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1.
夏飞勇  焦养泉  荣辉  吴立群  朱强  万璐璐 《地球科学》2019,44(12):4235-4251
沉积物的地球化学成分在沉积岩物源分析及构造背景的研究中具有重要的作用.对研究区4口钻孔中的姚家组砂岩进行了详细的岩石学和地球化学研究,结果显示,砂岩碎屑颗粒石英含量最高,长石次之,岩屑含量最低,平均值分别为42%、37%和21%,具有锆石+钛磁铁矿+石榴子石的重矿物组合,反映源岩以酸性岩浆岩或变质岩为主,Dickinson判别图解表明物源主要来自于大陆物源区;姚家组砂岩的稀土元素以轻稀土富集、重稀土平坦、中度铕负异常为特征.砂岩CIA值为52.02~60.16,平均值为56.69,反映了干燥气候背景下弱的化学风化作用.源岩属性判别图解表明源岩为再旋回的古老沉积物及长英质火山岩.主量、微量和稀土元素的构造背景判别图解综合表明姚家组砂岩物源区为被动大陆边缘构造环境,结合区域构造演化,认为姚家组砂岩的物源为华北克拉通北缘燕山陆内造山带发育的火山-沉积岩系.   相似文献   

2.
秦岭造山带中分布于商丹和勉略缝合带之间的泥盆系,发育有众多Au、Ag和Pb-Zn矿床,长期以来备受关注。对于泥盆系物源和形成环境认识始终存在不同认识。砂岩碎屑组成、碎屑重矿物、地球化学成分、砾岩组成以及古水流研究表明,北秦岭是秦岭泥盆系的主要物源区,盆地基底隆起也是泥盆系重要物源区。砂岩碎屑组成、碎屑重矿物和砾岩组成表明,泥盆系物源区曾出露有岛弧火山岩、花岗岩、变质岩及少量沉积岩、超镁铁岩。砂岩地球化学成分和砂岩碎屑模式研究表明,秦岭造山带中泥盆系主要形成于活动大陆边缘,其碎屑沉积物来自多种构造环境中的岩石单元。  相似文献   

3.
早白垩世多尼组沿西藏北部班公湖—怒江缝合带沿线广泛分布,其沉积环境、碎屑组成和沉积物源等记录了班公湖—怒江特提斯洋闭合后拉萨—羌塘地体碰撞的演化历史。班戈地区多尼组以角度不整合于侏罗纪海相复理石之上,主要由砾岩、砂岩、粉砂岩、泥岩及少量安山岩夹层组成。砂岩中普遍发育槽状、板状、楔状交错层理,泥岩中可见泥裂,砾岩多为透镜状并发育叠瓦状构造,指示其形成于河流—三角洲沉积,且总体呈现出向上变粗的沉积组合序列。对多尼组中安山岩夹层样品进行LA?ICP?MS锆石U?Pb定年,获得206U/238Pb加权平均年龄为114 ± 0.4 Ma。对砾岩中砾石成分和砂岩碎屑组成的统计分析结果显示,多尼组沉积组合中的碎屑组成主要来自蛇绿岩、中酸性岩浆岩、沉积岩和少量变质岩。砂岩重砂矿物组合和古水流分析结果表明,多尼组的沉积物源主要来自其南北两侧的拉萨和羌塘地体以及其下伏蛇绿岩。综合区域地质资料,班戈地区早白垩世多尼组是班公湖—怒江特提斯洋闭合过程中拉萨—羌塘地体碰撞背景下沉积作用的产物。  相似文献   

4.
库鲁克塔格南华系记录了塔里木北缘同期的火山-沉积事件和蚀源区物质组成及演化的信息。该区不同剖面内南华系各组砂岩碎屑组分的统计分析显示,贝义西组砂岩在不同剖面内组成差异显著:西山口剖面以岩屑砂岩为主,且岩屑为火山岩岩屑与沉积岩岩屑,物源为再旋回地层,而依格孜塔格剖面以长石砂岩和岩屑长石砂岩为主,岩屑主要为变质岩岩屑,物源为下伏古元古代高级变质岩。砂岩碎屑组成在剖面上垂向的变化表明贝义西组沉积期与照壁山组沉积期间(725 Ma±)存在一个沉积转型事件,导致贝义西组之上的照壁山组、阿勒通沟组及特瑞艾肯组砂岩组成在不同区域趋于一致,转变为代表基底隆起-过渡大陆区物源的典型“长石砂岩”。南华系砂岩碎屑组成与大陆裂谷盆地沉积砂岩相似,且物源区存在由前裂谷地层-过渡裂谷肩部-切割裂谷肩部-克拉通内部的连续演化过程,是库满凹陷早期裂解的岩相学记录。  相似文献   

