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1.
前人认为皖南地区新元古代冰期地层存在两套冰碛岩。通过对皖南蓝田新元古界剖面和皖南地区的另外3条新元古界剖面的重新观察,发现该剖面只存在一套冰碛层和一套盖帽白云岩,均未发现间冰期地层。植被覆盖和地层错断是造成前人认为本地区新元古代冰期地层存在两套冰碛层和两套盖帽白云岩的主要原因。这一套冰碛层与中国南方扬子区南华系南沱组相当。  相似文献   

2.
塔里木盆地库鲁克塔格地区新元古代冰碛岩剖面是目前世界各大陆中唯一发育有4套新元古代冰碛岩和多期火成岩事件的剖面。近年来,“雪球事件”的提出为全球新元古代冰碛岩的研究注入了新的活力,各国地质学家根据新元古代冰碛岩在全球各大洲发育的特点、同位素年龄和C/O、Sr同位素在新元古界划分出4个冰期。因此,新疆库鲁克塔格地区新元古界发育的4套冰碛岩的沉积特征、沉积环境和年代地层学研究的进展始终为各国地质学家所注目。本次获得的库鲁克塔格地区特瑞爱肯组的锆石SHRIMP U-Pb新年龄,为完善库鲁克塔格地区新元古代冰碛岩的年代地层学提供了新的证据。  相似文献   

3.
塔里木盆地库鲁克塔格地区新元古代冰碛岩剖面是目前世界各大陆中唯一发育有4套新元古代冰碛岩和多期火成岩事件的剖面。近年来。“雪球事件”的提出为全球新元古代冰碛岩的研究注入了新的活力,各国地质学家根据新元古代冰碛岩在全球各大洲发育的特点、同位素年龄扣C/O、Sr同位素在新元古界划分出4个冰期。因此,新疆库鲁克塔格地区新元古界发育的4套冰碛岩的沉积特征、沉积环境和年代地层学研究的进展始终为各国地质学家所注目。本次获得的库鲁克塔格地区特瑞爱肯组的锆石SHKIMPU-Pb新年龄.为完善库鲁克塔格地区新元古代冰碛岩的年代地层学提供了新的证据。  相似文献   

4.
塔里木盆地库鲁克塔格地区新元古代冰碛岩剖面是目前世界各大陆中唯一发育有4套新元古代冰碛岩和多期火成岩事件的剖面.近年来,"雪球事件"的提出为全球新元古代冰碛岩的研究注入了新的活力,各国地质学家根据新元古代冰碛岩在全球各大洲发育的特点、同位素年龄和C/O、Sr同位素在新元古界划分出4个冰期.因此,新疆库鲁克塔格地区新元古界发育的4套冰碛岩的沉积特征、沉积环境和年代地层学研究的进展始终为各国地质学家所注目.本次获得的库鲁克塔格地区特瑞爱肯组的锆石SHRIMP U-Pb新年龄,为完善库鲁克塔格地区新元古代冰碛岩的年代地层学提供了新的证据.  相似文献   

5.
新元古代冰期事件记录了“雪球地球”事件重要的地质信息。塔里木盆地周缘新元古代冰碛岩地层露头发育,是研究新元古代冰期事件的理想基地。由于发育多套新元古代火山岩,盆地东北缘库鲁克塔格地区新元古代冰碛岩地层时代已获得较多年代学数据约束;但盆地周缘其他地区新元古代冰碛岩地层公开报道年代学数据较少,不能准确限定其沉积时代,导致冰期事件对比存在争论。为此,本文选择塔里木盆地研究程度较低的西南缘叶城地区新元古代冰碛岩地层,开展岩石学、同位素年代学、岩石地球化学等研究,明确其冰期沉积特征,约束其沉积时代,开展冰期事件对比,讨论古气候风化条件等。南华系波龙组和雨塘组冰碛岩地层具有较低的化学蚀变指数(CIA),分别代表新元古代2次寒冷的冰川气候记录。冰川沉积及其相邻层位的碎屑锆石U-Pb年代学数据显示,波龙冰期的起始年龄晚于(710±13) Ma,与全球Sturtian冰期对应;雨塘冰期的起始年龄不会早于(656±18) Ma,其结束年龄可被南华系顶界年龄635 Ma或上覆震旦系库尔卡克组碎屑锆石年龄(634±9) Ma限定,与全球Marinoan冰期对应。  相似文献   

