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1.
Río Fardes剖面位于西班牙南部Granada东北,构造上属于深水环境的Subbetic中带.该剖面主要由白垩纪Fardes组第Ⅱ段和第Ⅲ段(半)远洋沉积构成,并出现浊流沉积和混杂沉积.本次研究在Fardes组浊流层序内首次发现两段红色沉积.钙质超微化石表明红层的时间从Turonian早期 (UC7带)到Coniacian中期-晚期界线 (UC10/?UC11带).红层由mm级红色泥岩夹灰色、杂色、偶尔黑色泥岩和钙质泥岩组成.沉积学研究表明新发现的Turonian-Coniacian远洋红色泥岩沉积形成于CCD面之下深水盆地环境,浊流和碎屑流沉积强烈地影响着(半)远洋环境的背景泥岩相,并成为红色沉积结束的原因.  相似文献   

2.
赣西南寒武纪—奥陶纪深水沉积   总被引:1,自引:0,他引:1  
吉磊 《地质学报》1994,68(2):173-184,T002
赣西南地区的寒武系-奥陶系主要由深水环境沉积组成,可以识别出5个相类型:砂岩相,砂岩-泥岩相,粉砂岩-泥岩相,泥(板)岩相和硅岩组。它们属于浊流沉积和远洋-半远洋沉积,按相的分布,可以分出3个相组合,分别形成于中扇环境,外扇环境和深海平原环境,地层层序中的3组垂向旋回分别由海平面升降变化、盆地沉降和海底扇进积作用因素所控制。砂岩的化学成分反映基大地构造背景为被动大陆边缘。  相似文献   

3.
大洋红层是指深水远洋、半远洋环境下,富氧条件下形成的一套以红色、紫红色为主的沉积物.最先由中国学者王成善、胡修棉等在研究西藏白垩纪床得组红层时提出,后来研究表明,与西藏床得组类似的白垩纪大洋红层广泛分布于世界各大洋和西特提斯的广大地区(土耳其、意大利、奥地利)[1],现已成为白垩纪研究领域的一个新的科学前沿.  相似文献   

4.
Schmidsippl剖面位于奥地利北钙质阿尔卑斯构造带内Gosau群典型地区。剖面出露的Bibereck组记录了一个海侵和沉积区海水变深过程。Bibereck组之下是Santonian晚期Hoclamoos组(Santlkalkbank段),主要为砂质、粉砂质灰色生物扰动构造发育的泥灰岩,含少量双壳类碎片。Hochmoos组之上为灰色泥灰岩和泥灰质灰岩。Bibereck组下部显示变深到近滨-远滨过渡带区域;向上,泥灰岩指示细粒泥质远滨沉积,水深大致50~150m;之上出现浮游有孔虫含量超过90%的泥灰质灰岩,代表着半深海沉积环境。生物地层数据显示采样层位整体位于浮游有孔虫asymetrica-elevata带,由Globotruncanita elevata和Dicarinella asymetrica的共同出现来界定。钙质超微化石Calculites obscurus、Lucianorhabdus cayeuxii、Arkhangelskiella cymbi formis的出现指示属于钙质超微化石带CC17b/UC12,相当于Campanian初期。地层深度剖面上,Ca/Al比值和Catot含量显示海水来源的Ca在0~5m地层内几近于零,向上快速增加;(Fe/Al)/碳酸盐显示两个峰值,代表更还原条件,分别位于4m和10m位置;K/Al比值的下降被解释为更潮湿气候条件;剖面上部Ba含量的增加显示向更低原始生产条件的变化;陆源矿物在剖面7m以下保持稳定,之上一直到剖面顶部不断下降。生物地层数据表明在约50万年短暂的时间间隔内水深由几米深浅水环境变深为800~1500m深半深海环境。地球化学数据显示在海侵过程中出现两个海平面变化波动过程。这些数据为与上覆大洋红层进行对比提供了基础。  相似文献   

