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1.
通过对东天山觉罗塔格一带晚古生代岩浆岩地质特征、岩石化学特征等系统研究,认为该晚古生代岩浆岩主要由早石炭世至中二叠世的火山岩和侵入岩组成,其形成与康古尔洋向北俯冲有关。早石炭世岩浆岩为康古尔洋初始俯冲而成的钙碱性岛弧火山岩及具有低压、低温特征的高钾钙碱性I型花岗岩;晚石炭世岩浆岩为后碰撞弧火山岩;早二叠世岩浆岩为具有后碰撞弧和板内双重特征的火山岩及高温、高压特征的I型花岗岩;中二叠世发育具有低压、高温特征的高钾钙碱性A型花岗岩。综合前人资料及本文研究成果,初步认为觉罗塔格一带晚古生代经历了俯冲碰撞—碰撞造山—造山后陆内伸展的构造演化过程。  相似文献   

2.
新疆富蕴县滴水泉-畜牧办侵入体出露于卡拉麦里断裂以南,呈北西西向带状分布,以碱长花岗岩体为主,也可见规模较小的角闪辉长岩体。碱长花岗岩体的岩石组合为碱长花岗斑岩+碱长花岗岩,高硅(SiO_2=71.07%~76.71%),富碱(Na_2O+K_2O=7.41%~9.07%)、K_2ONa_2O(平均为1.10),显示出A型花岗岩的特点。角闪辉长岩体涌动侵入于碱长花岗岩体之中,二者接触带附近发育浆混性质的石英闪长岩。辉长岩+花岗岩的双峰式岩石组合、构造判别图解R2-R1及区域地质背景指示滴水泉侵入体形成于陆内伸展环境,且花岗岩体具有"钉合岩体"的作用,穿插了卡拉麦里蛇绿岩带。结合岩体的LA-ICP-MS锆石年龄(碱长花岗岩的206Pb/238U加权平均年龄为321±2Ma,角闪辉长岩的206Pb/238U加权平均年龄为319±3Ma)可知,卡拉麦里洋盆在晚石炭世早期(321Ma)之前已经闭合。同位素及微量元素特征显示,碱长花岗岩为年轻地壳部分熔合融的产物,而角闪辉长岩则来源于亏损的软流圈地幔及俯冲交代的地幔楔物质,代表了同期花岗岩的底侵岩浆演化的产物。辉长岩与花岗岩相似的εNd(t)值及明显的岩浆混合作用表明该区的花岗岩体并非来源于底侵岩浆的高度分异或底侵体的部分熔融,而最可能为底侵体之上的年轻地壳的部分熔融,这一结论与最近一些学者研究的断裂以北的花岗岩体成因机制相同。晚石炭世早期幔源底侵体的发现,为卡拉麦里地区后碰撞花岗岩类的幔源底侵作用提供了可靠的地质依据。  相似文献   

3.
北山造山带南缘石板泉一带的石炭纪火山岩(红柳园组)在时空上构成独特的双峰式火山岩组合,具有较短的Daly间断及大量酸性火山岩夹少量中基性火山岩为主要特征,其中安山岩具有富钠贫钾、高Al低Mg的过铝质高钾钙碱性系列特征,并含有相当数量亏损地幔物质,指示了安山岩源区可能源于亏损地幔,显示板内安山岩的特征;流纹岩属于低Ti流纹岩类,指示岩石可能是基性岩浆底侵作用下地壳物质发生部分熔融,源区存在有斜长石残留,形成于大陆裂谷环境,其动力学体制可能与陆内伸展拉张作用有关,表明从晚古生代形成的裂谷在早石炭世晚期-晚早石炭世早期发展到鼎盛时期,晚石炭世由伸展拉张到逐步进入碰撞挤压这个地球动力学环境的重大转折时期,二叠世末进入碰撞造山演化阶段。  相似文献   

4.
北淮阳燕山期断陷盆地中岩浆岩广泛分布。晚侏罗世火山岩以安山岩、粗面质火山碎屑岩为主,岩浆由中性向碱性方向演化。可划分出南北2个火山岩带,南带以中性岩为主,北带粗面质火山岩增多。与火山岩同源的侵入体由辉长岩—闪长岩—花岗岩—碱性花岗岩组成,带有明显的I型花岗岩特征。北淮阳燕山期岩浆岩带是扬子地块与华北地块大规模陆内俯冲的产物。  相似文献   