6.
新元古代冰碛岩地层记录了“雪球地球”极端气候事件重要的地质信息。塔里木地块东北缘库鲁克塔格地区、西北缘阿克苏地区和西南缘叶城地区新元古代冰碛岩地层露头发育,是研究新元古代冰期事件的理想基地。文章基于塔里木地块周缘新元古界详实的野外地质调查工作,综合了地层学、同位素年代学、岩石地球化学等研究,聚焦冰碛岩地层沉积时代这一核心问题,建立新元古代冰期格架。冰期事件对比显示,贝义西冰期(库鲁克塔格地区)相当于Kaigas冰期(国际),阿勒通沟冰期(库鲁克塔格地区)、巧恩布拉克冰期(阿克苏地区)、波龙冰期(叶城地区)相当于Sturtian冰期(国际),特瑞爱肯冰期(库鲁克塔格地区)、尤尔美那克冰期(阿克苏地区)、雨塘冰期(叶城地区)相当于Marinoan冰期(国际),汉格尔乔克冰期(库鲁克塔格地区)相当于Gaskiers冰期(国际)。同时基于冰期事件对比关系,建议根据国际地层委员会的最新划分方案将塔里木地块南华系底界调整为与全球性Sturtian冰期沉积底界相当的层位。通过探讨新元古代冰期事件与古老烃源岩发育的耦合关系,分析了新元古界优质烃源岩的发育潜力,指出塔里木地块新元古界具备良好的油气成藏地...  相似文献   

7.
中国东南部新元古代冰碛岩地层分布于扬子板块的皖南、浙北、浙西和赣东地区,其中皖南休宁、歙县、浙北富阳、浙西建德及开化等地保存有两套冰碛岩和含锰碳酸盐岩地层,自下而上四分,而非以往认为的三分,分别记录了冰期-解冻期-冰期-解冻期四个阶段的沉积,这两个冰期分别为古城冰期和南沱冰期,相当于国外的司图特冰期(Sturtian glaciation)和马林诺冰期(Marinoan glaciation)。浙西江山和赣东广丰等地则只保存了一套冰碛岩和含锰碳酸盐岩地层,记录了冰期-解冻期两个阶段的沉积,地质年代为南沱冰期。由上可见,南沱冰期比古城冰期规模更大,冰碛沉积的范围更广泛,对铁、锰、硅及磷的富集成矿有更加重要的意义。  相似文献   

8.
柴达木盆地东北缘大煤沟剖面发现新元古代冰川沉积,该套冰川沉积物保存了擦痕、镜面以及混杂堆积等冰川作用痕迹。这种冰川融出碛是冰川融化之后冰川内陆源碎屑物质垂向卸载的产物。通过对前述沉积特征的描述及对各类沉积构造形成机理的解释,建立了"冰川-冰河"沉积模式。这套冰川沉积的发现证实柴达木盆地东北缘地区经历过新元古代早期冰川事件。该冰碛岩所指示的冰川事件发生在800~740 Ma左右,不会晚于730 Ma,年代上应该与Kaigas冰期对应。保存这套冰碛岩的地层也并非早侏罗世沉积,而是晋宁运动后新元古代早期拉伸纪地层。  相似文献   

9.
中国塔里木板块南华纪成冰事件及其地层对比   总被引:4,自引:0,他引:4  
"雪球地球"假说为全球新元古代冰碛岩研究注入了新的活力。各国地质学家根据新元古代冰碛岩全球各大洲发育的特点,并依据同位素年龄、δ13C/δ18O和Sr的比值和化学蚀变指数(CIA)为全球的新元古界划分出4个冰期,但国际上的4个冰期的限定,是各大洲不同剖面冰期的集合。新元古代冰期事件周期变化视为早期生物复苏和早期动物分异的起点。由于国际埃迪卡拉系底界(GSSP)年龄,即成冰系顶界年龄确定后,使成冰系底界年龄成为当前研究的重点。中国新疆塔里木板块库鲁克塔格地区新元古代冰碛岩是目前世界各大陆中发育有4套连续的新元古代冰碛岩和多期火成岩事件的唯一剖面,它的进一步深入研究,可以备考全球冰期的同步性,以期建立全球新元古代冰碛岩标准剖面。本文报道了来自塔里木西南缘南华系波龙组的碎屑锆石年龄,有助于我们对塔里木板块西南缘南华系时代的限定。  相似文献   

