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1.
贵州紫云剖面P/T界面附近碳氧同位素的变化及生物绝灭事件   总被引:12,自引:0,他引:12  
王国庆 《地学前缘》2000,7(2):339-344
:贵州南部紫云剖面由上二叠统长兴组的碳酸盐台地边缘沉积体系、下三叠统罗楼组的碳酸盐浅海陆棚沉积体系、以及下三叠统紫云组的半深海深海沉积体系组成。在前两种沉积体系中选取 18块样品进行碳、氧同位素测试。测试的结果表明 :上二叠统长兴组δ13 C平均值为 2 4 8‰ ,保持了较高的正值 ,δ18O平均值为 - 4 19‰ ;在P/T界面附近 ,δ13 C ,δ18O值都有显著的降低 ,δ13 C值由 2 71‰陡降至 - 0 90‰ ,变化幅度达 3 6 1‰ ,δ18O值由 - 5 0 3‰降为- 9 4 6‰ ,变化幅度可达 4 4 3‰ ;下三叠统罗楼组下部 ,δ13 C值为负值及低正值 ,出现明显的δ13 C值低异常 ,而δ18O值则比较稳定 ,介于 - 4 6 6‰和 - 5 6 2‰之间 ,平均值为 - 5 2 8‰。罗楼组上部 ,δ13 C值有回升的趋势。由于生物对轻碳具有重要的分馏作用 ,因此 ,P/T界面附近δ13 C值的显著变化反映了一次生物大量绝灭的过程。由δ18O值的变化反映出的生物绝灭的外因主要有温度和盐度两方面。从δ18O值可计算出在P/T界面处古温度有 4~ 5℃的升降 ,这势必影响到狭温生物的生存 ;从δ18O值计算出的Z值来看 ,古盐度也有小幅度的变化 ,加速了狭盐度生物的绝灭。事实上 ,生物的绝灭可能是海平面变化、火山事件、温度变化及盐度变化多种因素的综合  相似文献   

2.
浙江长兴煤山地区吴家坪阶-长兴阶界线地层的再认识   总被引:3,自引:2,他引:1  
浙江长兴煤山的 D剖面经多年研究 ,已成为二叠系长兴阶的单位层型和二叠系 -三叠系全球界线层型 ,并被推荐为吴家坪阶 -长兴阶全球界线层型的候选剖面 ,因该剖面上龙潭组地层出露较少 ,以致国内对长兴组与龙潭组的接触关系存有不同意见 ,给层型剖面的建立带来不利影响。在清理和研究了 D剖面西侧 30 0 m处 C剖面的吴家坪阶 -长兴阶界线层段后 ,证实了煤山地区龙潭组与长兴组为整合接触 ,对相关化石的地层分布也获得进一步的认识  相似文献   

3.
三门峡地区黄土L9的重磁化现象及原因探析   总被引:3,自引:0,他引:3       下载免费PDF全文
对黄河三门峡地区曹村黄土剖面L1至L13(年代持续约1.1Ma)的高分辨率古地磁研究发现:布容/松山界线位于第8层古土壤(S8)的顶部,贾拉米洛正极性亚时的顶、底界分别位于S10和L13的顶部,上述古地磁极性转换界线与洛川标准剖面一致。“上粉砂层”(L9)的绝大多数样品特征剩磁方向与现代地磁场方向一致,而其中的弱发育古土壤层(L9SS1)则呈预期的反极性特征。综合L9的厚度、岩性和岩石磁学特征,认为这一巨厚的正极性带可能反映了完全由岩性所控制的重磁化特征。对于L9重磁化的原因,似乎很难用后生的化学剩磁和粘滞剩磁来解释。文章尝试性地提出,可能在L9沉积后的间冰期(对应S8)和布容正极性时内气候较湿润的时期,由于雨水的向下渗透而诱导了其中强磁性矿物(磁铁矿)在沉积后随地磁场方向的变化而进行了重新排列。  相似文献   

