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1.
在塔里木板块北缘,断续出露一条侵入岩带,总长度800多公里。岩石组合是:橄榄辉长岩-辉长岩-辉长闪长岩-闪长岩-石英闪长岩-花岗岩。各种类型岩石的组成显示了清晰的钙碱性岩浆演化趋势。稀土元素配分曲线均为轻稀土富集型,而且,重稀土元素配分曲线相对平坦。Sr、K、Rb、Ba、Th等大离子亲石元素强烈富集,而Ta、Nb、Zr、Hf、Ti等高场强元素显著贫化。这些岩石学与地球化学特征均表明,该侵入岩带形成于活动大陆边缘。  相似文献   

2.
内蒙古狼山山脉西侧分布有大面积的晚古生代岩浆岩,时代集中在早石炭世—晚二叠世,早石炭世角闪辉长岩、花岗闪长岩体出露于潮格温都尔镇西侧。角闪辉长岩体呈岩滴状产出,被花岗闪长岩体侵入,LA-ICP-MS锆石U-Pb年龄显示,角闪辉长岩的~(206)Pb/~(238)U加权平均年龄为329.0±2.3 Ma,花岗闪长岩的~(206)Pb/~(238)U加权平均年龄为331.1±0.9 Ma~330.0±4.2 Ma。花岗闪长岩暗色矿物以角闪石为主,富钠(Na2O=3.48%~4.46%),高钠钾比值(Na2O/K2O=1.03~2.39),钙碱性系列,P2O5-SiO_2之间存在较好的负相关性,岩石地球化学特征具Ⅰ型花岗岩的特点。Hf同位素及元素地球化学特征指示了角闪辉长岩及花岗闪长岩均来自于受地壳混染的亏损地幔,为同源岩浆演化的产物。角闪辉长岩及花岗闪长岩稀土元素配分型式一致,均为轻稀土元素富集,重稀土元素亏损,具弱的负Eu异常;角闪辉长岩富集Ba、Sr,亏损Nb、Ta、Zr、Hf;花岗闪长岩富集大离子亲石元素Rb、K、Pb、Sr,不同程度地亏损高场强元素Nb、Ta、P、Ti,总体反映了岩浆弧的地球化学特征。结合区域地质背景,早石炭世狼山地区侵入岩岩石组合为角闪辉长岩(闪长岩)+石英闪长岩+花岗闪长岩,认为狼山地区早石炭世处于大陆边缘弧构造背景。  相似文献   

3.
青海南山构造带是衔接宗务隆构造带、南祁连构造带和西秦岭造山带的重要结合带。沟后岩浆杂岩体位于青海南山构造带东段,主要由辉长岩、辉长闪长岩、石英闪长岩、花岗闪长岩组成。本文对沟后岩浆杂岩体进行了详细的岩石学、岩石地球化学和LA-ICP-MS锆石U-Pb同位素年代学研究。结果表明,辉长岩、辉长闪长岩、石英闪长岩、花岗闪长岩及暗色微粒包体的结晶年龄分别为248.8±2.6 Ma、243.2±2.1 Ma、243.1±0.9 Ma、244.0±2.1 Ma和249±3 Ma。辉长岩富铁、镁,贫碱;辉长闪长岩高铝、富钙和钠,二者均为钙碱性岩类。石英闪长岩和花岗闪长岩为准铝-弱过铝质高钾钙碱性岩,暗色微粒包体属钙碱性-碱性岩系列。不同岩石类型均表现为富集大离子亲石元素(Cs、Rb、K)和Pb,亏损高场强元素(Nb、Ta、Ti)和P、Ba负异常;稀土元素配分曲线均具有轻重稀土分异的右倾特征,具弱-中等负Eu异常。岩相学和岩石地球化学特征表明沟后岩浆杂岩体具壳幔岩浆混合特征,暗示其可能形成于由俯冲流体交代地幔楔部分熔融的幔源岩浆底侵作用下的构造环境。辉长岩为幔源岩浆经分离结晶的产物,辉长闪长岩为幔源岩浆经分异演化并混染少量壳源岩浆的产物;中基性岩浆与壳源中酸性岩浆发生混合并经历一定的分异演化过程形成了石英闪长岩和花岗闪长岩。结合区域地质资料分析认为,沟后岩浆杂岩体可能代表了研究区早三叠世晚期-中三叠世早期宗务隆洋向南消减作用相关的构造岩浆事件。  相似文献   