10.
完善中国晚前寒武纪地层的标准剖面,使其成为国际地层对比的参考标准,是中国地质学家的追 求。华北蓟县剖面和扬子块体三峡剖面一直被视为中国的标准剖面,多学科的研究、特别是生物地层和雪球事 件地层学的研究取得了突破性进展。笔者试图通过化学地层学研究手段,对华北块体南缘豫西地区中-新元古 代地层中碳酸盐岩进行氧碳同位素地球化学研究,试图建立新的扬子块体与华北块体震旦纪地层对比桥梁。同 时,对华北南缘新元古代碳酸盐岩地层的形成环境进行了分析,解释了华北新元古代冰碛岩的时空关系。  相似文献   

11.
塔里木地块新元古代冰期事件等时性对比存在争议,获得可靠的新元古代冰碛岩沉积时代意义重大.塔里木地块西北缘阿克苏地区出露2套新元古代冰碛岩沉积,通过对其进行岩石学、同位素年代学、岩石地球化学等分析,明确其沉积物岩石组合特征、限定其沉积时代、讨论其古气候风化条件等.化学蚀变指数(CIA)指示研究区的2套新元古代冰碛岩代表了...  相似文献   

12.
胡蓉  李双庆  王伟  陈福坤 《地球科学》2016,41(10):1630-1654
扬子陆块新元古代地层发育完整并广泛分布,三峡地区南沱组冰碛岩是扬子北部南华纪的冰成杂砾岩,不整合地覆盖在新元古代黄陵花岗岩之上.南沱组冰碛岩成分复杂,分选性差,缺乏可对比的标志,其沉积时代和物源组成研究较少且存在争议.对南沱组冰碛岩开展锆石U-Pb定年工作,得到最年轻的锆石年龄为706±7 Ma,印证了南沱组沉积时代应不早于700 Ma的说法,并可与Marinoan冰期对应.所获得锆石U-Pb年龄谱峰值主要分为~3.0 Ga,2.5~2.3 Ga,2.05~1.95 Ga和900~700 Ma,反映了扬子陆块4次地壳再造事件,其中古元古代和太古代年龄与崆岭杂岩相似,900~800 Ma和800~700 Ma的锆石年龄与附近黄陵花岗岩和扬子北缘岩体一致.冰碛砂岩的微量元素和同位素组成分异明显,可能是扬子北缘岩体、黄陵花岗岩和崆岭杂岩不同程度混合的结果.南沱组冰碛岩中包裹的花岗质砾石表现出不同的微量元素特征,具有偏低的稀土含量和亏损的重稀土组成,结合其锆石U-Pb年龄和Sr-Nd同位素特征,这些花岗质砾石主体可能来自于附近黄陵花岗岩和崆岭岩基.南沱组冰碛岩的物质组成特征反映了新元古时期,扬子地区强烈的裂谷岩浆作用所导致的北高南低的地势环境.   相似文献   

13.
A geological study of the hitherto poorly described Neoproterozoic Gifberg Group, with emphasis on lithogeochemistry and O, C and Sr isotopic composition of the carbonate-dominated Widouw Formation (Vredendal Outlier, westernmost South Africa) revealed that the entire group is an equivalent of the relatively well constrained Port Nolloth Group in the external, paraautochthonous part of the Pan-African Gariep Belt further north. Thus, the Vredendal Outlier can be regarded as the southern extension of the Port Nolloth Zone. Two diamictite units are recognised in the Vredendal Outlier, which can be correlated respectively with the c. 750 Ma Kaigas Formation diamictite and the 583 Ma, syn-Gaskiers Numees Formation diamictite in the Gariep Belt proper. The dominating carbonate unit in the studied area is post-glacial with respect to the older of the two diamictite units. The combined textural, structural and geochemical evidence suggests that parts of the variably dolomitised limestone succession represent former evaporite beds. Sedimentation in a restricted, very shallow and proximal basin led to a wide range in C isotope ratios (δ13CPDB from − 4.2 to + 4.8‰), very high Sr concentrations (derived from original anhydrite) and initial 87Sr/86Sr ratios that are significantly higher (0.70785) than those of coeval seawater. As C and Sr isotopes are commonly used for chemostratigraphic correlation, and high Sr concentrations in Neoproterozic carbonates are often interpreted as evidence of former aragonite, the findings of this study should be used as warning against uncritical use of geochemical and isotopic parameters for describing ancient seawater composition. Thus C and Sr isotope ratios alone in Neoproterozoic carbonates may be less powerful proxies of ancient seawater composition, and high Sr contents are not necessarily indicative of an “aragonite sea”, as previously inferred.  相似文献   

