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1.
扬子克拉通保存的独特拉伸纪晚期碎屑岩建造为研究新元古代中期演化提供了绝佳素材,内部丰富的凝灰岩夹层和同位素年龄也为扬子克拉通新元古代中期演化提供有效的年代学约束。然而扬子克拉通拉伸系莲沱组内部演化缺少年代学约束,制约了拉伸纪晚期扬子克拉通的沉积演化研究。本研究通过野外地质调查,采用LA-ICP-MS技术获取莲沱组底界(神农架)凝灰岩锆石U-Pb谐和年龄为763.1±6.2 Ma,莲沱组下部陆相地层中获得(鹤峰)的凝灰岩锆石U-Pb谐和年龄761.8±7.1 Ma,莲沱组中下部海陆过渡段获得通山(764.1±3.5 Ma)、长阳(751.5±6.3 Ma)、神农架(752.1±6.5 Ma)三组凝灰岩锆石U-Pb谐和年龄。莲沱组顶部海相地层获得729.6±9.2 Ma(皖南休宁组)、722.4±4.5 Ma(神农架)凝灰岩锆石U-Pb谐和年龄,以及城口龙潭河组凝灰岩锆石U-Pb谐和年龄(712.4±6.4 Ma)。这些凝灰岩锆石年龄数据和地层序列表明:820~770 Ma扬子克拉通普遍处于暴露剥蚀环境,770~750 Ma开始沉积陆相-海陆过渡相莲沱组,750 Ma之后扬子克拉通过渡到海...  相似文献   

2.
东亚原特提斯洋(Ⅱ):早古生代微陆块亲缘性与聚合   总被引:2,自引:7,他引:2  
原特提斯洋内存在塔里木、中祁连、柴达木、扬子、华夏、印支、兰坪-思茅等诸多陆块/微陆块,多数陆块之间在早古生代晚期发育有蛇绿岩带或高压-超高压带。原特提斯域形成于从Rodinia裂解到Pangea超大陆集结期间,存在复杂的洋-陆格局和聚散过程。原特提斯洋不同陆块/微陆块属性和关系及其拼合过程是恢复重建Pangea超大陆聚合前构造背景的关键,但对其认识迄今还存在争论。因此,本文采用综合对比方法,以期建立原特提斯洋陆块/微陆块的亲缘性和海-陆格局,厘定原特提斯微陆块拼合时序与方式。结果表明,早古生代早期除华北陆块不具有亲冈瓦纳大陆的特征外,扬子、华夏、塔里木、柴达木、阿拉善、北秦岭-中祁连-中阿尔金、欧龙布鲁克、北羌塘、南羌塘、拉萨、兰坪-思茅、印支等陆块/微陆块都具有亲冈瓦纳的特征。在450~400Ma左右这一系列陆块/微陆块都向南俯冲-增生,并逐步拼合于冈瓦纳大陆北缘东段,原特提斯洋关闭,并形成了原潘吉亚(Proto-Pangea)超大陆;原潘吉亚于380Ma以后裂离出塔里木-华北陆块和大华南陆块,分别出现勉略洋和古特提斯洋,直到240~220Ma逐步向北聚合,形成最终的劳亚古陆,此时才形成潘吉亚超大陆。  相似文献   

3.
Owing to the lack of early Neoproterozoic geological and geochronological data, most Rodinia supercontinent reconstruction models do not include the Amuria Block in the Central Asian Orogenic Belt (CAOB), and the Amuria Block was varying attributed to the North China, Siberian or Tarim tectonic affinities. In this study, we identified one early Neoproterozoic granitic pluton (964–947 Ma) and one early Neoproterozoic sedimentary unit (<906 Ma) in the Erguna Terrane. The samples (964–947 Ma) are I-type granitoids, and show high zircon in-situ εHf(t) (−2.1–10.0) and whole-rock εHf(t) (1.4–4.8) and high εNd(t) (−2.3 to −0.8). These granitoids are characterized by high Zr saturation temperature (TZr) (701–835 °C) and no inherited zircons, suggesting high-degree of partial melting of their source rocks. The granites were likely formed by biotite-/muscovite dehydration melting of subalkaline mafic lower crust in a continental arc setting. Detrital zircons of the sandstone sample define an age peak at 923–906 Ma. Early Neoproterozoic age data compilation from the four Amuria microcontinents (i.e., Erguna, Xing'an, Songnen and Jiamusi terranes) in NE China indicate the presence of two major magmatic flare-ups at 964–880 Ma and 850–740 Ma. Considering that early Neoproterozoic magmatic rocks are absent in the Siberian and North China cratons but widespread in the Tarim Craton, we suggested that the Erguna Terrane was part of the Tarim Craton in the Early Neoproterozoic. The Erguna Terrane may have undergone a two-staged Neoproterozoic tectonic evolutionary history: (1) early Neoproterozoic arc accretion in response to the Rodinia assembly, and (2) middle Neoproterozoic break-away from the SW Tarim Craton associated with the Rodinia breakup.  相似文献   

