Indo\|Sinian cycle and less of Caledonian and Yanshanian cycle [1~2] . During the geological mapping of 1∶250000 of Donggeicuonahu area, we firstly found the evidence of intrusive rock of Jinning cycle. Intrusive rocks of Jinning cycle, whose exposed area is about 30km, are located in Waliaoga\|Shaxiong area among East Kunlun magmatic arc belt and are composed of two intrusive bodies. The rock types of Jinning cycle are mainly trondjemite and tonalite. Their wall rocks are Baishahe Group of Paleo\|Proterozoic and was intruded by Hercynian-Indo\|Sinian cycle granodiorite . The wall rock types are mainly banded amphibolite,biotite\|plagioclase schist,leptynite,leptite,banded marble and mica\|schist , their metamorphic condition is overall middle amphibole facies , partly granulite facies , tectonic deformation was mainly of flowage fold and flowage shear in middle and deep levers. Although intrusive rocks of Jinning cycle had undergone intensive metamorphism and deformation, they also preserve the intrusive appearance and are uniform in field. We can see intrusive contacted with wall rock or infolded the basic inclusions. Gneissosity is very common in intrusive rocks of Jinning cycle. Even though intensive metamorphism and deformation lead to interlude between intrusive body and wall rock, most wall rock exists in intrusive rocks as giant roof or inclusions in general, we can see intrusive contacted between intrusive body and wall rock locally. Intrusive rocks are hoar color, meso\|coarse grain lepido\|granoblastic texture , minerals are mainly plagioclase evidence to study the forming and evolution of orogeny of Jinning and Caledonian cycle. 展开更多
关键词 MAGMATISM tectono\|magmatic evolution orogenIC belt Eastern KU nlun