14.
《Sedimentary Geology》2006,183(1-2):99-124
The snowball Earth hypothesis suggests that the Neoproterozoic was characterized by several prolonged and severe global glaciations followed by very rapid climate change to ‘hot house’ conditions. The Neoproterozoic Port Askaig Formation of Scotland consists of a thick succession of diamictite, sandstone, conglomerate and mudstone. Sedimentological and stratigraphic analysis of Port Askaig deposits exposed on the Garvellach Islands was carried out to establish the nature of Neoproterozoic palaeoenvironmental change preserved in this thick succession. Particular emphasis was placed on identifying and distinguishing between climatic and tectonic controls on sedimentation.Port Askaig Formation diamictite units are attributed to deposition by sediment gravity flow processes or ‘rainout’ of fine-grained sediment and ice-rafted debris in a glacially influenced marine setting. Associated facies record various depositional processes ranging from sediment gravity flows (conglomerate, massive sandstone and laminated mudstone) to deposition under other unidirectional currents (cross-bedded and horizontally laminated sandstone). The Port Askaig Formation is also characterized by abundant soft sediment deformation features that occur at discrete intervals and are interpreted to record episodic seismic activity.Stratigraphic analysis of the Port Askaig Formation on the Garvellach Islands reveals three phases of deposition. Phase I was dominated by sediment gravity flow processes and sedimentation was primarily tectonically controlled. Phase II was a transitional phase characterized by continued tectonic-instability, an increased supply of sand to the basin and the preservation of current-generated facies. In the third and final phase of deposition, the interbedded units of sandstone and diamictite are interpreted to reflect development of large sandy bedforms and ice margin fluctuations in a tectonically stable marine setting.Sedimentological and stratigraphic analysis of the Port Askaig Formation demonstrates that tectonic activity had a significant influence on development of the lowermost parts of the succession. Climatic influences on sedimentation are difficult to identify during such phases of tectonic activity but are more easily discerned during episodes of tectonic quiescence (e.g.,, Phase III of the Port Askaig Formation). The thick succession of diamictite interbedded with current-deposited sandstone preserved within the Port Askaig Formation is not consistent with deep freeze conditions proposed by the snowball Earth hypothesis.  相似文献   

15.
地球在新元古代经历了Rodinia超大陆的聚合和解体,并发生了Sturtian和Marinoan两期全球规模的冰川事件。华南地区南华系古城组和南沱组冰碛岩分别对应Sturtian冰期和Marinoan冰期沉积记录,大塘坡组属于其间冰期沉积。对鄂西走马地区大塘坡组顶部泥岩中的碎屑锆石进行了LA-ICP-MS U-Pb定年,锆石具有高Th/U比值(0.47~1.69),并显示明显的振荡环带,为岩浆成因;62颗锆石的62个数据点分析,获得的60个谐和年龄分布在651~2435Ma,主要峰值为~794Ma。最年轻单颗锆石U-Pb年龄651±7.7Ma,结合前人研究认为华南地区Marinoan冰期启动时间应晚于651Ma;碎屑锆石为亲扬子型,可能来自鄂中古陆和扬子北缘;分布最集中的751~851Ma年龄段内~850Ma峰值记录了扬子地台与华夏褶皱带碰撞拼合事件,而~820Ma、~800Ma、~760Ma等峰值则揭示了与Rodinia超大陆解体有关的幕式岩浆活动。  相似文献   

16.
The Qingbaikouan System is the lowest unit of the Neoproterozoic Erathem in Chinese stratigraphic succession,and it now provides a precise geochronological framework and geological time scale for mapping and stratal correlation in China.However,a sensitive high-resolution ion microprobe (SHRIMP) U-Pb zircon age date (1368±12 Ma) obtained from a bentonite in the Qingbaikouan Xiamaling Formation indicates that it belongs to the Mesoproterozoic Erathem instead.This change is a milestone in understanding the Precambrian Stratigraphic Time Scale in China,and it has had great influence on Precambrian correlations in Asia.Otherwise,a large amount of geochronological work has been done in the "Jiangnan Orogen Belt" of South China,and new isotopic data have redefined the traditional recognition of metamorphosed Mesoproterozoic strata from the Sibao orogeny to the Neoproterozoic Erathem.Based on SHRIMP zircon U-Pb age data,the authors regard the Sibao orogeny (equal to the Wuling orogeny) as a movement at ca 820 Ma,meaning that the Sibao orogeny was not equivalent to the Grenvillian orogeny.Finally,we report here the first SHRIMP U-Pb age of the boundary between the top of the Qingbaikouan Gongdong Formation (786.8±5.6 Ma) and the bottom of the Chang'an (diamictite) Formation (778.4±5.2 Ma),which is the age of the lowest diamictite of the Nanhuan System in China.  相似文献   

