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1.
浙江江山砚瓦山组瘤状灰岩的成因   总被引:5,自引:0,他引:5  
浙江江山地区砚瓦山组瘤状灰岩的结构构造及其形成机理复杂多样,一般可划分出五种岩石类型,即压扁瘤状泥灰岩、揉皱角砾状泥灰岩、压溶瘤状灰岩、干裂角砾状灰岩和粗砾屑灰岩。瘤状灰岩形成于碳酸盐台地浅水部位,水体为半浑浊。其发育程度及其层位的区域变化规律表明,泥质浑水系来自海盆东侧的华夏古陆。  相似文献   

2.
基于对川北米仓山西部旺苍县鼓城乡唐家河下寒武统仙女洞组露头剖面的观察与镜下分析发现,仙女洞组下段由生物碎屑泥晶灰岩(L)、粉砂质泥岩(M)、似瘤状砾屑灰岩(L')、角砾灰岩(R)、藻凝块灰岩(A)和含生屑钙质砂岩(S)组合而成,其以角砾灰岩、似瘤状砾屑灰岩和藻凝块灰岩为特征,且发育异地岩块和滑塌变形构造。进一步分析认为:L-M岩石组合为正常的斜坡环境低能沉积;L'-R岩石组合中的角砾灰岩为上斜坡生物灰泥丘崩坍滑动至下部而形成的,似瘤状砾屑灰岩可能是由于L-M岩石组合快速沉积导致沉积物失稳滑动变形、上斜坡生物灰泥丘崩落角砾致使的差异压实和滑动、以及后期物质成分差异引起的压溶作用等共同作用的结果,从而使灰质层发生破碎并被泥质包围形成断续的砾屑状,甚至轻微的位移,进而形成条带特征不明显的杂乱变形构造;微生物岩(Mb)组合为上斜坡的灰泥丘沉积;S-M岩石组合为斜坡上部的浊流沉积。根据上述分析结果建立米仓山西部仙女洞组碳酸盐岩台缘斜坡沉积模式,表明仙女洞组沉积早期米仓山西部存在台缘斜坡相沉积。  相似文献   

3.
蠕虫状灰岩特征和成因新探   总被引:5,自引:0,他引:5  
下扬子地区下三叠统中广泛分布着一种外貌独特的灰岩——蠕虫状灰岩,这种灰岩出现在该区深水和浅水的多种环境中,具有灰泥结构和粒泥(或泥粒)结构;斜层理、生物扰动构造和压扁透镜状构造。蠕虫状灰岩是多成因的,各成因之间有着一定的联系,其中,先期形成的可被后期形成的叠加和改造。沉积作用、沉积分异作用是形成蠕虫状灰岩的一个重要前提,而生物扰动作用、水流作用和压实、压溶作用则是形成各种蠕虫状灰岩的关键。  相似文献   

4.
下扬子巢湖地区下三叠统瘤状灰岩成因再探讨   总被引:1,自引:0,他引:1       下载免费PDF全文
巢湖地区下三叠统整体沉积于较深水环境,广泛发育瘤状灰岩。针对目前该瘤状灰岩成因机制认识争议较大的现 状,文中依据野外实地观测及室内宏观、微观的系统观察,结合沉积环境和成岩作用与瘤状灰岩形成的关系分析,对瘤状 灰岩的成因机制进行综合的探讨。研究表明瘤状灰岩的形成是沉积和成岩作用综合作用的产物,沉积时期不平整CCD界面 的周期性浮动是造成瘤状灰岩细颈化的基础,而CCD界面的周期性浮动可能与早三叠世气侯冷暖周期性变化以及海底底流 作用有关。后期基质泥岩中酸性孔隙水的溶蚀是造成瘤状灰岩细颈处折断的重要原因,压溶作用产生的局部应力场变动造 成瘤状灰岩瘤体杂乱状分布。而前人总结的3种瘤状灰岩,即顺层串珠型、断续型和杂乱型瘤状灰岩,是在沉积与成岩改 造作用逐渐加强条件下依次形成。  相似文献   

