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1.
西藏冈底斯西段措勤地区三叠纪牙形石生物地层特征   总被引:2,自引:7,他引:2  
西藏措勤县江让乡敌布错北缘的碳酸盐岩地层原来认为是中二叠世"下拉组",然而,最新的牙形石生物地层学研究否定了这种认识。在这套碳酸盐岩地层中识别出了三叠纪的4个牙形石带(组合带),即:Neogondolella carinata带、Neospathodus triangularis-Ns.homeri组合带、Chiosella timorensis带、Paragondolella inclinata-Pg.polygnathiformis组合带。牙形石动物群的对比研究表明,新建的嘎仁错组的时代为早三叠世印度期至中三叠世拉丁期末期,珠龙组采样层段的时代为中三叠世拉丁期末期至晚三叠世卡尼期的早期。  相似文献   

2.
黔中、黔南下、中三叠统沉积相和层序地层   总被引:3,自引:2,他引:3  
杨瑞东 《沉积学报》1993,11(4):24-29
本文记述了对黔中、黔南地区早、中三叠世的碳酸盐岩和陆源的屑岩沉积的分析研究结果,着重讨论了该区沉积层序及其形成机制。早二叠世该区为缓坡,中三叠世演变为陡坡,沉积层序发生了变化。沉积盆地边缘沉积与海平面波动有密切关系,对斜坡上的层序地层及海平面波动作了初步研究。  相似文献   

3.
西藏东部早-中三叠世火山-沉积盆地地质特征   总被引:3,自引:0,他引:3  
:西藏东部存在四条NW-SE向大致平行分布的早-中三叠世地层条带,自东向西分别为普水桥组、瓦拉寺组条带,马拉松多组-加指拉组条带,夏牙村组条带和竹卡群条带.我们通过地层岩性及其自WN向ES均有火山岩减少和沉积岩增多趋势、区域构造特征、盆地延入云南西部中三叠世地层沉积具趋同性等特征,认为藏东四个条带的早-中三叠世地层,在沉积时为统一火山-沉积盆地.早-中三叠世期间,该火山-沉积盆地沉积作用自东向西不断推进,中三叠世盆地范围最大、海水最深,在江达-芒康-线出现半深水-深水复理石沉积.火山活动贯穿盆地发展全过程,其中WN部和WS部火山活动最强烈,火山活动主要为中酸性火山岩及火山碎屑岩,随着中三叠世强烈地火山喷发,于中三叠世拉丁中期结束盆地发展历史.盆地形成和演化过程中,海水从东部侵入.  相似文献   

4.
为进一步精确限定黔西南中三叠统坡段组的地质时代,论文选择贵州册亨中三叠统坡段组典型剖面开展了石珊瑚及牙形石生物地层研究,在中三叠统坡段组(中上部)识别出石珊瑚3属3种,它们包括Pentasmilia zaitingnaensis,Pinacophyllum spizzensis,Gillastraea delicate;识别出牙形石Neogondolella constricta带。该带除含有带分子外,还含有Neogondolella bulgarica,Neogondoela navicula,Neogondolella acuta,Neogondolella alpina alpina,Cratognathodus kochi,Ozarkodina tortilis,Prioniodinasp.,Lonchodinasp.等重要牙形石。通过对牙形石特征的分析和国内外同名带的对比,认为坡段组Neogondolella constricta带大体可与贵州省盘县地区羊圈-楚皮凹剖面中三叠统关岭组上段、贵州罗甸关刀(2)剖面关刀岩楔、和云南开远马者哨法郎组的同名化石带对比,进而确定贵州册亨地区坡段组含牙形石Neogondolella constricta带的地层时代为安尼期的Illyrian亚期。  相似文献   

5.
西藏西部阿里狮泉河地区的昂杰组、下拉组和左左组中发现牙形石化石。昂杰组的牙形石组合大致对比于中二叠世空谷期早中期Mesogondolella idahoensis-Vjalovognathus shindyensis组合带。下拉组顶部的牙形石组合大致对比于晚二叠世长兴期晚期Clarkina changxingensis带。左左组中含有早三叠世的Neospathodus sp.和Gladigondolella sp.,左左组和下拉组整合接触,左左组主体时代为三叠纪。狮泉河地区在早二叠世末期就开始由冈瓦纳相碎屑岩沉积转变为特提斯相碳酸盐岩沉积,在晚二叠世长兴期和早三叠世依然维持在海相沉积环境中。冈底斯西部在晚二叠世和三叠纪为古陆的观点有待于重新审视。  相似文献   

