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1.
Combined analyses of Nd isotopes from a wide range of Neoarchaean–Cretaceous igneous rocks provides a proxy to study magmatic processes and the evolution of the lithosphere. The main igneous associations include the Neoproterozoic granitoids from the southern Brazilian shield, which were formed during two tectonothermal events of the Brasiliano cycle: the São Gabriel accretionary orogeny (900–700 Ma) and the Dom Feliciano collisional orogeny (660–550 Ma). Rocks related to the formation of the São Gabriel arc (900–700 Ma) mainly have a depleted juvenile signature. For the Neoproterozoic collisional event, the petrogenetic discussion focuses on two old crustal segments and three types of mantle components. However, no depleted juvenile material was involved in the formation of the Dom Feliciano collisional belt (800–550 Ma), which implies an ensialic environment for the Dom Feliciano orogeny. In the western Neoproterozoic foreland, records of a Neoarchaean lower crust predominate, whereas a Paleoproterozoic crust does in the eastern Dom Feliciano belt. The western foreland includes two amalgamated geotectonic domains, the São Gabriel arc and Taquarembó block. In the collisional belt, the old crust was intensely reworked during the São Gabriel event. In addition to the Neoproterozoic subduction-processed subcontinental lithosphere (São Gariel arc), we recognize two old enriched mantle components, which also are identified in the Paleoproterozoic intraplate tholeiites from Uruguay and the Cretaceous potassic suites from eastern Paraguay. One end member displays the prominent influence of Trans-Amazonian (2.3–2.0 Ga) or older subduction events, whereas the other can be interpreted as a reenrichment of the first during the latest Trans-Amazonian collisional or younger events. This reenriched mantle is documented in late Neoproterozoic suites from the western foreland (605–550 Ma) and younger suites from the eastern collisional belt (600–580 Ma). The other enriched mantle component with an old subduction signature, however, appears only in older rocks of the collisional belt (800–600 Ma). The participation of the subduction-related Brasiliano mantle as an end member of binary mixing occurred in some early Neoproterozoic suites (605–580 Ma) from the western foreland, but the contribution of the Neoarchaean lower crust increased near the late igneous event (575–550 Ma).  相似文献   

2.
In the considered wide sector of the West-Mediterranean southern Europe, the collisional phase of the Variscan orogeny during Late Carboniferous and Permian times was followed by magmatic intrusive and effusive activity and sedimentation into intracontinental, alluvial to lacustrine basins originated by wrench- to normal-fault systems. The first volcanic cycle (generally Late Carboniferous-Early Permian in age) is represented by early calc-alkaline andesites and rhyolites, in variable amounts, and by following large volume of rhyolites, and by dacites. Both andesites and rhyolites show K-normal and high-K calc-alkaline character. The origin of the liquids of the first cycle is ascribed to partial melting processes at the mantle–crust interface telescoped within a thickened crust. The melting is considered as the consequence of thermal re-equilibration following isostatic disequilibrium and the subsequent collapse of the orogenic belt; the ascent of liquids occurred in a (trans-)tensional regime. The second magmatic cycle is represented by alkaline magmatism, and exhibits typical anorogenic features consistent with a rifting regime. This event was no more related with the collapse of the Variscan belt, but rather to the post-Variscan global re-organization of plates that evolved during Late Triassic times to the neo-Tethyan rifting. In both cycles, important differences in timing, areal distribution and outpoured volumes arise.  相似文献   