5.
中扬子地区下三叠统大冶组瘤状灰岩成因研究   总被引:5,自引:0,他引:5  
本文从基本特征出发,结合岩石学特征,尤其是化学成分及同位素组成等特征,对中扬子地区下三叠统大冶组瘤状灰岩的成因进行了探讨.研究表明,在深水盆地和台缘斜坡下部的沉积环境中,由于周期性的瞬时动荡水体的作用,导致沉积物来源的差异性,再经过成岩作用期的差异压溶作用,形成了本区下三叠统大冶组瘤状灰岩。  相似文献   

6.
浙西地区奥陶系砚瓦山组瘤状灰岩及其成因探讨*   总被引:1,自引:0,他引:1       下载免费PDF全文
对浙江常山黄泥塘剖面奥陶系砚瓦山组瘤状灰岩中瘤体和基质的矿物组成、结构、构造、化学成分及碳氧同位素等做了系统研究,并从其基本特征、尤其是碳氧同位素特征出发,结合前人研究成果,对瘤状灰岩的成因进行了初步探讨。研究表明,瘤状灰岩的瘤体和基质存在明显差异:瘤体主要由方解石组成(70%~98%),基质则以黏土矿物为主(40%~78%),方解石次之(20%~58%);瘤体和基质的δ13CVPDB值分别为0.5‰~1.4‰和-0.4‰~1.1‰,平均值分别为0.9‰和0.2‰, δ18OVPDB 值分别为-12.8‰~-8.0‰和-11.7‰~-9.0‰,平均值分别为-10.6‰和-10.3‰;每个样品中瘤体的碳同位素值和形成温度均比基质高。黄泥塘剖面砚瓦山组瘤状灰岩是沉积物沉积时期周期性底流溶解和成岩过程中差异性压实和压溶共同作用的产物,瘤体原岩中非碳酸盐组分含量及后期压溶作用强度的差异导致瘤状灰岩不同的存在形式,有条带状、断续状和杂乱状3种。  相似文献   

7.
北京周口店豹皮灰岩的变形特征   总被引:1,自引:0,他引:1  
周口店地区广泛分布的寒武纪地层府君山组底部灰岩因其具典型的豹斑状构造而被称为豹皮灰岩。本文主要以出露于周口店黄院地区的豹皮灰岩为研究对象。组成豹皮灰岩的物质成分有2种,一为白云质成分的豹斑,其余部分为泥灰质。在露头尺度上,豹皮灰岩中的豹斑发生了明显的旋转变形并具有一定的定向性,而泥灰质成分则具有清晰的韧性变形特征,为较典型的碳酸盐糜棱岩;在微观尺度上,构成豹斑的白云石矿物未发生韧性变形,而泥灰质成分中的方解石具有明显的细粒化、拉长和定向。豹皮灰岩变形发生时岩石所处的温度介于200~250℃之间。豹皮灰岩的形成经历了原岩形成和后期构造变形改造2个阶段,于寒武纪由沉积作用形成了岩石的物质组分和原生层状构造,在前印支期受水平剪切作用形成岩石的豹斑状构造。  相似文献   