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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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Petrogenesis of granite from Xiaofan Mo deposit, Dabie Orogen
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作者 LIU Qing-quan SHAO Yong-jun +1 位作者 ZHOU Ke-ping LI Yong-feng 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第6期1489-1500,共12页
The Mesozoic granitoids in the Dabie Orogen are of particular geological interest as indicators for Mesozoic lithospheric evolution because of their close association with porphyry Mo mineralization.Here,we present a ... The Mesozoic granitoids in the Dabie Orogen are of particular geological interest as indicators for Mesozoic lithospheric evolution because of their close association with porphyry Mo mineralization.Here,we present a study using petrogeochemistry data to constrain the petrogenesis of the Xiaofan granites in the Dabie Mo mineralization belt(DMB),Henan Province,China.Field investigations show that the Xiaofan pluton mainly consists of porphyritic granite.The Xiaofan granites have high SiO2 contents of 74.29 wt%-76.07 wt%(average:75.18 wt%),A1203 contents of 11.66 wt%-12.83 wt%(average:12.13 wt%),and K20 contents of 5.37 wt%-7.90 wt%(average:6.86 wt%)and low MgO(0.06 wt%-0.16 wt%),TiO2(0.09 wt%-0.10 wt%),and P205(0.047 wt%-0.103 wt%)contents.They are enriched in Rb,U,K and Hf but depleted in Ba,Nb,Ta,Sr and Ti.By geochemical and mineralogical features,we propose that the Xiaofan granites belong to A-type type granite and dominantly sourced from the crust.The granites from the Xiaofan Mo deposit may have formed in a post-collision extensional setting. 展开更多
关键词 GRANITE PETROGENESIS Xiaofan Mo deposit Dabie orogen
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碎屑锆石稀土元素约束造山带演化:以西藏冈底斯山脉为例 被引量:1
