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1.
续晓璟  昝立宏  程捷 《现代地质》2006,20(3):423-428
通过对新疆吐鲁番盆地白垩纪和古近纪陆相地层的氧化物、碳酸钙、有机碳含量分析以及有机碳稳定同位素的测试,并通过w(Fe3+)/w(Fe2+)比值指示的古温度研究,探讨了该地区白垩系-古近系界线的特征以及古气候特点。研究表明在白垩系/古近系界线附近各项环境指标发生了明显的变化。在白垩纪末期,有机碳同位素δ13Corg明显偏正,Al2O3、Fe2O3含量降低;而进入古新世,δ13Corg明显偏负,Al2O3、Fe2O3含量升高。对w(Fe3+)/w(Fe2+)比值指示的古温度计算表明,在白垩纪末期大气温度比较低,而进入古新世气温回升,这与进入古新世有机碳稳定同位素明显偏负的特征一致。  相似文献   

2.
新疆吐鲁番盆地的连木沁剖面古近系与新近系的沉积厚度约1770m,是研究吐鲁番盆地这一时段古气候的良好载体。通过对连木沁剖面沉积物中常量元素地球化学分析,表明吐鲁番盆地在晚古新世阶段和晚始新世阶段,气候炎热湿润,但后者波动比较频繁。在渐新世,气候温暖干旱。中新世的气候变化明显可分为两个阶段,早期气候炎热潮湿,而晚期阶段温暖干旱。到上新世,气候显著干旱化。   相似文献   

3.
苏北盆地古近纪构造-层序岩相古地理特征与演化   总被引:2,自引:3,他引:2       下载免费PDF全文
以板块构造学和层序地层学理论为指导思想,把苏北盆地古近纪划分为3个构造-层序,分别为古新世(TS1)、始新世(TS2)和渐新世(TS3)构造-层序。在此基础上,以构造-层序界面和最大洪泛面为界,以湖盆扩张体系域和湖盆收缩体系域为编图单元.编制了苏北盆地古近纪各地质时期的构造-层序岩相古地理图,探讨了各构造-层序岩相古地理特征及演化.为该地区油气勘探有利区块的预测和评价提供了更为可靠的依据。  相似文献   

4.
对青藏高原北部地区新生代陆相地层中湖相碳酸盐岩进行了系统采样分析,以碳氧同位素作为古环境和古气候变化的替代指标,试图从古湖泊演化的角度,阐明高原新生代早期环境演变历史和过程。研究结果表明,该区所有分析样品中生物碎屑灰岩类样品的δ18O和δ13C显示最低值,反映它们沉积在一个水体滞留时间短的开放性淡水湖泊系统中。泥晶灰岩类样品的δ18O和δ13C之间具有正相关关系,表明它们发育在蒸发作用明显的封闭性咸水湖泊体系中,而叠层石灰岩类明显富集13C可能与微生物活动有关。从始新世到渐新世至中新世,湖相碳酸盐岩δ18O值具有逐渐增大的趋势,δ13C则由古近纪的负值变为新近纪的正值,反映该区古湖泊系统经历了一个由开放到封闭的过程,预示古近纪到新近纪之交高原古气候格局发生了重大变革。  相似文献   

5.
通过对青海通天河盆地古、新近纪地层层序、沉积特征、物源区及沉积环境分析,建立其垂向相序,总结出该区具冲积扇相、三角洲相、湖泊相的特点,并得出通天河盆地古、新近纪物源区主要为北部开心岭隆起区的结论。根据石膏、灰岩夹层及粒度特征等环境标志推测:中始新世气候炎热湿润,晚始新世气候炎热干燥,渐新世气候炎热湿润,中中新世气候温暖潮湿;青藏高原的隆升具有阶段性。  相似文献   

6.
鲁西南地区的单县盆地盐矿是新发现的小陆块盆地形成的大型盐类矿床,成矿时代为古近纪(主要是始新世中晚期至渐新世)。基于单县盆地YZK-3钻孔(521.7 m)元素和碳氧同位素的分析,探讨单县盆地在古近纪时期的古环境演化特征。研究表明:1)单县盆地YZK-3孔沉积物水溶元素和酸溶元素及比值的变化反映了湖泊的咸化和淡化过程;2)受热液补给和成岩作用影响,碳酸盐δ18O和δ13C的相关性不适合论湖泊的封闭与开放状态,但变化趋势仍具有古环境意义;3)始新世—渐新世,单县盆地古湖泊经历了淡水湖—咸水湖—盐湖—咸水湖—淡水湖的演化过程,其干旱化趋势明显。全球气候变化是成盐作用的主要驱动机制。  相似文献   