3.
Multi-mechanism Orogenic Model of the Su-Jiao Orogenic Belt   总被引:1,自引:0,他引:1  
The Su-Jiao orogenic belt is the eastern part of the Central Mountain System of China. Recent studies on its erogenic system indicate that the Su-Jiao erogenic belt is a complex orogenic belt which suffered at least 3 orogenies of different mechanisms in the Mesoproterozoic, Neoproterozoic and Triassic respectively. The Meso-Neoproterozoic orogenies belong to the Wilson cycle on the plate margins. The belt is a part of the Late Mesoproterozoic supercontinent Rodinia. The Triassic orogeny belongs to the re-orogeny of the non-Wilson cycle. Delamina-tion of mountain roots occurred after both the Wilson and non-Wilson cycles in the Su-Jiao erogenic belt. The large-amplitude isostatic uplift of mountains, magmatic activities and basin-forming and mountain-making in the upper crust, all indicate the general significance of delamination in the development of erogenic belts.  相似文献   

4.
博格达山晚石炭纪造山活动的变形地质记录   总被引:13,自引:2,他引:13  
主要由钙碱性火山岩、火山碎屑岩组成的博格达古岛弧是天山缝合造山带的重要组成部分 ,是一个发育较成熟的山链 ,其演化经历了晚古生代的韧性剪切收缩 ;中生代伸展调整及新生代再造山过程。晚古生代的造山活动在博格达山有很好的地质记录 ,并以显著的韧性剪切变形带的形成和发育同造山的褶皱构造为特点。剪切变形带内同构造的石英脉中的锆石U PbSHRIMP测年结果与山链中花岗岩、辉长岩年龄颇为一致 (311~ 316Ma) ,这个年龄反映在结束洋盆散聚、碰撞焊接的晚华力西期造山过程中 ,博格达古岛弧内存在一次虽不甚强烈 ,但又较为明显的构造岩浆事件 ,其成因可能与引起石炭纪大规模裂陆式喷发的深部断裂构造重新活动有关。  相似文献   

5.
兴蒙造山带是中国一条重要的成矿带.通过近几年的调查研究,以及大量人力、物力和资金投入,在该区发现了一批大、中型钼矿床,但是钼矿产出的区域地质背景还不是很清楚.对该区中生代A型花岗岩类、地质图分析以及钼矿的研究得知:(1)研究区印支期和燕山期是两个独立的造山旋回,印支期造山在220~200Ma左右结束,以区域上发育一套碱...  相似文献   

6.
We present new U-Pb zircon and monazite ages from the Sunsas belt granitic magmatism in Bolivia,SW Amazonian Craton.The geochronological results revealed four major magmatic events recorded along the Sunsas belt domains.The older igneous event formed a granitic basement coeval to the Rio Apa Terrane(1.95-1.85 Ga)in the southern domain.The second magmatic episode is represented by 1.68 Ga granites associated to the Paraguá Terrane(1.69-1.66 Ga)in the northern domain.The 1.37-1.34 Ga granites related to San Ignacio orogeny represent the third and more pervasive magmatic event,recorded throughout the Sunsas belt.Moreover,magmatic ages of~1.42 Ga revealed that the granitogenesis asso-ciated to the Santa Helena orogeny also affected the Sunsas belt,indicating that it was not restricted to the Jauru Terrane.Lastly,the 1.10-1.04 Ga youngest magmatism was developed during the Sunsas oro-geny and represents the final magmatic evolution related to Rodinia assembly.Likewise,the 1.95-1.85 and 1.68 Ga inherited zircon cores obtained in the~1.3 Ga and 1.0 Ga granite samples suggest strong par-tial melting of the Paleoproterozoic sources.The 1079±14 Ma and 1018±6 Ma monazite crystallization ages can be correlated to the collisional tectono-thermal event of the Sunsas orogeny,associated to reac-tions of medium-to high-grade metamorphism.Thus,the Sunsas belt was built by heterogeneous 1.95-1.85 Ga and 1.68 Ga crustal fragments that were reworked at 1.37-1.34 Ga and 1.10-1.04 Ga related to orogenic collages.Furthermore,the 1.01 Ga monazite age suggests that granites previously dated by zir-con can bear evidence of a younger thermal history.Therefore,the geochronological evolution of the Sunsas belt may have been more complex than previously thought.  相似文献   

