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1.
重点介绍了没草沟蛇绿岩岩石组合、地球化学特征等,并对该蛇绿岩构造背景进行了讨论。该蛇绿岩位于青海省格尔木市,构造上处于东昆仑复合造山带西段,岩石组合由变质基性玄武岩及少量辉绿岩、辉长岩、变质橄榄岩、辉橄岩等组成。岩石主量和微量元素特征显示该蛇绿岩与俯冲无关,属正常洋中脊型玄武岩。前人开展的地质调查表明,该蛇绿岩形成于晚奥陶世。通过对没草沟蛇绿岩中玄武岩和辉长岩进行LA-ICP-MS锆石U-Pb测年,分别获得了488.2±2.1Ma和500.8±2.2 Ma的年龄数据,确定该蛇绿岩形成时代为中寒武世—早奥陶世。该同位素年龄的获得填补了该地区蛇绿岩无时代依据的空白,同时反映古特斯洋在本区的残留。综合区域地质特征认为,没草沟蛇绿岩早期为初始洋盆环境,晚期有洋脊扩张中心环境的玄武岩形成。寒武纪早期是洋盆发育的全盛期,奥陶纪晚期洋壳发生消减,于晚志留世洋盆基本闭合,后期伴有绿片岩相变质作用。  相似文献   

2.
近年的区调工作在西昆仑于田南部阿羌一带新填绘出一套具有蛇绿岩特征的变质橄榄岩、蛇纹岩、变辉长岩、辉绿岩和玄武岩等岩石组合.其中,变质橄榄岩、蛇纹岩具有低SiO2、高MgO、低稀土特征;辉长岩、辉绿岩和玄武岩绝大多数样品岩石化学具有低K2O<1%,TiO2含量为1.5%等特征;稀土元素及微量元素特征与N-MORB及E-M...  相似文献   

3.
青藏高原松多地区温木朗蛇绿岩的发现及其地质意义   总被引:4,自引:1,他引:3  
王斌  解超明  李才  刘一鸣  于云鹏 《地质通报》2017,36(11):2076-2081
在藏南工布江达县松多地区温木朗沟发现了一套蛇绿岩,命名为温木朗蛇绿岩。温木朗蛇绿岩大地构造位置处于中冈底斯板块和南冈底斯板块的交界处。通过详细的野外地质调查和室内岩相学研究,温木朗蛇绿岩露头呈南北向分布,岩石端元包括蛇纹岩、超基性堆晶杂岩、变质辉长岩、变质玄武岩、绿片岩,各端元主要呈断层接触,变形变质较强;在蛇纹岩和变质玄武岩中均发现了花岗质片麻岩,在接触界线处存在冷凝边和烘烤边现象,推测其原岩为斜长花岗岩。温木朗蛇绿岩各端元出露相对齐全,是古特提斯洋壳残留的直接证据,对研究青藏高原古特提斯洋演化及冈底斯板块中部构造演化具有重要意义。  相似文献   

4.
迪彦庙蛇绿岩位于中朝古板块与西伯利亚古板块之间的兴蒙造山带,主要由蛇纹石化斜辉辉橄岩、辉长岩、玄武岩、细碧角斑岩组成.岩相学研究表明,迪彦庙辉长岩分为层状辉长岩(具堆晶结构)和均质辉长岩(具辉长结构)两类,且均经历了低-中级变质改造.在详细的野外工作基础上,通过对迪彦庙辉长岩的地质特征、岩相学特征和岩石化学研究,认为其为活动大陆边缘或岛弧环境下小规模单旋回封闭系统内形成的.  相似文献   

5.
白云山蛇绿混杂岩是北山造山带中红柳河-牛圈子-洗肠井蛇绿岩带的一部分,由蛇纹石化二辉橄榄岩、蛇纹岩、辉长岩(堆晶辉长岩、块状辉长岩)、基性枕状熔岩(变玄武岩)及深海-次深海远洋、半远洋相沉积物(硅质岩、板岩)、白云岩等组成。其中辉长岩LA-ICP-MS锆石U-Pb测年结果为496.4±2.2 Ma,指示蛇绿岩形成于晚寒武世;混杂带中玄武岩地球化学特征为洋底玄武岩,兼有洋岛碱性玄武岩(OIB)和洋脊玄武岩(MORB)的地球化学性质,枕状熔岩与硅质岩交互产出,指示其形成环境为深水洋盆。结合区域地质资料,推测该蛇绿混杂岩带为寒武纪洋中脊存在的遗迹。  相似文献   