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作者 胡培远 翟庆国 +5 位作者 唐跃 刘一鸣 杨宁 李金勇 巫凌放 常晟 《地质学报》 北大核心 2025年第1期306-319,共14页
碎屑锆石是开展地球早期造山带演化研究的关键素材之一。目前,如何使用碎屑锆石稀土元素(REE)区分洋-陆俯冲和陆-陆碰撞过程仍然是一个没有解决的问题。本文总结了前人的实验岩石学研究成果,并且以西藏冈底斯山脉为例提出和验证了使用... 碎屑锆石是开展地球早期造山带演化研究的关键素材之一。目前,如何使用碎屑锆石稀土元素(REE)区分洋-陆俯冲和陆-陆碰撞过程仍然是一个没有解决的问题。本文总结了前人的实验岩石学研究成果,并且以西藏冈底斯山脉为例提出和验证了使用碎屑锆石Eu异常(Eu/Eu^(*))和轻、重稀土比值(LREE_(N)/HREE_(N))的相关系数(r_(Dz))区分洋-陆俯冲和陆-陆碰撞过程的可能性。实验岩石学研究表明,锆石的Eu/Eu^(*)和LREE_(N)/HREE_(N)分别与斜长石和石榴子石分异相关,并且主要受控于母岩浆的源区深度、源岩类型、氧逸度和水含量。这些因素在不同造山带中具有不同的特征,因此可以推测:碎屑锆石稀土元素数据可以反映构造环境的变化。本文以西藏冈底斯山脉的碎屑锆石稀土元素数据为例验证了这一推测。在洋-陆俯冲阶段(约150~60 Ma),碎屑锆石的Eu/Eu^(*)和LREE_(N)/HREE_(N)变化趋势具有较好的耦合关系,r_(Dz)值稳定于0.62~0.81,其原因可能为在此期间氧逸度和水含量总体稳定,且S型花岗质岩石较少,导致碎屑锆石Eu/Eu^(*)和LREE_(N)/HREE_(N)主要受控于母岩浆的结晶压力。由于陆-陆碰撞而发生板片断离之后,r_(Dz)值出现了明显下降,在40~30 Ma、30~20 Ma和20~10 Ma阶段分别为0.73、0.57和0.18,其原因可能为S型岩浆岩比例的上升和不稳定的氧逸度和水含量,导致碎屑锆石Eu/Eu^(*)和LREE_(N)/HREE_(N)比值逐渐呈现解耦的变化趋势。上述结果表明r_(Dz)值有潜力成为区分洋-陆俯冲和陆-陆碰撞过程的一种新方法。 展开更多
关键词 碎屑锆石 稀土元素 地球化学 造山带 冈底斯山脉
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东昆仑造山带岩浆Ni-Co硫化物矿床成矿作用:橄榄石成分和全岩S同位素制约 被引量:1
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作者 陈文 陈列锰 +3 位作者 于宋月 李大鹏 吴树宽 王治安 《岩石学报》 北大核心 2025年第2期453-475,共23页
东昆仑造山带不仅产出世界级夏日哈木Ni-Co硫化物矿床,也产出多个同时代的含岩浆硫化物的镁铁-超镁铁质岩体,如石头坑德。夏日哈木和石头坑德岩体具有相似的矿物学和岩石学特征,但二者的成矿规模明显不同,这些异同点为探讨造山带环境幔... 东昆仑造山带不仅产出世界级夏日哈木Ni-Co硫化物矿床,也产出多个同时代的含岩浆硫化物的镁铁-超镁铁质岩体,如石头坑德。夏日哈木和石头坑德岩体具有相似的矿物学和岩石学特征,但二者的成矿规模明显不同,这些异同点为探讨造山带环境幔源岩浆的硫饱和机制与过程、以及岩浆硫化物成矿控制因素提供了良好的对象。本文在前人研究的基础上,系统分析与对比夏日哈木和石头坑德岩体的橄榄石成分和全岩S同位素组成,探讨造山带环境岩浆硫化物矿床的成矿作用。夏日哈木岩体中橄榄石的Fo牌号在82.3~90.0之间,Ni含量在558×10^(-6)~4370×10^(-6)之间;石头坑德岩体中橄榄石的Fo牌号在79.9~90.2之间,Ni含量在300×10^(-6)~3040×10^(-6)之间。夏日哈木岩体全岩的δ^(34) S值在4.0‰~6.4‰之间,平均值为5.2‰;石头坑德岩体全岩的δ^(34) S值在1.8‰~4.6‰之间,平均值为3.2‰。夏日哈木岩体中高Fo牌号橄榄石的Ni含量(高达4000×10^(-6))明显高于石头坑德岩体(通常小于3000×10^(-6)),表明前者母岩浆的Ni含量高于后者。