首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到19条相似文献,搜索用时 125 毫秒
1.
本文首次报道和描述了来自罗平生物群中的双壳类化石,包括6个属,属于Costatoria goldfussi mansuyi组合带,为台间盆地相生物组合,时代为中三叠世安尼期。二叠纪末生物大灭绝之后双壳类的演化分为残存期-复苏期-辐射期,本文所描述的双壳类化石处于复苏与辐射的关键时期,其报道为研究双壳类演化提供了新材料。  相似文献   

2.
下中三叠统界线的划分一直是国际地层学研究中一个有争议的问题。中国西南地区从台地相到盆地相不同类型下中三叠统地层均较发育,为奥仑尼克阶一安尼阶界线层型的研究提供了有利条件。根据贵州望谟甘河桥剖面和贵州省贵阳市青岩剖面牙形石的研究,可识别出6个可与国内外进行对比的牙形石带,自下而上分别为:①Neospathdus cristagcdli间隔带,②Neospathodus pakistanensis间隔带,③Neospathodus waageni?BC涓舸躈eospathodus homeri-N. triangularis组合带,⑤Chiosella timorensis间隔带,⑥Neogongdolella regale延限带。在贵阳青岩剖面和望谟甘河桥剖面,早中三叠世存在一个Neospathodus-Chiosella-Neogongdolella的牙形石演化系列。在这个演化序列中,在Neospathodus horneri-N. triangularis带上部出现Neospathodus homeri和Chiosella timorensis之间的过渡类型Neospathodus qingyanensis,表明在下中三叠统附近牙形石存在较好的演化关系。在贵阳青岩剖面,下一中三叠统界线位于紫云组顶面之下1.5m处Chiosella timorensis带首现的位置,在望谟甘河桥剖面,下一中三叠统界线位于紫云组顶面之下0.5m处Chiosella timorensis带首现的位置。依据上述情况,本文建议贵阳青岩剖面作为下一中三叠统界线层型候选剖面,望谟甘河桥剖面作为下一中三叠统界线层型的辅助剖面加以深入研究。  相似文献   

3.
中国西南地区中三叠世雷口坡组或关岭组下部及底部普遍发育多层凝灰岩。已有研究显示,早三叠世—中三叠世出现了生态环境间歇性恶化和生物迟滞复苏,划分中国中三叠统安尼阶-拉丁阶界线的标志化石还未寻找到,这些问题是否与火山活动有关,值得进一步研究。文章对四川沐川地区河口剖面中三叠统雷口坡组下部的凝灰岩进行了锆石LA-ICP-MS U-Pb定年和岩石地球化学研究,获得中三叠统安尼阶-拉丁阶界线年龄为(242.5±1.2) Ma(MSWD=0.93,n=22),此年龄结果与国际地层年代表(2020版)建议的安尼阶-拉丁阶界线年龄(242 Ma)较为吻合,证实沐川地区雷口坡组沉积时代为中三叠世安尼期和拉丁期。凝灰岩岩石地球化学特征显示出明显富K2O、MgO,明显负铕异常的特征,其物源可能来自古特提斯洋俯冲作用形成的大陆岩浆弧。多期次的火山活动可能是导致早三叠世—中三叠世生态环境间歇性恶化和生物迟滞复苏的重要原因,安尼期-拉丁期交替时期发生的火山活动可能影响了生物的演化,故难以寻找到划分中国中三叠统安尼阶-拉丁阶界线的标志化石,加强对中三叠世火山活动的研究,对中国三叠系划分方案、中三叠世地层划分对比及探索三叠纪生物演化与复苏具有重要意义。  相似文献   

4.
华南板块西南缘中三叠统底部普遍发育凝灰岩夹层,但对火山灰的来源存在不同认识。位于华南板块西南缘的右江盆地在早—中三叠世为连续海相沉积,较为完整的火山沉积记录为探讨火山灰的来源提供了基础。本文以右江盆地者堡敢南一带早、中三叠世之交凝灰岩为研究对象,在剖面测制基础上,对含凝灰岩层段灰岩进行生物地层分析,划分为4个牙形石带,分别为Neospathodus pakistanensis间隔带;Neospathodus waageni—N.abruptus组合带;Neospathodus homeri—N.triangularis组合带以及Chiosella timorensis间隔带,由此确定第17层凝灰岩为中三叠统底界凝灰岩。凝灰岩岩石学、地球化学分析结果显示为流纹质玻屑凝灰岩,属于亚碱性系列。稀土配分曲线显示为右倾轻稀土富集,明显的负Eu异常。大离子亲石元素(LILE)(Rb、U、Th和Ba等)富集和高场强元素(HFSE)(Nb、Ta、P和Ti等)亏损,整体表现出与弧相关的地球化学特征。在生物地层、同位素年代学对凝灰岩形成时代进行精确限定的基础上,通过华南板块西南缘中三叠统底界凝灰岩的区域分布、矿物组成、地球化学特征,结合右江盆地中—下三叠统火山岩层序特征进行详细对比分析,结果显示广西凭祥—十万大山一带火山岩是其主要来源。  相似文献   

