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1.
广西六景泥盆纪吉维阶-弗拉斯阶界线层牙形石生物地层   总被引:2,自引:1,他引:1  
广西六景泥盆系剖面是我国泥盆系标准剖面之一 ,通过对其吉维阶 -弗拉斯阶界线上下地层进行详细的牙形石生物地层研究 ,自上而下识别出 12个牙形石带 :Palmatolepis jamieae带、Palmatolepis hassi带、Palmatolepispunctata带、Palmatolepistransitans带、上 Mesotaxisfalsiovalis带、下 Mesotaxisfalsiovalis带、Klapperina dispar-ilis带、上 Schmidtognathus hermanni- Polygnathus cristatus带、下 Schmidtognathus hermanni- Polygnathus cristatus带、上 Polygnathus varcus带、中 Polygnathus varcus带、下 Polygnathus varcus带。吉维阶 -弗拉斯阶界线 (即中 -上泥盆统界线 )由 Ancyrodella binodosa→ Ancyrodella rotundiloba early form→ Ancyrodella rotundiloba late form这一演化线系中的 Ancyrodella rotundiloba early form的首次出现确定 ,处于下 Mesotaxis falsiovalis带下部 ,在谷闭组底界之上 1.80 m处。  相似文献   

2.
江海水  陈龑  刘芬 《地球科学》2018,43(11):3947-3954
全球海相拉丁阶-卡尼阶界线(Ladinian-Carnian Boundary,LCB)层型已经确定意大利的Prati Di Stuores/Stuores Wiesen剖面,菊石Daxatina canadensis(Whiteaves)的首现位置标志着卡尼阶的底界.该界线通常被认为与牙形石Quadralella polygnathiformis或者Budurovignathus diebeli的首现接近,然而该界线在我国的确定却存在一定争议.一方面,由于主要的标志菊石Daxatina canadensis缺乏;另一方面,菊石(如Trachyceras)生物地层确定的界线比起牙形石生物地层确定的界线要高许多.如在我国华南海相LCB地层发育最好的贵州西南地区,依据菊石一般将LCB置于竹杆坡组顶部附近,而依据牙形石生物地层,则又置LCB于竹杆坡组底部附近.贵州贞丰龙场大坪子剖面杨柳井组上部发育有牙形石Quadralella polygnathiformis和Budurovignathus属分子共生的过渡层,其时代可能归入卡尼阶的第一个亚阶Cordevolian.是以贵州贞丰龙场大坪子剖面的LCB可能置于杨柳井组上部.但是,确定我国海相LCB仍需综合牙形石、菊石等生物地层,辅以磁性地层以及绝对年龄等多手段的研究来互相印证.   相似文献   

3.
中/上泥盆统全球层型剖面和点(GSSP)已正式确定在法国黑山(Noire)东南的Col du Puech de La Suque 剖面E上.1987年2月,国际地科联(IUGS)承认了泥盆纪地层分会的这项决议.1982年,泥盆纪地层分会一致同意将牙形石Polygnathus as ymmetricus下亚带的下限和 Ancyrodella rotundiloba作为中/上泥盆统的界线.它既是P.asymmetricus带的卜界,也是弗拉斯阶的下界和中/是泥盆统的分界.同时还同意层型剖面应选在深海相序列中,以利于全球对比.  相似文献   

4.
广西六景泥盆系剖面是中国泥盆系标准剖面之一,通过对其弗拉斯阶-法门阶(F-F)界线附近地层进行详细的牙形石生物地层研究,自下而上识别出3个牙形石带:晚rhenana带、linguiformis带和triangularis带。F-F界线位于融县组下部(第7号层与第8号层之间),在谷闭组顶界之上3.32,m处。碳同位素的分析结果表明,F-F之交δ13C具有显著正偏移,增幅为2.0‰,与湖南老江冲、广西垌村和杨堤以及欧洲、美洲、非洲和澳洲等地的F-F界线附近的碳同位素记录一致,且具有相近的变化幅度。δ13C正异常与F-F界线上的生物灭绝有关,由于食微生物的高等生物灭绝,微生物大量繁盛,诱导海水缺氧,导致海洋有机碳埋藏速率增加,从而形成δ13C的正偏。F-F界线层发育一套以碎屑灰岩为特色的事件沉积,该事件沉积在广西乃至全球具有等时性,可能与小行星碰撞地球引起的全球性海啸有关。  相似文献   