石头坑德岩体贫硫化物纯橄岩中橄榄石具有高的Fo牌号和低的Ni含量,且显示出负相关性。这些特征表明石头坑德岩体母岩浆演化过程经历了富Mg碳酸盐岩的混染:富Mg物质的加入不仅促使结晶出高Fo牌号的橄榄石,也延长了橄榄石的结晶区间。由于Ni在橄榄石中为中等相容元素,大量橄榄石的结晶导致残余岩浆中的Ni含量进一步降低。此外,岩相学研究表明夏日哈木岩体中包裹硫化物珠滴的橄榄石Fo牌号较高,最高值达89.2;相反,石头坑德岩体中包裹硫化物珠滴的橄榄石的Fo牌号通常低于85。这些特征指示母岩浆演化过程中夏日哈木岩体的S饱和与硫化物熔离阶段早于石头坑德。另一方面,夏日哈木和石头坑德岩体的全岩δ^(34) S值均明显高于地幔(-2‰~+2‰),暗示二者母岩浆演化过程中有地壳S的加入。由于两个岩体直接围岩中的S含量都很低,因此,深部地壳S的加入是促使两个岩体母岩浆达到硫饱和、发生硫化物熔离的关键因素。综合以上认识,我们提出岩浆演化过程中早期大量橄榄石的结晶和较晚阶段S饱和是导致石头坑德岩体相对(夏日哈木岩体)贫Ni的重要机制。因此,原始岩浆富Ni、深部地壳S的加入导致岩浆演化早期硫化物熔离等条件与过程的耦合是东昆仑造山带超大型岩浆硫化物矿床成矿的关键控制因素。 展开更多
关键词 东昆仑造山带 镁铁-超镁铁质岩体 岩浆硫化物矿床 橄榄石 S同位素
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汇聚板块边缘镁铁-超镁铁质岩浆作用与铜镍硫化物矿床成因 被引量:1
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作者 王焰 魏博 +3 位作者 曹勇华 高剑峰 暴宏天 杨军辉 《大地构造与成矿学》 北大核心 2025年第4期753-776,共24页
中亚造山带在中国境内可分为东、中、西三段,东段和西段主要为洋内型汇聚板块边缘,中段主要为安第斯型汇聚板块边缘,均发育大量志留纪-三叠纪的镁铁-超镁铁质岩体。但是,赋含具经济价值的铜镍硫化物矿床的岩体主要集中在早二叠世-晚三叠... 中亚造山带在中国境内可分为东、中、西三段,东段和西段主要为洋内型汇聚板块边缘,中段主要为安第斯型汇聚板块边缘,均发育大量志留纪-三叠纪的镁铁-超镁铁质岩体。但是,赋含具经济价值的铜镍硫化物矿床的岩体主要集中在早二叠世-晚三叠世,笔者对中亚造山带早二叠世-晚三叠世镁铁-超镁铁质岩体的地幔源区性质、辉石岩组分参与地幔部分熔融的作用、地幔源区和幔源岩浆氧逸度、岩浆硫化物饱和机制,以及差异性成矿的控制因素等开展系统研究,总结出汇聚板块边缘铜镍硫化物矿床形成的几个主要特点。首先,通过对比西段额尔齐斯构造带的构造演化过程和喀拉通克地区含矿岩体的形成过程,发现成矿作用具有爆发性,表现在含矿岩体的形成时代与区域平行造山带伸展构造完全同期,其形成与持续碰撞挤压过程中局部地区出现的短暂伸展构造有关,促使幔源岩浆快速侵位至地壳浅部,抑制深部橄榄石分离结晶造成的岩浆镍丢失,从而有利于成矿。这一认识与通常认为这些含矿岩体形成于碰撞后长期伸展阶段不同。其次,通过对不同岩体超镁铁质岩相中橄榄石的成分研究,发现辉石岩组分参与地幔部分熔融有利于幔源岩浆富Ni,但其参与程度与熔融压力有关:在洋内型汇聚板块边缘,约10%的辉石岩组分参与地幔熔融,就能明显提高岩浆Ni含量,有利于成矿;而在安第斯型汇聚板块边缘,古老交代岩石圈地幔的部分熔融虽然有可能造成更多辉石岩组分的参与,但其地幔部分熔融程度低且熔出的岩浆量少,仍不利于成矿。第三,通过计算不同岩体的岩浆氧逸度,发现含矿岩体普遍具有高于MORB地幔的氧逸度值,这与交代地幔部分熔融形成的岩浆普遍含水有关。通过硫化物原位S同位素和矿石C同位素组成分析,发现这种高氧逸度岩浆可能携带了足够成矿的幔源硫,其硫化物饱和主要是由于外来的地壳有机碳加入所造成,氧化的岩浆被有机碳还原从而导致岩浆中硫溶解度降低。同时,这种富水岩浆易于形成特殊的网脉状和角砾状矿石构造。总之,汇聚板块边缘背景下产出的铜镍硫化物矿床与板内拉张背景下产生的同类矿床具有不同的特点,总体上表现为矿体规模相对较小、含矿岩体成带分布、成矿具爆发性、矿石构造特殊。汇聚板块边缘背景形成的造山带构造演化复杂,有些地区覆盖严重。因此,在汇聚板块边缘寻找含矿岩体应具有不同的思路和方法。 展开更多