5.
中-晚三叠世是现代型生态系统构建的关键时期,系统研究该时期生物与环境的协同演变过程对揭示生物复苏机制和生态系统重建规律具有重要意义.琥珀是探讨中-晚三叠世植物演化和古气候演变的重要载体.对青岩剖面雷打坡段的琥珀和伴生的植物化石开展研究,并将全球的中-晚三叠世琥珀的分布与湿润事件进行对比分析.结果发现青岩琥珀是由松柏类植物伏脂杉生产,琥珀的出现与松柏类植物的辐射演化有关.菊石生物地层表明含有琥珀的地层属于中三叠世安尼期Pelsonian亚期.认为琥珀的产出与湿润事件具有对应性,说明湿润事件可能是中-晚三叠世琥珀频繁出现的重要原因.  相似文献   

6.
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   

7.
对野外露头、钻井剖面进行了层序界面识别和层序地层分析,重新厘定了研究区二叠系—中三叠统不同相区的地层划分对比方案,将研究区二叠系—中三叠统划分出2个超层序和19个三级层序;以超层序体系域为编图单元,编制了研究区二叠纪—中三叠世层序岩相古地理图,系统揭示了研究区二叠纪—中三叠世各超层序的不同体系域的相带发育规律;分析了研究区二叠纪—中三叠世3个盆地演化阶段(被动陆缘裂谷盆地阶段、弧后裂谷盆地阶段、前陆盆地阶段)的盆地充填特征,并建立了相对海平面升降过程中的沉积充填过程及动态演化模式,提出了研究区被动陆缘裂谷盆地阶段和弧后裂谷盆地阶段的低位期为盆-隆相间期,海侵期为台-盆相间的建设期,高位期为台-盆相间格局定型期,中三叠世的受印支运动破坏了台-盆相间格局,转化为前陆盆地的浊积岩沉积。  相似文献   

8.
罗平生物群是我国著名的三叠纪海相生物群,时代为中三叠世安尼期Pelsonian亚期,主要分布在云南罗平县城周围大洼子、九光村等地.在泸西地区中三叠统关岭组二段发现了海生爬行类、鱼类、节肢动物、棘皮动物、软体动物、腕足动物、植物等罗平生物群化石类型,初步研究显示泸西地区罗平生物群化石构成面貌与罗平基本一致,但新发现的盾鳞化石是罗平生物群层位软骨鱼类的首次报道.在泸西白水塘中三叠统关岭组二段剖面中识别出了Nicoraella germanicus、Nicoraella cf.kockeli和Neogondolella? bifurcata等牙形石类型,构成面貌特征表明其归属于中三叠世安尼期Pelsonian亚期,与罗平地区地层时代相当.泸西地区罗平生物群化石的发现扩大了罗平生物群的分布范围,其中新发现的盾鳞化石为研究华南中三叠世软骨鱼类提供了新材料.   相似文献   

9.
安徽巢湖地区下三叠统牙形石生物地层分带及其全球对比   总被引:7,自引:2,他引:5  
安徽巢湖地区早三叠世处于下扬子碳酸盐岩缓坡较深水区域,地层序列完整、清晰,各类化石是区域乃至全球最为丰富、序列最为完整的,是研究国际早三叠世年代地层最经典地区之一.对安徽巢湖平顶山西坡剖面、平顶山北坡剖面、马家山南剖面系统采样和精细的牙形石生物地层研究结果表明,下三叠统至少可以划分为8个牙形石带,建立了在华南具有代表性的下三叠统牙形石生物地层序列,自下而上为(1)Hindeodus typicalis带;(2)Neogondolella krystyni-Neogondolella planata带;(3)Neospathodus kummeli带;(4)Neospathodus dieneri带;(5)Neospathodus iaageni带;(6)Neospathodus pingdingshanensis带;(7)Neospathodus homeri带;(8)Neospathodus anhuinensis带.并与世界其他地区同期地层进行精确对比,为建立下三叠统印度阶与奥伦尼克阶界线的全球层型(GSSP)提供可靠依据.  相似文献   