6.
四川隆康,塔藏含火山岩地层时代新证据   总被引:7,自引:1,他引:7  
在四川南坪县隆康和塔藏一带主要发育一些碳酸盐岩、砂岩、页岩及海相火山岩。1:20万漳腊幅区调报行将含火山岩地层的时代划归于早二叠世和中三叠世,通过在该区系统测制剖面,在原视为中一晚三叠世的含基性火山岩的地层中作者获得了以Palmatolepisgracilissigmoidalis,p.marginijera为代表的一些晚泥盆世法门期牙形石,因为该区少相火山岩与含晚泥盆世牙形石的碳酸盐岩呈互层关系  相似文献   

7.
拉萨地块晚二叠世-三叠纪地层的研究对认识青藏高原前新生代特提斯演化具有重要意义,但目前对该时期的沉积充填序列及古地理环境尚未形成统一认识.通过对西藏昂仁县孔隆地区开展的详细地层和牙形石相关研究,在木纠错组上部发现了晚三叠世诺利期Epigondolella sp.牙形石分子,在下拉组顶部发现了时代跨越晚二叠统长兴阶和早三叠统印度阶的牙形石Hindeodus typicalis;从而将研究区木纠错组时代重新厘定为晚二叠世长兴期至晚三叠世诺利期,指示拉萨地块西部三叠纪应仍为连续的浅海相沉积.   相似文献   

8.
贵州安龙坡脚剖面新苑组位于扬子地台和右江盆地交汇处,为中三叠世台缘斜坡相沉积,在该组中上部发现了牙形石动物群,除少量分枝分子外,都归属于Neogondolella属,建立了4个牙形石带,自下而上分别为:Neogondolella bulgarica、Neogondolella bifurcata、Negondolella constricta、Neogondolella constricta cornuta(未见顶界)带。时代为中三叠世安尼中晚期,其特殊的古地理位置,对系统研究与对比罗平生物群、盘县动物群的古生态环境,以及区域地层对比、地层格架建立,探讨该时期盆地演化提供了基础资料。  相似文献   

9.
苏南地区三叠纪地层格架   总被引:2,自引:0,他引:2  
徐雪球 《江苏地质》1999,23(3):141-147
根据关键界面识别,苏南地区三叠纪地层可划分为3个层序。时限分别为早三叠世印度期、早三叠世奥伦期—中三叠世安尼期、中三叠世拉丁期—晚三叠世卡尼期。岩相和地层结构分析表明,本区存在碳酸盐缓坡沉积、镶边碳酸盐台地沉积、碳酸盐潮坪—泻湖沉积、陆缘近海湖泊沉积、湖泊—沼泽沉积等5个沉积体系。经历了3次海平面升降  相似文献   

10.
根据康马地区三叠系吕村组和涅如组新发现的化石及区域地质背景 ,把该区的地层时代分别厘定为中三叠世中晚期至晚三叠世早期和晚三叠世中晚期 ,并认为缺失早三叠世至中三叠世早期的沉积。研究表明康马地区三叠系与二叠系之间为微角度不整合接触 ,是“藏南运动”和“印支伸展运动”共同影响形成的。晚二叠世末至中三叠世早期 ,康马地区露出海面 ,接受剥蚀并形成喀斯特化风化壳。中三叠世末至晚三叠世 ,这一地区发生强烈伸展—裂陷 ,地壳迅速沉降 ,形成被动大陆边缘裂谷盆地 ,发育巨厚的半深海—深海复理石沉积 ,并伴随大量基性岩浆贯入。涅如组下部有两期基性岩侵入 ,早期基性岩床形成于印支晚期 ,晚期穿层侵入形成于燕山早期。  相似文献   

11.
本文所研究的贵州紫云石头寨上二叠统长兴组—中三叠统新苑组牙形石,共计5属14种,其中Hindeodus julfensis在华南系首次发现。文中对下三叠统罗楼组上部—中三叠统新苑组下部共建立了3个牙形石带,它们是Neospathodus timorensis带、Neogondolella regale带和N.constricta带。其中N.regale在华南属首次报导。此外就N.timorensis带的时代归属作了讨论,认为该带应属早三叠世晚期。而N.regale带为安尼阶最下部的牙形石带。文中还对牙形石的生态作了初步探讨。  相似文献   

12.
贵州西南部“法郎组”牙形石及其时代   总被引:35,自引:3,他引:32  
杨守仁  刘疆 《地层学杂志》1995,19(3):161-170,198
根据近年牙形石研究,在“法郎组”中从下而上识别了3个牙形石带:1、Neogondolellapolygnathiformis-Neogondolellamaantangensis组合带;2、Neogondolellapolygnatiformis-N-eogondolellatadpole组合带;3、Neogondolellapolygnatiformis带。根据牙形石N.excelsa谱系演化、牙形石发展事件、牙形石分带及其与国内外的牙形石带对比,论证了“法郎组”的时代,“法郎组”可解体为瓦窑组和竹杆坡组,全属晚三叠世卡尼期,而不是拉丁期。  相似文献   