4.
Rodinia超级大陆演化作为前寒武纪重要科学问题,一直备受关注.古生物地理区系作为解决古板块地理位置重建的有效手段,在Rodinia超级大陆恢复方面应用较少.龙凤山生物群是新元古代早期宏观藻类代表性生物群之一,其以Chuaria-Tawuia-Longfengshania为组合特征的宏观藻类在新元古代早期(1 000~780 Ma)广泛分布在赤道及低纬度地区的温暖滨海静水环境中.根据全球现有可靠的生物群落资料,进行了古生物地理分析,结果表明:此时期宏观藻类可划分为一个赤道附近低纬度地区宏观藻类生物域,域内包括以含底栖固着Longfengshania为特征的华北-加拿大(Chuaria-Tawuia-Longfengshania)区和仅有简单浮游藻类为特征的扬子-印度(Chuaria-Tawuia)区;古生物地理分布特征表明青白口纪Rodinia超级大陆中华北板块与劳伦古陆相邻、位于超大陆东缘,而扬子克拉通靠近印度板块、位于超大陆西部.   相似文献   

5.
早古生代原特提斯洋在祁连造山带的分支本文称为古祁连洋。其洋内及邻区存在中祁连、阿拉善、柴达木、华北、扬子、塔里木等多个陆块、微陆块,处在一个复杂的多岛洋的环境中。祁连地区早古生代经历了较为复杂的俯冲拼合、碰撞造山过程。本文探讨了祁连造山带的几个构造单元构造属性,认为早古生代阿拉善微陆块南缘为被动大陆边缘,中祁连北缘为活动大陆边缘。阿拉善南部与之平行的龙首山构造单元为俯冲造山形成的增生楔体;北祁连构造带为一套俯冲增生杂岩,包含高压变质岩带、蛇绿岩带、岛弧岩浆和部分洋壳残片等,记录了古祁连洋壳从大陆裂解,洋壳形成,俯冲拼合,碰撞造山的造山过程。495Ma左右南祁连南部柴达木微陆块向北俯冲的影响,古祁连洋壳俯冲受阻,俯冲带向北后退,形成大岔大坂岛弧。弧前地区发生洋-洋俯冲事件,堆积增生大岔大坂、白泉门、九个泉等SSZ型北祁连蛇绿岩北带,并伴随第二期清水沟、牛心山、野牛滩等地岩浆事件。460Ma左右阿拉善微陆块和中祁连微陆块开始碰撞拼合,古祁连洋开始闭合。值得注意的是拼合过程不是均一的,存在自西向东斜向"剪刀式"的拼合方式,产生了由西向东年代变新的"S"型同碰撞岩浆岩。约440Ma古祁连洋闭合,进入陆内造山阶段。440Ma之后,拼合陆块处在一种拉伸的构造环境之下,金佛寺、牛心山、老虎山等地产生碰撞后岩浆岩。422~406Ma发生俯冲折返、高压榴辉岩和高压低温蓝片岩退变质作用,形成以紧闭不对褶皱为特征的第二幕变形。根据各陆块、微陆块碎屑锆石年龄谱分析对比,中祁连基底应与华北不同,而可能与扬子有关。Rodinia超大陆聚合之前,中祁连微陆块作为一个独立的微陆块与华北、扬子保持一定距离。1.0~0.8Ga Rodinia超大陆聚合过程中祁连微陆块与冈瓦纳北缘拼贴在一起,而距华北较远。随着Rodinia超大陆裂解,中祁连微陆块远离冈瓦纳,逐渐向华北靠近,500~400Ma原特提斯洋闭合,华北、阿拉善与中祁连拼合,并整体拼合到冈瓦纳大陆北缘。  相似文献   

6.
中元古代晚期—新元古代早期的华北克拉通与塔里木、扬子克拉通存在明显差异,那里没有十分强烈的与罗迪尼亚超大陆汇聚及裂解有关的热-构造事件的地质记录,因此对华北克拉通与罗迪尼亚超大陆的关联存在不同的推测。近年来,在郯庐断裂带两侧新元古代碎屑岩地层中,从辽宁的榆树砬子群,经山东烟台蓬莱群至土门群,陆续测得众多具经典格林威尔期的碎屑锆石年龄。这一信息与西伯利亚东南缘上里菲碎屑岩中的碎屑锆石年龄谱十分相似。这些碎屑锆石的时代均不是华北或西伯利亚本土所具有的特点,说明华北东缘、西伯利亚东南缘与劳伦大陆东南缘格林威尔造山带存在某种亲缘关系。根据这种推测,笔者等提出了劳伦大陆格林威尔造山带、西伯利亚东南缘和华北东部(GOSEN)连接的假设。  相似文献   