5.
卡拉麦里地区处于中亚—兴蒙成矿域东准噶尔成矿带的南段,晚古生代增生—碰撞过程明显、构造和岩浆活动强烈、矿产资源丰富。晚古生代增生—碰撞成矿作用集中在两个时期,卡拉麦里北缘至野马泉为主的泥盆纪和卡拉麦里构造带为主的早石炭世中晚期—二叠纪。本文在综合研究基础上,根据卡拉麦里地区晚古生代增生—碰撞过程的地球动力学和成矿特征,将成矿系统划分为:泥盆纪活动大陆边缘斑岩型金成矿系统,早石炭世中晚期后碰撞挤压—伸展转换阶段浅成低温热液—斑岩型金铜成矿系统,晚石炭世—二叠纪后碰撞伸展阶段造山型金铜成矿系统和岩浆热液型锡金成矿系统,以后3类为主。矿床组合包括:韧性剪切带型金矿、浅成低温热液型金矿、岩浆期后热液脉型金矿、斑岩型铜金矿、构造控制脉型铜矿和云英岩—石英脉型锡矿。认为该地区的泥盆纪活动大陆边缘成矿系统可能被晚石炭世—二叠纪后碰撞造山型金成矿系统所叠置而不易识别,后碰撞作用主导了该地区主要成矿系统,大陆岩石圈拆沉和软流圈地幔上涌产生的走滑伸展构造—壳幔岩浆作用—混合流体作用是卡拉麦里地区金属成矿作用的地球动力学机制。  相似文献   

6.
新疆富蕴县五彩城岩体出露于卡拉麦里断裂以南,呈北西-南东向的带状分布,侵位于下石炭统松喀尔苏组,LAICPMS锆石U-Pb年龄显示,该岩体形成于早石炭世(206Pb/238U的加权平均年龄为341.1±4.0Ma和340.9±5.1Ma)。岩石组合为二长花岗岩+钾长花岗岩,闪长质包体发育。岩石低Si O2(59.35%~69.51%),Na2OK2O,A/CNK1.1,SiO2与P2O5具有较好的负相关性,暗色矿物主要为角闪石,显示出I型花岗岩的特点。岩体富集大离子亲石元素(K、Rb和Ba),不同程度的亏损Nb、Ta、P和Ti、ΣREE较高(126.0×10-6~172.7×10-6),δEu不明显(0.75~0.95),与西准噶尔地区早石炭世后碰撞花岗岩的特点相似。花岗岩具有正的εNd值(+5.4~+5.5)、较低的Isr值(0.70289~0.70335)及年轻的Nd模式年龄(tDM1=650Ma、tDM2=650~680Ma),表明花岗岩来源于年轻地壳。岩石地球化学显示,该岩体形成于后碰撞环境,与黄羊山、老鸭泉(卡拉麦里断裂以北)等地的晚石炭世A型花岗岩的构造属性一致。五彩城I型花岗岩的锆石年龄代表了卡拉麦里地区后碰撞花岗岩的最老年龄,表明卡拉麦里有限洋盆在早石炭世中期之前(晚泥盆世?)已经闭合。  相似文献   

7.
北淮阳燕山期岩浆岩地球化学特征及其构造环境   总被引:5,自引:0,他引:5  
北淮阳燕山期断陷盆地岩浆岩广泛分布。晚侏罗世火山岩以安山岩、粗面质火山碎屑岩为主,岩浆由中性向碱性方向演化。可划分出南北2个火山岩带,南带以中性岩为主,北带粗面质火山岩增多。与火山岩同源的侵入体由辉长岩-闪长岩-花岗岩-碱性花岗岩组成,带有明显的Ⅰ型花岗岩特征。北淮阳燕山期岩浆岩带是扬子地块与华北地块大规模陆内俯冲的产物。  相似文献   