8.
华北地台上寒武统崮山组出现了大量的竹叶状灰岩。通过对山东唐王寨剖面崮山组的系统研究,识别出页岩、疙瘩状泥晶灰岩、泥质条带泥晶灰岩、薄层状泥晶灰岩、生物扰动泥晶灰岩、颗粒质(生物碎屑)泥岩-泥质颗粒岩、含交错层理鲕粒灰岩及竹叶状灰岩8种岩石类型,这些岩石类型组成了页岩盆地、深潮下带及浅潮下带岩石组合。竹叶状灰岩中砾屑和基质的特征及其沉积序列,表明砾屑和基质的来源多样并且在不同的沉积环境中其成因具有多样性。据此总结出崮山组竹叶状灰岩具有4种可能的成因类型:1)竹叶状灰岩中砾屑和基质可能均为原地形成或者仅有短距离的搬运过程;2)竹叶状灰岩中砾屑和基质可能均为近岸形成并经历了长距离的搬运过程,或者竹叶状灰岩的沉积环境经历了海平面的突然升高;3)竹叶状灰岩中基质可能来源于近岸未固结的鲕粒和生物碎屑及原地的灰泥,与原地破碎生成的砾屑和灰泥等混合沉积;4)竹叶状灰岩中砾屑可能来源于远岸的固结的泥晶灰岩,并经搬运作用与原地未固结的灰泥及骨架颗粒等基质混合沉积。  相似文献   

9.
湘西排碧位于中上扬子陆块的东南缘,前人认为在寒武纪第三世时期该地区位于以各种类型的“碳酸盐重力流沉积”发育为显著特征的“台缘斜坡相带”内,其主要岩石类型为泥质条带灰岩及砾屑灰岩.本文通过对花桥组上段—车夫组典型沉积物的岩石组分及沉积构造进行详细研究,发现条带灰岩并非泥质条带灰岩,而是由灰岩条带——颗粒灰岩、泥晶灰岩与粉砂质条带——粉砂质灰岩、纹层状含炭质粉砂质灰岩互层组成,表现出内源碳酸盐沉积物与陆源碎屑沉积物混积以及陆棚环境沉积物的典型特征.砾屑灰岩及伴生岩石组合发育丘状(洼状)交错层理等众多风暴成因的沉积构造,为具有不同风暴沉积序列的风暴沉积物.此外,花桥组上段—车夫组沉积物中含各种藻类等浅水生物及大量三叶虫骨刺.因此,认为花桥组上段—车夫组的沉积环境应为正常浪基面以下、风暴浪基面以上,受周期性强风浪作用影响的混积陆棚环境.  相似文献   

10.
湘西花垣排碧寒武系花桥组上段—车夫组沉积环境的探讨   总被引:1,自引:0,他引:1  
湘西排碧位于中上扬子陆块的东南缘,前人认为在寒武纪第三世时期该地区位于以各种类型的"碳酸盐重力流沉积"发育为显著特征的"台缘斜坡相带"内,其主要岩石类型为泥质条带灰岩及砾屑灰岩。本文通过对花桥组上段—车夫组典型沉积物的岩石组分及沉积构造进行详细研究,发现条带灰岩并非泥质条带灰岩,而是由灰岩条带——颗粒灰岩、泥晶灰岩与粉砂质条带——粉砂质灰岩、纹层状含炭质粉砂质灰岩互层组成,表现出内源碳酸盐沉积物与陆源碎屑沉积物混积以及陆棚环境沉积物的典型特征。砾屑灰岩及伴生岩石组合发育丘状(洼状)交错层理等众多风暴成因的沉积构造,为具有不同风暴沉积序列的风暴沉积物。此外,花桥组上段—车夫组沉积物中含各种藻类等浅水生物及大量三叶虫骨刺。因此,认为花桥组上段—车夫组的沉积环境应为正常浪基面以下、风暴浪基面以上,受周期性强风浪作用影响的混积陆棚环境。  相似文献   

11.
下扬子地区三迭系下统瘤状灰岩成因研究   总被引:2,自引:0,他引:2  
  相似文献   

12.
中国南方泥盆系瘤状灰岩的成因   总被引:9,自引:0,他引:9  
高计元 《沉积学报》1988,6(2):77-86
本文从碳、氧同位素、化学成分、矿物组成及岩石的结构、构造等特点出发,探讨了广东凡口和广西大厂两类不同类型的瘤状灰岩的成因。广西大厂地区的瘤状灰岩是在较深的水体中沉积,并在周期性的海底底流的溶解作用下形成的。而凡口地区的瘤状灰岩则可能是在比较浅的水体中快速堆积,在重力作用的挤压流动以及成岩作用期间的溶解作用下形成的。  相似文献   