7.
约1 000~820 Ma的新元古代青白口纪早期,全球罗迪尼亚超大陆汇聚的构造环境是中国该时期洋陆分布的主控因素;华北、扬子和塔里木三大陆块均位于当时地球的北半球,三大陆块的外围被边缘海和洋环绕.华北陆块周缘以稳定型的滨浅海沉积为主;而扬子陆块周缘表现为沟-弧-盆体系;塔里木西北缘发育阿克苏活动陆缘,塔里木北东缘和西南缘分别发育库鲁克塔格被动陆缘浅海碎屑岩建造和铁克里克被动陆缘碳酸盐岩建造.环绕华北、扬子和塔里木三大陆块的边缘海和洋内分布有众多裂离地块,多数地块亲扬子和塔里木陆块,如伊宁、敦煌、阿拉善、松潘、罗霄和武夷等;少数亲华北和西伯利亚陆块,如宝音图、锡林浩特、额尔古纳、韩家园、佳木斯和阿勒泰等.   相似文献   

8.
中国新元古代大陆拼合与Rodinia超大陆   总被引:46,自引:0,他引:46  
在对前人研究成果分析的基础上,结合对中祁连块块前寒武纪基底的研究,认为新元古代(1000-9000Ma)中国各主要克拉通地块(包括华夏地块、扬子地块、华北地块、阿拉善-祁连-柴达木地块、塔里木地块)曾经通过晋宁期碰撞拼合带发生过一次全面的多块体复杂拼贴。这次拼贴过程是全球性新元古代格林威尔碰撞造山作用和Rodinia超大陆形成过程的一个组成部分。新元古代拼合的古中国地块在当时位于Rodinia超大陆中北部澳大利亚、劳伦提亚和西伯利亚克拉通地块之同。中国的各主要克拉通地块只不过是巨型格林威尔碰撞带之中夹裹的一些小型地块,且都处于新元古代晚期Rodinia超大陆破裂的中心部位,这些正是中国大陆上克拉通地块活动性大的早期地质背景。  相似文献   

9.
《China Geology》2018,1(1):109-136
The mainland of China is composed of the North China Craton, the South China Craton, the Tarim Craton and other young orogenic belts. Amongst the three cratons, the North China Craton has been studied most and noted for its widely-distributed Archean basement rocks. In this paper, we assess and compare the geology, rock types, formation age and geochemical composition features of the Archean basements of the three cratons. They have some common characteristics, including the fact that the crustal rocks prior to the Paleoarchean and the supracrustal rocks of the Neoarchean were preserved, and Tonalite-Trondhjemtite-Granodiorite (TTG) magmatism and tectono-magmatism occurred at about 2.7 Ga and about 2.5 Ga respectively. The Tarim Craton and the North China Craton show more similarities in their early Precambrian crustal evolution. Significant findings on the Archean basement of the North China Craton are concluded to be: (1) the tectonic regime in the early stage (>3.1 Ga) is distinct from modern plate tectonics; (2) the continental crust accretion occurred mostly from the late Mesoarchean to the early Neoarchean period; (3) a huge linear tectonic belt already existed in the late Neoarchean period, suggesting the beginning of plate tectonics; and (4) the preliminary cratonization had already been completed by about 2.5 Ga. Hadean detrital zircons were found at a total of nine locations within China. Most of them show clear oscillatory zoning, sharing similar textures with magmatic zircons from intermediate-felsic magmatic rocks. This indicates that a fair quantity of continental material had already developed on Earth at that time.  相似文献   