7.
抚顺盆地始新世古湖泊演化   总被引:4,自引:1,他引:3  
通过野外实测剖面及室内测试分析等方法,对始新世断陷盆地抚顺盆地的古湖泊开展研究,其主要目的是揭示始新世—渐新世全球变冷气候在大陆的响应。野外岩性、相标志及岩石薄片分析表明,抚顺盆地始新统沉积相演化规律主要表现从湖沼亚相—浅湖亚相—半深湖亚相—深湖亚相—半深湖亚相—浅湖亚相,水体深度变化总体表现为由浅—深—浅的过程。借助B、Mn、Ti、Co、Cr、Ni、V等微量元素含量以及Sr/Ba、V/(V+Ni)、Ni/Co、ωFe2O3/ωFeO〖JP2〗等元素和氧化物比值分析,得出抚顺盆地从始新世早期到晚期气候发生了明显的变化,始新世早期主要为湿润的成煤气候,始新世中期的计军屯组则显示了半湿润气候,到了始新世的中晚期则出现了干燥的气候条件,形成了半咸水—咸水的一套泥灰岩与泥页岩互层的干旱气候演化。总体有从始新世向渐新世,气候由湿润向干燥变化的规律。  相似文献   

8.
滇西新生代兰坪盆地和剑川盆地分别位于哀牢山–红河断裂带两侧,青藏高原东构造结内,其沉积过程和构造变形对青藏高原东南缘的构造演化有重要的启示意义。通过对这两个盆地古近纪沉积和构造过程的研究,我们发现兰坪盆地和剑川盆地及邻区的构造变形分为三期:始新世早期的强烈挤压变形、始新世中晚期的伸展变形、渐新世的走滑变形。始新世早期的挤压变形主要表现为兰坪地区的褶皱–冲断系统、哀牢山-红河断裂的逆冲活动和剑川盆地的宽缓褶皱。沉积方面,古新统勐野井组(E_1m)较为稳定的细粒滨湖相沉积转变为始新统宝相寺组(E_2b)较粗的具有前陆盆地性质的河流相沉积,特别是宝相寺组底部发育的一套快速堆积的磨拉石建造,可能是对始新世强烈挤压环境下的沉积响应。始新世中晚期伸展变形体现在盆地的构造环境由早期的挤压环境变为伸展环境和该时期大量富钾岩体和岩脉的侵入,沉积学上,下始新统宝相寺组的河流相转变为中始新统金丝厂组(E_2j)具有快速堆积磨拉石特征的曲流河沉积,极可能是对构造体制变革的沉积响应。渐新世的走滑变形则体现在渐新统的缺失和哀牢山–红河断裂的早期左行走滑。因此,我们认为剑川–兰坪地区在始新世中期和渐新世均发生了显著的运动学转换,这一认识也得到了始新世中期兰坪和剑川盆地物源明显变化的支持。结合青藏高原东南部始新世中晚期岩浆的活动,渐新世大型剪切带(崇山剪切带、高黎贡剪切带)的强烈走滑和保山块体的旋转,我们推测青藏高原东南缘古近纪的构造演化为古新世-始新世早期的挤压、始新世中晚期的伸展、渐新世的转换压缩。  相似文献   

9.
北黄海盆地构造演化特征分析   总被引:8,自引:0,他引:8  
依据最新油气资源调查资料,在简述北黄海盆地区域构造特征的基础上,重点分析了盆地的沉降史与构造演化特征。研究表明:(1)北黄海盆地的基本沉降曲线型式为7段折线状,其中晚侏罗世、早白垩世、始新世、渐新世、新近纪为曲线下降段,代表盆地5幕较明显的沉降;晚白垩世—古新世以及中新世早期为曲线上升段,反映盆地的抬升剥蚀。(2)盆地沉降作用自中生代至新生代总体由东向西迁移,东部坳陷以中生代沉降作用最为显著,中部坳陷主沉降期为始新世,而西部坳陷的快速沉降主要发生在始新世,并一直持续到渐新世。(3)盆地构造演化大致可划分为中生代断陷盆地、古近纪叠加断陷盆地以及新近纪坳陷盆地等3大发展阶段,其中,中生代断陷盆地发育阶段是北黄海盆地油气勘探研究的重点。  相似文献   