关键词 铜镍硫化物矿床 镁铁-超镁铁质岩体 中亚造山带 汇聚板块边缘
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北方东部复合造山成矿:Ⅰ.古亚洲洋两期构造演化与成矿 被引量:1
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作者 秦克章 王乐 +9 位作者 朱永峰 田伟 徐备 张晓晖 赵超 庞绪勇 回凯旋 李光明 李文博 申萍 《矿床地质》 北大核心 2025年第1期35-66,共32页
自~1350 Ma打开到~250 Ma最终闭合,古亚洲洋经历了11亿年的演化后形成了全球最大的增生型造山带——中亚造山带。研究古亚洲洋的构造演化与成矿可有效揭示中亚造山带的演化与成矿规律,进而指导勘查。中亚造山带发育众多岩浆弧,新元古代... 自~1350 Ma打开到~250 Ma最终闭合,古亚洲洋经历了11亿年的演化后形成了全球最大的增生型造山带——中亚造山带。研究古亚洲洋的构造演化与成矿可有效揭示中亚造山带的演化与成矿规律,进而指导勘查。中亚造山带发育众多岩浆弧,新元古代岩浆弧主要分布在北侧,而古生代岩浆弧集中在西侧,东侧有少量发育。古亚洲洋在早古生代以大洋俯冲作用为主,晚古生代逐步以弧陆拼贴和碰撞为主导。文章系统梳理了与古亚洲洋板块俯冲相关的31个岩浆弧及37个代表性矿床,厘定古亚洲洋构造体制的6大类成矿类型,包括斑岩型Cu-Au±Mo、浅成低温热液型Au±Ag、岩浆型豆荚状Cr铁矿、岩浆型Ni-Cu-PGE、造山型金矿及VHMS型Cu-Pb-Zn±Au矿床。其中,斑岩型Cu-Au±Mo、造山型金矿及岩浆型Ni-Cu-PGE矿床具有最高的经济价值。斑岩型、浅成低温热液型及VHMS型矿床在早古生代和晚古生代均有产出,而造山型金矿、豆荚状Cr铁矿及岩浆型Ni-Cu矿床则主要形成于晚古生代。这表明,早古生代古亚洲洋板块俯冲与弧岩浆作用占主导地位,形成的构造环境以典型的沟-弧-盆体系为主,有利于在岛弧地区形成斑岩和浅成低温热液系统,并在弧后区域形成VHMS Cu-Pb-Zn±Au矿床。到了晚古生代,随着部分小洋盆的闭合,发生了弧-弧增生与弧陆碰撞作用,导致岩浆型Cr、Ni-Cu矿床及造山型金矿的形成。斑岩型、浅成低温热液型和VHMS及岩浆型Cr矿床与洋壳俯冲关系密切,岩浆型Ni-Cu与碰撞后伸展背景下软流圈上涌直接相关,造山型金矿与弧地体-克拉通边缘拼贴碰撞紧密相关。文章最终建立了由早古生代以斑岩Cu-Au和浅成低温热液矿床为主、晚古生代斑岩-浅成低温热液成矿系统、造山型金矿、岩浆Ni-Cu矿、豆荚状铬铁矿矿、VHMS矿床等多种成矿类型并存的特色古亚洲洋成矿体系。由于蒙古-鄂霍茨克洋闭合与古太平洋板块俯冲的叠加,中亚造山带东段保留了较少的与古亚洲洋有关的岩浆弧和斑岩矿床,寻找被改造错断的隐伏斑岩铜矿床仍有很大潜力。中亚成矿域的成矿特征表明,构造环境越复杂,成矿类型越丰富。反之,成矿类型的多样性也反映了该地区构造演化的复杂程度。这一发现为通过成矿类型揭示区域构造演化提供了新的视角。 展开更多
关键词 矿床类型 成矿特色 中亚造山带东段 古亚洲洋构造演化
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兴蒙造山带东段古生代增生造山机制:来自大兴安岭北部扎兰屯岛弧的地质演化证据
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作者 汪岩 杨晓平 +4 位作者 秦涛 臧延庆 张渝金 钱程 付俊彧 《岩石学报》 北大核心 2025年第8期2812-2838,共27页