10.
中国贵州、云南地区发现的盘县动物群和罗平动物群中保存了数量丰富、完整精美且具有较高分异度的海生脊椎动物化石并伴生多门类无脊椎动物化石,是二叠纪末期生物大灭绝后,生物圈复苏和生态系统重建过程中进入快速和全面辐射时期的标志。对这两个动物群的时代、地理、地层与生物组成等方面进行了详细对比后发现,盘县动物群与罗平动物群均产自中三叠统关岭组上段,且同处于牙形石Nicoraella kockeli带,时代均为中三叠世安尼期Pelsonian亚期早期,但同名带内牙形石面貌、地层分布特征及形态演化等存在差异。盘县动物群与罗平动物群中的海生爬行类的多样性组成在科级别的分类单位上比较相似,但在属级别的分异度上略有差异,盘县动物群的组成分子比罗平动物群更加原始,且具有一些后者没有的较原始的形态类型。罗平动物群中的鱼类和节肢类的丰度和分异度均显著高于盘县动物群,从这点来看,罗平动物群的环境中有机质更加丰富,生态系统更加完善,反映其陆源补给更加充足,与盘县动物群相比可能离岸更近。  相似文献   

11.
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   

12.
胡艳霞  徐东来  童金南 《地层学杂志》2006,30(2):T0001-T0002
贵州紫云四大寨剖面下三叠统发育较齐全,化石较丰富。在此剖面上发现了大量牙形石、双壳类、菊石等生物化石,其中牙形石在该剖面上为首次发现,并识别出了早三叠世Neospathodusdieneri带、Neospathoduscrista-galli带、Neospathoduswaageni带和Neospathodushomeri-Neospathodustriangularis带的重要牙形石分子或带化石,可与国际同期地层中相应的牙形石化石带进行较好的对比;同时还发现了Claraiagriesbachi-C.concentrica组合和Claraiastachei-Claraiaaurita组合带的双壳类代表性分子。通过对这些化石综合分析,大致拟定了本剖面下三叠统格里斯巴赫亚阶(Griesbachian)、亭纳尔亚阶(Dienerian)、斯密斯亚阶(Smithian)和斯派斯亚阶(Spathian)的年代地层单位界线。  相似文献   

13.
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   

14.
安徽巢湖平顶山下三叠统牙形石生物地层序列   总被引:6,自引:2,他引:4  
简要介绍安徽巢湖平顶山下三叠统牙形石生物地层研究的最新成果.对平顶山西坡剖面112.8 m厚的下三叠统地层所采集的286件牙形石样品, 经处理后获得2 870余枚牙形石样本, 经鉴定共有11属51种.这些属分别是Hindeodus, Isarcicella(?), Neogondolella, Neospathodus, Platyvillosus, Cratognathodus, Parachirognathus, Pachycladina, Ellisonia, Aduncodina和Cornudina.牙形石生物地层从老到新可划分为9个牙形石带: (1)Hindeodus typicalis- Neogondolella planata带; (2)Neogondolella krystyni带; (3)Neospathodus kummeli带; (4)Neospathodus dieneri带; (5)Neospathodus n. sp. C- Neospathodus n.sp. D带; (6) Neospathodus waageni带; (7)Neospathodus n.sp. M带; (8)Neospathodus eotriangularis带; (9) Neospathodus abruptus- Neospathodus homeri带.牙形石的组合面貌基本可与国内外其他地区牙形石带相对比.但其中牙形石(2), (3), (5), (7), (8)带为巢湖地区首次建立.在下三叠统菊石带控制下所建立的连续的牙形石分带对全球的三叠系阶的对比具有十分重要的意义. 关键词: 牙形石; 牙形石生物地层; 下三叠统; 安徽巢湖.   相似文献   