4.
川北南江地区下三叠统飞一段风暴沉积特征及地质意义   总被引:1,自引:1,他引:0  
为进一步探究四川盆地北部南江剖面近P-T界线处频繁出露的风暴沉积暗含的地质信息,探讨早三叠世巨型季风气候对四川盆地北部沉积的影响,对研究剖面进行野外及镜下岩石学、沉积学特征综合分析,以底面侵蚀构造、风暴砾屑层、丘状交错层理等作为重要的识别标志,识别出风暴作用不同阶段的沉积产物高峰期(Sa)、衰减期(Sb)、停息期(Sc)段。根据Sa、Sb、Sc段的不同组合形式,将出露的多套风暴沉积划分为代表不同水深环境的I、II、III、IV四种风暴层序结构类型;在此基础上对Sa段风暴颗粒进行粒度分析并对风暴沉积厚度、层序结构类型等作纵向比较,风暴沉积表现为向上风暴作用逐渐增强的沉积序列。结合上寺剖面风暴沉积研究并进行横向对比,发现两剖面风暴沉积均发育在靠近P-T界线的早三叠世地层中且沉积规模接近,推测应为早三叠世时期同一巨型季风体制下受到频繁风暴作用影响的事件性沉积,并共同揭示了开江-梁平海槽边缘在早三叠世逐渐向广海方向推进、海槽逐渐被填平的沉积过程。  相似文献   

5.
Some stratigraphic interpretations concerning correlation of the Permian–Triasssic transition beds from the Central European, Boreal and Tethyan Basins are inconsistent with the existing magnetostratigraphic data. In addition, the suggestion that the Permian–Triassic boundary is located in the lower part of the Calvörde Formation of the Central European Basin cannot be supported by magnetostratigraphic data. Results of magnetostratigraphic correlation show that in the Polish part of the Central European Basin the Permian–Triassic boundary is close to the boundary between the uppermost Zechstein and the Lower Buntsandstein. It is located within the reversed magnetozone ‘PZr1’ identified in the upper part of the Rewal Formation. In the German part of the Central European Basin the Permian–Triassic boundary can be located within the reversed magnetozone ‘zrz’ that covers most of the Bröckelschiefer. A higher stratigraphic location of this boundatry, i.e. inside the lowermost Buntsandstein, requires a reversed polarity record to be found within the basal Triassic normal polarity zone.  相似文献   

6.
Wecolectedorientedmagnetostratigraphicsamplesatthesamebed(Bed27,limestone)ofAandDsectionsnamedbyShengetal.(1984)ofMeishansect...  相似文献   

7.
浙江长兴地区二叠系与三叠系界线层型研究   总被引:16,自引:9,他引:7  
<正> 中国南部二叠系与三叠系分界的层型剖面位于浙江长兴煤山(赵金科、盛金章等,1980)。在这个剖面上,1978年赵金科等把上二叠统的顶界确定在“未定名菊石带”,后经重新研究,又改归于下三叠统底部(赵金科、盛金章等,1980)。1980年5月,我们再度去上述界线层型剖面工作,在“未定名菊石带”同一层位详细采集化石,并到邻区安徽广德独山、江苏宜兴湖汷等地的相当层位调查,进一步证实在界线层型剖面上的“未定名菊石带”  相似文献   

8.
Shaw’s method used to correlate40 sections across the Permo-Triassic boundaryin South China is applied in the paper.Two steps are adopted to get an Integral Compo-site Section(ICS)by synthesizing these data:First,South China is divided into fiveareas and composite section developed for each area.Then the second step,theChangxing composite section is regarded as a composite standard(CSRS)while the ICSis produced by matching the CSRS with composite sections of the other areas.Threebiozones in the Changxingian and two biozones in the Griesbachian can be discerned onthe basis of computing Z values in the ICS.These biozones are marked by the Z values which quantitatively represent their time ranges;therefore,they may increase accuracy ofstratigraphic time correlation.The mass extinction at the end of the Permian is an ab-rupt event that is supported by the relative rate of extinction near the P/T boundary.About90%of invertebrate species died out by the end of the Permian.The duration ofthe mass extinction  相似文献   

