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1.
冈底斯弧前区域地层沉积记录,对新特提斯洋消亡和印度-亚洲碰撞过程的研究具有十分重要的意义。位于西藏南部札达地区的达机翁组,北邻冈底斯岩浆弧,南靠雅鲁藏布江缝合带。岩石组成主要包括砾岩、岩屑砂岩、泥页岩和灰岩等。沉积环境分析认为达机翁组形成于扇三角洲相环境。火山灰锆石U-Pb定年、碎屑锆石最年轻年龄以及底栖有孔虫化石组合共同约束达机翁组的形成时代为晚白垩世-始新世早期(即ca.73~49Ma)。物源区分析结果表明达机翁组物源类似于区域上分布的日喀则弧前盆地沉积,直接以北侧冈底斯岩浆弧为主要物质源区。通过与区域弧前沉积对比,为冈底斯弧前盆地海相地层时代提供制约,结果显示新特提斯洋在亚洲大陆南缘的弧前海退存在东西方向上的穿时性,即海水自东向西逐渐退出,并最终在~49Ma退出冈底斯-拉达克弧前区域。  相似文献   

2.
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   

3.
通过对江汉平原主要河流沉积物的重矿物组合、特征矿物以及能够反映沉积物稳定状况、物源及成熟度的重矿物特征指数(ATi,GZi和ZTR)进行对比分析,发现在江汉平原范围内,长江和汉江及其长江主要支流的沉积物中重矿物特征具有显著的差异。长江的重矿物组合模型为:  锆石+绿帘石+辉石+绿泥石+金属矿物,特征矿物是锆石和辉石;   汉江的重矿物组合模型为:  绿帘石+角闪石+石榴石+绿泥石+金属矿物,特征矿物是角闪石、石榴石;   另外,清江、漳河、沮水和玛瑙河的重矿物组合及特征矿物也都完全不同。而且各水系的沉积物的重矿物特征与其源区的岩性分布显示出极好的相关性。研究表明在江汉平原利用重矿物特征及组合模型来进行物源示踪的方法开展水系演化研究是可行的。  相似文献   

4.
西藏达金海相碎屑岩的组成、地球化学特征及其构造背景   总被引:3,自引:3,他引:0  
达金海相碎屑岩出露于西藏冈仁波齐峰山脚下,长期以来,该套岩石与冈底斯砾岩一起被视为印度-亚洲板块碰撞形成的陆相磨拉石.该套岩石组合是由凝灰质粉砂岩、杂砂岩、含砾杂砂岩和砾岩组成的一套深海-浅海相沉积组合.杂砂岩、砾岩碎屑组成与地球化学组成研究表明,该套岩石组合的形成与岛弧的发展密切相关,源区大地构造背景以岛弧为主,但也存在被动大陆边缘和碰撞构造带(蛇绿混杂带)两个不同构造背景的源区.区域上,在该套岩石组合的北侧存在着冈底斯岛弧带,南侧为雅鲁藏布蛇绿混杂带.这些特征共同表明,达金海相碎屑岩是西藏雅鲁藏布缝合带与冈底斯岛弧带之间的日喀则弧前盆地的一部分.  相似文献   

5.
位于青藏高原南部的冈底斯岩浆弧形成于中生代新特提斯大洋岩石圈的长期俯冲过程中,而且在印度与亚洲大陆碰撞过程中叠加了强烈的新生代岩浆作用,是世界上典型的复合型大陆岩浆弧,已经成为研究汇聚板块边缘岩浆作用和大陆地壳生长与再造的天然实验室。基于对现有研究成果的总结,我们将冈底斯岩浆弧的岩浆构造演化划分为5个阶段:第1阶段发生在晚白垩世之前,以新特提斯洋岩石圈长期正常俯冲和钙碱性弧岩浆岩的发育为特征;第2阶段发生在晚白垩世时期,以活动的新特提斯洋中脊发生俯冲和强烈的岩浆作用与显著的新生地壳生长为特征;第3阶段发生在晚白垩世晚期,以残余的新特提斯大洋岩石圈俯冲和正常弧型岩浆作用为特征;第4阶段发生在古新世至中始新世,以印度与亚洲大陆碰撞、俯冲的新特提斯洋岩石圈回转和断离,及其诱发的幔源岩浆作用、新生和古老地壳的强烈再造为特征;第5阶段为发生在晚渐新世到中中新世的后碰撞阶段,深俯冲印度岩石圈的回转和断离,或加厚岩石圈地幔的对流移去导致了加厚下地壳的部分熔融和埃达克质岩石的广泛发育,同时伴随幔源钾质超钾质岩浆作用。冈底斯弧岩浆作用与岩浆成分的系统时空变化很好地记录了从新特提斯洋俯冲到印度亚洲大陆碰撞的完整构造演化过程。  相似文献   