15.
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   

16.
The Early Triassic Induan–Olenekian Stage boundary (Dienerian–Smithian sub-stage boundary) has been identified at a depth of 2719.25 m in the petroleum exploration well Senecio-1 located in the northern Perth Basin, Western Australia. Conodont faunas represent three conodont zones in ascending order, the Neospathodus dieneri Zone, the Neospathodus waageni eowaageni Zone and the Neospathodus waageni waageni Zone. The Induan–Olenekian (Dienerian–Smithian) boundary is placed at the base of the Neospathodus waageni eowaageni Zone equivalent to the first appearance of Neospathodus ex. gr. waageni utilised elsewhere and adopted by the IUGS ICS Triassic Subcommission to define the base of the Olenekian. Bulk kerogen δ13C carbon isotopes define a positive peak of c. 4 per mille that essentially coincides with the Induan–Olenekian boundary as seen in proposed Global Stratotype Sections and Points (GSSPs) in South China and Spiti, India demonstrating the global utility of this level for correlation. An anoxic zone is recognised in the lower part of the Senecio-1 core and the upper limit of this zone is dated as late Induan (late Dienerian). Temporal and spatial mapping of marine anoxia and dysoxia globally demonstrates that pulses of dysoxia/anoxia affected shallow-marine zones at different times in different locations. Dysoxia/anoxia in the shallow-marine environment appeared in the latest Permian at the extinction level, later than in the deep-marine environment, and appears to be largely restricted to the Induan (Griesbachian and Dienerian) and early Olenekian (Smithian). Temporally and geographically restricted upwelling of an oxygen minimum zone into the ocean surface layer due to environmental perturbations including extreme global warming, increased terrestrial chemical weathering intensity and continental erosion, sea level rise, and changes in marine nutrient inventories and productivity rates, is interpreted as a likely cause of observed variation in shallow-marine dysoxia/anoxia in the Early Triassic.  相似文献   

17.
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 ca...  相似文献   

18.
Since the West Pingdingshan Section in Chaohu was proposed as the candidate of the Global Stratotype Section and Point of the Induan-Olenekian boundary in 2003, the Lower Triassic of Chaohu has been extensively studied. Based on the studies on the Lower Triassic of Chaohu, (1) a continuous conodont zonation is established, which has become an important reference for Lower Triassic stratigraphic correlation over the world; (2) the First Appearance Datum of conodont Neospathodus waageni was suggested and has been basically accepted as the primary marker to define the Induan-Olenekian boundary; (3) a characteristic Lower Triassic excursion of carbon isotopes was brought to light and has been proven to be not only an excellent index for the stratigraphic correlation but also a unique indication for the perturbation of ecological environments in the aftermath of the end-Permian mass extinction; (4) a magnetostratigraphic sequence is constituted with a certain biostratigraphic control in the low-latitude region and it presents an important correlation to the Boreal sequence; (5) a cyclostratigraphic study provides an alternative method to constrain the age of the chronostratigraphic units; and (6) a scheme of the Olenekian subdivision is recently suggested to define the boundary between the Smithian and Spathian Substages. In addition, Chaohu is also the type locality of the Chaohuan Stage, the upper stage of the Lower Triassic in the China Chronostratigraphic System. Thus, the Lower Triassic of Chaohu is not only a classic sequence in South China, but also a key reference sequence to the investigation of the corresponding stratigraphy and geological events over the world. The recent achievements are viewed here for an overall understanding of the sequence. Then the current situation of the Induan-Olenekian and Smithian-Spathian boundaries is discussed to provide a reference for later works.  相似文献   

19.
Based on the systematic study of two fossil skeleton specimens collected from the top of the third member of the marine Lower Triassic Jialingjiang Formation of Yuanan, Hubei Province, South China, a new Early Triassic primitive ichthyosaur Chaohusaurus zhangjiawanensis sp. nov. is reported and described. The beds yielding the type material are correlated with the Neospathodus homeri-N. triangularis Conodont zone. The new taxon is most similar to Chaohusaurus geishanensis Young and Dong, 1972 in the shape and configuration of the scapula, forefin, pelvic girdle and hindfin, presacral vertebral count and well-developed caudal peak, but distinguished from the latter by its larger size, the position of the pineal foramen in the centre of the parietal, the occurrence of a larger calcaneum in hindfin and the first sacral rib with distal expansion. The new species exhibits common features of primitive ichthyosaurs such as: (1) the prefrontal has an antero-dorsal shelf projecting towards the orbit; (2) the upper temporal fenestra is small; (3) the postorbital and the squamosal meet laterally to the upper temporal fenestra; and (4) cylindrical centra. However, more derived ichthyosaur characters are seen with the frontal separated from the orbital dorsal margin by the contact of the prefrontal and postfrontal, which offer new clues to the early radiation of ichthyosaurs.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号