7.
塔里木北部周缘前陆盆地发育于泥盆纪末至早三叠世期间,完整地记录了南天山造山带的发育过程。该盆地在早二叠世由复理石盆地转化为磨拉石盆地,同时发生快速南移。同期幔源物质加入,有山根地壳熔融的岩浆活动、南天山造山带的整体隆升、热液成矿作用集中发育和变形、变质作用的激化使俯冲岩片的拆沉成为盆地转化与迁移的最佳机制。相同的转化过程及深部机制在其他造山带中也明显存在,表明俯冲岩片拆沉是造山作用一个不可或缺的环节。  相似文献   

8.
甘肃侵入岩及岩石构造组合特征   总被引:1,自引:0,他引:1  
本文简要叙述了甘肃侵入岩的时空分布、构造岩浆旋回和构造岩浆岩带划分,将甘肃侵入岩划分为4个构造岩浆旋回、5个构造岩浆岩省、10个构造岩浆岩带,简述了各构造岩浆岩省侵入岩基本特征和岩石构造组合特征,探讨了其形成的大地构造环境,利用现有资料初步建立了甘肃侵入岩年代格架。  相似文献   

9.
从沉积建造分析入手,通过对区内晚古生代—早中生代火山岩组合的构造属性识别,认为区内晚古生代—早中生代构造演化是一个连续的过程,它奠定了该区的基本构造格局,也是金与铜多金属矿产的主要成矿时期;晚古生代—早中生代发育的双岩浆弧是在同一动力学机制下不同阶段形成的造山岩浆弧:陆缘的钙碱性岩浆弧和陆内的高钾钙碱性岩浆弧。晚古生代—早中生代构造岩浆旋回可以划分为2个阶段,早期的俯冲造山阶段形成了与蛇绿岩有关的火山岩类和弧火成岩类,晚期的大洋闭合和碰撞造山阶段则形成了钾玄岩系列火山岩。  相似文献   

10.
内蒙古索伦地区上二叠统林西组沉积物源受控于晚古生代古亚洲洋的闭合事件。本文通过分析碎屑岩元素地球化学特征,对林西组母岩类型和古构造环境进行了探讨。常量元素分布特征表明,林西组早期属于风化程度较弱的第一次旋回沉积物,后期属于中等风化的第一次旋回沉积或再旋回沉积物,母岩类型以火成岩为主;微量元素和稀土元素分布特征表明,林西组母岩沉积环境为大陆岛弧背景下切割的岩浆弧,以上地壳碱性-中性火成岩为主,伴有钙质-泥质沉积岩,(Gd/Yb)n表明早期沉积母岩为太古宙碱性火成岩。综合分析表明,林西组沉积同时接受南侧华北板块北缘和北侧苏尼特左旗-锡林浩特-西乌旗南岩浆弧的共同物源供给,早期沉积有华北板块北缘太古宙基底母岩的参与。  相似文献   

11.
Based on the discussion on the intracontinental orogenic igneous rocks formed after India- Asia collision (40 or 45 Ma ),the intracontinemal orogenic processes of Qinghai-Xizang (Tibet)-Himalaya are traced . Muscovite/two mica granite is considered as a petrological record of intracontinental subduction. Volcanic rocks of shoshonite series are believed to be the products of the orogenic and outside cratonic lithosphere convergence . The intracontinental orogenic igneous rocks are developed only on the margins of the orogenic belt. The pairing phenomenon of the igneous rock zones is regarded as one of the best signs to recognize the special range of orogenic belt . The stage of magmatic activity is a representation and indicator of orogenic episode . Three pairs of the igneous events in Oligocene , Miocene and Pleistocene and their space distribution indicate three corresponding orogenic episodes and the horizontal expansion across the orogenic belt , respectively , On the northern and southern margins of  相似文献   