8.
辉长岩和花岗岩组成的双峰式火成岩系列通常产出于威尔逊板块构造旋回的诸多伸展周期。基于其岩石地球化学特征示踪伸展地球动力学过程与相关壳幔相互作用的独特视角,本文报道了中亚造山带东段内蒙古中部西乌旗地区新近识别的晚石炭世猴头庙辉长岩-花岗岩系列。SIMS锆石U-Pb定年揭示辉长岩和花岗岩的侵位年龄分别为~307Ma和~305Ma。辉长岩主要由斜长石、辉石和角闪石组成;SiO 2含量介于50.4%~53.4%之间,呈现镁质、准铝质和钙碱性特征;富集大离子亲石元素,亏损高场强元素;并具有OIB型全岩Sr-Nd(I Sr(t)=0.704249~0.704330,εNd(t)=+1.73~+3.81)和锆石Hf(εHf(t)=+4.58~+15.16)同位素组成,其锆石δ18 O介于5.75‰~6.61‰之间。这些特征指示辉长岩可能源于俯冲板片流体交代的亏损地幔楔部分熔融。同期花岗岩主要由斜长石、钾长石、石英和黑云母组成;其SiO 2含量变化于76.3%~77.6%,高硅碱、贫铁镁、弱过铝、富钍铀、亏锶钡、Eu负异常,契合典型高分异I型花岗岩的元素地球化学特征;花岗岩具有中等放射性成因的全岩I Sr(t)(0.704923~0.704981)、εNd(t)值(-0.15~+0.57)和锆石εHf(t)值(-2.63~+7.40),以及高的锆石δ18 O(6.44‰~8.06‰)。鉴于元素和同位素特征指示的高分异特征和高演化源区,猴头庙高硅花岗岩可能衍生自中元古代和古生代多期增生物质所组成的复合中基性地壳的部分熔融及其后的结晶分异作用。综合区域石炭纪-早二叠世蛇绿混杂岩和岛弧岩浆岩时空展布格局,晚石炭世猴头庙辉长岩-花岗岩系列记录了内蒙古中部其时因洋脊俯冲引发的弥散性区域伸展事件。一方面,该事件既有别于建造西乌旗早-中石炭世弧-盆体系的板片回退阶段,又迥异于早二叠世大规模后碰撞伸展过程;另一方面,这些周期性伸展事件共同见证了中亚造山带东段晚古生代威尔逊造山旋回的完整历程。  相似文献   

9.
新疆东准噶尔(东准)构造带晚古生代地层广泛出露,其沉积时限的精确限定对理解该地区及中亚造山带的构造框架具有深远意义。然而东准构造带的地层时代标定存在多种划分方案,分歧较大。依据自测的5个安山岩和9个砂岩的锆石U-Pb年龄以及收集整理的岩浆岩和砂岩的锆石U-Pb年龄约束,认为东准噶尔构造带地质体的形成时代主要在336~268Ma,336Ma地质体沿额尔齐斯、阿尔曼太和卡拉麦里构造带零星分布。原前石炭纪和原石炭纪海相地层主体属于石炭系宾夕法尼亚亚系,部分层段应为同期异相;原石炭纪陆相地层属于二叠系乌拉尔统。东准构造带晚古生代洋盆在晚石炭世同期碰撞拼贴,将其演化阶段分为400~336Ma次生洋盆同期俯冲阶段、336~300Ma洋盆最终闭合消亡阶段、300~270Ma后碰撞伸展阶段及二叠纪中晚期南缘湖相沉积阶段。  相似文献   

10.
通过对新疆卡拉麦里姜巴斯套组火山岩野外地质特征、岩石学和高精度同位素年代学的研究,发现姜巴斯套组火山岩具典型双峰式组合,岩石类型包括玄武岩-酸性火山碎屑岩-玄武粗面安山岩;得到玄武粗面安山岩LA-ICP-MS锆石U-Pb年龄为(319.8±2)Ma(加权均方偏差值为3),表明姜巴斯套组火山岩形成于早石炭世谢尔普霍夫阶。对火山岩地球化学特征的研究表明,姜巴斯套组火山岩钙碱性系列、高钾钙碱性系列和钾玄岩系列岩石兼而有之,岩石的稀土元素配分曲线均为轻稀土元素富集型,无明显Eu异常,玄武岩和玄武粗面安山岩具有K正异常和Sr负异常,酸性火山碎屑岩表现出Nb、Ta和Ti显著亏损。总体来说,姜巴斯套组火山岩富集大离子亲石元素,相对亏损高场强元素。玄武岩和玄武粗面安山岩表现出大陆裂谷(大陆板内拉张区域)岩石特征;酸性火山碎屑岩表现出岛弧或者活动大陆边缘岩石属性。总之,姜巴斯套组火山岩形成于卡拉麦里洋盆闭合碰撞造山后的拉张伸展环境,卡拉麦里地区在早石炭世末期就进入了碰撞后的陆内伸展拉伸阶段。  相似文献   