4.
砂岩的岩石地球化学特征可以指示碎屑物质的来源,物源特征的研究能为盆地的演化以及成矿过程的研究提供新的思路。通过镜下分析、重矿物鉴定以及岩石地球化学分析等手段,对鄂尔多斯盆地北部纳岭沟地区直罗组下段下亚段砂岩进行研究,以确定砂岩的岩石学、矿物学以及岩石地球化学特征,进而确定砂岩的物源特征。研究表明,研究区目的层砂岩以近源沉积的岩屑砂岩为主,砂岩的母岩为中酸性岩浆岩和变质岩;主量元素特征与主动大陆边缘砂岩的主量元素特征相似,反映目的层砂岩的母岩形成于主动大陆边缘的俯冲带构造环境;稀土元素配分曲线与蚀源区岩石稀土元素配分曲线对比发现目的层砂岩的母岩主要为前寒武纪时期的孔兹岩、片麻岩、闪长岩以及海西-印支期的辉长岩和花岗闪长岩,中酸性岩浆岩和变质岩铀含量较高,在沉积阶段为铀的预富集提供了一定量的铀。  相似文献   

5.
白家藏侵入岩位于青海省民和县,大地构造位置上处于拉脊山蛇绿混杂岩带东段。通过岩石学、同位素年代学和岩石地球化学方法,对白家藏侵入岩进行了研究,以确定其侵位时代并探讨大地构造环境。结果表明,白家藏侵入岩主要由闪长岩和石英闪长岩组成,分别在闪长岩和石英闪长岩中获得锆石U-Pb年龄为(472.5±1.9)Ma和(467.3±2.5)Ma,二者在误差范围内一致,据此判断白家藏侵入岩的侵位年龄约470 Ma,为中奥陶世。地球化学特征显示:岩体w(SiO2)为55.67%~59.04%,Na2O/K2O值为3.35~6.14,且w(Na2O)高于w(K2O),显示富钠、贫钾特征;A/CNK值主体介于0.76~1.01之间,属于准铝质钙碱性系列岩石;稀土配分曲线呈轻稀土元素相对弱富集((La/Yb)N=2.51~4.57),轻、重稀土元素内部分馏较弱的微右倾型曲线;岩石明显富集大离子亲石元素Rb、Ba和活泼的不相容元素Th、U,相对亏损高场强元素Nb、Ta、P、Ti等;环境判别显示具岛弧花岗岩特征。以上特征表明白家藏侵入岩为拉脊山洋俯冲阶段的产物。  相似文献   

6.
康定—泸定地区出露的新元古代变质侵入岩位于扬子板块西缘北段。通过详细的野外地质特征、岩相学、矿物学及岩石地球化学等方面的研究,确定岩石组合为辉长岩、石英闪长岩、英云闪长岩、花岗闪长岩、二长花岗岩和正长花岗岩,其中以中酸性岩为主,具有钙碱性演化特征;长石成分主要为钠长石—更长石—中长石,含水矿物角闪石、黑云母广泛存在;主量元素显示钙碱性分异趋势;微量元素呈现典型的岛弧环境地球化学特征;稀土配分模式呈右倾型;在构造环境判别图中,该变质侵入岩样品均投影于火山弧区域。综合以上特征表明康定—泸定地区变质侵入岩在新元古代处于与俯冲有关的岩浆弧环境。  相似文献   

7.
华北板块北缘中段土牧尔台地区发育大量的酸性侵入岩,仅局部出露一些苏长辉长岩岩体.前人对该基性岩岩体的研究较少,且缺少其与周围同时代酸性侵入岩演化关系的讨论.基于年代学和地球化学方法,锆石U-Pb测年结果显示,花岗闪长岩年龄为275.3±2.6 Ma,苏长辉长岩为270.1±4.2 Ma,两者均为早二叠世产出.苏长辉长岩贫硅(SiO2=46.2%~49.8%)和高场强元素(Nb、Ti、Zr等),富Mg#(59.16~67.58)和大离子亲石元素(Cs、Ba、Sr等),具有较低的稀土总量和较平缓的配分曲线,及Eu正异常(δEu=1.02~2.41),显示幔源侵入岩的特点;花岗闪长岩SiO2含量在65.6%~67.0%之间,K2O含量为3.71%~4.15%,为准铝质系列(A/CNK=0.94~0.98),属于高钾钙碱性I型花岗岩.样品富集轻稀土、大离子亲石元素(Cs、Rb、K等),亏损重稀土元素、高场强元素(Nb、Ti、Th等),存在Eu负异常(δEu=0.61~0.69),具有大陆弧火山岩的特征,同时岩石中存在镁铁质包体,表明其岩浆来源是壳幔混源的.两者的时空关系及地球化学特征显示,基性岩浆来自于受俯冲流体交代的亏损岩石圈地幔,底侵加热地壳产生花岗质岩浆并与之发生混合作用.结合区域研究背景,表明花岗闪长岩-苏长辉长岩岩体形成于俯冲的构造背景下,且在早二叠世,古亚洲洋仍未闭合.   相似文献   