12.
冈底斯岩浆岩带(以下简称冈底斯带)是新特提斯洋俯冲和印度—亚洲板块碰撞的产物,为典型的复合型大陆岩浆弧,是研究板块增生、大陆地壳生长再造和碰撞造山的天然实验室。大量研究揭示新特提斯洋主要经历了4个重要的演化时期:分别是早期俯冲(>152 Ma)、晚期俯冲(100~65 Ma)、主碰撞(55~40 Ma)和后碰撞伸展期(23 Ma至今)。前人对其开展了大量的工作,并取得了重要的认识和进展,然而关于新特提斯洋的形成和演化以及冈底斯带火成岩岩浆源区的属性、精细的成岩过程等方面仍然存在着激烈的争议。文章首先介绍了冈底斯带的研究历史和大地构造背景,对冈底斯带目前存在的主要科学问题和争议进行了初步梳理,从13个方面进行了论述和总结。初步的梳理给出的启示是:冈底斯带是一个典型的岩浆—构造—成矿—变形变质带,经历了长期、复杂和多阶段的演化过程,而不是简单地拼贴于古老拉萨地体之上的新生大陆岛弧体。主要认识包括:(1)冈底斯岛弧带是研究新特提斯洋俯冲最为理想的场所,记录了新特提斯洋演化的关键信息,是破解新特提斯洋板片初始俯冲时限和板片俯冲方式最佳的研究对象;(2)冈底斯带中不同时代的花岗岩基或岩株可能经历了一个多期次组装累积的过程,今后应运用晶粥体的模型去重新理解冈底斯带花岗质岩石的形成和动力学成岩过程;(3)冈底斯地区地幔的性质沿着走向表现出复杂性,具有地球化学上的不均一性;(4)冈底斯带的火成岩存在同位素上的倒转,这可能暗示冈底斯地区存在老的基底;(5)冈底斯岛弧带在构造上具有明显的掀斜性,表现出东段以下地壳组分为主,中西段以中上地壳组分为主,暗示了冈底斯带自新生代以来经历了一个不均衡的构造抬升和剥露过程; (6)冈底斯带的研究对象仍以火成岩为主,研究方法多限于传统的岩石学和放射性Sr-Nd-Hf同位素手段,而非传统的稳定性同位素(Mg-O-Li-B-Mo)的研究却鲜有报道,并且在研究内容上主要以岩石成因和地质年代学为主,而对火成岩侵位过程和成岩后的构造变形和抬升剥蚀等相关研究则相对薄弱;(7)目前,构造地质学手段在冈底斯带的研究中运用较少,常以岩浆演化来代替构造演化。最后,文章针对目前的研究现状,对冈底斯带未来的研究方向进行了展望。  相似文献   