13.
丁连生 《地层学杂志》1993,17(2):130-134
<正> 江苏下、中三叠统分布于郯庐断裂东侧,响水—淮阴一线东南,主要出露于宁镇、茅山山脉、溧宜山区,苏锡地区亦有零星分布。在常州、江阴、苏州、句容、南通、启东、黄桥等地钻井中也揭示了三叠系地层。 从1924年以来,不少地层工作者对本区下、中三叠统地层提出不同的划分意见。本文主要以牙形刺为依据,参照头足类、瓣鳃类化石,结合岩性、电性特征综合分析研究,拟  相似文献   

14.
黄云飞  张昌民  朱锐  易雪斐  瞿建华  唐勇 《地球科学》2017,42(10):1736-1749
二叠纪-三叠纪之交重大地质转折期,海相地质记录指示全球发生了一系列显著的生物和环境事件, 但是,该时期陆相古气候、古风化作用等方面的研究还很薄弱,争议较大.为了恢复新疆准噶尔盆地玛湖凹陷上二叠统乌尔禾组至中三叠统克拉玛依组的古气候、物源特征等, 本研究对玛湖凹陷钻井岩心中的泥岩样品开展了全岩主量和微量元素测试,采用多种化学风化指数判定源区风化程度及古气候条件,通过多种地球化学比值及图解来恢复源岩岩性及其构造背景.化学蚀变指数(Chemical Index of Alteration, CIA)、化学风化指数(Chemical Index of Weathering, CIW)、Parker风化指数(Weathering Index of Parker, WIP)和斜长石蚀变指数(Plagioclase Index of Alteration, PIA)等多种化学风化作用指标均指示,玛湖凹陷自晚二叠世至早三叠世发生显著的风化作用变化,由低等程度的化学风化作用转变为中等程度的化学风化作用,某些季节可能会较为温暖湿润,且在整个早三叠世保持大致稳定,在早三叠世晚期稍减弱,这与锶同位素反映的全球风化作用变化趋势一致.中三叠世时的化学风化作用与早三叠世相比,并未降低,反而稍有增加,这可能代表了地区性事件.早三叠世化学风化作用显著增强的原因可能在于全球变暖、植被破坏及季节性降雨增加等.此外,上二叠统乌尔禾组至中三叠统克拉玛依组的物源岩性主要为长英质火成岩,源岩形成时的构造背景可能为大洋岛弧环境.   相似文献   

15.
The demarcation of the Lower–Middle Triassic boundary is a disputed problem in global stratigraphic research. Lower–Middle Triassic strata of different types, from platform to basin facies, are well developed in Southwest China. This is favorable for the study of the Olenekian–Anisian boundary and establishing a stratotype for the Qingyan Stage. Based on research at the Ganheqiao section in Wangmo county and the Qingyan section in Guiyang city, Guizhou province, six conodont zones have been recognized, which can be correlated with those in other regions, in ascending order as follows: 1, Neospathodus cristagalli Interval-Zone; 2, Neospathodus pakistanensis Interval-Zone; 3, Neospathodus waageni Interval-Zone; 4, Neospathodus homeri-N. triangularis Assemblage-Zone; 5, Chiosella timorensis Interval-Zone; and 6, Neogongdolella regalis Range-Zone. An evolutionary series of the Early–Middle Triassic conodont genera Neospathodus-Chiosella-Neogongdolella discovered in the Ganheqiao and Qingyan sections has an intermediate type named Neospathodus qingyanensis that appears between Neospathodus homeri and Chiosella timorensis in the upper part of the Neospathodus homeri-N. triangularis Zone, showing an excellent evolutionary relationship of conodonts near the Lower–Middle Triassic boundary. The Lower–Middle Triassic boundary is located at 1.5 m below the top of the Ziyun Formation, where Chiosella timorensis Zone first appears in the Qingyan section, whereas this boundary is located 0.5 m below the top of the Ziyun Formation, where Chiosella timorensis Zone first appears in the Ganheqiao section. There exists one nearly 6-m thick vitric tuff bed at the bottom of the Xinyuan Formation in the Ganheqiao section, which is usually regarded as a lithologic symbol of the Lower–Middle Triassic boundary in South China. Based on the analysis of high-precision and high-sensitivity Secondary Ion Mass Spectrum data, the zircon age of this tuff has a weighted mean 206Pb/238U age of 239.0±2.9Ma (2s), which is a directly measured zircon U-Pb age of the Lower–Middle Triassic boundary. The Ganheqiao section in Wangmo county can therefore provide an excellent section through the Lower–Middle Triassic because it is continuous, the evolution of the conodonts is distinctive and the regionally stable distributed vitric tuff near the Lower–Middle Triassic boundary can be regarded as a regional key isochronal layer. This section can be regarded not only as a standard section for the establishment of the Qingyan Stage in China, but also as a reference section for the GSSP of the Lower–Middle Triassic boundary.  相似文献   