13.
Abstract In mid‐Middle Cambrian time, shallow‐water sedimentation along the Cordilleran passive margin was abruptly interrupted by the development of the deep‐water House Range embayment across Nevada and Utah. The Marjum Formation (330 m) in the central House Range represents deposition in the deepest part of the embayment and is composed of five deep‐water facies: limestone–argillaceous limestone rhythmites; shale; thin carbonate mud mounds; bioturbated limestone; and cross‐bedded limestone. These facies are cyclically arranged into 1·5 to 30 m thick parasequences that include rhythmite–mound, rhythmite–shale, rhythmite–bioturbated limestone and rhythmite–cross‐bedded limestone parasequences. Using biostratigraphically constrained sediment accumulation rates, the parasequences range in duration from ≈14 to 270 kyr. The mud mounds are thin (<2 m), closely spaced, laterally linked, symmetrical domes composed of massive, fenestral, peloidal to clotted microspar with sparse unoriented, poorly sorted skeletal material, calcitized bacterial(?) filaments/tubes and abundant fenestrae and stroma‐ tactoid structures. These petrographic and sedimentological features suggest that the microspar, peloids/clots and syndepositional micritic cement were precipitated in situ from the activity of benthic microbial communities. Concentrated growth of the microbial communities occurred during periods of decreased input of fine detrital carbonate transported offshore from the adjacent shallow‐water carbonate platform. In the neighbouring Wah Wah Range and throughout the southern Great Basin, coeval mid‐Middle Cambrian shallow‐water carbonates are composed of abundant metre‐scale, upward‐shallowing parasequences that record high‐frequency (104?105 years) eustatic sea‐level changes. Given this regional stratigraphic relationship, the Marjum Formation parasequences probably formed in response to high‐frequency sea‐level fluctuations that controlled the amount of detrital carbonate input into the deeper water embayment. During high‐frequency sea‐level rise and early highstand, detrital carbonate input into the embayment decreased as a result of carbonate factory retrogradation, resulting in the deposition of shale (base of rhythmite–shale parasequences) or thin nodular rhythmites, followed by in situ precipitated mud mounds (lower portion of rhythmite–mound parasequences). During the ensuing high‐frequency sea‐level fall/lowstand, detrital carbonate influx into the embayment increased on account of carbonate factory pro‐ gradation towards the embayment, resulting in deposition of rhythmites (upper part of rhythmite–mound parasequences), reworking of rhythmites by a lowered storm wave base (cross‐bedded limestone deposition) or bioturbation of rhythmites by a weakened/lowered O2‐minimum zone (bioturbated lime‐ stone deposition). This interpreted sea‐level control on offshore carbonate sedimentation patterns is unique to Palaeozoic and earliest Mesozoic deep‐water sediments. After the evolution of calcareous plankton in the Jurassic, the presence or absence of deeper water carbonates was influenced by a variety of chemical and physical oceanographic factors, rather than just physical transport of carbonate muds.  相似文献   