9.
10.
Three third-order sequences and about one hundred high-frequency cycles or Milankovitchcycles within the Late Permian Changxingian to Early Triassic Griesbachian are identified in theMeishan Section of Changxing, Zhejiang Province, southern China, the candidate stratotype sec-tion of the global Permo-Triassic boundary, based on a detailed study of the biological,ecological and high-resolution allochthonous cyclic events, microfacies and depositional systems.Furthermore, the stacking pattern of the depositional systems across various Changxingian andGriesbachian sedimentary facies of the Lower Yangtze and the sequence stratigraphic frameworkare outlined with the Meishan section as the principal section. In this paper the habitat types offossil biota are applied to semiquantitative palaeobathymetry and the study of relative sea levelchanges.  相似文献   

11.
柯岛群分布于长春-延吉构造带东部的开山屯—汪清地区,开山屯地区出露的柯岛群缺少化石依据,其时代归属依旧存疑。在柯岛群上部及下部分别采集代表性样品进行碎屑锆石U-Pb(LA-ICP-MS)测年,上部细碎屑岩锆石年龄介于252~2304Ma之间,下部粗碎屑岩锆石年龄介于260~713Ma之间,并分别形成2个相近的峰值年龄;前者2个峰值年龄分别为263±2Ma、460±4Ma;后者2个峰值年龄分别为266±3Ma、463±4Ma,反映沉积碎屑物主要来源于奥陶纪及二叠纪地质体;最年轻的锆石为252Ma,其余相对年轻的锆石年龄集中于晚二叠世早期。结合柯岛群沉积建造组合特征及区域对比,认为其形成时代应为早三叠世,是古亚洲洋闭合后,造山带快速隆升形成的山间类磨拉石沉积。  相似文献   

12.
We present new paleomagnetic data for continental flood basalts (Siberian traps) obtained from cores of two boreholes in the northwestern Noril'sk area, within the Kharaelakh and Vologochan basins. Paleomagnetic measurements of lava and tuff samples from KhS-59 and SSV-19 boreholes allowed reconstructing and correlating the polarity patterns. Thus multiple paleomagnetic anomalies (PMA) have been discovered as brief polarity changes in narrow intervals of the magnetostratigraphic section above the principle reversal at the boundary between the Ivakin and Syverma Formations.The most prominent anomalies are observed at the bases of the Morongo and Mokulai Formations. The samples from the anomalous intervals differ from those of other intervals neither in rock magnetic properties, nor in mineralogy and magnetic grain sizes. Therefore, the revealed PMA record excursions of the geomagnetic field. Comparison of the results with the Meishan Global Stratotype Section and Point (GSSP) of the Permian–Triassic boundary implies a revision to the P–T position in the trap basalt succession of the Noril'sk area. Judging by the EMF behavior, basalts in this part of the trap province erupted for at least 500 kyr during an interval of stable normal polarity.  相似文献   

13.
浙江长兴煤山二叠—三叠系界线系列剖面侧向追索研究   总被引:3,自引:0,他引:3  
童金南  殷鸿福 《现代地质》1996,10(3):325-329
在浙江长兴煤山二叠—三叠系界线地层研究中,人们通常将该区侧向出露宽约1km的界线地层分解成7个相互平行、独立的小剖面进行各种地质研究。这不仅导致了研究资料的分散,而且引起了关于候选层型剖面位置的不必要的争议。沿露头剖面的野外追索观察和分析表明,露头区界线地层完全可以精确地追索,各种沉积记录的侧向变化是十分轻微的。已有的地层学研究也表明,各区段(小剖面)的沉积记录具有相同或相似的结果。当某些化石在一处采获后,在另一些小剖面上也肯定能找到,只要工作足够细致和深入。因此我们认为,应该将这些侧向上连续分布的采石场露头作为一个剖面来对待。这样亦符合国际地层委员会方针和章程中关于界线层型剖面露头完整性的要求。  相似文献   