5.
白垩纪深水古海洋学研究仍处于早期发展阶段,一方面是由于来自钙质底栖有孔虫的稳定同位素和地球化学数据的缺乏,其原因在于白垩纪高碳酸盐补偿深度;另一方面在于深水有机质胶结有孔虫示踪古海洋还没有充分发展起来。深海环境深水胶结有孔虫的分布主要取决于碳酸盐可利用状况、原始生产的输入通量、深水交换、环境波动(深海洋流、浊流和快速沉积事件)和底层沉积类型,因此对于重建深海环境具有非常巨大的潜力。东、西特提斯Campanian Maastrichtian深水底栖有孔虫组合的统计分析揭示出6个生物相,代表着明显不同的沉积环境。包括:深海红色泥岩与矮小深海生物组合(生物相1);红色深海泥灰岩(“Couches Rouges”相),含钙质胶结有孔虫组合(生物相3);深水远洋灰岩(“Scaglia Rossa”相),含易碎的Rhizammina组合(生物相2);绿色灰色半远洋泥灰岩,含适应高输出通量生物组合(生物相4);半远洋泥岩和粉砂岩,含Aschemocella Nothia 组合(生物相5);陆源浊积层序,含“复理石型”Rhabdammina组合(生物相6)。Campanian Maastrichtian红色氧化深水环境动物组合与现今深海类似,而白垩纪贫氧深海环境胶结组合在现今无法找到相类似物。随着古生态信息的增加和数据库的扩展,深水胶结有孔虫有望成为揭示古海洋条件的重要工具,尤?  相似文献   

6.
吉磊 《地层学杂志》1994,18(2):131-137,T001
对赣西南地区塞武纪-奥陶纪复理石的沉积学研究表明,它们主要由深水沉积组成,属于浊流沉积和远洋一半远洋沉积,其中包含5个不同相类型,即砂岩相、砂岩-泥岩相、粉砂岩-泥岩相、泥(板)岩相和硅岩相。相的分布特征反映它们形成于中扇、外扇和深海平原环境。复理石层序中存在3个不同级别的沉积旋回,分别为海平面变化、盆地沉降和海底扇进积作用所控制。  相似文献   

7.
白垩纪大洋红层的致色机制及成因研究   总被引:2,自引:0,他引:2  
为了查明白垩纪大洋红层的致色矿物及其赋存状态,并探讨白垩纪大洋红层可能的制约因素及成因模式,本文以中国西藏床得剖面红色页岩、意大利Vispi Quarry剖面红色灰岩以及北大西洋ODP1049C孔12X岩芯段Aptian-Albian期高频旋回红色泥灰岩为研究对象,对各剖面(或岩芯)中的红色和非红色样品分别进行了X射线衍射和漫反射光谱测试,同时对配制的含赤铁矿的标样进行了同样的测试。测试结果表明,无论是红色页岩、红色灰岩,还是红色泥灰岩,赤铁矿都是主要的致色矿物,其中西藏床得剖面红色页岩由结晶较好的碎屑状赤铁矿和结晶较差的细分散状的赤铁矿共同致色。在意大利Vispi Quarry剖面红色泥岩中,结晶程度相近的赤铁矿是唯一的致色铁氧化物,而在ODP1049C孔红色泥灰岩中,结晶差的赤铁矿和针铁矿的出现是泥灰岩呈红色的矿物学根源。赤铁矿的形成主要受铁的来源、沉积时的氧化还原条件以及成岩作用的影响,这些因素也成为制约红层形成的关键因素。本课题组在多年研究的基础上,结合前人研究成果进一步从矿物学的角度深化了大洋红层的成因模式。  相似文献   