10.
区域变质作用与中国大陆地壳的形成与演化   总被引:8,自引:4,他引:4  
在编制1∶500万中国变质地质图的基础上,本文总结了中国主要变质带的演化以及各变质带与中国大陆地壳形成演化之间的内在联系。虽然在华北和华南克拉通都有古太古代到中太古代的变质年代记录,但是由于后期改造其变质作用的特点及与区域构造背景的联系已难以追索。新太古代末-古元古代初期的变质作用在华北克拉通表现最明显,这期变质作用紧随大规模的TTG岩浆作用,普遍具有逆时针的P-T演化轨迹,反映了地幔柱主导的岩浆-变质事件特点。古元古代晚期的变质事件在华北、华南、塔里木克拉通都有强烈反映。这期变质作用以形成具有顺时针P-T演化轨迹的高压麻粒岩为特点,与形成Columbia超大陆的一些造山带的特点类似,但是这三个不同克拉通在与Columbia聚合的时间和空间方位上存在差异。华南克拉通是相对年轻的克拉通,是沿新元古代江南造山带扬子和华夏地块拼合的产物。新元古代江南造山带的火山岩形成时代和变质作用程度从北东向南西迁移,反映了造山过程逐渐迁移和剪刀式闭合的特点。形成华南克拉通后,在其东南缘又先后经历了加里东期和印支期的变质改造,并且由北西向南东变质带从加里东期转变为印支期,但是这两期变质作用的构造背景尚不很清楚。中国南北大陆的聚合首先从西昆仑-阿尔金-北祁连-北秦岭-桐柏开始,所反映的变质作用是早古生代的蓝片岩相和榴辉岩相变质岩相伴产出,表明经历了从洋壳俯冲到陆陆碰撞的演化过程。中国东部的南北大陆到印支期才最终汇聚,相应的变质作用以南部出现高压蓝片岩相、北部出现超高压的榴辉岩相变质带为特点,表明南方大陆向北方大陆的俯冲。超高压带内普遍含有柯石英,意味着大规模的陆壳深俯冲。华北克拉通和塔里木克拉通以北的中亚造山带内存在多条从早古生代到晚古生代的变质带和多条蓝片岩相变质带,表明这是一个由多阶段、多条变质带组成的造山区。但是其变质作用的空间和时间演化还有待进一步深入。青藏高原变质带具有北老南新的空间分布特点,最北部的印支期龙木错-双湖-澜沧江变质带反映了原特提斯和古特提斯洋的碰撞拼合过程,北部的燕山期班公湖-怒江变质带和中部的喜马拉雅早期雅鲁藏布江变质带反映了新特提斯洋的两次碰撞拼合过程,南部喜马拉雅晚期的高喜马拉雅变质带反映了印度板块向北俯冲导致的高原快速隆升过程。  相似文献   

11.
我国三个主要的古老陆块(华北、华南和塔里木陆块)都发育中-新元古代岩浆岩。根据大量的同位素年代学资料,华北陆块中-新元古代岩浆事件可以分为7个阶段,其中1.78Ga和1.32Ga两期影响范围较大,可以构成大火成岩省。华北陆块中-新元古代的岩浆岩均形成于大陆地壳伸展的构造背景,意味着华北并未介入Rodinia超大陆的聚合过程。华南陆块中-新元古代岩浆事件可以分为8个阶段,从1.78Ga到1.5Ga的四期岩浆事件形成于大陆地壳伸展的构造背景,1.4Ga左右的一期岩浆-构造事件分布局限,可能形成于局部的构造拼合背景。1.0Ga左右的岩浆事件,在华南陆块的不同部位表现形式不同,意味着发生过不同地块的拼合。从0.95Ga到0.82Ga的岩浆事件主要分布在江南造山带和扬子地块北缘,这一阶段的岩浆事件导致扬子地块和华夏地块拼接成一体,形成华南陆块。之后从0.78Ga到0.72Ga的岩浆事件几乎遍布华南陆块,反映了陆块形成后的伸展过程。塔里木陆块中-新元古代的岩浆事件可以分为8个阶段,1.78Ga和1.5Ga的岩浆事件仅在局部有反映,它们形成于拉伸的构造背景。1.4Ga的岩浆事件在塔里木陆块的北缘和西南缘表现形式不同,北缘钙碱性岩浆岩形成于大陆弧构造背景,而西南缘A2型花岗岩则形成于拉伸的构造背景。0.96~0.88Ga期间,塔里木东南缘和北缘的花岗岩以I型和S型为特点,形成于活动大陆边缘,而在塔里木陆块的西南缘该时期则形成了塞拉加兹塔格群中双峰式火山岩,形成于陆内裂谷环境。0.88~0.82Ga期间,在北缘的库鲁克塔格地区形成了与俯冲增生相关的岩浆岩组合,而在东南缘则形成了与拉张构造环境有关的双峰式火山岩。塔里木陆块不同部位,不同阶段岩浆岩组合的差异意味着塔里木陆块原来并不是一个统一的陆块,很可能是在不同时期由不同块体拼合而成的。华北、华南和塔里木三个陆块中-新元古代岩浆岩的差异演化,揭示了它们各自形成陆块的过程和方式及相互关系  相似文献   