有关兴蒙造山带古生代期间构造演化史一直倍受关注,其中争议最大的问题是造山带增生造山机制暨古亚洲洋的构造演化机制问题,大地构造背景究竟是持续的大洋俯冲还是经历了造山后的伸展裂解过程?大兴安岭地区位于兴蒙造山带东段,是研究古... 有关兴蒙造山带古生代期间构造演化史一直倍受关注,其中争议最大的问题是造山带增生造山机制暨古亚洲洋的构造演化机制问题,大地构造背景究竟是持续的大洋俯冲还是经历了造山后的伸展裂解过程?大兴安岭地区位于兴蒙造山带东段,是研究古亚洲洋构造演化的重要窗口。以往对大兴安岭地区古亚洲洋的构造演化研究多局限于区域内广泛分布的晚古生代蛇绿岩和各类岩浆岩的地质演化证据,往往忽视了早古生代地质体的演化证据。本文详细研究了大兴安岭北部扎兰屯地区所发育的一套变质杂岩,前人曾划分为“扎兰屯地块”,即古元古界兴华渡口岩群和新元古界加疙瘩岩组;研究认为该地区并不存在前人认为的古老结晶基底,将原划兴华渡口岩群和加疙瘩岩组重新解体为扎兰屯岛弧,并对扎兰屯岛弧的结构与演化模式提出了新的认识。认为扎兰屯岛弧古生代期间构造演化可分为三个期次:第一期为寒武纪“两弧一带一弧盆”的侧向增生阶段,划分出大黑山弧火山岩带(514~505Ma)、董家沟弧火山岩带(505~492Ma)、五星村-大乙山构造混杂岩带(岩块:524~509Ma;基质:504~502Ma)和永利弧间盆地(495Ma±),由北向南总体稍呈现“年轻化”的趋势;全碱及钾含量逐渐降低,大离子亲石元素Sr、Th、U、LRR及Ba等显示增加的趋势,而Fe、K/Rb等逐渐降低,显示良好的地球化学极性。第二期为奥陶纪-志留纪岩浆弧垂向叠加及残余海盆地沉积阶段(465~425Ma),形成中奥陶世C型埃达克质英云闪长岩及中志留世岛弧角闪辉长岩;同时晚奥陶世-中志留世沉积弧前盆地铜山组及黄花沟组。第三期为石炭纪岩浆弧垂向叠加阶段(405~350Ma),该阶段扎兰屯地区整体处于安第斯弧演化阶段,形成大量钙碱性弧火山岩和侵入岩,同期伴生强烈挤压变形,寒武纪弧火山岩也卷入构造带。通过扎兰屯岛弧地质结构与岩浆岩的地球化学极性综合判定,该岛弧是古大洋板片由南向北俯冲、后撤过程中形成的增生地质体,是古亚洲洋北分支洋北向俯冲的产物。扎兰屯岛弧增生模式的厘定和岛弧火成岩年代学和地球化学的研究成果,进一步证明了兴蒙造山带东段古生代期间存在持续的大洋俯冲作用,这为兴蒙造山带增生造山机制和古亚洲洋的构造演化研究提了供新的资料。另外,扎兰屯地区早古生代岛弧安山岩叠加晚三叠世侵入岩浆作用与北侧“超大型多宝山铜矿床”成矿背景具有相似性,扎兰屯岛弧属多宝山岛弧西南向的延伸,其形成演化对寻找中国“多宝山式”中-超大型铜、金多金属矿床具有重要指示意义。 展开更多
关键词 侧向增生弧 垂向叠加弧 增生造山 古生代 扎兰屯岛弧 兴蒙造山带东段
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喜马拉雅造山带含金红石和含红柱石淡色花岗岩
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作者 曾令森 高利娥 赵令浩 《岩石学报》 北大核心 2025年第11期3617-3635,共19页
喜马拉雅造山带的新生代淡色花岗岩是研究大陆地壳深熔作用及其构造-岩浆演化的重要窗口。本文以藏南聂拉木地区出露的含金红石与红柱石淡色花岗岩为研究对象,结合详细的岩相学观察、锆石U-Pb年代学、矿物微量元素地球化学和全岩地球化... 喜马拉雅造山带的新生代淡色花岗岩是研究大陆地壳深熔作用及其构造-岩浆演化的重要窗口。本文以藏南聂拉木地区出露的含金红石与红柱石淡色花岗岩为研究对象,结合详细的岩相学观察、锆石U-Pb年代学、矿物微量元素地球化学和全岩地球化学分析,厘定了其中红柱石与金红石的成因类型,并进一步探讨其形成的物理化学条件及区域构造动力学背景。研究结果表明,聂拉木花岗岩形成于中新世早期(约17.5Ma),具有高温(~745℃)和强过铝质特征。岩相学分析表明,花岗岩中的粒状金红石为熔体直接结晶的岩浆成因,而花岗岩中针状金红石则来源于黑云母的热液蚀变;红柱石以其自形晶形、成分环带及反应结构特征指示其为典型的岩浆成因。中新世早期,聂拉木地区可能处于东西向伸展构造背景,软流圈上涌为深部地壳部分熔融以及岩浆型红柱石与金红石的结晶提供了关键热源。 展开更多
关键词 聂拉木 金红石 红柱石 淡色花岗岩 喜马拉雅造山带
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东昆仑东段哈拉炸岩体岩石学和矿物学特征对岩浆混合及演化过程的制约
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作者 陈国超 裴先治 +5 位作者 李瑞保 李佐臣 裴磊 陈有炘 刘成军 李小兵 《大地构造与成矿学》 北大核心 2025年第2期367-385,I0003-I0008,共25页