17.
Discontinuous outcrops of diamictites and siltstones are found above post-Marinoan carbonates from the Araras Formation and represent the record of a second glaciation in the northern Paraguay belt, Brazil. This new stratigraphic unit, named the Serra Azul Formation, varies in thickness between 250 and 300 m; it lies on top of dolomites of the Araras Group and is overlain by sandstones of the Raizama Formation. Massive diamictite, approximately 70 m thick, composes the basal unit (Unit A), followed by 200 m thick laminated siltstones (Unit B), which contain sparse intercalations of very fine-grained sandstone lenses. This new diamictite level is probably related to the Gaskiers Glaciation, with an age of approximately 580 Ma, and represents the youngest Neoproterozoic glacial event recorded in South America.  相似文献   

18.
Two cap carbonates overlying glaciogenic diamictites crop out extensively in the eastern Vaza Barris Domain of the Sergipano Belt, northeastern Brazil. They are represented by carbonates of the Jacoca Formation, resting on top of diamictite of the Ribeiropolis Formation, and by the Olhos D’Agua Formation (carbonates, organic-rich towards the top), which overlies diamictite of the Palestina Formation. These two sequences were deformed and metamorphosed at sub-greenschist facies-conditions during the Brasiliano cycle (650–600 Ma).  相似文献   

19.
In Russia, the terminal Neoproterozoic formally includes the Vendian of western part of the East European platform and the concurrent Yudoma Group of Siberia. As is shown in this work, the designated subdivisions correspond in the stratotypes only to the upper, Yudomian Series of the Vendian. In the Siberian platform, the Ust-Yudoma and Aim horizons of the Yudomian are tightly interrelated. The lower of them, bearing remains of Ediacaran Fauna, represents the Ediacarian Stage, whereas the upper one containing small-shelled fossils (SSF) corresponds to the Nemakit-Daldynian Stage divided into the trisulcatus and antiqua superregional zones. In more complete sections of the platform periphery, sediments of these subdivisions conformably rest on siliciclastic succession that should be ranked as basal subdivision of the Yudomian. The succession is concurrent to the Laplandian Stage of the East European platform. According to geochronological dates obtained recently, the Yudomian Series spans interval of 600–540 Ma. In the East European platform, the Upper Vendian (Yudomian) begins with the Laplandian basal tillites of synonymous stage. In the west of the platform, tillites are dated at 600 Ma like the Upper Vendian base in Siberia. The next Ediacarian Stage of the East European platform is stratigraphic equivalent of the Redkino Horizon, while summary range of the Kotlin and Rovno horizons is concurrent to that of the Nemakit-Daldynian Stage. The Vendian of Russia is conformably overlain by the Tommotian Stage of the Lower Cambrian. Intense pre-Vendian events constrained distribution areas of the Lower Vendian sediments in Russia. The Lower Vendian deposits of the East European platform are most representative and well studied in the central Urals, where they are attributed to the Serebryanka Group. In Siberia, separate subdivisions representing the Lower Vendian are the Maastakh Formation of the Olenek Uplift, two lower members of the Ushakovka Formation in the Baikal region, and the Taseeva Group of the Yenisei Range. Chronological interval of the Lower Vendian corresponds to 650–600 Ma. The Marinoan Glaciation dated in Australia at 650–635 Ma is concurrent to basal part of the pre-Yudomian interval of the Vendian in Russia, whereas the Laplandian Tillite and Gaskiers Glaciation (600–580 Ma) correspond to onset of the Yudomian Epoch. The new Ediacaran System (Knoll et al., 2004) legalized in the International Neoproterozoic scale is close in range to the entire Vendian (635–544 Ma), although without basal beds (Marinoan Tillite) it deprives the terminal Neoproterozoic of its original sense. Inferiority of the system consists also in its indivisibility into stages. Hence, it is clear that the Vendian System subdivided in detail in Russia should be retained in the rank of terminal system of the Precambrian, one of the basic in general scale of the Neoproterozoic.  相似文献   

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