5.
物源分析对研究一个地区的沉积作用、构造演化及储层特征等方面具有重要的意义。为了查明西藏贡觉盆地古近系贡觉组砂岩的物源特征,本文对研究区的重矿物组合特征进行了分析,并结合前人资料揭示了研究区古近系贡觉组砂岩的物源方向,认为油扎、兴达、斑那等地物源方向为自南东向北西,哈家乡物源除有来自于油扎方向外,还有来自于东部逆冲断层上盘的相邻古生界和三叠纪的火成岩单元加入。重矿物组合特征及ATi、GZi等特征指数表明古近系贡觉组物源区成因岩类型较多,但含量不同,以中性火山岩为主,沉积岩较少;根据指相矿物特征判断古近系贡觉组砂岩形成环境为水体较浅的氧化环境,但氧化程度不同,南东部较北西部氧化环境强,斑那村较油扎乡水体浅,氧化度更强。  相似文献   

6.
The clastic sediments of the Murree Formation of Miocene age are exposed in Jhelum valley areas of Azad Jammu and Kashmir Pakistan. Field observations revealed the cyclic deposition in the Murree Formation. The sandstone, siltstone, and shale constitute a single cycle within the formation. This single unit is divided into five different lithofacies which constitute the Bouma sequence in the Murree Formation. The Murree Formation shows faulted contacts with Panjal Formation and Nagri Formation in the study area. The modal mineralogy data obtained from the petrography of sandstone indicates that sandstone is litharenite and lithic greywacke. The mineralogical and textural data suggests that sandstone is compositionally mature and poorly to moderately sorted. The dominantly angular to sub angular quartz grains show nearness of the source area. Fractured and sutured quartz grain reveals tectonodiagentic changes that occurred in Murree Formation. The sandstone experienced diagenetic changes. The pressure solution and cementation reduced the primary porosity of sandstone. However, alteration of feldspar and fractures in grains have produced secondary porosity. The X-ray diffraction (XRD) of the shale samples indicates that shale of the Murree Formation is argillaceous and dominated by illite clay mineral. The illite crystallinity values indicate very low grade metamorphism of Murree Formation in core of Hazara Kashmir Syntaxis. The petrographic data suggests that the provenance of sandstone is recycled orogen. Quartz is of igneous and metamorphic origin. Feldspar (albite and microcline) composition suggests its derivation from acidic igneous rocks. The rock fragments of volcanics, slate, phyllite, and schist suggest igneous and metamorphic provenance. The petrographic data suggests that at the time of deposition of Murree Formation, igneous and low grade metamorphic rocks were exposed. However, presence of some clasts of carbonates indicates that sedimentary rocks were also exposed in the source region. The quartz content and clay minerals in the shale revealed that source region was igneous and metamorphic rocks. Cyclic deposition, lithofacies, and various sedimentary structures like cross bedding, ripple marks, and calcite concretions suggest that deposition of Murree Formation occurred in fluviatile environment by meandering river system having decreasing turbidity current.  相似文献   

7.
Modal analysis, bulk-rock geochemistry and phase chemistry of sandstones of the Miocene Fat'ha and Injana formations, northern Iraq, show that the clastics were derived from heterogeneous sources that include basic igneous and metamorphic rocks as well as older sedimentary rocks. The sandstones are generally carbonate-rich lithic arenites. Their geochemistry supports the petrographic results and indicates that they are all Fe-rich, lithic or quartz arkosic sandstones. According to geochemical data, garnets are derived from metamorphic sources, hornblende is of igneous origin, and clinopyroxenes, are produced by basic igneous rocks. Epidote is most probably to be a product of disintegration of metamorphic rocks, essentially, metamorphosed igneous rocks. Rutile geochemistry implies low-grade metamorphic and basic to ultrabasic igneous sources. Chemical composition of chromian spinels indicates that they are derived from Alpine-type peridotite. The ophiolitic-radiolarite belts of Taurus-Zagros as well as the uplifted Cretaceous and Paleocene strata of north and northeastern Iraq are likely to be the major source of clastics to the Fat'ha–Injana basin, a foreland basin formed as a result of the continental Arabian and Turkish/Iranian plates collision.  相似文献   