11.
晚石炭世—早二叠世在中亚南天山造山带形成了大量的花岗质侵入岩.中国境内这些岩体以晚石炭世Ⅰ型花岗岩、早二叠世Ⅰ型和S型花岗岩以及最晚期的A型花岗岩为代表.不同类型的岩石在源区特征和岩浆形成的温压条件上存在一定的差异,而这些差异性反映了该时期内构造环境的演化过程.本文选取铁列克岩体、盲起苏岩体、英买来岩体、川乌鲁杂岩体、...  相似文献   

12.
杨硕  刘阁  靳刘圆  郑海峰 《现代地质》2021,35(2):492-503
东准噶尔地区岩浆活动丰富,侵入岩发育广泛。松喀尔苏岩体位于准噶尔东缘,卡拉麦里构造带南侧,岩体规模较小,主要由二长花岗岩和正长花岗岩组成。锆石U-Pb定年结果表明其形成年龄为(410.2±2.2)Ma(MSWD=0.30),是卡拉麦里构造带南缘首次报道的早泥盆世花岗质岩石年龄。从岩石地球化学成分上看,岩体主要为碱性花岗岩,具高硅、低钛、高铝、富碱和贫钙特征,弱过铝质,属A2型花岗岩;相对于原始地幔,不相容元素Rb、Th、U、K富集,具Sr、P、Ti明显负异常。结合区域地质资料综合分析认为,松喀尔苏岩体形成于卡拉麦里洋盆打开后不断扩张生长的阶段,该地区在早泥盆世时期处于伸展构造背景。  相似文献   

13.
Review Section     
ABSTRACT

The petrology, geochronology, and geochemistry of the early Permian volcanic rocks from Houtoumiao area, south Xiwuqi County in central Inner Mongolia of China, are studied to elucidate the early Permian tectonic setting of the region. The volcanic rocks, which are interbedded with sandstone, feature both mafic and felsic compositions and show a bimodal nature. Zircon U–Pb dating reveals that the volcanic rocks formed at 274–278 Ma, similar to the ages of bimodal magmatism in neighbouring areas. The mafic rocks are composed of tholeiitic basalt, basaltic andesite, basaltic trachyandesite, and trachyandesite. They are rich in Th, U, and LILEs, depleted in HFSEs Nb, Ta, and Ti, and have positive εNd(t) values (+3.6 to +7.9). Geochemical analyses indicate that the mafic rocks originated from metasomatized lithospheric mantle. The felsic volcanic rocks are mainly rhyolite, with minor trachyte and dacite. They have different evolutionary tendencies of major elements, chondrite-normalized REE patterns, and isotopic compositions from the mafic volcanic rocks, which preclude formation by fractional crystallization of mafic melts. The εNd(t) values of the felsic rocks are similar to those of the Carboniferous Baolidao arc rocks in the region. It is suggested that Permian felsic melts originated from the partial melting of Carboniferous juvenile arc-related rocks. By comparison with typical Cenozoic bimodal volcanism associated with several tectonic settings, including rift, post-collisional setting, back-arc basin, and the Basin and Range, USA, the bimodal volcanic rocks in central Inner Mongolia display similar petrological and geochemical characteristics to the rocks from back-arc basin and the Basin and Range, USA. Based on the analysis of regional geological data, it is inferred that the early Permian bimodal volcanic rocks in the study area formed on an extensional continental margin of the Siberian palaeoplate after late Carboniferous subduction–accretion.  相似文献   