8.
济阳坳陷东营凹陷古近系孔店组一段—沙河街组四段下亚段(Ek1-Es4x)沉积时期发育了规模巨大的红层—膏盐层沉积。通过对红层—膏盐层沉积构造、碎屑颗粒粒度和沉积物垂向叠加样式等分析,表明红层沉积具有水上沉积作用和水下沉积作用共存、重力流沉积作用与牵引流沉积作用并存的特征。红层—膏盐层在盆地的不同位置具有明显不同的垂向叠加样式。通过地球化学特征分析和泥岩颜色分析,结合前人研究表明,红层—膏盐层沉积时期沉积环境以干旱为主,呈现干湿频繁交替的特征。气候相对潮湿时期,湖盆盐度较低,以沉积砂泥岩为主;气候干旱时期,湖盆盐度高,以沉积膏盐岩为主。红层—膏盐层沉积早中期为低水位振荡性湖泊,沉积晚期为高水位振荡性湖泊,两者沉积作用存在较为明显的差别。  相似文献   

9.
湘西中上寒武统界线层型侯选剖面沉积特征   总被引:6,自引:1,他引:5       下载免费PDF全文
傅启龙  周志澄 《地质科学》1999,34(2):204-212
湘西中、上寒武统花桥组和车夫组主要由斜坡相和盆地边缘相的碳酸盐岩、泥质碳酸盐岩及钙质泥岩组成。重力流沉积十分发育,其中花垣排碧剖面以碎屑流砾屑灰岩和近源浊积岩为主;永顺王村剖面以浊流沉积为主;桃源瓦尔岗剖面则以远源浊积岩为主。成岩作用主要为海底埋藏胶结作用、新生变形作用和白云石化作用。排碧剖面大多数岩样酸不溶物重量含量在10%以下,王村和瓦尔岗剖面大多数岩样在10%以上。全岩δ18O值介于-11.2‰至-5.6‰(PDB)之间;δ13C值为-1.9‰至3.4‰(PDB).从Linguagnostus reconditus带开始,δ13C有较大的正漂移,漂移值达3‰(PDB)以上。沉积花桥组和车夫组时,湘西过渡区经历了4次海平面升降事件,台缘斜坡逐渐变陡,由缓坡型逐渐发展为镶边型和沟槽型。在湘西的诸多剖面中以王村剖面最适合于作为中、上寒武统界线层型候选剖面,界线选择在花桥组顶部。  相似文献   

10.
在详细野外剖面工作的基础上,通过岩性特征、沉积构造及沉积序列等的系统观察研究,发现济源盆地下侏罗统鞍腰组重力流沉积由滑塌沉积、砂质碎屑流沉积和浊流沉积构成。滑塌沉积以砂岩和泥岩的混杂、岩层的滑动变形以及泥岩呈碎块被卷入砂岩层中为特征;砂质碎屑流沉积常呈厚层块状,颗粒分选和磨圆较差,杂基较多,可见漂浮于层内的石灰岩砾石;常见的浊流沉积分为2种类型:具有明显正粒序结构的浊流沉积和砂泥岩薄互层的浊流沉积,可用鲍马序列来描述。鞍腰组重力流沉积可划分为3个沉积序列:序列A记录了滑塌沉积→砂质碎屑流沉积→浊流沉积→深湖沉积的转换过程;序列B表现为砂质碎屑流与浊流沉积的叠覆;序列C由浊流及湖泊沉积构成,并经历了由序列A→序列B→序列C的沉积演化过程。重力流的形成受秦岭造山带于早侏罗世沿三门峡—鲁山—舞阳断裂发生逆冲推覆作用的控制,其沉积演化指示了秦岭造山带造山作用由强到弱的过程。  相似文献   