5.
广西东北部泥盆系发育良好,化石丰富,对研究中国华南地区泥盆纪生物地层具有重要意义。对广西全州地区东山剖面上泥盆统佘田桥组、锡矿山组和孟公坳组进行了系统的化石采集及室内分析,共获得104枚牙形石化石和34件腕足类化石。经鉴定,牙形石共21属19种,腕足类化石共6属9种。根据化石种属在东山剖面上的分布,自下而上可划分出8个牙形石带:Icriodus brecis带,Schmidtognathus hermanni-Polygnathus cristatus带,Schmidtognatus wittekindtii带,Palmatolepis linguiformis带,Palmatolepis triangularis带,Palmatolepis rhomboidea带,Icriodus cornutus带和Palmatolepis gracilis manca-Rhodalepis polylophodontiformis带,指示研究区内佘田桥组、锡矿山组、孟公坳组分别对应国际年代地层单位的弗拉斯阶上部、法门阶下部和法门阶中上部,并通过Palmatolepis triangularis的首现确立了该地区弗拉斯阶和法门阶(F-F)的界线;在东山剖面共划分出2个腕足类组合带:弓石燕(Cyrtospirifer)组合带和云南贝(Yunnanella)-帐幕石燕(Tenticosififer)组合带,它们分别与东山剖面中牙形石Palmatolepis falsiovalis-Palmatolepis linguiformis带、Palmatolepis rhomboidea-Palmatolepis marginifera带对应。  相似文献   

6.
下三叠统印度阶与奥伦尼克阶全球候选层型剖面之一的中国安徽省巢湖市平顶山西坡剖面界线层,经连续不间断采样获得大量牙形石化石并进行详细的分带工作,建立了该界线层牙形石生物地层.由下往上划分为:1.Neospathodus dieneri带;2.N.waageni带.前者依次分为3个亚带:N.dieneri Morphotype1亚带,N.dieneri Morphotype2亚带和N.dieneri Morphotype3亚带.牙形石带可与该界线层的菊石带进行很好的对比;在详细区分牙形石Neospathodus属内各种特征的基础上,结合地层分布情况,跨越印度阶与奥伦尼克阶界线,演化谱系十分明显,牙形石N.dieneri Morphotype3在奥伦尼克阶之底即Smithian初期演化为:N.dieneri Morphotype3→N.waageni→N.pingdingshanensis、Neos-pathodus dieneri Morphotype3→N.waageni(细齿直立型)→N.n.sp.R和Neospathodus dieneri Morphotype3→N.pakistanensis.从谱系演化的观点出发认为:N.waageni的首现点作为奥伦尼克阶底界是合理的,并在该剖面确定了印度阶与奥伦尼克阶界线位于第24-16层,距剖面大隆组与殷坑组界线40.49m处.  相似文献   

7.
严正  侯鸿飞 《地质科学》1993,28(2):135-144
本文对广西香田晚泥盆世弗拉斯-法门阶界线剖面进行了系统的碳、氧稳定同位素研究。发现随着弗拉斯-法门期之交的生物大量死亡和绝灭,在弗拉斯-法门阶界线层中,碳、氧稳定同位素组成出现了明显的异常。这和白垩—第三系界线灾变事件中出现的异常颇为相似。碳同位素异常达-6.6‰左右,氧同位素出现正异常达2‰。此外,在界线层中出现铱异常为230×10-12g/g。这些表明,上述同位素地球化学异常是地球历史中生物绝灭灾变事件的重要标志。  相似文献   

8.
从层序地层观点论黔南独山地区弗拉斯-法门阶事件界线   总被引:5,自引:0,他引:5  
黔南独山地区上泥盆统望城坡组和尧梭组界线应修正置于大套白云岩之下的风化残积层或削蚀面。传统上弗拉斯-法门阶界线被置于望城坡组和尧梭组之间,此界线在海平面变化和沉积事件方面可与欧美地区的弗拉斯-法门阶界线相对比。但此界线之上生物,特别是四射珊瑚、层孔虫等再度繁盛,与F/F生物绝灭事件相背。因此,独山地区的弗拉斯-法门阶界线可考虑置于尧梭组四方坡段下部、生物完全消失之上1~2m较明显的地层转换面。  相似文献   