8.
PROVENANCE OF LOWER TERTIARY REDBEDS IN HOH XIL BASIN AND UPLIFT OF NORTHERN TIBET PLATEAU  相似文献   

9.
沉积区物源分析对研究造山带构造演化、盆地沉积过程及划分油气区带等方面具有重要的意义。为了查明柴达木盆地北缘构造带古近纪物源方向,通过对古近系碎屑岩的碎屑组成、岩屑成分、重矿物组合特征和ZTR指数的研究,并结合前人的研究成果,初步确定古近纪柴北缘西段发育五大主力物源区:(1)牛东物源主要来自阿尔金山东段,重矿物组合以稳定且含量较高的电气石区别于邻区,碎屑组分中以石英和含量较高的长石为特征,岩屑中含有少量的碳酸盐岩岩屑;(2)冷北物源主要来自小赛什腾山方向,重矿物组合中榍石和赤铁矿的含量明显偏高,碎屑组分中以高岩屑为特征;(3)赛西物源主要来自赛什腾山西段,电气石和角闪石含量较高,碎屑组分较为均一,母岩以变质岩和火成岩为主,含少量碳酸盐岩岩屑;(4)赛东物源主要来自赛什腾山东段,其白钛矿含量明显高于邻区,碎屑组分以较高含量的石英和长石为主,岩屑类型主要为变质岩、火成岩和沉积岩岩屑;(5)九龙山物源主要来自九龙山和绿梁山地区,石榴石含量高且稳定,碎屑组分较为均一,母岩以变质岩和火成岩为主,含少量的非碳酸盐岩类沉积岩岩屑。  相似文献   

10.
DANIELA FONTANA 《Sedimentology》1991,38(6):1085-1095
The Upper Cretaceous Pietraforte Formation, an allochthonous unit of the Ligurian domain in the northern Apennines, provides a case study of the importance of detrital carbonate grains for provenance determination in sandstones. The Pietraforte Formation is composed of turbidite sandstones with subordinate conglomerate, deposited in an external sector of the Ligurian ocean, close to the Adriatic margin. The sandstones have a lithic composition, characterized by abundant sedimentary and metasedimentary rock fragments (35–56% of the terrigenous framework), little feldspar (<7%) that is almost exclusively plagioclase, and a high ratio of fine- to coarse-grained polycrystalline quartzose grains to total quartzose grains (average Qp/Qt=0.37). Carbonate rock fragments dominate the lithic association of both sandstones and conglomerates and provide the most detailed information for provenance determination. They are composed primarily of dolostones and a wide variety of limestones containing identifiable age-diagnostic microfossils. Fossils and rock textures of carbonate clasts document the erosion of Upper Triassic to Lower Cretaceous shelf and pelagic carbonate units which can be matched with Mesozoic rock types present in the Tuscan domain of the northern Apennines. Compositional results constrain the source of the Pietraforte Formation sandstones to the western margin of the Adriatic plate, from uplifted sedimentary and metasedimentary rocks of the Tuscan domain and its low-grade metamorphic basement. Coeval intrabasinal sources provided additional supplies to the depositional basin of the Pietraforte Formation; this intrabasinal supply consists of shelf carbonate allochems, planktonic foraminifera and argillaceous rip-up clasts. The presence of carbonate grains from shallow-water environments may indicate the existence during deposition of marginal shelf areas favourable for carbonate allochem production.  相似文献   

11.
虎林盆地北部坳陷地层包括下白垩统裴德组、下云山组、上云山组、珠山组,渐新统虎林组和中新统富锦组。北部坳陷砂岩-泥岩由常量、微量和稀土元素组成,揭示早白垩世砂岩-泥岩源区构造背景为活动大陆边缘,渐新统斗新统砂岩-泥岩多呈现出从活动大陆边缘向大陆岛弧转换的地球化学特征。结合沉积相特征和岩屑所反映的源区岩性特点,认为早白垩世时期物源主要来自于坳陷北部完达山造山带和南部古隆起;渐新统物源则主要来自盆地东北部的完达山造山带,并且碎屑岩的原始物质均来自上地壳。  相似文献   