岩浆混合作用是花岗岩成岩的重要方式,一直是地质学研究的热点。东昆仑造山带东段的哈拉炸南石英黑云母闪长岩和哈拉炸北花岗闪长岩内含有丰富的暗色微粒包体,为研究岩浆混合提供了理想样本。这些包体多呈椭圆状,少量呈条带状,其中哈拉... 岩浆混合作用是花岗岩成岩的重要方式,一直是地质学研究的热点。东昆仑造山带东段的哈拉炸南石英黑云母闪长岩和哈拉炸北花岗闪长岩内含有丰富的暗色微粒包体,为研究岩浆混合提供了理想样本。这些包体多呈椭圆状,少量呈条带状,其中哈拉炸南部分椭圆状包体具一定拖尾。哈拉炸南石英黑云母闪长岩中,角闪石具有较高的结晶温度和压力,并且变化范围不大;斜长石的An值变化范围较小,呈振荡变化;而其岩石中暗色微粒包体的捕虏晶斜长石和寄主岩中的斑晶斜长石较为干净,捕虏晶角闪石和斑晶角闪石包裹有大量斜长石、黑云母和副矿物。哈拉炸北花岗闪长岩中,角闪石结晶温度和压力较低,斜长石的An值变化范围较大,斑晶角闪石和斑晶斜长石较为干净,其中捕虏晶斜长石和捕虏晶角闪石含有大量包裹矿物;捕虏晶斜长石边部的包裹矿物呈针柱状,在核部和边部中间有窄的筛孔状构造。暗色微粒包体中捕虏晶角闪石和基质角闪石的形成温度和压力明显高于寄主岩角闪石。这些特征表明,哈拉炸南石英黑云母闪长岩结晶于较深的环境,暗色微粒包体的形成是镁铁质岩浆与寄主岩浆混合的结果。镁铁质岩浆注入寄主岩浆后,岩浆在塑性状态下的局部流动导致成岩后岩体具有一定的定向构造,也使暗色微粒包体呈条带状。哈拉炸北花岗闪长岩的原生岩浆在地壳深部形成,然后在地壳浅部侵位,结晶环境变化较大,而镁铁质岩浆在注入岩浆房之前,在地壳深部已与其他长英质岩浆经历过一次岩浆混合。哈拉炸北花岗闪长岩岩浆房和镁铁质岩浆可能都经历了较长时间的演化,结晶程度都较高,致使寄主岩矿物较少进入暗色微粒包体。上述情况表明,岩浆混合具有多期次性。在同一次岩浆混合作用中,镁铁质岩浆和长英质岩浆的物理属性对岩浆混合具有重要影响。 展开更多
关键词 东昆仑造山带 岩浆混合 岩浆演化 暗色微粒包体 捕虏晶
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西秦岭西和县大桥金矿成因研究——黄铁矿矿物化学和Nano-SIMS原位微区硫同位素组成新证据
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作者 张琳 赵静 +5 位作者 谢世强 梁金龙 陈友良 郭佳 王雪梅 梁颂 《地质论评》 北大核心 2025年第6期1895-1908,共14页
大桥金矿是我国西秦岭地区最具代表性的超大型金矿床之一,但其矿床成因类型却始终未有定论。黄铁矿是大桥金矿的主要载金矿物之一,它的矿物化学及硫同位素组成对矿床成因具有重要的指示意义。本次研究采用电子探针(EPMA)和纳米级二次离... 大桥金矿是我国西秦岭地区最具代表性的超大型金矿床之一,但其矿床成因类型却始终未有定论。黄铁矿是大桥金矿的主要载金矿物之一,它的矿物化学及硫同位素组成对矿床成因具有重要的指示意义。本次研究采用电子探针(EPMA)和纳米级二次离子质谱技术(Nano-SIMS)对载金黄铁矿开展精细矿物学分析。岩相学观察和背散射电子图像分析发现大桥金矿中黄铁矿的形态主要有草莓状、自形、半自形—他形和环带状。其中,环带黄铁矿发育典型的核—边二元结构,记录了与成矿有关的两期次热液活动。电子探针成分分析结果表明除草莓状黄铁矿外,自形、半自形—他形及环带黄铁矿均具有Co/Ni值大于1、ΔFe和ΔS值小于1等典型热液成因黄铁矿的成分特征,特别是它们的(Fe+S)及As含量与岩浆热液成因的造山型金矿床中的黄铁矿基本一致。Au—As相关性分析和Nano-SIMS元素面扫描图像显示大桥金矿中金的赋存状态很可能为纳米金,其富集机制与早期形成的黄铁矿和成矿流体的相互作用密切相关。Nano-SIMS原位微区硫同位素结果表明草莓状黄铁矿具有极负的δ^(34)S_(V-CDT)值(-20.6‰~-25.5‰),其形成可能与细菌还原海水硫酸盐过程有关。环带黄铁矿中核部δ^(34)S_(V-CDT)值变化范围在+0.8‰~+2.8‰,显示出幔源岩浆硫的同位素特征,而黄铁矿边部的δ^(34)S_(V-CDT)值变化范围在+8.0‰~+17.7‰,与西秦岭地区出露的岩浆岩同位素组成基本一致,暗示了其同样来源于岩浆热液,但不排除有地层硫等其他硫源混入的可能性。两期岩浆热液在硫同位素组成上的差异性或与母岩浆性质不同有关。综上,大桥金矿应属于与岩浆热液有关的造山型金矿床。 展开更多