8.
宝兴沟金矿床为近年来在漠河前陆盆地南缘新发现的大型金矿床。区内发育石英闪长岩、闪长玢岩、花岗细晶岩等侵入岩,矿体主要产于石英闪长岩、闪长玢岩内部及其与二十二站组砂岩的内外接触带中。地球化学研究表明,石英闪长岩具高钾、低钛、富碱特征,花岗细晶岩具高硅、高钾、低钛、富碱特征,二者均为高钾钙碱性系列岩石,富集大离子亲石元素Rb、Ba、Sr等,亏损高场强元素Nb、Ta、Ti和重稀土元素Yb、Y,但二者稀土元素特征和配分曲线差异较大,不具成因联系。矿石与石英闪长岩、闪长玢岩具有相似的微量元素、稀土元素组成和稀土元素配分曲线,表明石英闪长岩、闪长玢岩为成矿提供了热液和成矿物质等,与成矿具有密切的成因联系。LA-ICP-MS锆石U-Pb同位素测年结果显示,石英闪长岩成岩时间为118.13~121.77 Ma,限定了宝兴沟金矿床的形成时间不早于118Ma,为早白垩世,形成于太平洋板块俯冲后的伸展环境。漠河前陆盆地除中-晚侏罗世侵入岩外,早白垩世中酸性侵入岩对区域成矿也具有重要的作用,是今后找矿的重要方向之一。  相似文献   

9.
阿尔金北缘拉配泉地区的齐勒萨依岩体主要由辉长岩、闪长岩组成。地球化学特征表明,辉长岩具有高的Al2O3(13.47%~15.34%)、FeOT含量(10.77%~16.89%)以及中等的MgO含量(5.15%~7.49%);闪长岩属钙碱性系列,具有较低SiO2含量(52.06%~54.23%)和高的Mg#值(56.43~62.45)。二者在球粒陨石标准化稀土元素配分曲线上呈REE近平坦型或者LREE轻微富集型,均显示Eu弱的亏损或富集。在原始地幔标准化蛛网图上,二者均富集Rb、Ba等大离子亲石元素(LILE),相对亏损Nb、Ta、Zr和Hf等高场强元素(HFSE),具明显消减带岩浆岩的特征。辉长岩和闪长岩的锆石LA-ICP-MS U-Pb定年结果分别为477.5±3.3 Ma和469.7±3.4 Ma,表明它们属于早中奥陶世岩浆活动的产物。结合岩石的地球化学、微量元素构造环境判别图解、年代学和区域地质背景的特征,判定齐勒萨依岩体形成于与俯冲有关的活动陆缘弧的构造环境,二者的侵位与阿尔金北缘早古生代的古大洋向南俯冲消减到米兰河-金雁山活动陆缘地块之下密切相关,从而为北阿尔金早中奥陶世的陆缘弧和红柳沟-拉配泉蛇绿混杂岩带俯冲极性的进一步确定提供了佐证。  相似文献   

10.
西昆仑东段北缘花岗岩微量元素及同位素地球化学   总被引:2,自引:0,他引:2  
分布于西昆仑东段北缘的侵入杂岩由辉长岩 -闪长岩 -花岗闪长岩 -花岗岩组成 ,在区域上形成一个近东西向的构造 -岩浆岩带。岩石化学特征显示中酸性侵入岩为钙碱性高钾系列Ⅰ型。岩石的∑REE质量分数变化小 ,为 (178.3~ 2 2 9.0 )× 10 -6。闪长岩和花岗岩的w (LREE ) /w(HREE)分别为 3.8~ 5 .1和 6 .7~ 7.7,具有非常相似的稀土配分曲线 ,微量元素与智利岛弧花岗岩完全相似。岩石的w (14 7Sm) /w (14 4Nd)为 0 .0 94~ 0 .114,w (14 3 Nd) /w (14 4Nd)为 0 .5 12 0 5~0 .5 12 19,变化范围小 ,tDM 为 1381~ 15 35Ma之间 ,εNd(t)变化小 ,平均值为 - 10 .46 ,表明侵入岩为同源演化序列 ,为地壳部分重熔的产物。综合岩石化学、微量元素及同位素地球化学特征 ,认为本区的侵入岩形成于大陆边缘岩浆弧 ,岩浆主要来自古元古代变质地层的部分熔融 ,在上升过程中受到中新元古代中基性火山岩混染。  相似文献   