10.
杜长洲  孙亚力  刘青 《安徽地质》2007,17(3):161-165
古近纪时期明光盆地前人曾将西部的沉积称"舜山集组",东部的沉积称"土金山组".经工作证实古近纪明光盆地为统一盆地,其地层为定远组,ESR测年后认定时代为古新世--始新世.明光城北的原下草湾组,ESR测年后认定为渐新世的沉积并更名为明光组,填补了省内渐新世的沉积空白.  相似文献   

11.
A mineralogical and geochemical study of clay lithologies and a biostratigraphic analysis of the carbonates from the deep-sea Lagonegro Basin (Southern Apennines—Italy) have been carried out to deduce in general the provenance of clay sediments and their paleoenvironmental conditions and particular to recognize the signature of the Paleocene–Eocene climatic global warming. The analysed succession comprising a wide stratigraphic interval of the Sannio Unit, spanning between Albian to the upper Oligocene–lower Miocene, is exposed near Accettura and Stigliano villages. Eighteen clay samples were analysed by XRD, XRF, SEM, TG-DTA. Their age was framed by biostratigraphic analyses carried out on carbonate sediments. Mineral assemblage of the clay sediments includes quartz, carbonates (calcite and dolomite), feldspars (plagioclase and k-feldspars), hematite, randomly illite/smectite mixed layers with a low illite percentage, kaolinite, discrete illite–muscovite, chlorite, palygorskite and sepiolite. The low illite percentage in randomly illite/smectite mixed layers indicates low diagenetic conditions for the studied successions. These features are unique for the Cretaceous–Tertiary successions of the Lagonegro domain and are particularly significant for the preservation of the native mineralogical assemblage useful to determine the provenance and paleoenvironmental conditions of the clayey sediments. Palygorskite and sepiolite are concentrated in the upper Paleocene–middle Eocene stratigraphic interval and particularly in the upper part of the early Eocene—lower part of the middle Eocene (biozone of Blow P 9–12). Clay sediments rich in palygorskite and sepiolite show a higher P2O5 amount and a lower kaolinite percentage, compatible with warm and arid climatic conditions typical of the global warming event well recorded in the southern tethyan margin. Likely palygorskite and sepiolite formed in lagoonal environment in nearby carbonate platform margins and then they were transported into the Lagonegro Basin as indicated by the well developed habitus of palygorskite. During the Paleogene the Lagonegro Basin and the nearby carbonate platforms represented a key sector the southern paleodomains of the Tethys. The discovery of these minerals gives a contribution to the reconstruction paleoenvironmental conditions of the Tethian paleo-margin during the early–middle Eocene.  相似文献   

12.
古近系研究新进展   总被引:4,自引:2,他引:2  
介绍国际地层委员会古近系分会在全球界线层型剖面和点位( GSSP)工作上的新进展和我国陆相古近系分阶情况。中国陆相古近系分为8个阶:上湖阶(下古新统)、池江阶(上古新统)、岭茶阶(下始新统)、卢氏阶(中始新统下部)、垣曲阶(中始新统上部)、蔡家冲阶(上始新统)、乌兰布拉格阶(下渐新统)和塔本布鲁克阶(上渐新统)。其中,白垩系-古近系界线、古新统-始新统界线和始新统-渐新统界线与国际上相应界线接近或一致。近来,在湖南衡东地区获得碳同位素负向漂移的数据,使得该剖面可与新近国际地层委员会批准的伊普里斯阶层型剖面对比,其余各个阶的界线缺少磁性地层学和同位素地层学的证据,同时也有待于国际上“金钉子”的确立  相似文献   