11.
The Carbonero Formation represents a scarce, well documented example of Aptian anoxic facies in the Betic Cordillera. Generally, the Aptian record in the pelagic Subbetic basin is both very discontinuous and affected by frequent hiatuses, but in some subsident areas controlled by extensional faults (as in the Carbonero trough) an interesting record is preserved. The Carbonero Formation is characterised by a thick pelagic succession composed of marls with intercalations of calcareous turbidites and a thick interval of anoxic facies. This interval, dated as early Aptian, most likely represents the local expression of Ocean Anoxic Event 1a in the Subbetic basin. A multidisciplinary study including lithostratigraphy, biostratigraphy, and sedimentology has been carried out in the Carbonero Formation, with special attention to the anoxic interval. A collection of facies and sedimentary features has been characterised and interpreted, including barite concretions, calcareous concretions, black shales, siliceous marls and radiolarites, and calcareous turbidites. All these facies seem to have been deposited under oxygen-depleted conditions on a fault-bounded depression with a high subsidence rate. The accumulation and burial of sediments and the preservation of organic matter were controlled by both local and regional factors, such as the physiography of the basin and tectonic setting, as well as by global factors, such as palaeoceanographic and climatic changes.  相似文献   

12.
南京汤山“白垩纪古溶洞岩层”的年代和成因新认识   总被引:4,自引:0,他引:4  
许汉奎  李越 《地层学杂志》2002,26(3):216-220
一些研究者将南京汤山葫芦洞的形成时代上溯到了白垩纪 ,认为洞内所见的红色、黄色岩层可与宁镇地区白垩纪的地层单元 ,如赤山组、葛村组或浦口组对比 ,是与赤山组同期异相的洞穴沉积物。通过对这套岩层在洞内外的产出状况、与围岩接触关系的进一步观察 ,并结合岩石学微相、重矿物、硼当量以及碳同位素的分析结果 ,它们的时代应是奥陶纪 ,由于受燕山期的构造和岩浆活动的影响 ,因而与汤山一带常见的奥陶纪地层在产状和岩性上有所差别 ,蚀变的程度也有所不同 ,局部较深的蚀变作用使原岩铁化或硅化  相似文献   

13.
In the Rhenodanubian Flysch Zone of Austria, between the Aptian–Albian “Gault Flysch” and the Cenomanian–Turonian Reiselsberg Formation, an interval with predominant red shales (“Untere Bunte Schiefer”) occurs. In the Oberaschau section near Attersee (Upper Austria) a ca. 18-m-thick interval of alternating red and grey shales and marlstones with minor sandstones is present. Thin sandstone intercalations are interpreted as distal turbidites. Dinoflagellate cyst assemblages indicate the Litosphaeridium siphoniphorum Zone. The concurrent presence of Litosphaeridium siphoniphorum and Ovoidinium verrucosum in all samples allows a correlation to the lower part of this zone, thus defining a Late Albian–Early Cenomanian age. Based on foraminifera, the red beds can be assigned to the topmost Rotalipora appenninica Zone and the Rotalipora globotruncanoides Zone due to the presence of small morphotypes of the index taxa. Nannofossils indicate standard zones CC9/UC0 throughout the red interval, defined by the first occurrence of Eiffellithus turriseiffelii, and UC1 above the red shales. Based on these multistratigraphic data, a latest Albian–Early Cenomanian age can be inferred.  相似文献   

14.
新疆拜城新近系含铜岩系沉积体系及沉积环境   总被引:1,自引:1,他引:0  
新疆拜城地区发育一套新近纪巨厚的陆相碎屑沉积岩系,其中康村组中上部含规模较大的沉积型铜矿,康村组的沉积环境及演化过程对铜矿的形成具有重要意义。基于野外和室内详细的沉积学研究,查明研究区新近系吉迪克组、康村组和库车组总体上为陆相沉积体系,主要包括冲积扇-扇三角洲沉积体系和湖泊沉积体系两大类型,划分为扇三角洲平原、扇三角洲前缘、前扇三角洲、滨浅湖和膏盐湖亚相及若干沉积微相。研究表明研究区康村期主要发育扇三角洲沉积,矿区主要含矿层位于康村组上部红色岩系向灰色岩系转变,沉积环境从扇三角洲前缘亚相到滨浅湖亚相过渡的层位上。  相似文献   