14.
广西田东剖面二叠纪-三叠纪之交的生物绝灭及生态演化   总被引:1,自引:0,他引:1  
本文以广西田东地区浅海相二叠系-三叠系剖面为研究对象,对二叠纪-三叠纪之交的生物绝灭与浅海生态环境演化进行了深入的探讨。镜下化石鉴定与统计结果表明在P/T界线附近生物物种两次急剧减少,一次为生物大绝灭所致,另一次为生物迁徙所致。另外,本剖面上所研究的物种的数量变化是突变的,而不是渐变的。在残存期内,腹足类生物较有孔虫生物表现出较强的自我恢复和适应环境的能力。整个剖面沉积为一个海浸的过程,其二叠系-三叠系界线之交生态环境发生了很大的变迁。  相似文献   

15.
The end-Permian mass extinction is now robustly dated at 252.6 ± 0.2 Ma (U–Pb) and the Permian–Triassic (P–T) GSSP level is dated by interpolation at 252.5 Ma. An isotopic geochronological timescale for the Late Permian–Early Triassic, based on recent accurate high-precision U–Pb single zircon dating of volcanic ashes, together with calibrated conodont zonation schemes, is presented. The duration of the Early Triassic (Induan + Olenekian stages) is estimated at only 5.5 million years. The duration of the Induan Stage (Griesbachian + Dienerian sub-stages) is estimated at ca. one million years and the early Olenekian (Smithian sub-stage) at 0.7 million years duration. Considering this timescale, the “delayed” recovery following the end-Permian mass extinction may not in fact have been particularly protracted, in the light of the severity of the extinction. Conodonts evolved rapidly in the first 1 million years following the mass extinction leading to recognition of high-resolution conodont zones. Continued episodic global environmental and climatic stress following the extinction is recognized by multiple carbon isotope excursions, further faunal turnover and peculiar sedimentary and biotic facies (e.g. microbialites). The end-Permian mass extinction is interpreted to be synchronous globally and between marine and non-marine environments. The nature of the double-phased Late Permian extinction (at the Guadalupian–Lopingian boundary and the P–T boundary), linked to large igneous provinces, suggests a primary role for superplume activity that involved geomagnetic polarity change and massive volcanism.  相似文献   

16.
The Fengzhou loess section is very typical in the Qinling Mountains. The section, which is about 82 m thick and underlain by Neogene red clays, consists of 33 layers of loess and 33 layers of palaeosol. It covers the Brunhes normal polarity zone and Matuyama reversed polarity zone, and the B/ M boundary is located in the middle part of loess layer 8 (L8). The loess of the Matuyama reversed polarity zone records the Jaramillo, Olduvai and Reunion normal polarity subchrons. The boundary between the Matuyama reversed polarity zone and Gauss normal polarity zone (M / Ga) appears on the lithological boundary between loess and Neogene red clays. Loess accumulation in the Fengzhou section started before 2.48 Ma B.P. Based on the stratigraphical structure, the material composition and magnetic susceptibility curve of the Fengzhou loess section, the palaeoclimatic changes during the last 2.48 Ma in the Qinling Mountains are subdivided into 66 cold-dry and warm-humid stages, equivalent to 33 climatic cycles. The  相似文献   