11.
李功宇  周建波  李龙  王红燕 《岩石学报》2020,36(6):1719-1730
佳木斯地块位于中国东北微陆块群的最东缘,其东缘地区晚古生代的岩浆和沉积演变进程为欧亚大陆东缘由被动陆缘向活动陆缘构造环境的转化提供了关键证据。年代学和地球化学研究表明,佳木斯地块东缘中泥盆世黑台组砂岩,形成于被动陆缘的构造环境,黑台组上覆的老秃顶子组流纹岩也形成于被动陆缘的构造环境;晚石炭世珍子山组砂岩,形成于活动陆缘的构造环境;早二叠世的二龙山组安山岩以及相邻地区早二叠世的其它火成岩形成于活动陆缘的构造环境。同时,佳木斯地块东缘泥盆-二叠纪的沉积地层也呈现出由浅海相到陆相地层转化的特征。因此,佳木斯地块东缘由被动陆缘向活动陆缘的转化应该发生在中泥盆世到晚石炭世,而该构造环境的转化也为晚古生代时期蒙古-鄂霍茨克洋向欧亚大陆之下俯冲过程的研究提供了关键信息。  相似文献   

12.
13.
南海南北缘具有不同地球物理特征和地质构造特征。南海北缘新生代盆地为断陷型盆地;南海南缘则发育周缘前陆盆地、板缘拉张盆地。北缘盆地的沉降以两幕发展为特征,南缘的盆地的沉降以三幕发展为特征。南海北缘盆地经历了古新世一始新世盆地形成时期、渐新世一中中新世盆地发展期、晚中新世一第四纪盆地成熟期三个阶段;南海南缘盆地经历了古新世一中始新世初始盆地形成、晚始新世一中中新世盆地发展、中中新世末盆地遭受压扭改造、晚中新世一第四纪盆地定型期四个阶段。造成南北缘差异的原因是边缘性质不同:北缘为拉张型边缘;南缘北侧是拉张型边缘,南缘南侧是挤压型边缘。  相似文献   

14.
Based on distinctive stratigraphic and/or structural characteristics, the Brazilian continental margin can be divided into two main provinces:
  1. The southeastern-eastern province, extending from the Pelotas to the Recife-João Pessoa Basin, presents a tensional tectonic style of Late Jurassic-Early Cretaceous age, paralleling the structural alignements of the Precambrian basement, except in the north-eastern segment where the Mesozoic faults of the Recife-João Pessoa Basin cut across the east-west basement directions. The basin-fill, Upper Jurassic through Recent, consists, where complete, of three stratigraphic sequences, each of a distinct depositional environment: (a) a lower clastic non-marine sequence; (b) a middle evaporitic sequence, and (c) an upper clastic paralic and open marine sequence.
  2. The northern province, extending from the Potiguar Basin to the Amazon Submarine Basin, displays both tensional and compressional tectonic styles of Upper Jurassic (?) to Upper Cretaceous age either paralleling or cutting transversally the basement alignments. The stratigraphic column differs from the southeastern-eastern province in lacking the Lower Cretaceous evaporitic rocks.
The integration of the stratigraphie and structural data allows one to determine in the eastern Brazilian marginal basins the main evolutionary stages of a typical pull-apart continental margin: a continental pre-rift and rift stage, an evaporitic proto-ocean stage, and a normal marine open ocean stage. In the northern province it is possible to infer a continental rift-valley-stage, a transform stage and an open continental-margin stage. The relationship between the rift-valley and the transform stages is yet not clear.  相似文献   

15.
Multi-channel seismic reflection profiles across the southwest continental margin of India (SWCMI) show presence of westerly dipping seismic reflectors beneath sedimentary strata along the western flank of the Laccadive Ridge — northernmost part of the Chagos-Laccadive Ridge system. Velocity structure, seismic character, 2D gravity model and geographic locations of the dipping reflectors suggest that these reflectors are volcanic in origin, which are interpreted as Seaward Dipping Reflectors (SDRs).  相似文献   

