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1.
西藏泥盆纪海相红层的分布与时代   总被引:1,自引:0,他引:1  
林宝玉  李明  武振杰 《地质学报》2019,93(10):2383-2402
在作者及前人对西藏地区泥盆纪地层学、古生物学等资料研究的基础上,作者对该区泥盆纪海相红层进行了初步的系统整理。共识别出6层(套)海相红层,它们是:早泥盆世扎西岗组海相红层(洛赫柯夫阶—布拉格阶)(XDRB1)和春节桥组上部海相红层(埃姆斯阶)(XDRB2),中泥盆世海通组海相红层(艾费尔阶)(XDRB3)和丁宗隆组底部海相红层(吉维阶)(XDRB4),晚泥盆世查果罗玛组(下部)海相红层(弗拉斯阶)(XDRB5)和羌格组顶部海相红层(法门阶)(XDRB6)。所有海相红层均形成于近岸或浅水碳酸盐岩台地环境,因此,属于浅水-半深水陆棚红层,此外,还讨论了中国南方泥盆纪海相红层的分布及全球法门期海相红层广布事件。  相似文献   

2.
Abstract: Two zosterophyll plants are described from the Lower Devonian (Lochkovian) Xitun Formation of Qujing, Yunnan, China. Xitunia spinitheca gen. et sp. nov. has stalked sporangia laterally attached on the axis in a helical arrangement. Sporangia are dorsoventrally flattened and composed of two unequal valves; the adaxial valve is round in face view, while the abaxial valve is larger than the former, triangular or wedge-shaped, and radially bears long spiny appendages along the distal margin. Xitunia shows new variation of sporangial morphology within the zosterophylls. Zosterophyllum minorstachyum sp. nov. has K-shaped branchings at the basal parts and small-sized terminal spikes, which consist of round to elliptical sporangia arranged helically. This paper provides new data on the diversity of plant types during Lochkovian when rare vascular plants were reported. As for various species of Zosterophyllum in South China, their apparent evolutionary trend of features from the Late Silurian to Early Devonian (Emsian) is discussed.  相似文献   

3.
论云南武定旧城组的地质时代   总被引:2,自引:4,他引:2  
通过地层层序与生物群分析,云南武定地区旧城组的时代相当于早泥盆世Emsian晚期。武定地区泥盆系连续沉积,旧城组之下为具“坡脚动物群”的坡脚组,与郁江组相当。旧城组应是四排阶的沉积,产有丰富的节甲鱼类化石,面貌与欧洲及澳大利亚同期的节甲鱼类相近。海口组应归入中泥盆世早期的Eifelian阶,大致相当于湖南的跳马涧组。  相似文献   

4.
Fossil plants Hedeia sinica Hao et Gensel 1998, Huia gracilis Wang et Hao 2001 and Guangnania cuneata Wang et Hao are described from the Lower Devonian Xujiachong Formation, the Qujing district, eastern Yunnan, China. They contribute to our knowledge of the flora in this district. Based on the occurrence of common plants (Hedeia, Huia, Guangnania and Zosterophyllum australianum) and their horizons, it is proved for the first time that the mid-lower assemblage of the Xujiachong flora is comparable with the Early Devonian ((late) Pragian) Posongchong flora of southeastern Yunnan and the upper Baragwanathia flora of Australia. In view of this fact and the stratigraphic sequence, the mid-lower part of the Xujiachong Formation is considered to be of (late) Pragian age. Through comprehensive analyses of plant, bivalve and fish assemblages and the lithology, the upper part of the Xujiachong Formation is dated to be of early Emsian age. The Xujiachong flora belonged to the northeastern Gondwana palaeophytogeogr  相似文献   

5.
蒙古古生代地层研究的新进展   总被引:1,自引:0,他引:1  
蒙古国古生代地层的研究以往主要侧重底栖大化石的研究,很多地层的时代划分、归属问题不能得到很好的解决,底栖化石的地方性很强,不能与国际直接对比。牙形刺是古生代地层的主导化石,很多古生代地层问题都可以用牙形刺解决并进行可靠的洲际间对比。2001年笔者在蒙古南戈壁采集了158个样品,经分析发现了大量牙形刺标本,解决了很多蒙古的重大地层问题。Arynshand组应当归入下石炭统,泥盆-石炭系界线在Arynshand组之下,而不是在此组的内部。Mushgai地区Bayan-KhoshuuRuins剖面的Mandalovoo组Gavuu段的上部应属早泥盆世早期,而不是以前所确定的早志留世,称为奥咯诺伍德组(OlonovootFormation);Gavuu段的下部仍归早志留世。Mandalovoo组应提升为Mandalovoo群;Gavuu段应提升为Gavuu组。南戈壁ShineJinst地区Tsakhir剖面Tsagaanbulag组的时代是早泥盆世洛霍考夫期,而不是中晚志留世,Ulaan-Shand剖面Tsagaanbulag组的时代也是早泥盆世洛霍考夫期。Chuluun组的时代为早泥盆世晚埃姆斯期。Tsagaankhaalga组的时代为早艾菲尔期。Indert组为早石炭世。蒙古古生代海相地层大部分是浅水相地层,并可能存在5个间断:志留系的文洛克统和罗德洛统的下部,下泥盆统布拉格阶的一部分,中泥盆统艾菲尔阶上部,泥盆石炭系界线地层。蒙古国南部和中部很可能缺失上二叠统的海相沉积。  相似文献   