12.
Regional Distribution and Prospects of Potash in China   总被引:4,自引:0,他引:4  
China was formed by amalgamation of several small continental blocks (cratons), micro, blocks and orogenic belts in different paleoclimatic settings. It may be correlated with other continental blocks but has its own specific characteristics; therefore the tectonic environments of China’s marine and continental saline basins and salt, and potash, forming environment have some specific characteristics: multiple phases of salt formation, difference in salt, forming ages, migration and concentration of salt, forming processes and diversity of component materials, as well as small sizes of marine saline basins and great changes of saline basins in the late stage and occurrence of abundant liquid mineral resources. The nature of the tectonic basement exerted a key controlling effect on the formation of potash basins. The stable tectonic region was favorable for potash concentration in a quasi, stable region, and quasi, and the quasi-stable region was favorable for salt concentration and potash formation in a local stable tectonic region. Most China’s major ancient saline basins occur in “quasi, cratons (continental block)”; especially all the marine saline basins occur in continental blocks with the Precambrian basement. These regions are the key ones for potash search. Most relatively large, scale soluble salt deposits are developed in relatively stable continental nuclei. According to the characteristics of the tectonic domains where China’s salt, forming basins are located, the North China, Yangtze and Tarim, Qaidam salt minerogenetic domains and the northern Qiangtang, western Yunnan salt minerogenetic belt may be distinguished. Their salt and potash prospects will be discussed separately.  相似文献   

13.
新元古时期中国古大陆与罗迪尼亚超大陆的关系   总被引:57,自引:3,他引:54  
在概略介绍罗迪尼亚和冈瓦纳超大陆最新研究成果的基础上 ,重点介绍了中国华北、塔里木和扬子等三个克拉通前新元古代大陆地壳演化的主要特征 ,以及塔里木和扬子克拉通新元古代重大热构造事件序列和年代格架。提出塔里木和扬子克拉通新元古代地质历史具有较大的相似性 ,而与华北克拉通有明显差异。华北克拉通未出现与罗迪尼亚超大陆汇聚和裂解作用有关的、强烈的新元古代热构造事件群。根据现有的古地磁和地质资料 ,探讨了中国大陆块体与罗迪尼亚超大陆的关系和空间位置  相似文献   

14.
张雄华  黄兴  张孟  高璐  张克信 《地学前缘》2021,28(5):362-379
中国石炭纪构造活跃,在华北地块、扬子地块、塔里木地块等稳定块体间存在着大量造山带,尤其存在着北天山洋、南天山洋、布青山—勉略洋、金沙江洋、甘孜—理塘洋等多个洋盆中的洋板块地层,大地构造分区极为复杂。传统的地层区划主要考虑稳定的地块区,按目前的地理格局来进行地层区划划分。本文通过大地构造单元与构造演化阶段相结合,借鉴目前国内经典的大地构造划分方案,对中国石炭纪构造-地层进行区划,共划分出阿尔泰—兴蒙地层大区、北准噶尔—西拉木伦地层大区、天山—北山地层大区、塔里木—阿拉善地层大区、华北地层大区、秦祁昆地层大区、扬子地层大区、华夏地层大区、北羌塘—三江地层大区、班公湖—怒江地层大区、印度地层大区等11个地层大区及若干地层区。其中阿尔泰—兴蒙地层大区位置相当于阿尔泰—兴蒙多岛弧盆系,发育洋板块地层及大量岛弧火山岩,分为阿尔泰地层区和兴安地层区;北准噶尔—西拉木伦地层大区位置相当于额尔齐斯—西拉木伦大洋盆,包括大量岛弧带地层及洋板块地层,分为北准噶尔地层区及西拉木伦地层区;天山—北山地层大区位置相当于天山—北山造山系,发育大量火山岩,分为南准噶尔地层区、北天山地层区、南天山地层区、伊犁地层区及额济纳—北山地层区;塔里木—阿拉善地层大区位置相当于塔里木陆块、塔东南—敦煌隆起及阿拉善地块,为稳定的滨浅海沉积,局部为海陆交互相沉积,分为塔里木地层区和阿拉善地层区;华北地层大区位置相当于华北陆块及贺兰山陆缘裂陷盆地,主要为稳定的海陆交互相地层,分为贺兰山地层区、华北地层区及华北地块北缘地层区,其中华北地层区缺乏密西西比亚纪地层;秦祁昆地层大区位置相当于秦祁昆造山系,分为祁连地层区、东昆仑—柴达木地层区、西昆仑地层区、秦岭地层区、南秦岭—苏鲁地层区;扬子地层大区位置相当于扬子陆块,分为盐源—丽江地层区、中上扬子地层区、下扬子地层区、湘浙赣地层区及滇黔桂地层区,主要为稳定的碳酸盐沉积,仅湘浙赣地层区见现有较多的海陆交互相沉积;华夏地层大区位置相当于武夷—云开造山系,分为粤闽地层区、粤南地层区、钦防地层区、琼北地层区、琼中南地层区及华夏地层区,除钦防地层区为一套深海—半深海硅泥质沉积外,其他地层区主要为滨浅海沉积及少量海陆交互相沉积;北羌塘—三江地层大区位置相当于北羌塘—三江多岛弧盆系,包括多个稳定的小型地块及其间的蛇绿混杂岩带,洋板块地层发育,分为可可西里—巴颜喀拉—勉略地层区、金沙江—哀牢山地层区、中甸—昌都—思茅地层区、鲜水河—甘孜—理塘地层区、北羌塘地层区及甜水海地层区;班公湖—怒江地层大区位置相当于班公湖—双湖—怒江—孟连大洋盆,主要为洋板块地层;印度地层大区位置相当于印度大陆北部被动大陆边缘,以发育冈瓦纳大陆特有的古生物化石组合及冰成岩为特征,分为冈底斯地层区、北喜马拉雅地层区及保山地层区。简单介绍了各地层大区、地层区及部分地层分区内的岩石组合、古生物组合及地层序列。结合实例提出了中国石炭纪地层格架建立的原则,对各地层区系石炭系进行了系统的地层对比,建立了其地层对比关系。  相似文献   