14.
Acid intrusions are widespread in the Sawur region, Xinjiang. The Ka'erjiao intrusion is mainly composed of albite granite porphyry, K-feldspar granite porphyry, ivernite and granite porphyry. Being a transitional product between magma intrusion and eruption in the Sawur region, the Ka'erjiao intrusion was formed at the telophase of the late Carboniferous to the begining of early Permian as determined by the SHRIMP U-Pb zircon dating, with an age of 302.6±7.6 Ma (1σ). The intrusion consists of alkali-enriched rock, whose REE distribution patterns are of the LREE enrichment type, the δEu value is Iow and Nd, Sr, Pb isotopes reflect its mantle source characteristics. The δ18O value of intrusion is low as a result of isotope exchange with meteoric water.The geochemical characteristics show that it was formed in a post-collisional tectonic setting. Taking combined considerations of current studies of A-type granites and Permian volcanic rocks, we think that in the telophase of the late Carboniferous to the beginning of the early Permian, the Sawur region was within the extension or compressional to extensional period of a post-collisional stage. The Ka'erjiao intrusion from mantle sources can confirm the vertical continental crust growth in the late Paleozoic. The Sawur region in west Junggar is consistent with east Junggar in post-collisional tectonic evolution process.  相似文献   

15.
在东准噶尔卡拉麦里地区的五彩湾一带出露一套具磨拉石特征的火山沉积建造, 下部为具磨拉石特征的砾岩、砂岩, 上部为一套中基性的火山熔岩夹中酸性的火山凝灰岩.1:20万卡拉麦里山幅将其归入下石炭统松喀尔苏组.通过1:5万地质调查研究发现, 该火山沉积建造底部以一套粗砾岩高角度不整合于下-中泥盆统卡拉麦里组之上, 含晚泥盆世植物化石Prelepidodendron sp.(先鳞木), 中上部火山岩LA-ICP-MS锆石U-Pb年龄为346.8±3.3 Ma, 且被年龄为341.1±4.0 Ma~340.9±5.1 Ma后碰撞花岗岩侵入, 表明其形成时代为晚泥盆世-早石炭世, 时代上对应于北准噶尔地层分区的上泥盆统克安库都克组.该套地层中上部的火山岩的岩石组合为玄武岩、玄武安山岩、夹少量的流纹质凝灰岩, 岩石化学特征上属钙碱性-高钾钙碱性系列, (La/Yb)N=2.97~6.66, Nb、Ta亏损, 部分样品Zr、Ti弱显亏损, Nb/U、Ce/Pb比值分别为7.43~20.88、3.17~12.45.地球化学特征表明其兼具板内火山岩和弧火山岩的某些特点, 形成于后碰撞伸展环境, 是卡拉麦里洋盆于晚泥盆世之前闭合后后碰撞岩浆活动的产物.这一研究成果对广为关注的卡拉麦里洋盆的闭合时间进行了很好的限定.   相似文献   

16.
The Sakarya Zone is intruded by several Late Paleozoic granitoids, of which the Sar?cakaya intrusive rocks in the central Sakarya (Eski?ehir) region, is the least-studied. The Sar?cakaya intrusive rocks consist mainly of quartz diorite-granodiorite, granodiorite and granite. They are, geochemically, divided into two groups: diorites and granites. The former is medium-K and calc-alkaline (mainly I-type), whereas the latter is high-K to shoshonite and calcic (I-type). Typical minerals for both rock types are plagioclase, K-feldspar, quartz, biotite, hornblende and Fe–Ti oxides. Chondrite-normalized REE patterns for the Sar?cakaya intrusive rocks are moderately fractionated and have small negative Eu anomalies. They are enriched in LILE and LREE relative to HFSE showing characteristics of arc-related granitoids. Geochemical characteristics of the Sar?cakaya intrusive rocks indicate a hybrid origin through partial melting of lower crustal source rocks.  相似文献   