6.
松辽盆地朝84-6井区在白垩系泉头组四段沉积时期位于盆地西南通榆-保康水系和南部长春-怀德水系的交汇处,交汇水系内沉积物来源、古水流走向等仍属未知。通过对岩心、分析化验资料和区域砂体厚度预测结果的综合研究,根据重矿物组合特征、ZTR指数变化特征和地层砂体展布规律,发现研究区的沉积特征具明显物源分带性,将其划分为保康物源体系主控I区、怀德物源体系主控Ⅲ区和双物源体系混合控制Ⅱ区。结合研究区沉积相模式研究成果,对比分析各分区的碎屑岩组分、砂岩厚度、岩石粒度和泥岩颜色等沉积特征的相似性和差异性,验证了物源体系主控区域划分的合理性。  相似文献   

7.
单芝波 《地质科学》2020,55(4):1248-1265
基于开鲁盆地钱家店铀矿床姚下段砂岩的碎屑组分分析、重矿物组合特征以及稀土元素分析,探讨了该砂岩型铀矿的物质来源及矿质来源。碎屑组分分析指示该地区姚下段砂岩碎屑矿物以石英为主,碱性长石次之,岩屑类型丰富且含量较高;重矿物组合特征反映出姚下段重矿物以稳定矿物钛磁铁矿、白钛石、锆石和石榴石等为主,不稳定矿物绿帘石、硬绿泥石及黑云母含量较少;稀土元素特征显示出蚀源区花岗岩与过渡带相似的REE分布模式,花岗岩的ΣREE值与过渡带的ΣREE值较接近,且均具有铕负异常。综上所述,钱家店地区姚家组下段沉积显示了多物源体系的特征,碎屑矿物以中酸性岩浆岩来源为主,变质岩来源碎屑为辅;物源主要有3大方向:西北部舍伯吐凸起物源、东部架玛吐凸起物源及南部的燕山造山带物源,物源总体以南部燕山造山带为主,同时受多方向物源的共同控制。燕山晚期中酸性富铀岩浆岩在钱家店铀矿床铀源供给方面扮演了重要的角色。  相似文献   

8.
单芝波 《地质科学》1958,55(4):1248-1265
基于开鲁盆地钱家店铀矿床姚下段砂岩的碎屑组分分析、重矿物组合特征以及稀土元素分析,探讨了该砂岩型铀矿的物质来源及矿质来源。碎屑组分分析指示该地区姚下段砂岩碎屑矿物以石英为主,碱性长石次之,岩屑类型丰富且含量较高;重矿物组合特征反映出姚下段重矿物以稳定矿物钛磁铁矿、白钛石、锆石和石榴石等为主,不稳定矿物绿帘石、硬绿泥石及黑云母含量较少;稀土元素特征显示出蚀源区花岗岩与过渡带相似的REE分布模式,花岗岩的ΣREE值与过渡带的ΣREE值较接近,且均具有铕负异常。综上所述,钱家店地区姚家组下段沉积显示了多物源体系的特征,碎屑矿物以中酸性岩浆岩来源为主,变质岩来源碎屑为辅;物源主要有3大方向:西北部舍伯吐凸起物源、东部架玛吐凸起物源及南部的燕山造山带物源,物源总体以南部燕山造山带为主,同时受多方向物源的共同控制。燕山晚期中酸性富铀岩浆岩在钱家店铀矿床铀源供给方面扮演了重要的角色。  相似文献   

9.
鄂尔多斯盆地上三叠统延长组重矿物的成岩作用   总被引:1,自引:1,他引:0       下载免费PDF全文
砂岩中重矿物在埋藏成岩环境中会发生溶蚀甚至形成新的重矿物胶结物。利用重矿物特征进行物源分析是鄂尔多斯盆地上三叠统延长组物源分析的最重要方法之一,但石榴子石、榍石和绿帘石这3种重矿物在成岩作用期间发生了明显的后生变化。研究表明,延长卡中石榴子石发生溶蚀形成粒内溶孔和刻面石榴子石,部分被方解石、绿泥石或硅质交代;见自生榍石晶体及榍石次生加大,且榍石的生长具有多期次性;见自生绿帘石晶体及绿帘石次生加大,部分绿帘石被绿泥石或硅质交代;相对稳定性强的石榴子石部分被溶蚀,而相对稳定性弱的碎屑状榍石、绿帘石并未见到溶蚀现象,这与以往研究中对于重矿物稳定性的认识是不一致的,希望能引起未来研究者的重视。  相似文献   