9.
下三叠统殷坑阶和巢湖阶及其界线研究   总被引:3,自引:0,他引:3  
系统介绍层型剖面殷坑阶和巢湖阶的定义和地层特征,并重点讨论了两阶之间的界线,即巢湖阶的底界。巢湖阶的底界层型位于近期提出的全球印度阶一奥伦尼克阶界线层型候选剖面——安徽巢湖平顶山西坡剖面上,界线定义为以牙形石Neospathodus waageni的首现点作为第一标志,菊石Flemingites-Euftemingites带底界作为参考标志。在巢湖剖面上,该界线位于三叠纪第2个正向磁极性带上部、三叠纪碳同位素曲线第1次正向漂移峰值附近;在岩石地层系统中,它位于殷坑组中上部位。简要概述了该界线地层的国际和国内对比的主要标志性化石。  相似文献   

10.
叶茜  江海水 《地球科学》2016,41(11):1883-1892
吴家坪阶-长兴阶界线位于这两次生物大灭绝事件之间,科学界对该界线附近是否发生重大地质事件仍然知之甚少,有关该时期的环境变化、碳循环的研究也不深入.嘉禾大窝岭剖面牙形石生物地层以及碳同位素变化的研究,为进一步探讨吴家坪期-长兴期附近的生物及环境事件提供基础材料.晚二叠世时以深水盆地相沉积为主的大窝岭剖面位于湖南省嘉禾县袁家镇附近.该剖面大隆组出露较好,岩性主要为硅质岩、硅质灰岩、灰岩以及泥岩.在大隆组中共识别出牙形石1属3种(含一个未定种):Clarkina wangi,C. deflecta,C. sp.,并识别出牙形石C. wangi带和C. changxingensis-C. deflecta组合带.根据C. wangi的首现,将大窝岭剖面的吴家坪阶-长兴阶界线(Wuchiapingian-Changhsingian boundary,简称WCB)置于第11层底部.该剖面全岩无机碳同位素数据显示在13~15层发生了一次快速的负偏,从2.18‰负偏到-1.39‰,负偏值近3.50‰,可与浙江煤山及四川上寺等剖面进行很好的对比,揭示这次碳同位素负偏在华南区域上可具对比性.   相似文献   

11.
Abstract: The Caiziyan Middle and Upper Devonian boundary section is located approximately 30 km northeast of Guilin. It hosts relatively abundant benthic and common–rare pelagic fossils, including brachiopods, corals, tentaculites, and conodonts, which may serve as a better suitable section for pelagic and neritic stratigraphic correlation. In this section, 10 “standard” conodont zones are recognized across the Givetian–Frasnian boundary, including, in descending order, the Lower hassi Zone, punctata Zone, transitans Zone, the Upper falsiovalis Zone, the Lower falsiovalis Zone, disparilis Zone, the Upper hermanni–cristatus Zone, the Lower hermanni–cristatus Zone, the Upper varcus Zone, and the Middle varcus Zone, all of which are defined by the first occurrence of their defining conodont species. The Middle–Upper Devonian (Givetian–Frasnian) boundary is defined by the first occurrence of Ancyrodella pristina in accordance with the Global Stratotype Section and Point (GSSP), which is assigned at 6.2m above the base of bed 19 in the Caiziyan section.  相似文献   

12.
The Wangchengpo Frasnian section of Dushan County contains two atrypid brachiopod assemblages. The lower is characterized by the Atryparia (Costatrypa) dushanensis fauna that appears at the base of the Hejiazhai Member approximately in the falsiovalis to transitans conodont zones: the upper is characterized by the Radiatrypa yangi fauna, which appears in the Lujiazhai Member approximately correspondent with the hassi to Upper rhenana conodont zones. Atrypid brachiopods, together with other brachiopods from the Dushan section show that the Hejiazhai Member is of Frasnian age. Preliminary analyses of Frasnian atrypid brachiopods from sections of South China indicate that there are nine genera and subgenera including Atryparia (Costatrypa), Kyrtatrypa, Spinatrypa, lsospinatrypa, Spinatrypina, lowatrypa, Desquamatia (Desquamatia). Desquamatia (Seratrypa), and Radiatr)pa. Atrypid species diversity did not change much through the Frasnian. On a regional scale in South China, most atrypid species went extinct prior to the Frasnian/Famennian boundary. At any specific locality or section, these atrypids became extinct about 20-40 m below the Frasnian/Famennian (F/F) boundary, within the linguiformis conodont Zone, marking this as the major extinction level. Three new atrypid species are described: Atryparia (Costatrypa) dushanensis, lowatrypa pseudobodini, and Radiatrypa yangi.  相似文献   