14.
This paper focuses on the formative processes of limestone pseudoconglomerates in the Gushan and Chaomidian Formations (Late Cambrian) of the North China Platform, Shandong Province, China. The Gushan and Chaomidian Formations consist mainly of limestone and shale (marlstone) interlayers, wackestone to packstone, grainstone and microbialite as well as numerous limestone conglomerates. Seventy‐three beds of limestone pseudoconglomerate in the Gushan and Chaomidian Formations were analysed based on clast and matrix compositions, internal fabric, sedimentary structures and bed geometry. These pseudoconglomerates are characterized by oligomictic to polymictic limestone clasts of various shapes (i.e. flat to undulatory disc, blade and sheet), marlstone and/or grainstone matrix and various internal fabrics (i.e. intact, thrusted, edgewise and disorganized), as well as transitional boundaries. Limestone pseudoconglomerates formed as a result of soft‐sediment deformation of carbonate and argillaceous interlayers at a shallow burial depth. Differential early cementation of carbonate and argillaceous sediments provided the requisite conditions for the formation of pseudoconglomerates. Initial deformation (i.e. burial fragmentation, liquefaction and injection) and subsequent mobilization and disruption of fragmented clasts are two important processes for the formation of pseudoconglomerates. Burial fragmentation resulted from mechanical rupture of cohesive carbonate mud, whereas subsequent mobilization of fragmented clasts was due to the injection of fluid materials (liquefied carbonate sand and water‐saturated argillaceous mud) under increased stress. Storm‐wave loading was the most probable deformation mechanism, as an external triggering force. Subsequent re‐orientation and rounding of clasts were probably prolonged under normal compactional stress. Eventually, disrupted clasts, along with matrix materials, were transformed into pseudoconglomerates by progressive lithification. Soft‐sediment deformation is prevalent in alternate layers of limestone and mud(marl)stone and/or grainstone, regardless of their depositional environments.  相似文献   

15.
桂林地区上泥盆统碳酸盐岩沉积相   总被引:2,自引:0,他引:2  
方积义 《沉积学报》1985,3(4):73-82
前言 桂林地区上泥盆统主要是一套海相碳酸盐地层,为岩溶发育的主要岩石之一。同期异相明显,可以划分为两个岩相:一是白云岩灰岩相,下部为桂林组,上部为融县组,整合接触,二是硅质岩扁豆状(瘤状)灰岩相,下部为榴江组,上部为三里组,整合接触。桂林组可与榴江组对比,属晚泥盆世早期沉积,融县组与三里组相当,属晚泥盆世晚期沉积。它们与下伏的中泥盆统东岗岭组为整合接触,而与上覆的下石炭统岩关阶呈整合或假整合接触关系。  相似文献   

16.
Bulk carbonate samples of hemipelagic limestone–marl alternations from the Middle and Upper Triassic of Italy are analysed for their isotopic compositions. Middle Triassic samples are representative of the Livinallongo Formation of the Dolomites, while Upper Triassic hemipelagites were sampled in the Pignola 2 section, within the Calcari con Selce Formation of the Southern Apennines in Southern Italy. Triassic hemipelagites occur either as nodular limestones with chert nodules or as plane‐bedded limestone–marl alternations which are locally silicified. In the Middle Triassic Livinallongo Formation, diagenetic alteration primarily affected the stable isotopic composition of sediment surrounding carbonate nodules, whereas the latter show almost pristine compositions. Diagenesis lowered the carbon and oxygen isotope values of bulk carbonate and introduced a strong correlation between δ13C and δ18O values. In the Middle Triassic successions of the Dolomites, bulk carbonate of nodular limestone facies is most commonly unaltered, whereas carbonate of the plane‐bedded facies is uniformly affected by diagenetic alteration. In contrast to carbonate nodules, plane‐bedded facies often show compaction features. Although both types of pelagic carbonate rocks show very similar petrographic characteristics, scanning electron microscopy studies reveal that nodular limestone consists of micrite (< 5 μm in diameter), whereas samples of the plane‐bedded facies are composed of calcite crystals ca 10 μm in size showing pitted, polished surfaces. These observations suggest that nodular and plane‐bedded facies underwent different diagenetic pathways determined by the prevailing mineralogy of the precursor sediment, i.e. probably high‐Mg calcite in the nodular facies and aragonite in the case of the plane‐bedded facies. Similar to Middle Triassic nodular facies, Upper Triassic nodular limestones of the Lagonegro Basin are also characterized by uncorrelated δ13C and δ18O values and exhibit small, less than 5 μm size, crystals. The alternation of calcitic and aragonitic precursors in the Middle Triassic of the Dolomites is thought to mirror rapid changes in the type of carbonate production of adjacent platforms. Bioturbation and dissolution of metastable carbonate grains played a key role during early lithification of nodular limestone beds, whereby early stabilization recorded the carbon isotopic composition of sea water. The bulk carbonate δ13C values of Middle and Upper Triassic hemipelagites from Italy agree with those of Tethyan low‐Mg calcite shells of articulate brachiopods, confirming that Triassic hemipelagites retained the primary carbon isotopic composition of the bottom sea water. A trend of increasing δ13C from the Late Anisian to the Early Carnian, partly seen in the data set presented here, is also recognized in successions from tropical palaeolatitudes elsewhere. The carbon isotopic composition of Middle and Upper Triassic nodular hemipelagic limestones can thus be used for chemostratigraphic correlation and palaeoenvironmental studies.  相似文献   