10.
通过对砂岩碎屑组分组成特征、重矿物组合及其稳定系数、重矿物ZTR指数以及地震剖面等方面资料的分析,认为研究区克拉玛依组为东部和北部两大物源所控制且离物源较近.三台地区的物源在其东部,母岩类型以中性、基性岩浆岩为主;而北三台地区的物源在其北部,母岩类型以中性、基性岩浆岩和变质岩为主.  相似文献   

11.
碎屑重矿物由于相对比较稳定,蕴含重要的成因信息,对其进行电子探针成分分析,能够还原岩石形成的物源区和盆地构造背景。内蒙古西乌旗早二叠世寿山沟组一段主要由砂岩夹砾岩等组成,二段主要由粉砂岩、泥岩等组成。重矿物分析表明,寿山沟组一段和二段砂岩重矿物主要有锆石、尖晶石和石榴子石等,指示其物源区为岩浆岩和变质岩。重矿物电子探针成分分析结果显示,电气石成分指示其具贫锂花岗岩和变沉积岩物源,尖晶石成分指示其具岛弧和洋中脊玄武岩类物源,石榴子石成分指示其具高级变质基性岩源区。综合物源分析显示,寿山沟组主要来源于迪彦庙蛇绿岩、锡林浩特杂岩和本巴图组玄武岩等。结合区域地质对比,认为寿山沟组形成于弧后盆地,古亚洲洋在早二叠世时期尚未闭合。  相似文献   

12.
通过对闽江和九龙江沿岸沉积物中重矿物的分析,发现重矿物组合与源区岩石具有极好的相关性。两条河流流域重矿物组合为不透明铁矿类—绿帘石—锆石—电气石—角闪石,特征矿物为绿帘石,含量高达原生透明重矿物比重的70%,其成因除与高级变质岩有关外,还与中酸性岩浆岩及其与围岩接触蚀变发生的绿帘石化有关。从重矿物组合、重矿物特征指数以及与锆石年龄谱系的比对分析发现,闽江流域重矿物源自闽西北武夷山前寒武纪的变质岩、闽东广泛出露的燕山期岩浆岩和接触变质岩,而九龙江流域重矿物源自闽西南的印支—燕山期花岗岩。闽江上游沉积物重矿物以源自高级变质岩的重矿物为特征,中下游由上游来源的重矿物和下游酸性岩浆岩及接触变质岩形成的重矿物共同构成;九龙江以印支—燕山期花岗岩中的副矿物组合为特征。研究结果显示,对于中小流域面积的河流,由于搬运距离有限,重矿物组合保存的源岩信息量大,可作为研究流域内构造演化和源汇对比的重要手段。  相似文献   

13.
长江水系沉积物碎屑矿物组成及其示踪意义   总被引:22,自引:2,他引:22  
长江碎屑矿物组成研究表明,轻矿物以石英、长石和岩屑为主,不同支流轻矿物组成特征不同,成熟度指数平均是2.0,一般干流高于支流,成熟度随沉积物搬运距离增加而增大。QFL及QtFL三角图解显示长江沉积物主要来自再旋回造山带物源区,流域风化剥蚀速度较快,不同支流物质汇入干流,使得干流轻矿物组成复杂多变而难以和支流区别。重矿物含量从长江上游至下游呈递减趋势,其主要组合是磁铁矿-普通角闪石-普通辉石-石榴子石-绿帘石-褐铁矿-钛铁矿。红柱石和磷灰石是金沙江沉积物的特征矿物组合;蓝晶石是岷江流域的特征矿物;涪江的特征矿物是榍石;汉江的特征矿物组合是磷灰石、紫苏辉石和硅镁石;锆石是湘江的特征矿物。不同流域的特征矿物指示其源岩性质。上游的雅砻江、大渡河以及岷江等支流沉积物对中、下游干流沉积物的贡献较弱。涪陵以上长江流域风化作用强烈,母岩主要是沉积岩类(碎屑岩、泥岩);其下流域沉积物中近源弱风化物质明显增加,其源岩类型体现为岩浆岩和变质岩类;而金沙江攀枝花地区及湘江、沅江沉积物则更多来自流域内广泛分布的大片变质岩类。  相似文献   