6.
Twenty orthosequences and their corresponding sea-level change (SLC) cycles have been recognized in the Devonian overlying the Caledonian unconformity, of which 9, 5.5 and 5.5 occurred in the Lower, Middle and Upper Devonian respectively. They can be grouped into 4 orthosequence sets, in which the maximum flooding surfaces lie in the sulcutus Zone (D12), perbonus Zone (D13), Middle and Upper varcus Zone (D22) and gigas Zone (D21) respectively. Four instant palaeogeographical reconstructions of South China have been made in the Emsian and Givetian. Devonian sea-level change rhythms of South China can be divided into 3 categories: the autorhythmic, the worldwide and regional allorhythmic, and the coupling-rhythmic. They developed respectively in the Famennian, Pragian, Eifelian, Lochkovian, Emsian, Givetian, Frasnian and the F / F (between the Frasnian and Famennian) event. The cause of the worldwide allorhythmic SLC of the Pragian and Eifelian under comparatively dry, warm and tranquil conditions may be  相似文献   

7.
吉林省泥盆系层序的新划分   总被引:3,自引:0,他引:3  
<正> 吉林省泥盆系露头比较零星,地层资料也比较少。1966年李东津等在永吉县黄榆屯西王家街发现泥盆纪珊瑚,长春地质学院等命名为王家街组。分布在磐石县呼兰镇至黑石镇一带的变质岩系呼兰群经郭鸿俊的研究被划为志留—泥盆系,但至今仍有争议。笔者通过珊瑚化石的研究,肯定了原定为志留系的二道沟灰岩为早泥盆世早期地层,又在王家  相似文献   

8.
southChinaisoneofWellknownregionSwitheddeVelops~~inthe~es~intheGulzhouandG~provinCeSwherethe~manhashowellstudiedwithgreatachie~,whichhave~a~a~nfromthe~iSbothatdomticandabroad.SinCelabac~hasbornethe.hotPOint"forthemeearchofoutcrops~stratigraphyinClam,andconS~yyieldssomehigh--qualitypapeds(Muetal.,1992;XuandMa1992;Xuetal.,1993;DUetal.,1994;DUandYak1994;Gongatal.,1994;Wuetal.,1994;ChenandChen,1994a,b).Onthebasisofco~noftheDevonhasequenceinGultheuandG~,SouthernQinlingandho~han.thispape…  相似文献   

9.
The Hill End Trough of central‐western New South Wales was an elongate deep marine basin that existed in the Lachlan Fold Belt from the early Late Silurian to late Early Devonian. It is represented by a regionally extensive, unfossiliferous sequence of interbedded turbidites and hemipelagites of substantially silicic volcanic derivation, which passes laterally into contemporaneous shallow‐water sedimentary rocks. The Turondale and Merrions Formations of the Lower Devonian Crudine Group are two prominent volcanogenic formations in the predominantly sedimentary trough sequence. They contain a range of primary and resedimented volcanic facies suitable for U–Pb dating. These include widespread subaqueous silicic lavas and/or lava cryptodomes, and thick sequences of crystal‐rich volcaniclastic sandstone emplaced by a succession of mass‐flows that were generated by interaction between contemporaneous subaerial pyroclastic flows and the sea. Ion microprobe dating of the two volcanogenic formations by means of the commonly used SL 13 zircon standard yields ages ranging between 411.3 ± 5.1 and 404.8 ± 4.8 Ma. Normalising the data against a different zircon standard (QGNG) yields preferred slightly older mean ages that range between 413.4 ± 6.6 and 407.1 ± 6.9 Ma. These ages broadly approximate the Early Devonian age that has been historically associated with the Crudine Group. However, the biostratigraphically inferred late Lochkovian ‐ early Emsian (mid‐Early Devonian) age for the Merrions Formation is inconsistent with the current Australian Phanerozoic Timescale, which assigns an age of 410 Ma to the Silurian‐Devonian boundary, and ages of 404.5 Ma and 395.5 Ma to the base and top of the Pragian, respectively. There is, however, good agreement if the new ages are compared with the most recently published revision of the Devonian time‐scale. This suggests that the Early Devonian stage boundaries of the Australian Phanerozoic Timescale need to be revised downward. The new ages for the Merrions Formation could also provide a time point on this time‐scale for the Pragian to early Emsian, for which no data are presently available.  相似文献   

10.
笔者描述了广西南宁下泥盆统布拉格阶那高岭组下部盔甲鱼类的新发现,建立了华南鱼科2个新种——丘比特华南鱼(Huananaspis cupido sp. nov.)和梁氏亚洲鱼(Asiaspis liangi sp. nov.)。前者以头甲个体较小、不发育中背棘、两角末端超出头甲后缘等特征区别于属型种武定华南鱼(H. wudingensis),后者以头甲长大于宽、角向头甲侧后方延伸、角后缘发育锯齿、中背孔呈纵长椭圆形等特征区别于属型种宽展亚洲鱼(A. expansa)。广西南宁地区那高岭组具有可靠的地质时代证据,其中所产的徐家冲鱼类化石组合能够为华南地区早泥盆世地层的对比研究提供鱼类化石标准,而华南鱼属(Huananaspis)和亚洲鱼属(Asiaspis)在那高岭组的发现,丰富了华南鱼类的多样性,扩大了徐家冲鱼类组合的化石内容,并为云南武定坡松冲组与广西南宁那高岭组之间的对比提供了直接化石证据。广西南宁莲花山组与那高岭组过渡层中的徐家冲鱼类化石组合物种多样性最高,几乎涵盖了其他地区该组合的所有属种,说明广西南宁地区可能是盔甲鱼类辐射和扩散的中心之一。该地区早泥盆世布拉格期的古鱼类、早期维管植物和腕足动物均表现出显著的地方性色彩,可能跟华南海是一个半封闭的陆表海湾有关,即由于封闭海效应,鱼类在这个封闭的环境中独立演化,表现出很高的多样性和很强的土著性,最终在华南板块上形成一个独立的动物区系——“盔甲鱼—云南鱼”动物区系。  相似文献   

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