关键词 大桥金矿 黄铁矿 纳米金 硫同位素 岩浆热液 造山型金矿
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中国奥陶纪地理分区的再认识
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作者 王建坡 汪啸风 《古地理学报》 北大核心 2025年第1期16-31,共16页
中国大陆地壳在奥陶纪时由华北、扬子、塔里木三大陆块及围绕它们的诸多微陆块和造山带组成。基于陆块、微陆块和造山带等不同属性地体的识别特征,按陆块、洋板块中的微陆块、造山带和疑问块体4种类型,分别阐述它们在中国奥陶纪的发育... 中国大陆地壳在奥陶纪时由华北、扬子、塔里木三大陆块及围绕它们的诸多微陆块和造山带组成。基于陆块、微陆块和造山带等不同属性地体的识别特征,按陆块、洋板块中的微陆块、造山带和疑问块体4种类型,分别阐述它们在中国奥陶纪的发育特征。在此基础上,综合古地理信息,提出中国奥陶纪共划分出4个大区16个地理区的新认识。该时期中国各陆块主要在环西伯利亚、古亚洲洋、原特提斯洋和冈瓦纳北缘分布,由此归纳为4个大区,其中华北和塔里木分割了古亚洲洋和原特提斯洋,但归入原特提斯洋大区中。环西伯利亚大区可分为北疆区和兴安区,前者由阿尔泰、准噶尔—吐哈微陆块和东西准噶尔造山带组成,后者囊括额尔古纳、兴安、锡林浩特、松辽和佳木斯等东北微陆块群。古亚洲洋大区仅分出中天山—北山区,伊宁微陆块为该区成员。原特提斯洋大区除了华北区和塔里木区外,还包括柴达木—祁连、昆仑—秦岭、扬子、华夏、印支和松潘—甘孜区,其中中阿尔金和全吉微陆块属于柴达木—祁连区,义敦微陆块属松潘—甘孜区。冈瓦纳大区分为羌塘、拉萨、喜马拉雅、滇缅泰马和海南区,其中保山微陆块和临沧微陆块为滇缅泰马区的组成部分。此外,阿拉善和敦煌块体分别归入华北和塔里木区中。上述中国奥陶纪地理分区的认识与前人存在较大差异,作者旨在抛砖引玉,希望能引起更多学者关注并探求更合理的划分方案。 展开更多
关键词 奥陶纪 微陆块 造山带 地理分区 新认识
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祁连造山带东段覆盖区重磁场特征及北中祁连构造边界划分 被引量:1
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作者 杨柳 冯旭亮 +2 位作者 张健 柴培琪 马佳月 《西北地质》 北大核心 2025年第3期63-74,共12页
祁连造山带东段覆盖区处于青藏高原东北缘与阿拉善地块、鄂尔多斯地块交汇地带,亦为秦岭造山带与祁连造山带相互作用的部位,构造格局复杂,目前对该区内北祁连和中祁连构造单元边界的划分仍然值得商榷。笔者采用归一化总水平导数垂向导数... 祁连造山带东段覆盖区处于青藏高原东北缘与阿拉善地块、鄂尔多斯地块交汇地带,亦为秦岭造山带与祁连造山带相互作用的部位,构造格局复杂,目前对该区内北祁连和中祁连构造单元边界的划分仍然值得商榷。笔者采用归一化总水平导数垂向导数(NVDR-THDR)、最小曲率位场分离技术,结合小波多尺度分析对布格重力异常及化极磁力异常进行处理分析,综合区域地质特征推断一级断裂4条,二级断裂54条,一级断裂为构造单元边界。在祁连造山带东段覆盖区,中祁连与北祁连的构造边界以平安-乐都-定西-张家川一线为界,即中祁连北缘断裂所在。中祁连与北祁连之间存在1个一级构造单元—北祁连增生楔,祁连造山带东段覆盖区可划分为北祁连岛弧带、北祁连增生楔和中祁连造山带3个构造单元。 展开更多
关键词 断裂 构造单元 重磁异常 小波多尺度分析 覆盖区 祁连造山带东段
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