13.
The Caiziyan Middle and Upper Devonian boundary section is located approximately 30 km northeast of Guilin.It hosts relatively abundant benthic and common-rare pelagic fossils,including brachiopods,corals,tentaculites,and conodonts,which may serve as a better suitable section for pelagic and neritic stratigraphic correlation.In this section,10"standard"conodont zones are recognized across the Givetian-Frasnian boundary,including,in descending order,the Lower hassi Zone,punctata Zone,transitans Zone,the U...  相似文献   

14.
新疆库车地区早泥盆世早期牙形刺的发现   总被引:8,自引:0,他引:8  
<正> 1985年,地质矿产部石油地质综合大队在研究新疆塔里木盆地北缘库车河泥盆系剖面时,在原归中泥盆统的阿拉塔格组发现了早泥盆世早期的delta带的牙形刺。库车河泥盆系剖面,位于库勒湖南、夏合布拉克之北(图1)。张守安,易荣龙等在野外观察时认  相似文献   

15.
The Permian radiolarian zones and their correlations with conodont zones or other chronostratigraphic schemes are still under debate. In this study, four genera, 21 species and two subspecies of radiolarians together with one genus and six species of conodonts were recovered from the Linghao Formation cropping out at the Longwangpo (LWP) section, northwestern Guangxi, South China. Six radiolarian interval zones and one abundance zone are recognized in the section, namely in ascending order, the Follicucullus scholasticus, Albaillella cavitata, A. protolevis, A. levis, A. excelsa, A. triangularis Interval zones and A. yaoi Abundance Zone. They are correlated with the Clarkina dukouensis, C. guangyuanensis and C. orientalis conodont zones recognized at the same section. Based on our data, the F. scholasticus Interval Zone and the lowermost part of A. cavitata Interval Zone are recognized to be upper Capitanian age, whereas the four Albaillella Interval zones are of Lopingian age (Wuchiapingian to the late Changhsingian). Two previously known Changhsingian radiolarian zones, namely the A. triangularis and A. yaoi Interval zones, should be extended down to the uppermost Wuchiapingian in this studied section.  相似文献   

16.
陈孝红  汪啸风  李志宏  王传尚  张淼 《地层学杂志》2002,26(4):241-247,252,T001
对宜昌黄花场大湾组下段牙形石 Oepikodus evae带至 Baltoniodus triangularis带系统采集与分析几丁虫样品 ,共发现几丁虫 6属 12种 ,其中包括 1个相似种、1个未定种 ,它们是 Conochitina raymondii,C.ordinaria,C.primitiva,C.langei,C.brevis,C.poumoti,C.decipiens,Belonechitina cf.micracantha,L agenochitina esthoni-ca,L.sp.,Eremochitina baculata和 Cyathochitina dispar等。根据上述几丁虫的地质和地理分布特征 ,自下而上可划分为 Conochitina langei带和 Eremochitina baculata带 ,讨论并指出了他们与相关笔石、牙形石生物带的关系  相似文献   

17.
滇西南耿马地区泥盆纪牙形石的发现   总被引:1,自引:0,他引:1  
在耿马东部大龙塘等地的硅质岩系中新发现大量牙形石,可建立两个牙形石带:Palmatolepis gigas带、Palmatolepis triangularis带。此套含牙形石硅质岩系的时代属于晚泥盆世弗拉斯阶—法门阶,对比为曼信组。  相似文献   

18.
The obtained new data on conodonts, brachiopods, ammonoids, and ostracods from the Stolb Island section indicate the predominantly Early Famennian (triangularis–Lower rhomboidea Zones) age of sedimentation. The Upper Kellwasser global biotic event, which marks the Frasnian/Famennian boundary, has been distinguished for Arctic Siberia for the first time. It was found that carbonate-terrigenous sequences accumulated in basinal sedimentary environments. Fine-clastic material was supplied to the sediments from different sources. A flow of dolomite debris is associated with the most distant source—areas of evaporite sedimentation. The presence of calcareous fragments is due to destruction of skeletal material (close provenance areas). Siliciclastics, which make up a considerable part of the sediments, were produced by partial rewashing and eolian differentiation of felsic pyroclastics. The existence of organic-rich horizons and beds of well-washed and well-sorted clastic sequences suggests that the Upper Devonian sediments have a high general petroleum potential.  相似文献   

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