15.
The involvement of the North China Craton (NCC) in the assembly or breakup of Rodinia has long been debated. Studies of palaeomagnetism, mafic sills (dikes), igneous events, and sedimentary records have led to contrasting opinions on this topic. No igneous events related to the late Mesoproterozoic assembly of Rodinia have been reported in the NCC. However, the authors found numerous late Mesoproterozoic zircons in the Tonian system on the northern margin of the NCC. The Tonian Zhulazhagamaodao formation is composed of meta-sandstone, siltstone, slate, carbonate, and dolomine of the littoral to neritic facies and occurs mainly in the western part of the Bayan Obo–Zhaertai–Langshan rift. U–Pb dating of detrital zircons from the Tonian system reveals age peaks at 1079 ± 23 Ma, 1092 ± 22 Ma, 1175 ± 50 Ma, 1175 ± 18 Ma, 1260 ± 45 Ma, 1266 ± 16 Ma, and 1270 ± 26 Ma, which correspond to the timing of Rodinia assembly. Considering that coeval igneous rocks and orogenic belts developed mostly in the Laurentia–Baltica cratons, we propose that these cratons supplied clastic material to the northern margin of the NCC and that they had a close spatial relationship between each other during the Tonian.  相似文献   

16.
罗迪尼亚超大陆与晋宁运动和震旦系   总被引:22,自引:1,他引:21       下载免费PDF全文
郝杰  翟明国 《地质科学》2004,39(1):139-152
云南晋宁地区即晋宁运动命名地的区域地质表明,晋宁运动指的是发生在中元古代晚期的一次区域性造山运动,其大地构造性质和时代完全可以与国际上格林威尔造山运动进行对比,因此以下震旦统底界作为晋宁(运动)不整合面的认识有悖于命名地的地质事实,也违反了不整合面地质意义的判定原则。扬子、塔里木等陆块的晋宁期造山作用记录表明,在罗迪尼亚超大陆聚合过程中它们作为小型陆块被包裹在格林威尔造山带之中;而华北陆块可能属于西伯利亚大陆的一部分参与了超大陆的聚合过程。新元古代早期,扬子陆块周缘地段发育的火山—沉积岩系是大陆裂解作用的产物,标志着罗迪尼亚超大陆解体的开始。其中,大部分的裂谷在莲沱期泛海侵沉积之前就已夭折,仅有边缘区的一些裂谷发展成裂陷槽或洋盆。因此,在扬子陆块莲沱期泛海侵沉积在区域上高角度不整合沉积在晋宁期夷平面之上,在局部地段平行或小角度不整合沉积在夭折的裂谷沉积之上,而在裂陷槽和大陆边缘区则为连续沉积。考虑到国际晚前寒武纪研究的趋势,本文建议将传统的震旦系予以解体:提出震旦系(纪)应只含灯影组(期)和陡山沱组(期),对应国际地层指南中的新元古Ⅲ纪代;建立独立的南华冰纪和扬子纪。  相似文献   