12.
东准噶尔喀姆斯特下泥盆统阿拉比也巴斯他乌组和下石炭统卡姆斯特组代表陆壳增生不同阶段的沉积响应.碎屑岩碎屑组成模式和地球化学分析结果表明阿拉比也巴斯他乌组形成于大洋-活动大陆过渡型构造环境,物源区主要为发育在过渡型地壳之上的岩浆岛弧;卡姆斯特组形成于活动大陆型构造环境,物源区主要为大陆岛弧环境的切割岩浆弧.沉积相、相组合及生物生态等沉积特征显示两组的沉积环境分别为海底斜坡和海底扇中扇-外扇盆地平原.结合区域构造分析和地层对比研究,下泥盆统阿拉比也巴斯他乌组海底斜坡沉积是东准噶尔构造带早泥盆世弧后盆地沉积响应的主要记录,卡姆斯特组海底扇-海底平原沉积则主要记录了东准噶尔复合地体早石炭世晚期弧间残余海盆的沉积响应.两套沉积响应记录的环境演化受控于中亚型造山带复杂的造山作用.  相似文献   

13.
物源供应不仅影响了冀中坳陷饶阳凹陷蠡县斜坡地区沙河街组一段展布特征,而且控制了沉积类型和相带分布,进而决定了有利油气储层的发育.为了厘清蠡县斜坡地区的物源特征,从而指导进一步的沉积体系研究和勘探开发工作,本文基于饶阳凹陷蠡县斜坡3D地震资料、古近系沙河街组沙一段岩石学特征、重矿物组合及ZTR指数、碎屑锆石晶型及U-Pb...  相似文献   

14.
通过详实的野外调查和室内研究,在西藏吉瓦地区新发现了砂岩型铜矿床,赋矿层位为渐新统日贡拉组,矿床类型为层控矿床。为探讨日贡拉组砂岩的物源特征及其构造背景、查明其含矿物质来源,通过碎屑矿物定量分析、元素地球化学方法及重矿物组合分析等一系列物源分析方法对日贡拉组的物质来源进行了研究。结果显示,研究区主要岩性为岩屑砂岩,岩屑主要成分为酸性火山岩,砂岩结构成熟度低,分选磨圆差。碎屑组分分析表明物源集中在火山弧物源区,地球化学特征为硅质含量高、LREE富集、HREE相对亏损、显示Eu负异常,均表明物源与酸性火山岩密切相关;日贡拉组砂岩的大地构造背景主要为大陆岛弧,砂岩碎屑来自上地壳长英质源区。重矿物组合以反映物源为中酸性岩浆岩成分的赤褐铁矿+磁铁矿、锆石、电气石、石榴子石为主,沉积环境为气候干旱、水体较浅的富氧环境。锆石形态特征指示物源距母岩区较近,重矿物的相关性分析也指示了物源与火山岩密切相关。研究区的日贡拉组砂岩与早白垩酸性火山岩微量元素及重矿物的对比表明,碎屑物质源区特点从岩石学特征、地球化学特征及重矿物组合特征上均表现出了亲缘关系,物源成分与火山作用紧密相关,很可能主要来自班公湖-怒江洋壳南向俯冲与雅鲁藏布江洋壳北向俯冲双重制约条件下产生于火山弧环境中的早白垩世火山岩。日贡拉组发现了砂岩型铜矿,火山岩提供了成矿物质来源,为寻找同类型的矿床开启思路。  相似文献   

15.
沉积物中重矿物分布受物源区、构造抬升与剥蚀作用、古地貌以及沉积古气候、古环境等多种因素影响,因此沉积重砂矿物的研究可应用于物源区、沉积环境的分析,阐明构造旋回与沉积作用的响应关系。本文通过对塔中地区中1井等6口探井上泥盆统东河砂岩和志留系柯坪塔格组砂岩中重砂矿物分析,提出了塔中东河砂岩重砂矿物主要来自稳定的基底再沉积及花岗岩来源,但受近源的基性火山岩及岩浆期后热液作用影响较大;志留系下砂岩重砂矿物主要来自下覆碳酸盐岩、花岗岩和搬运再沉积物,总体形成于稳定的、多物源的构造-沉积环境,物源方向可能是东南至西北方向。  相似文献   