14.
Heavy mineral analysis of the late Paleozoic Barakar and Raniganj sandstones from the Singrauli Gondwana sub-basin shows relative abundance of garnet, epidote, zircon, tourmaline and muscovite in the Raniganj Sandstone and epidote, garnet, rutile and tourmaline in the Barakar sandstones. Stratigraphically, the heavy mineral crops donot exhibit marked variation in their relative abundance, though garnet, epidote and muscovite form the bulk of the heavy minerals. Significant interspecific association among heavy minerals and provenance of the Barakar and Raniganj sandstones are evaluated by using σ-M multivariate model. Quantitative result suggests that the Barakar Sandstone are characterized by the basic pair match significantly more than expected due to chance alone (p value <<0.05) are garnet-tourmaline and epidote-rutile, whereas, the succeeding Raniganj sandstone are characterized by zircon-rutile and epidote-garnet. These basic pairs may be regarded as interspecific association among the heavy minerals. The basic pairs deduced from heavy mineral suites suggest that the source rocks of late Paleozoic Barakar and Raniganj sandstones have been principally derived from the acid plutonic rocks and low to high grade metasediments lying to the south and southeast of the Singrauli Gondwana sub-basin.  相似文献   

15.
This study focuses on the detailed provenance evolution of young, syn- to post-orogenic extensional grabens in orogens like the Himalaya to trace the tectonic history of such late-stage basins, using the Neogene Thakkhola-Mustang Graben as a case study. The graben is situated within the Tibetan-Tethys zone and is filled with > 870 m of continental deposits of Miocene to Holocene age-. Based on logged sections within the predominantly alluvial to coarse-grained fluvial fill of the graben we investigated paleocurrent data and the petrology of sandstones and conglomerates including heavy minerals studies to interpret provenance and source areas in detail. Significant changes are recorded by slight differences in heavy mineral and pebble compositions.The sandstones can be classified as lithic greywackes, lithic arkoses and feldspathic litharenites. Sandstone, mudstone, quartzite and some granite clasts are dominant in conglomerates of the central part of the graben. Tetang Formation conglomerates of Miocene age comprise mostly clasts of Mesozoic rocks with an eastern provenance, consistent with measured paleocurrent directions. All paleocurrent data and compositional analyses of imbricated conglomerates of the Miocene–Pliocene Thakkhola Formation in the northeast of the graben suggest that clasts were derived from eastern source areas comprising mainly Mesozoic rocks whereas Paleozoic clasts of a western to northern source area predominate in the centre of the graben.Heavy mineral analysis indicates that tourmaline, staurolite, zircon, garnet and apatite constitute a significant proportion of the assemblages of all formations through time whereas epidote, andalusite, kyanite, chloritoid, hornblende, chrome-spinel, rutile and amphiboles are less common. These assemblages reflect in general stable minerals and low to high-grade metamorphic source rocks, and are principally controlled by reworking of older, passive margin sediments of the Tibetan-Tethys zone as indicated by provenance discrimination diagrams.Three successive stages in provenance evolution were recognized: (1) The Miocene Tetang Formation, characterized by higher kyanite values, corresponding to the Himalayan foreland evolution; (2) the Thakkhola Formation, characterized by granite clasts and significantly higher amounts of andalusite, indicating source area expansion and erosion of the Mustang-Mugu granites to the northwest; (3) the Upper Pleistocene/Holocene Kaligandaki Formation, bearing higher amounts of epidote/klinozoisite and ophiolite and high-pressure/low temperature detritus as indicated by chrome spinel and blue amphiboles, derived from the north-lying Indus-Tsangpo suture zone. The change in source areas from the Miocene/Pliocene to the Late Pleistocene/Holocene is interpreted as a result of the evolution from an initial stage of high-angle normal faulting and collapse basin formation to a low-angle extensional detachment basin system.  相似文献   