15.
This study is focused on sedimentary environments, facies distribution, and sequence stratigraphy. The facies and sequence stratigraphic analyses of the Bahram Formation(middleelate Devonian) in southcentral Iran are based on two measured stratigraphic sections in the southern Tabas block. The Bahram Formation overlies red sandstones Padeha Formation in sections Hutk and Sardar and is overlain by Carboniferous carbonate deposits of Hutk Formation paraconformably, with a thickness of 354 and386 m respectively. Mixed siliciclastic and carbonate sediments are present in this succession. The field observations and laboratory studies were used to identify 14 micro/petrofacies, which can be grouped into 5 depositional environments: shore, tidal flat, lagoon, shoal and shallow open marine. A mixed carbonate-detrital shallow shelf is suggested for the depositional environment of the Bahram Formation which deepens to the east(Sardar section) and thins in southern locations(Hutk section). Three 3rdorder cyclic siliciclastic and carbonate sequences in the Bahram Formation and one sequence shared with the overlying joint with Hutk Formation are identified, on the basis of shallowing upward patterns in the micro/pertofacies.  相似文献   

16.
Tectonic activity, climatic changes and associated weathering cooperated during the formation of Upper Cretaceous red beds of the South Bohemian Basins known as the Klikov Formation.The sediments are clastic and comprise: (1) light-grey or yellow conglomeratic, course-to-medium sandstone beds; (2) generally finer red beds; and (3) grey beds. They alternate in asymmetrical cycles, in succession fining upwards. Small- and large-scale cyclothems were recognized. The large-scale cyclothems are closely connected with paleogeographical changes and tectonic evolution of the South Bohemian Basins in Early Senonian time. In regard to rapid vertical and lateral lithological variations, the common presence of graded bedding, poor sorting and lack of fossils, the sediments are comparable to the fluviatile facies of molasse, known as “flysch in molasse”. They were deposited from highly fluctuating currents and periodically overloaded streams in an alluvial and/or lacustrine environment, suffering continuously from tectonic unrest emanating from the Alpine—Carpathian geosyncline.Differences between red and grey sediments are related mostly to the primary distribution and preservation of organic matter and to some extent to the redistribution of iron during early diagenetic changes (e.g. red stains).Ancient weathered gneiss and granite profiles preserved beneath the sediments show development of either two (on granite) or three (on gneiss) horizons differing in degree of weathering and distribution of red colour within the profiles. The trend of weathering documented by chemical analyses and presence of kaolinite as the end-product points to the red podzolic soil formation process.  相似文献   

17.
The broad range of time over which ribbon bedded cherts were deposited does not extend into the present marine environment, and no ribbon cherts have been recovered from the sea floor by the Deep Sea Drilling Project. The depositional environment of bedded cherts is difficult to determine, but extra-silicic impurities in the rock may offer clues about the provenance of the non-biogenic component. To test the usefulness of relative abundances of the extra silicic components in extracting information on the depositional environment of the chert, I analyzed the major element chemistry of chert samples from a broad range of environments including ophiolite-associated chert from the Franciscan Formation of California, deep-sea chert and porcellanite from the northwest Pacific (DSDP Leg 32), shallow pelagic shelf chert nodules from the Chalk of Britain, continental marginal basin chert from the Monterey Formation of California, and continental marginal basin chert from the Pindos Zone of Greece. The ratios FeO/A12O3, TiO2/A12O3 and A1/A1+Fe+Mn were considered in detail. The interpretative logic is simple but empirically supported by observations of these ratio values at different depositional environments in the Pacific: A1 is concentrated most highly in continental material while Fe and Mn are more concentrated in pelagic sediments. FeO/A12O3 can be used to differentiate between ophiolite associated chert and chert associated only with other sediments. TiO2/A12O3 is not a useful indicator, possibly because of the equalizing effect of widespread eolian transport. The A1/A1+Fe+Mn ratio was measured in detail in one stratigraphic section in central continental Greece. This ratio varied with the type of sediment admixture, decreasing in value after the influx of ophiolite debris-bearing sediments, even when their presence was undetectable in hand sample or under petrographic microscope.To help clarify the paleogeography of the main study area, the Pindos Zone, and to identify sources and dispersal patterns of extra-basinal materials, isopach maps of sedimentary facies of the Pindos were constructed. Superimposed directly upon the series of imbricated thrust slices that comprise the Pindos Zone, the maps are at best compressed pictures of the Pindos Sea Floor. Persistent regional variation of facies thicknesses over time suggests the existence of several smaller depressions surrounded by submarine highs in the Pindos Basin.  相似文献   