16.
秦祁昆结合部早中三叠世构造古地理   总被引:5,自引:2,他引:5  
论述了秦祁昆结合带早中三叠世时不同地区的沉积环境、盆地格架、构造古地理等特征.根据岩石组合特征、沉积特征和古生物化石组合,分析研究了早中三叠世秦祁昆结合带地层的相变、超覆、穿时现象.论述了闹仓坚沟组的岩石组合特征、岩相、时代,并对其含义进行了修订,认为闹仓坚沟组的时代是早中三叠世,由灰岩和碎屑岩组成,灰岩从底部上穿到顶部与碎屑岩呈相变关系.并阐述了秦祁昆结合带的沉积、构造古地理特征。  相似文献   

17.
Upper Triassic and Middle Jurassic strata of the Xichang Basin in Sichuan Province, southwestern China, yielded important dinosaur ichnofossils. From the Xujiahe Formation of the Yiguojiao tracksite, we report a Late Triassic footprint assemblage in China and the first discovery of diagnostic Triassic sauropodomorph tracks in this region. The tracks share a number of features in common with the ichnogenera Eosauropus(Late Triassic) and Liujianpus(Early Jurassic). The neighboring Bingtu tracksite is stratigraphically younger(Shaximiao Formation, Middle Jurassic) and preserves small tridactyl theropod tracks that represent the first occurrence of the ichnotaxon Carmelopodus in China and Asia. While these tracks are morphologically comparable to those from the Middle Jurassic type locality in North America, the specimens from China show the proximal margin of the digit IV impression in a more cranial position, which may indicate a trackmaker with a relatively short metatarsal IV. In addition to the skeletal record, the Carmelopodus footprints document the presence of small theropods in the dinosaur fauna of the Middle Jurassic Shaximiao Formation.  相似文献   

18.
徐琳  胡林  肖进  李宁  伊海生  赵宇 《中国地质》2021,48(6):1781-1789
措勤盆地下二叠统昂杰组之上广泛发育碳酸盐岩沉积,前人先后对这套碳酸盐岩进行了解体,建立了多个地层单元。本次报道剖面为盆地中的二叠系-三叠系的连续整合沉积剖面,通过牙形石研究在这套碳酸盐岩中识别出了下二叠统-下三叠统的5个牙形石带,即:Mesogondolella siciliensis-Sweetognathodus subsymmetricus带、Mesogondolella idahoensis带、Jingondolella aserrata带、Clarkina meishanensis带、Neospathodus dieneri带,并将下拉组时代修订为下二叠统空谷期-中二叠统末。  相似文献   

19.
We present our new investigation into the depositional environment and provenance of the Yingshuiquan Formation in the central Qiangtang region of northern Tibet, in order to further our understanding of the environment of the Longmu Co–Shuanghu Palaeo–Tethys during the Early Triassic. The Yingshuiquan Formation is composed of oolitic limestone, calcareous sandstone, calcarenite, thin-bedded ribbon limestone, bioclastic limestone, and coarse oolite limestone that were deposited in a shallow-marine basin and contain abundant Lower Triassic conodont fossils (e.g. Hadrodontina anceps, Pachycladina sp., gen. et sp, Pachyclaina oblique, Hibbardelloides sp). We selected detrital zircons from four calcareous sandstone samples for U–Pb dating, yielding minimum age peaks of 263, 269, 275, and 280 Ma, respectively, and a minimum age of 249 Ma, based on several zircons around the same age. Analysis of the conodont biofacies and zircon LA-ICP-MS dating of calcareous sandstone indicates that the data is consistent with deposition in the Early Triassic. The Yingshuiquan Formation records Early Triassic shallow-water sediment in the Longmu Co–Shuanghu Palaeo–Tethys, and has a Southern Qiangtang and Northern Qiangtang terranes provenance. During the Early Triassic, the carbonate sediments of the Yingshuiquan Formation were deposited in an active environment around the Longmu Co–Shuanghu Palaeo–Tethys, which has became a residual sea basin.  相似文献   

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