17.
We have studied three Permian–Triassic (PT) localities from China as part of a combined magnetostratigraphic, 40Ar/39Ar and U–Pb radioisotopic, and biostratigraphic study aimed at resolving the temporal relations between terrestrial and marine records across the Permo-Triassic boundary, as well as the rate of the biotic recovery in the Early Triassic. The studied sections from Shangsi (Sichuan Province), Langdai (Guihzou Province), and the Junggar basin (Xinjiang Province), span marine, paralic, and terrestrial PT environments, respectively. Each of these sections was logged in detail in order to place geochronologic, paleomagnetic, geochemical, conodont and palynologic samples within a common stratigraphic context. Here we present rock-magnetic, paleomagnetic and magnetostratigraphic results from the three localities.At Shangsi, northern Sichuan Province, we sampled three sections spanning Permo-Triassic marine carbonates. Magnetostratigraphic results from the three sections indicate that the composite section contains at least eight polarity chrons and that the PT boundary occurs within a normal polarity chron a short distance above the mass extinction level and a reversed-to-normal (R-N) polarity reversal. Furthermore, the onset of the Illawarra mixed interval lies below the sampled section indicating that the uppermost Permian Changhsingian and at least part of the Wuchiapingian stages postdate the end of the Kiaman Permo-Carboniferous Reversed Superchron.At Langdai, Guizhou Province, we studied magnetostratigraphy of PT paralic mudstone and carbonate sediments in two sections. The composite section spans an R-N polarity sequence. Section-mean directions pass a fold test at the 95% confidence level, and the section-mean poles are close to the mean PT pole for the South China block. Based on biostratigraphic constraints, the R-N transition recorded at Langdai is consistent with that at Shangsi and demonstrates that the PT boundary occurred within a normal polarity chron a short distance above the mass extinction level.In the southern Junggar basin, Xinjiang Province, in northwest China, we determined the magnetostratigraphy of three sections of a terrestrial sequence. Normal and reversed polarity directions are roughly antipodal, and magnetostratigraphies from the three sections are highly consistent. Combined bio- and magneto-stratigraphy used to correlate this sequence to other PT sequences suggests that the previously-proposed biostratigraphic PT boundary in the Junggar sections was most likely misplaced by earlier workers suggesting that further work is necessary to confidently place the PT boundary there.  相似文献   

18.
北京怀柔HR_(88-1)钻孔剖面磁性地层学研究   总被引:6,自引:0,他引:6  
在系统古地磁样品采集、处理和测量的基础上,运用磁性地层学的研究方法,对北京怀柔地区HR(88-1)钻孔剖面进行了详细地层划分,分别确定了该区上新统、下更新统、中更新统和上更新统的分布深度及地质年代。  相似文献   

19.
北京怀柔HR_(88-1)钻孔剖面磁性地层学研究   总被引:3,自引:0,他引:3  
在系统古地磁样品采集、处理和测量的基础上,运用磁性地层学的研究方法,对北京怀柔地区HR(88-1)钻孔剖面进行了详细地层划分,分别确定了该区上新统、下更新统、中更新统和上更新统的分布深度及地质年代。  相似文献   

20.
陆相二叠纪-三叠纪地层划分与对比研究对认识该时期全球性重大生物和环境事件具有重要意义.以大兴安岭南段阿鲁科尔沁旗坤都地区新发现的下三叠统老龙头组为研究对象, 重点对二叠系-三叠系接触关系开展详细调查研究, 系统采集了界线上下的古生物化石, 对老龙头组火山岩进行了锆石U-Pb同位素测试分析, 并确定了老龙头组与下伏林西组呈平行不整合接触关系, 两者之间存在短暂沉积间断.生物地层显示林西组时代为晚二叠世晚期, 老龙头组古生物匮乏, 可能与二叠系-三叠系之交的生物灭绝事件有关.而老龙头组中3个同位素年龄值分别为251.5±2.2 Ma、249.7±2.5 Ma和249.5±1.8 Ma, 时代指示为早三叠世, 然而二叠系-三叠系界线的准确位置还需进一步研究.大兴安岭南段普遍存在可能与古亚洲洋闭合有关的早三叠世岩浆事件, 古亚洲洋沿着西拉木伦河缝合带发生碰撞闭合, 其闭合时限至少持续至早三叠世, 老龙头组是两大板块拼贴碰撞作用的产物.   相似文献   

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