17.
The West Junggar lies in the southwest part of the Central Asian Orogenic Belt (CAOB) and consists of Palaeozoic ophiolitic mélanges, island arcs, and accretionary complexes. The Barleik ophiolitic mélange comprises several serpentinite-matrix strips along a NE-striking fault at Barleik Mountain in the southern West Junggar. Several small late Cambrian (509–503 Ma) diorite-trondhjemite plutons cross-cut the ophiolitic mélange. These igneous bodies are deformed and display island arc calc-alkaline affinities. Both the mélange and island arc plutons are uncomfortably covered by Devonian shallow-marine and terrestrial volcano-sedimentary rocks and Carboniferous volcano-sedimentary rocks. Detrital zircons (n = 104) from the Devonian sandstone yield a single age population of 452–517 million years, with a peak age of 474 million years. The Devonian–Carboniferous strata are invaded by an early Carboniferous (327 Ma) granodiorite, late Carboniferous (315–311 Ma) granodiorites, and an early Permian (277 Ma) K-feldspar granite. The early Carboniferous pluton is coeval with subduction-related volcano-sedimentary strata in the central West Junggar, whereas the late Carboniferous–early Permian intrusives are contemporary with widespread post-collisional magmatism in the West Junggar and adjacent regions. They are typically undeformed or only slightly deformed.

Our data reveal that island arc calc-alkaline magmatism occurred at least from middle Cambrian to Late Ordovician time as constrained by igneous and detrital zircon ages. After accretion to another tectonic unit to the south, the ophiolitic mélange and island arc were exposed, eroded, and uncomfortably overlain by the Devonian shallow-marine and terrestrial volcano-sedimentary strata. The early Carboniferous arc-related magmatism might reflect subduction of the Junggar Ocean in the central Junggar. Before the late Carboniferous, the oceanic basins apparently closed in this area. These different tectonic units were stitched together by widespread post-collisional plutons in the West Junggar during the late Carboniferous–Permian. Our data from the southern West Junggar and those from the central and northern West Junggar and surroundings consistently indicate that the southwest part of the CAOB was finally amalgamated before the Permian.  相似文献   

18.
藏东察拉地区广泛发育中生代侵入岩体,沿澜沧江结合带呈带状展布,以复式岩基、岩枝和透镜体产出,侵入于早石炭世卡贡岩卡组和吉塘群变质岩系中,主要岩性有二长花岗岩、花岗闪长岩及少量闪长岩。目前该区研究程度较低,报道较少,构造意义不明确。本次在察拉地区获得4个岩体样品的LA-ICP-MS锆石U-Pb年龄数据,时代为中—晚三叠世,其中1件样品测试结果为219.8Ma±2.4Ma,代表澜沧江结合带闭合期的年龄,其余3件测试结果相近,分别为239.2Ma±1.7Ma、241.5Ma±2.3Ma和242.5 Ma±1.6Ma,为俯冲消减期的年龄。岩石地球化学特征表明,区内岩体具有从同碰撞一直到碰撞后板内花岗岩的特点,经历了从造山运动的碰撞前期至造山运动最后阶段的构造体制转变过程,总体为"后造山"构造环境,为澜沧江洋板块向东与昌都微陆块碰撞之后地壳伸展、快速隆升背景下地壳深熔的结果。  相似文献   

19.
卡拉麦里蛇绿岩带位于新疆准噶尔盆地东北缘,查明卡拉麦里蛇绿岩所代表的古洋盆形成和闭合时代,是新疆东准噶尔乃至古亚洲洋演化历史的关键地质问题之一。本文通过对蛇绿岩带两侧志留—石炭系的岩石组合、结构构造、接触关系以及生物化石等沉积-构造特征的对比分析,揭示卡拉麦里构造带古生代的构造演化。在卡拉麦里蛇绿岩带北侧,广泛发育上志留统、下泥盆统与中—上奥陶统和加里东期花岗岩的角度不整合,普遍缺失下志留统,不整合面之下的奥陶系为变质达绿片岩相的安山岩为主,而在蛇绿岩带南北两侧的中、上志留统—泥盆系—下石炭统沉积体系特征相似,可以对比:地层间整合接触,产状平缓,褶皱、断裂构造和变质作用均不发育,主要为开阔的短轴背斜、向斜,与卡拉麦里蛇绿混杂岩带中的强变形构造明显不同;岩石组合都以火山碎屑岩为主,多见交错层理等沉积构造,产门类众多的动植物化石,反映了滨—浅海相的沉积环境。以上说明,卡拉麦里构造带晚古生代并不存在一个开阔的大洋,卡拉麦里蛇绿岩所代表的古洋盆在中志留世之前已经闭合。  相似文献   

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