16.
The results of focal mechanisms determination for the recent seismic activity (earthquakes of 1951, 1955, 1987, 1988, and 1998) in the passive continental margin of Egypt may shed some light on the local stress field in this area. Moreover, studying the source mechanism of these events provides an opportunity to understand the structural style of the passive margin of Egypt, as well as the tectonic setting beside its variation in space and time. This study reveals that there are two types of tectonic regimes which caused these mechanisms. The first is a tensional regime, represented by NW oblique (normal-dextral) faults and the second is a compressive one represented by E–W to ENE (reverse-sinstral) faults. These fault trends probably indicate rejuvenation of inherited E–W Mesozoic and NW Oligo-Miocene faults.  相似文献   

17.
塔里木古大陆东缘的微大陆块体群   总被引:19,自引:0,他引:19  
塔里木古大陆东缘至少存在4个微大陆,自北而南分别是阿拉善、祁连、欧龙布鲁克和柴达木微大陆,它们有相近但又有一定差异的早前寒武纪变质基底和中元古代变质沉积地层。每一个微大陆边缘均有复杂的生成历史,特别是新元古代早期的热-构造事件十分发育,并在柴达木微大陆北缘形成一条长700km的花岗片麻岩带,而在多数微大陆边缘则叠加了寒武纪至奥陶纪火山弧或蛇绿混杂岩。在微大陆之间自北而南分别发育了北祁蛇绿岩混杂岩带、南祁连蛇绿岩混杂岩带、沙柳河-鱼卡河高压-超高压变质带和昆仑中部清水泉蛇绿混杂岩,它们代表了微大陆这间的结合带,其形成时代集中在寒武纪至奥陶纪。这几个微大陆总体表现出亲塔里木古大陆的特征,特别是自新元古代以来具有相似的地质演化特征。  相似文献   

18.
19.
Flexure of the lithosphere and continental margin basins   总被引:4,自引:0,他引:4  
The accumulation of sediments at an Atlantic-type continental margin constitutes a load on the lithosphere which simply sags due to its weight. Studies of the geometry of deformation suggests the lithosphere will respond to these loads either by local loading of an Airy-type crust or flexural loading of a strong rigid crust. Sediment loading models of either type cannot, however, explain the substantial thicknesses of shallow-water sediments observed in commercial boreholes from Atlantic-type margins. Other factors such as thermal contraction, gravitational outflow of crustal material or deep crustal metamorphism may contribute to the subsidence. We have used biostratigraphic data from commercial boreholes from the Gulf of Lion and the East Coast U.S.A. to quantitatively determine the contribution of sediment loading to the subsidence. From these data we determined sea-floor and basement depths for sequential time intervals during margin development. Using the sediment loading models the sediment layers at each margin were progressively “backstripped” and the depth basement would have been without the sediment load calculated. The computed basement depths indicate there is a recognizable component of the subsidence of these margins which is caused by processes other than adjustments to the weight of the sediment. The nature of this subsidence is discussed and comparisons are made with that which would be expected from thermal-contraction models.  相似文献   

20.
The eastern margin of Sarmatia comprises the Paleoproterozoic (2.1–2.05 Ga) rock associations of the eastern Voronezh Crystalline Massif, including the Lipetsk-Losevo volcanic-plutonic belt and the adjacent East Voronezh lithotectonic zone composed of metasedimentary rocks of the Vorontsovka Group. The isotopic and geochemical study of the available drill cores that characterize the main rock associations of the Lipetsk-Losevo belt and its nearest framework allowed us to furnish evidence for the formation of this belt in the regime of an island arc at the active margin of the Archean continent above a low-angle subduction zone. The juvenile isotopic and geochemical signatures of metaturbidites of the Vorontsovka Group indicate that only a fast growing mountain edifice with the Lipetsk-Losevo Belt in its highest part (foreland) could have been a provenance of the flysch basin. It is proposed to name this Paleoproterozoic mountain system the East Sarmatian Orogen. The hinterland of this orogen embraced the megablock of the Kursk Magnetic Anomaly as a part of the Voronezh Massif and the Azov Block of the Ukrainian Shield. It has been shown that the East Sarmatian Orogen was formed in the same way as accretionary orogens of the Cordilleran type.  相似文献   

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