18.
郭福生 《沉积学报》2004,22(1):136-141
浙江江山藕塘底组是晚石炭世威宁期陆源碎屑与碳酸盐的混合沉积,包括两种组分在同一岩层内相互混杂形成混积岩和陆源碎屑岩与碳酸盐岩互层形成混积层系。藕塘底组是海陆交互环境的沉积产物,剖面结构具有下细上粗的岸进序列。混积岩形成于滨岸浅滩环境,由沿岸流和回流将河口或滨岸海滩的石英砂带到滨岸浅滩和潮坪相碳酸盐沉积区混杂而成。具两种混积层系类型,即浅海滨岸环境中砂岩与碳酸盐岩互层、河流相碎屑岩与海相碳酸盐岩互层。研究表明,混合沉积成因属“相混合”,主要受区域构造隆升、全球海平面上升和盆地水介质条件特性控制。区域海平面周期性变化和岸进序列可能是华夏古陆强烈隆起的结果。作者还讨论了混合沉积的分类和命名,将陆源碎屑与碳酸盐层相互交替构成的互层和夹层组合称为“混积层系”,并建议将“混积岩”一词用来表征两种组分相互混杂这种特殊沉积事件,而不用作具体岩石名称.  相似文献   

19.
川陕边境广元宁强间的志留系   总被引:13,自引:6,他引:13  
<正> 李希霍芬(Richthofen 1882)将宁强牢固关、黄坝驿、茅坪沟、广元校场坝、神宣驿(即宣河)和朝天驿(即朝天镇)之间的地层分为8层。珊瑚化石(i层)经Lindstrom鉴定为 Favosites forbesi,Halysites calenularius,Heliolites,Caythophyllum,Amplexus和Alveolites;腕足类经Kayser鉴定为Orthis类(h层),Orthis calligramma 和Spirifer(1层)。葛利普(1924)把宁强广元间的志留系分为朝天组(Chaotien Formation),浅水  相似文献   

20.
Rich dinoflagellate cyst assemblages recorded from the Vendryne Formation, Tesin Limestone, and Hradiste Formation of the Silesian unit, Czech Republic are presented. The results of a qualitative and quantitative study of dinoflagellate cysts are presented and discussed. Age-assessment of the sediments based on 86 species suggests a Late Tithonian to Early Berriasian age for the Vendryne Formation and a Late Berriasian (Otopeta Ammonite Zone) to the basal part of the Late Valanginian (Verrucosum Ammonite Zone) age for the Tesin Limestone. Pelitic flyschoid sediments of the Hradiste Formation belong to the Late Valanginian - Early Hauterivian age. Quantitative palynological study and carbon isotope analysis were applied to understand the change from the grey clays to dark grey clays sedimentation. The dinoflagellate cyst assemblages show deposition in a shallow-sea environment. An increasing amount of sporomorphs towards the overlying layers (they are the most abundant in the Hradiste Formation) shows a growing supply of terrestrial material at the same time. The values of δ13C increased significantly from a level of 0.43 or 0.75-1.81‰ in the Late Valanginian. This change probably indicates an increase in organic matter storage and perturbation of the carbon cycle connected with the dark grey clays sedimentation.  相似文献   

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