13.
The Teplá-Barrandian unit (TBU) of the Bohemian Massif was a part of the Avalonian-Cadomian belt at the northern margin of Gondwana during Neoproterozoic and Early Cambrian times. New detrital zircon ages and geochemical compositions of Late Neoproterozoic siliciclastic sediments confirm a deposition of the volcano-sedimentary successions of the TBU in a back-arc basin. A change in the geotectonic regime from convergence to transtension was completed by the time of the Precambrian-Cambrian boundary. The accumulation of around 2,500 m Lower Cambrian continental siliciclastics in a Basin-and-Range-type setting was accompanied by magmatism, which shows within-plate features in a few cases, but is predominantly derived from anatectic melts displaying the inherited island arc signature of their Cadomian source rocks. The geochemistry of clastic sediments suggests a deposition in a rift or strike-slip-related basin, respectively. A marine transgression during Middle Cambrian times indicates markedly thinned crust after the Cadomian orogeny. Upper Cambrian magmatism is represented by 1,500 m of subaerial andesites and rhyolites demonstrating several geochemical characteristics of an intra-plate setting. Zircons from a rhyolite give a U-Pb-SHRIMP age of 499±4 Ma. The Cambrian sedimentary and magmatic succession of the TBU records the beginning of an important rifting event at the northern margin of Gondwana.
Kerstin DrostEmail:
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14.
《International Geology Review》2012,54(11):1279-1297
The Paleozoic tectonic evolution of Hsieh-fen-shan, western Hunan, belongs to the Caledonian and Hercynian tectonic cycles. The base of the lower Paleozoic group is defined by a geographical unconformity; the Sinian system unconformably overlies the Pan-ch'i group of the Proterozoic. The Hsieh-fen movement represented by this unconformity had not transformed this area into a platform. The lower Paleozoic group may be divided into four structural stages: Lower Sinian, Upper Sinian-Cambrian, Lower Ordovician and Middle Ordovician-Silurian. These stages are represented by the corresponding sedimentary formations: lower terrigenous elastic formation, siliceous and carbonate rocks intercalated with shale, flush formation and upper terrigenous elastic. Due to the absence of magmatic activity it is believed to be of the miogeosyncline type. In the Variscan cycle this area was already consolidated and partly covered with upper Paleozoic neoplatform sediments. Hereditary characters of the early Paleozoic tectonic evolution are obvious. According to the isopachous maps there occurred a strong tectonic differentiation at the end of the Cambrian. In Early Ordovician a northeast extended flysch geosyncline formed, and to the west of it, an uplifted denudation region. The eastern part of the uplifted region rose strongly, in parallel with the flysch geosyncline and with similar dimensions, and may be considered a geanticline. The geosyncline and geanticline have asymmetrical forms, their neighboring flanks being steeper than their opposite ones. Consequently the existence of a so-called pre-Sinian Hsieh-fen axis has not been proved and the boundaries of the Southwestern Platform with the adjoining southeastern Caledonian fold may be located approximately along T'ao-yuan, Yuan-ling Chen-chi, Hsin-Hua and Ch'ien-yang. – Authors.  相似文献   

15.
王义昭  杨艳  刘舫  金梦迪  胡官兵 《地质通报》2013,32(9):1349-1355
1976年的1∶20万勐腊幅、尚勇幅区调报告报导了景洪澜沧江边南光附近泥盆系的发现并将其时代确定为中—晚泥盆世.中泥盆统为海相沉积(未建组),上泥盆统为陆相沉积,并建“南光组”,对其地层层序及沉积环境和空间关系缺少深入研究.该剖面清楚地记录了复理石沉积建造与磨拉石沉积建造(由海到陆)的连续变化关系,沉积物以含陆源碎屑和火山碎屑物为特点,代表了该区中—晚泥盆世经历了与火山喷发活动有关的造山运动.这一发现将为研究澜沧江河谷地带的地质构造演化增加新的内涵.  相似文献   

16.
皖赣鄣公山地区新元古代地壳组成及造山过程   总被引:3,自引:0,他引:3  
皖赣相邻的鄣公山地区位处江南造山带北缘,区内广布一套厚度巨大、低绿片岩相变质的以泥砂质细碎屑岩为主含少量火山物质的复理石建造体,大量高精度同位素测年数据显示,其形成于821~840Ma间的新元古代早期,以景德镇-鄣源-伏川区域断裂带为界,南部为形成于大陆边缘拉张构造环境下的溪口岩群;北部的双桥山群火山-陆缘细碎屑岩系是与岛弧有关盆地中的沉积物。北东—南西向展布于鄣公山北坡的蚀变枕状-块状基性火山熔岩、辉长岩、辉绿岩等基性岩类呈构造碎块或碎片产出于溪口岩群火山-陆缘细碎屑岩组成的复理石基质中,通过对其产出地质特征及岩石地球化学特征等的分析,认为其形成于低速扩张的陆缘小洋盆扩张脊环境,具初始洋壳基性岩特征,属皖南伏川蛇绿岩西延组成部分。呈夹层产出于双桥山群地层中的大量玻屑晶屑凝灰岩及少量变安山岩、变流纹岩等具相似的岩石地球化学特征,属中钾钙碱性岩石系列,形成于大陆边缘火山弧构造环境。综合区内沉积事件、岩浆事件和构造事件等,提出皖赣相邻区新元古代经历了古扬子板块东南缘裂开-陆缘小洋盆有限俯冲-弧陆碰撞造山-造山期后陆壳裂陷沉积的构造演化过程。  相似文献   