17.
In a vast region in Scandinavia, a monotonous and extremely slow deposition of anaerobic mud persisted through the Late Cambrian. After a long time with no or very little sedimentation, deposition was recommenced in the Early Ordovician at an equally slow rate, but with calciumcarbonate as the main component. pH at the bottom was so low that the deposition of the carbonate in the long run only just outweighed the solution, which occurred frequently and sometimes during long periods. By oscil- lating solution and precipitation in the pores, lime mud could set into limestone on the sea-bed. By more definite phases of solution, most of the limestone could be reduced to a marl bed with remains of undissolved limestone. Single limestone beds formed over such marl were apt to glide and deform into anticlines, which rose from the sea- bottom to heights up to 20 cm. These folds were rarely destroyed mechanically, which speaks for a tranquil bottom environment. Their crests were, however, cheinically corroded in the same way as discontinuity surfaces, which were also formed at many intervals. The processes by which the discontinuity surfaces were formed never affected a fold mechanically. The corrosion of the fold crests and of the discontinuity surfaces took place on the bottom of the sea, at safe distance from the surface. The corrosion was most frequently associated with the formation, and maintenance, of a glauconite skin. The abundance of preserved fold structures indicates that the region was relatively deep under the sea for most of the Early Ordovician. Later on, already in the middle-Late Arenigian, the sea may have become shallower. The findings are extrapolated, with some probable interpretations and new observations, to include a hypothetical explanation for the passage from black shale to limestone facies.  相似文献   

18.
杨朝青  庆安 《沉积学报》1990,8(2):59-66
云南曲靖中泥盆统曲靖组中发育了陆源碎屑与海相碳酸盐的混合沉积。混合沉积发生在以泥为背景沉积物的海湾中,系由突发性事件造成,属间断混合。主要表现为:在同一沉积环境背景上,陆源碎屑与灰泥和生物屑混合掺杂而形成混合组分沉积物。本文还对混合组分岩石的分类命名作了讨论,并命名了混合沉积的典型产物“混积岩”  相似文献   

19.
川西北早志留世陆源碎屑──碳酸盐混积缓坡   总被引:10,自引:6,他引:10  
研究区位于扬子地块西北缘,由一套巨厚的页岩、泥岩层夹生物礁及透镜状和不规则层状风暴生屑灰岩、瘤状灰岩组成。根据区内特征的岩石类型及其组合、分布和相应的化石生态,作者认为本区兰多维列期至早温洛克期时为一典型的陆源碎屑--碳酸盐混积均斜缓坡,并且从浅到深划分为滨岸、浅缓坡、深缓坡及盆地等亚环境。滨岸区位于潮间带,以潮坪碳酸盐岩为代表;浅缓坡位于浪基面至风暴浪基面之间,岩性组合为A、B类风暴岩,A、B类瘤状灰岩、生物礁灰岩及粘结岩;深缓坡位于风暴浪基面至最大风暴浪基面之间,岩性以D、E类风暴岩、C类瘤状灰岩及泥页岩组合为特征;盆地处于最大风暴浪基面之下,为黑色泥页岩沉积。结合早志留世时全球冰川作用,文中讨论了海平面变化的原因及对环境的影响。  相似文献   

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