13.
《Sedimentary Geology》2006,183(1-2):51-69
The Chicxulub Sedimentary Basin of the northwestern Yucatan Peninsula, Mexico, which was formed because of the largest identified Phanerozoic bolide impact on Earth, became a site of deposition of dominantly marine carbonate sediments during most of the Cenozoic Era. This is a study of the filling and diagenetic history of this basin and surrounding areas. The study makes use of lithologic, biostratigraphic, petrographic, and geochemical data obtained on core samples from boreholes drilled throughout the northwestern Yucatan Peninsula.The core sample data indicate that: 1) The Chicxulub Sedimentary Basin concentrated the deposition of pelagic and outer-platform sediments during the Paleocene and Eocene, and, in places, during the Early Oligocene, as well, and filled during the Middle Miocene, 2) deeper-water limestone also is present within the Paleocene and Lower Eocene of the proposed Santa Elena Depression, which is located immediately south of the Basin, 3) shallow-water deposits are relatively more abundant outside the Basin and Depression than inside, 4) the autigenic and allogenic silicates from the Paleogene formations are the most abundant inside the Depression, 5) sediment deposition and diagenesis within the Basin also were controlled by impact crater topography, 6) the abundance of the possible features of subaerial exposure increases upward and outward from the center of the Basin, and 7) the formation of replacive low-magnesium calcite and dolomite, dedolomitization, dissolution, and precipitation of vug-filling calcite and dolomite cement have been more common outside the Basin than inside.δ18O in whole-rock (excluding vug-filling) calcite from core samples ranges from − 7.14‰ to + 0.85‰ PDB. δ13C varies from − 6.92‰ to + 3.30‰ PDB. Both stable isotopes correlate inversely with the abundance of subaerial exposure features indicating that freshwater diagenesis has been extensive especially outside and at the edge of the Chicxulub Sedimentary Basin.δ18O and δ13C in whole-rock (excluding vug-filling) dolomite ranges from − 5.54‰ to + 0.87‰ PDB and − 4.63‰ to + 3.38‰ PDB, respectively. Most dolomite samples have negative δ18O and positive δ13C suggesting that replacive dolomitization involved the presence of a fluid dominated by freshwater and/or an anomalously high geothermal gradient.Most dolomite XRD-determined mole percent CaCO3 varies between 51 and 56. Replacive dolomite is larger, more euhedral, and less stoichiometric inside the Chicxulub Sedimentary Basin than outside.  相似文献   

14.
C. Scheibner  R.P. Speijer   《Earth》2008,90(3-4):71-102
The early Paleogene experienced the most pronounced long-term warming trend of the Cenozoic, superimposed by transient warming events such as the Paleocene–Eocene Thermal Maximum (PETM). The consequences of climatic perturbations and associated changes on the evolution of carbonate platforms are relatively unexplored. Today, modern carbonate platforms, especially coral reefs are highly sensitive to environmental and climatic change, which raises the question how (sub)tropical reef systems of the early Paleogene reacted to gradual and sudden global warming, eutrophication of shelf areas, enhanced CO2 levels in an ocean with low Mg/Ca ratios. The answer to this question may help to investigate the fate of modern coral reef systems in times of global warming and rising CO2 levels.Here we present a synthesis of Tethyan carbonate platform evolution in the early Paleogene (~ 59–55 Ma) concentrating on coral reefs and larger foraminifera, two important organism groups during this time interval. We discuss and evaluate the importance of the intrinsic and extrinsic factors leading to the dissimilar evolution of both groups during the early Paleogene. Detailed analyses of two carbonate platform areas at low (Egypt) and middle (Spain) paleolatitudes and comparison with faunal patterns of coeval platforms retrieved from the literature led to the distinction of three evolutionary stages in the late Paleocene to early Eocene Tethys: Stage I, late Paleocene coralgal-dominated platforms at low to middle paleolatitudes; stage II, a transitional latest Paleocene platform stage with coralgal reefs dominating at middle paleolatitudes and larger foraminifera-dominated (Miscellanea, Ranikothalia, Assilina) platforms at low paleolatitudes; and stage III, early Eocene larger foraminifera-dominated (Alveolina, Orbitolites, Nummulites) platforms at low to middle paleolatitudes. The onset of the latter prominent larger foraminifera-dominated platform correlates with the Paleocene/Eocene Thermal Maximum.The causes for the change from coral-dominated platforms to larger foraminifera-dominated platforms are multilayered. The decline of coralgal reefs in low latitudes during platform stage II is related to overall warming, leading to sea-surface temperatures in the tropics beyond the maximum temperature range of corals. The overall low occurrence of coral reefs in the Paleogene might be related to the presence of a calcite sea. At the same time larger foraminifera started to flourish after their near extinction at the Cretaceous/Paleogene boundary. The demise of coralgal reefs at all studied paleolatitudes in platform stage III can be founded on the effects of the PETM, resulting in short-term warming, eutrophic conditions on the shelves and acidification of the oceans, hampering the growth of aragonitic corals, while calcitic larger foraminifera flourished. In the absence of other successful carbonate-producing organisms, larger foraminifera were able to take over the role as the dominant carbonate platform inhabitant, leading to a stepwise Tethyan platform stage evolution around the Paleocene/Eocene boundary. This szenario might be also effective for threatened coral reef sites.  相似文献   