17.
研究区内的中元古代魏家沟岩群原岩为一套碳酸盐岩、陆缘碎屑岩及火山岩建造,形成于大陆裂谷-活动大陆边缘阶段,并于1036 Ma左右遭受变质变形.通过岩浆岩形成构造环境的判别,研究区中元古代岩浆活动贯穿于板块碰撞前、同碰撞及碰撞后.伴随着造山带的演化,本区中元古代经历了3期韧性变形,分别形成于大陆裂谷、活动大陆边缘及碰撞造山阶段.通过上述研究,确定了本区中元古代造山带的存在,并经历了大陆裂谷-被动大陆边缘-活动大陆边缘-碰撞造山的地质演化过程,证实了格林维尔造山运动在华北板块北缘的存在和对中元古代末期Rodinia超大陆拼合的响应.  相似文献   

18.
安延恺 《沉积学报》1985,3(1):111-119
前言 根据近三十年来从事历史大地构造学及地层学的教学与研究工作所得到的启示,深感两者对于岩相、古地理的研究工作密切相关。利用历史大地构造学有关原则进行岩相、古地理的研究,应当认为是当前岩相、古地理研究中的一个方面。其基础则建立在新全球构造观点上。即运用地史期间古板块的离散与聚敛或漂移以及古地磁极移动和古气候带的变迁等基本特征来进行岩相、古地理研究,并了解有关沉积矿产的分布规律。看来与根据以岩石学、地球化学和沉积学为基础的岩相、古地理研究矛盾并不大,而且将起到互为补充、相辅相成的作用。实际上,两者经历着殊途同归的过程。  相似文献   

19.
拉鸡山裂谷带特征及演化   总被引:1,自引:0,他引:1  
拉鸡山构造带东西长逾 6 50km ,展布于由元古宇组成的结晶地块内部 ,是一条早古生代火山岩极为发育的构造带。通过作者在拉鸡山多年的野外调查工作和研究 ,认为该地区无论在区域地质学、岩石学、构造变形学还是大地构造演化方面 ,其早古生代构造演化史皆具典型的裂谷带特征。晚古生代以来 ,区内经历了陆内多阶段造山过程。新生代早更新世 ,拉鸡山巨型断裂带发生左旋走滑运动 ,导致断裂带弧形转折部位强烈崛起 ,形成雄伟高山。  相似文献   

20.
漠河盆地位于额尔古纳地块北缘,其北为蒙古-鄂霍茨克造山带,与紧邻的俄罗斯上阿穆尔盆地在中生代时期同属一个盆地。漠河盆地中侏罗统包括绣峰组、二十二站组、额木尔河组和开库康组。根据盆地碎屑岩中的砾石、岩屑和重矿物的组合特征,确定母岩类型以变质岩和中酸性火成岩为主,少量沉积岩和基性火成岩;结合古水流方向,确定盆地沉积物源主要来自南侧。沉积物源具有多源性:其一为陆块抬升基底,其二为切割的岩浆弧。与区域岩石对比分析表明,陆块抬升基底可能来自古元古界兴华渡口群和寒武系兴隆群,切割的岩浆弧与古生代同碰撞和后碰撞花岗质岩石及早中生代中酸性火成岩有关。根据母岩供给特点,认为中侏罗世沉积时期漠河盆地不是典型的前陆盆地,而应是挤压背景下形成的挤压挠曲盆地或山间盆地。  相似文献   

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