16.
The Lower Palaeozoic sequences of the Rügen boreholes are composed of pelitic-clastic sediments which range in age from the Cambro-Ordovician boundary to the Late Ordovician. Provenance studies have been carried out on Cambro-Ordovician sandstones from the Loissin borehole and on Middle-Upper Ordovician greywackes of the Rugen 5 borehole.The Loissin sandstones were deposited as turbidites and debris flows in an unstable sedimentary basin. They form immature arkoses and subarkoses with high matrix contents. Their debris derived from a polycyclic, sedimentary cratonic provenance and from a monocyclic magmatic provenance. This is reflected in the heavy mineral spectrum, which is dominated by an anhedral, coloured zircon fraction and a euhedral, transparent zircon fraction.The Middle-Upper Ordovician Rügen greywackes derived from proximal, high energy turbidites which were transported into a deep marine basin. They form homogeneous lithic arkoses and arkosic litharenites. Their debris derived from a composite provenance with an ultramafic-mafic, ophiolitic source, an acidic magmatic source and a heterogeneous sedimentary cratonic source.Although the Loissin sandstones probably originated in an intracratonic, rift-related sedimentary basin, the debris of the Rugen greywackes is regarded as derived from a heterogeneous active continental margin. Results and interpretations of the provenance study are discussed in the light of proposed Lower Palaeozoic palaeogeographic reconstructions.  相似文献   

17.
The composition of heavy mineral assemblages in sandstones may be heavily influenced by processes operating during transport, deposition and diagenesis. As a consequence, conventional heavy mineral data may not be a reliable guide to the nature of sediment source material. Certain features of heavy mineral suites, however, are inherited directly from the source area without significant modification, such as the varietal characteristics of individual mineral species. This paper describes an alternative approach to varietal studies that concentrates on relative abundances of minerals that are stable during diagenesis and have similar hydraulic behaviour. Ratios of apatite to tourmaline, TiO2 minerals to zircon, monazite to zircon, and chrome spinel to zircon provide a good reflection of the source rock characteristics, because they are comparatively immune to alteration during the sedimentary cycle. These ratios are described as index values (ATi, RZi, MZi and CZi, respectively). This approach avoids some of the practical problems associated with varietal studies, such as the need to make subjective decisions about mineral properties or to use advanced analytical techniques that may not be accessible to the analyst. It also makes use of more components of the heavy mineral suite and thus provides a more balanced view of provenance characteristics. The use of these ratios is illustrated with examples from Upper Jurassic sandstones in the Outer Moray Firth area of the UK continental shelf and Triassic sandstones from onshore and offshore UK. Heavy mineral indices, notably ATi and MZi, show marked variations in Upper Jurassic Piper sandstones of the Outer Moray Firth. Main Piper sandstones have lower ATi and MZi values compared with Supra Piper sandstones, indicating significant stratigraphic evolution of provenance. The UK Triassic shows major regional variations in a number of index values, including ATi, MZi and CZi, demonstrating that sediment was supplied from several distinct source regions. This indicates a need for some modification of existing palaeogeographic models for the UK Triassic.  相似文献   

18.
近年来,鄂尔多斯盆地砂岩型铀矿资源评价取得了较大进展,关于找矿目的层物源和铀源的问题长期以来备受关注.运用重矿物综合分析方法,探讨鄂尔多斯盆地北部砂岩型铀矿赋矿层直罗组碎屑物质来源和成矿铀源.结果表明,研究区内直罗组的重矿物组合主要为石榴子石+锆石+绿帘石+黑云母+尖晶石,其次包含少量磷灰石、榍石、金红石、角闪石、电气...  相似文献   

19.
张英利  王宗起 《地质学报》2011,85(12):2014-2030
徽成盆地是西秦岭造山带内一个具有代表性的盆地,保留较完整的地层记录.早白垩世田家坝组、周家湾组和鸡山组为一套砂砾岩沉积组合序列.本文通过对早白垩世砂岩的古水流恢复、砾石成分与含量、重矿物和地球化学分析,对沉积岩物源区特征和原型盆地进行探讨.古水流恢复和砾石成分统计表明,沉积物主要是近源堆积,主要来自于盆地南缘和北部.重矿物研究结果表明,早白垩世砂岩母岩以岩浆岩为主,并有少量变质岩/沉积岩.地球化学分析表明,早白垩世砂岩为成熟度较低的硬砂岩和长石/岩屑砂屑岩.稀土元素标准化配分曲线呈现轻稀土富集、重稀土平坦和弱Eu负异常特征.砂岩物源区组成判别图研究表明,早白垩世砂岩的物源区主要出露长英质火山岩.砂岩源区构造环境判别图解及特征指数分析表明,早白垩世砂岩源区主要形成于大陆岛弧和活动大陆边缘.结合区域资料和前人研究,表明早白垩世徽成地区发育走滑拉分盆地.  相似文献   

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