15.
山东平邑—蒙阴地区古近纪地层时代讨论   总被引:2,自引:0,他引:2  
通过对山东平邑—蒙阴地区古近纪地层的野外地质调查和实测剖面,对分布于该区内的古近系进行了详细的研究和划分。提供了新的ESR测年数据,并结合生物地层序列确定了该区古近系的地层顺序为:古近系渐新统汶东组(E3w)、古近系上始新统大汶口组(E2^3d)、古近系中始新统朱家沟组(E2^2Z)、古近系下始新统常路组(E2^1c)、古近系上古新统卞桥组(E12b)和古近系下古新统固城组(E1^1g)。为华北地区乃至全国古近系的研究与划分提供了重要依据。  相似文献   

16.
The Paleocene-Eocene Thermal Maximum(PETM) event was a dramatic global warming w55.93 Ma ago that resulted in biological extinction events, lithological changes, and major deviations in σ13 C and σ18 O.The southwestern Tarim Basin of China exposes successive Paleogene strata as a result of Tethys evolution and is considered an ideal region for PETM research.Based on calcareous nannoplankton biostratigraphy, we also used stable isotopes and XRD to analyse the Paleocene-Eocene transition in the Tarim Basin. At the Bashibulake Section, the PETM interval is characterized by(1) an abrupt negative shifts in σ13 C_(org), σ13 C_(carb) and σ18 O(-3%, -4.5% and -3%respectively);(2) an obvious negative correlation between the K-mode(Discoaster, Fasciculithus, Ericsonia, Sphenolithus and Rhomboaster) and r-mode(Biscutum, Chiasmolithus, Toweius) nannofossil taxa coincident with a robust Rhomboaster-Discoaster assemblage; and(3) a significant increase in the percentage of detrital input along with an increase in gypsum content. In the upper part of the Qimugen Formation Micrantholithus and Braarudosphaera are commonly found right up to the top where most of the nannofloras suffer a sharp decrease. In the overlying Gaijitage Formation, calcareous nannofossils disappear completely. These events indicate that the southwestern Tarim Basin was a warm shallow continental shelf during the deposition of the Qimugen Formation. From the early Eocene, the environment changed conspicuously. Evaporation increased and sea level fell, which led to an acid climate.This climate mode continued within the youngest unit studied, the Gaijitage Formation, characterized by the deposition of thick evaporates. Consequently, most of the marine plankton, i.e. calcareous nannoplankton, became disappear, because of the significant climate shift.  相似文献   

17.
The Eocene–Oligocene transition (EOT, ~34 Ma) is the largest global cooling of the Cenozoic Era and led the Earth's climatic system to change from a greenhouse to an icehouse mode. Although it is well documented in marine settings, the few studies focusing on continental environments have demonstrated regional heterogeneities. The study core CDB1, located in the Rennes Basin (Western France), is a unique terrestrial (lacustrine–palustrine) record comprising well‐preserved and terrestrial‐derived organic‐rich sediments encompassing the EOT. Clay minerals and the first organic nitrogen isotope record (δ15Norg) of terrestrial origin for this period are used to reconstruct palaeoclimate changes across this key interval. As suggested in worldwide marine and a few continental records, a stepwise transition from warm/humid conditions in the Late Eocene to cooler/drier conditions in the Early Oligocene is confirmed in the area. In addition, an episode of drier conditions in the Late Eocene and humid/dry cycles in the Early Oligocene are suggested.  相似文献   

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