16.
上二叠统哲斯组广泛出露于东北地区南部,主要由砂岩、泥岩、灰岩、页岩组成,含腕足、苔藓虫和腹足化石. 对内蒙古索伦地区的哲斯组中粗粒长石岩屑砂岩和中细粒长石砂岩样品进行了LA-ICP-MS锆石U-Pb测年,数据记录了4个年龄区间:(265±2)~(348±8)Ma,峰值年龄为(272±2)Ma;(358±3)~(453±4)Ma,峰值年龄(403±3)Ma;(470±6)~(555±4)Ma,峰值年龄为(511±3)Ma;剩余的前寒武纪锆石(693±7)Ma,(834±9)Ma,(854±6)Ma,(886±5)Ma,(1 175±7)Ma,(1 440±8)Ma,(1 748±17)Ma和(2 150±13)Ma. 其中峰值年龄为272 Ma的锆石年龄占绝对优势(达到51%),并与大石寨组火山岩和北侧的岛弧岩浆岩一致,403 Ma和511 Ma峰值年龄为东北地区泛非期变质杂岩的年龄范围,其余古老年龄也均为大兴安岭变质基底的年龄范围. 上述年龄特征显示,哲斯组物源主要来自相邻地区分布的早古生代岛弧火山岩,少量来自东北相邻地块的变质基底. 鉴于东北地区哲斯组分布范围广,岩性多为碳酸岩和碎屑岩,古生物化石保存完整,沉积环境稳定,证明哲斯组应为大陆边缘沉积.  相似文献   

17.
苏北盆地东台坳陷砂岩统计结果表明,碎屑岩岩屑以火成岩和变质岩岩屑为主,早期(泰州组)以火成岩岩屑为主,晚期(古新统)以变质岩岩屑为主。Dickinson三角投图表明,物源区的大地构造背景属于再旋回造山带。东台坳陷重矿物纵向上变化特征指示古近纪三垛组沉积时期,物源区隆升强烈,剥蚀加速,导致不稳定重矿物显著增加。物源区对比结果揭示出张八岭隆起带是东台坳陷碎屑岩的主要物源区, 其抬升过程对苏北盆地古近系的沉降活动具有强烈的控制作用。  相似文献   

18.
Provenance of the Oligocene Barail sandstones has been ascertained by means of petrographic and heavy mineral studies. Petrography reveals an abundance of angular to sub-rounded monocrystalline, non-undulatory quartz followed by lithic fragments. The overall composition of sandstones matches with those of sublith-arenites. The heavy mineral suite of Barail sandstones displays rounded to sub-rounded as well as euhedral / angular grains of iron oxide, zircon, tourmaline, rutile, kyanite, sillimanite and staurolite in decreasing order of abundance. Petrography coupled with heavy mineral suite suggests for a mixed provenance dominated by a sedimentary source of recycled orogenic provenance in a foreland basin setup.  相似文献   

19.
程俊  石卫刚  翟杰  李海波  刘江华 《地质通报》2016,35(9):1472-1478
综合露头剖面、砂岩碎屑组分、地球化学、阴极发光等资料的研究,对西藏白朗地区南部三叠系沉积环境及物源开展了研究。该区三叠纪地层以灰黑色泥岩、浅灰白色石英砂岩、长石石英砂岩、灰色灰岩为主,沉积背景为拉轨岗日被动陆缘盆地的浅海-半深海环境。碎屑岩及其地球化学分析结果反映,物源总体来自克拉通内部。阴极发光结果表明,物源区石英主要为变质成因,次为火成岩成因。综合判定,研究区该套地层为下—中三叠统吕村组和上三叠统涅如组,物源区来自南部高喜马拉雅基底杂岩带。  相似文献   

20.
碎屑沉积是山脉隆升和盆地沉积的直接记录,包括碎屑重矿物研究在内的碎屑沉积物的分析是开展盆山耦合研究的必要手段。对库车坳陷白垩系—第三系砂岩中重矿物含量特征进行了系统的研究,并应用电子探针技术分析碎屑石榴石和钛铁矿的化学组成,研究表明库车坳陷白垩—第三系源区主要由沉积岩、变质岩和酸性火山岩组成。白垩系砂岩中的石榴石来自西南天山蓝片岩和低级变质岩的比例较大,而第三系砂岩中的石榴石中富铁铝榴石组分,多来自高级变质岩。白垩系砂岩中的钛铁矿多来自变质岩,上第三系砂岩中来自火成岩的钛铁矿比例增加。由此可以认为南天山的大规模隆升和剥蚀发生在第三纪以来,由于它的隆升遮挡了南天山北缘古生代增生杂岩体对库车坳陷的物质贡献,并且随着剥蚀的加深,高级变质岩和火成岩的出露越来越多。  相似文献   

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