17.
The Neoproterozoic Tonian strata(ca.870-725 Ma)in the western Jiangnan Orogen archive the records of sedimentary provenance and tectonic setting which can be used to understand the geological evolution of the South China Continent.These strata are separated into the basement and cover sequences by a regional angular unconformity.The basement sequence can be subdivided into the lower and the upper parts by the widespread interbedded ca.840 Ma basalt with pillow structure.In the present work,234 concordant detrital zircon analyses are obtained from three Tonian sandstone samples in the Fanjingshan district,Guizhou Province.Combined with previous results,a total of 1736 analyses of detrital zircon U-Pb ages derived from 12 formations of Tonian strata in the western Jiangnan Orogen are used to decipher the integrated sedimentary and tectonic histories.The zircons from the lowermost part of the basement sequence(the Yujiagou Formation)show oval morphology and display two Paleoproterozoic age peaks at 2325 Ma and 1845 Ma which are similar with the detrital zircon age peaks from the Late Paleoproterozoic to Early Mesoproterozoic Dongchuan/Dahongshan/Hekou groups,suggesting a passive margin basin in which the sediments were mainly sourced from the southwestern Yangtze Block.However,the zircon age population of the lower part of the basement sequence(the Xiaojiahe,Huixiangping formations and their equivalents)indicates the sedimentary derivation from bidirectional sources(the ca.870 Ma arc materials in the south and the old detritus from the southwestern Yangtze Block)which is consistent with a back arc setting for the deposition of the sediments.Zircons from the upper part of the basement sequence(the Duyantang Formation and its equivalent)show euhedral and subangular morphology and display a unimodal age peak at ca.835 Ma.This sequence was possibly deposited in a convergent setting and the detritus were came from the locally distributed syn-collisional igneous rocks.The lower part of the cover sequence(the Xinzhai and Wuye formations and their equivalents)shows a distinct zircon age peak at 815—809 Ma and two subordinate peaks at 2485 Ma and 2018 Ma,suggesting that the basin had gradually transformed into a continental rift basin and received the detritus from the ca.815 Ma post-collisional magmatic rocks as well as from different Paleoproterozoic source rocks in the northern Yangtze Block.We propose a tectonic evolution model that envisages eruption of ca.840 Ma basalt in a back arc basin that existed during ca.870-835 Ma,an angular unconformity was formed during amalgamation of the Yangtze Block and the Cathaysia Block at ca.835-820 Ma and the rifting of the South China Continent was initiated at ca.800 Ma.Our study concludes that the South China Continent was formed on the periphery of the Rodinia supercontinent.  相似文献   

18.
本文概括性地阐述我国前寒武纪冥古宙、太古宙、元古宙三大地史阶段的重大地质事件,粗略勾绘前寒武纪地球演化的轨迹,期望了解我国与全球变化的异同,进一步突出我国前寒武纪三大地史阶段中新太古代超级地质事件及元古宙时期中国大陆块体对哥伦比亚及罗迪尼亚两个超大陆形成与破裂的地质响应。冥古宙是地球最早期的地史阶段,从太阳系形成的4 567 Ma至地球上最老的4 030 Ma的Acasta片麻杂岩。碎屑锆石保存最好的地点是西澳的Mt. Narryer和Jack Hills。目前在中国大陆至少有7个地点发现具有罕见的约4.0 Ga的碎屑锆石,这些地点并不位于克拉通区,而是赋存于造山系新元古代至古生代以碎屑岩为主的地层中。太古宙(4 030~2 420 Ma)定义为从最古老的岩石出现(4 030 Ma Acasta片麻岩)至冰碛层首次广泛分布的寒冷期之间的一段地史。最古老的岩石为英云闪长片麻岩,构成加拿大西北斯拉夫克拉通4.03~3.94 Ga Acasta片麻岩的一部分。西南格陵兰Isua带保存全球有最老的表壳岩,形成于3 810 Ma。太古宙最重大的地质事件莫过于2 780~2 420 Ma时期的新太古代超级事件。值得指出的是华北克拉通最古老、也是中国最古老的岩石出露在中国辽宁鞍山地区,约3.80 Ga英云闪长岩奧长花岗质片麻岩和3.30 Ga的表壳岩已被识别。华北克拉通太古宙有与世界各地太古宙相似的演化历史和特点,包括花岗岩绿岩带及高级变质片麻岩带、广泛的英云闪长岩奧长花岗岩花岗闪长岩(TTG)片麻岩、古陆壳的出露(略老于3.8 Ga)、广泛分布的BIF等。我国太古宙花岗岩绿岩带虽然在华北克拉通分布较广,但与南非、格陵兰、加拿大、西澳等地经典的花岗岩绿岩带相比,时代偏新,仅以新太古代为主,规模偏小,缺少大面积分布的科马提岩,且变质程度偏高,主要为角闪岩相麻粒岩相变质。演化到元古宙(2 420~541 Ma),则进入成熟的、较冷的、刚性程度较高的地球,以现代样式板块构造、超大陆旋回和更复杂的疑源类(eukaryotic)生命的发育为特征。这种变化大致出现在2 420 Ma左右,与哈默斯利型BIF的消失及地史中首次广泛出现的冰川沉积物年代相近。古元古代早期十分重要的“休伦冰川事件”、指示大氧化事件的古老红层在我国尚未被发现,与Lomagundi Jatuli (LJE) δ13C的同位素漂移有关的关门山组古元古代沉积地层的同位素年代学依据不足;古元古代磷矿和具有巨大石油潜力的2.01 Ga Shunga事件也未能鉴别。但中国最大特色是发育了与哥伦比亚和罗迪尼亚超大陆汇聚与裂解有关的良好地质记录,特别是华北克拉通保存了古元古代与哥伦比亚超大陆汇聚有关的超高温、高压麻粒岩等变质及岩浆事件,1 780 Ma以后的中元古代又保存了与哥伦比亚超大陆裂解有关的裂谷沉积及岩浆活动;而在扬子和塔里木陆块区则保存了与新元古代早期与罗迪尼亚超大陆汇聚有关的蛇绿岩、混杂岩、洋内弧、俯冲增生杂岩及大陆边缘弧,在约800 Ma以后则发育了与罗迪尼亚超大陆裂解有关的沉积及岩浆活动的地质记录,为中国和全球地质学者研究这一时期地球系统变化和成矿作用提供了客观的野外实验室和良好的范例。  相似文献   

19.
王荃 《地质科学》2014,(1):1-18
十余年来,全球构造的核心课题是各期超级大陆的复原或再造。为了鉴别散布全球各地的克拉通、造山带及裂谷带是否具有亲缘关系,本文应用了地质DNA的概念。一个古老的陆壳块体必然会有许多独特的标志,类似于生物学领域的遗传基因,在母体分裂解体和离散之后被保留在子体之中。根据地质DNA的对比和异同,笔者确定华泰克拉通来源于Rodinia,并给出了其后续演化历程的路线图和时间表。与前人结论不同的是,华北地台、西伯利亚地台和劳伦古陆三者共同构成的古劳亚大陆不是Rodinia的一部分,而是与其并存的另一联合古陆。SWEAT设想的误区在于将落基山带代表整个北美,实际上就劳伦古陆和北美地台而言,落基山带只是一个外来移植地体。后者与华泰克拉通一样,均为Rodinia的组成部分。华泰与华北二克拉通的拼接,以及落基山带与北美地台的拼接,都是全球性的古劳亚与Rodinia构造拼接的组成部分。生物地层学的研究表明,此次拼接发生于536 Ma前后,这是形成真正超级大陆Pannotia的重大地质事件。寒武纪末期(510 Ma)Pannotia解体,原来的古劳亚大陆携带着华泰克拉通和落基山带,与古冈瓦纳大陆分离,并在其间的地域形成了南太平洋。直到奥陶纪晚期(440 Ma前后),古劳亚大陆分裂,华泰与华北二克拉通作为一个整体漂离加拿大地盾和北美内陆地台,同时形成北太平洋。所以,太平洋的形成不是原设想的720 Ma,而是510~440 Ma之后。  相似文献   

20.
The tectonic attributes of different blocks within orogenic belts are of great significance for the study of accretionary processes and the evolution of Earth. The Hongliuhe-Niujianzi-Baiyunshan-Xichangjing ophiolitic mélange belt(HXOMB) is distributed in the heart of the Beishan Orogen, the Shuangyingshan and Minshui-Hanshan blocks being distributed in the south and north of the HXOMB respectively, and a large number of Early Paleozoic geological units are exposed on the blocks. According to the zircon age populations of the metasandstones in the Baiyunshan area recovered in this paper, when compared with the zircon age populations of the Paleozoic metasandstones reported in the Niujuanzi and Hanshan areas, we found that the metasandstones of the Shuangyingshan Block have age peaks at c. 598 Ma, 742 Ma, 828 Ma, 941 Ma, 990 Ma, 1168 Ma, 1636 Ma, 2497 Ma with non-significant age populations of 1500–1300 Ma, showing a possible affinity with the Tarim Craton; the metasandstones of the Minshui-Hanshan Block have age peaks at c. 606 Ma, 758 Ma, 914 Ma, 1102 Ma, 1194 Ma, 1304 Ma, 1672 Ma with significant age populations of 1500-1300 Ma, showing a possible affinity with the Chinese Central Tianshan Block. Therefore, the HXOMB of the Beishan Orogen is of great significance in plate segmentation, which separates the Tarim Craton in the south and the Chinese Central Tianshan Block in the north. Based on the evolutionary process of the Hongliuhe-Xichangjing ocean in the Beishan Orogen, we believe that break-up and convergence can be recognized as having occurred twice between the Chinese Central Tianshan Block and the Tarim Craton since the Mesoproterozoic in the Beishan area. This was related firstly to the break-up of the Columbia Supercontinent and the convergence of the Rodinia Supercontinent, mainly during the Middle Mesoproterozoic to Early Neoproterozoic, and secondly to the opening and closing of the Hongliuhe-Xichangjing ocean, mainly during the Early Paleozoic.  相似文献   

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