6.
We estimated metamorphic conditions for the  6 Ma Taitao ophiolite, associated with the Chile triple junction. The metamorphic grade of the ophiolite, estimated from secondary matrix minerals, changes stratigraphically downwards from the zeolite facies, through the prehnite–actinolite facies, greenschist facies and the greenschist–amphibolite transition, to the amphibolite facies. The metamorphic facies series corresponds to the low-pressure type. The metamorphic zone boundaries are subparallel to the internal lithological boundaries of the ophiolite, indicating that the metamorphism was due to axial hydrothermal alteration at a mid-ocean ridge.

Mineral assemblages and the compositions of veins systematically change from quartz-dominated, through epidote-dominated, to prehnite-dominated with increasing depth. Temperatures estimated from the vein assemblages range from  230 °C in the volcanic unit to  380 °C at the bottom of the gabbro unit, systematically  200 °C lower than estimates from the adjoining matrix minerals. The late development of veins and the systematically lower temperatures suggest that the vein-forming alteration was due to off-axis hydrothermal alteration.

Comparison between the Taitao ophiolite with its mid-ocean ridge (MOR) affinity, and other ophiolites and MOR crusts, suggests that the Taitao ophiolite has many hydrothermal alteration features similar to those of MOR crusts. This is consistent with the tectonic history that the Taitao ophiolite was formed at the South Chile ridge system near the South American continent (Anma, R., Armstrong, R., Danhara, T., Orihashi, Y. and Iwano, H., 2006. Zircon sensitive high mass-resolution ion microprobe U–Pb and fission-track ages for gabbros and sheeted dykes of the Taitao ophiolite, Southern Chile, and their tectonic implications. The Island Arc, 15(1): 130–142).  相似文献   


7.
The Ballantrae ophiolite in southern Scotland includes a NEE–SWW-trending serpentinite mélange that contains blocks of mafic blueschist and high-pressure, granulite facies, metapyroxenite (Sm–Nd metamorphic age: 576 ± 32 and 505 ± 11 Ma). Tectonic blocks of mafic schist are less than 3 × 3 m in size, and have greenschist, blueschist or epidote amphibolite facies assemblages corresponding to the high-pressure intermediate-type metamorphic facies series.Adjacent rocks of the serpentinite mélange are hydrothermally-altered MORB-like ophiolitic basalt (prehnite–pumpellyite facies), dolerite (actinolite–oligoclase sub-facies) and gabbro (amphibolite facies), all with assemblages that are diagnostic of the low-pressure metamorphic facies series.The difference in metamorphic facies series and parageneses of minerals between the high-pressure mafic blocks and the adjacent, low-pressure ophiolitic meta-basic rocks suggests that the former were exhumed from > 25 km depth within a cold subducted slab, and were juxtaposed with the latter, the bottom of a MORB-like ophiolite in the hanging wall of a trench. An ENE–WSW-trending, 501 ± 12 Ma volcanic arc belt extends for 3 km south of the serpentinite mélange. We suggest that ridge subduction associated with a slab window created arc-related gabbro (483 ± 4 Ma) at Byne Hill and within-plate gabbro (487 ± 8 Ma) at Millenderdale. Final continental collision created the duplex structure of the Ballantrae complex that includes the HP blocks and serpentinite mélange. These relations define diapiric exhumation in the Caledonian orogen of SW Scotland.  相似文献   

8.
藏北羌塘中部桃形湖早古生代蛇绿岩的岩石学特征   总被引:8,自引:3,他引:5  
桃形湖早古生代蛇绿岩是龙木错-双湖板块缝合带近期的重要发现。通过对桃形湖蛇绿岩进行详细的野外地质调查和岩石学、年代学、地球化学的研究发现,桃形湖早古生代蛇绿岩各单元出露齐全,由下到上分别为变质橄榄岩、超基性堆晶杂岩、堆晶辉长岩、基性岩墙群和枕状玄武岩,在堆晶岩中有不同规模的斜长花岗岩(层)脉体。桃形湖堆晶辉长岩的时代为中奥陶世,并具有大洋中脊型的地球化学特点。桃形湖早古生代蛇绿岩的发现说明龙木错-双湖板块缝合带中存在完整的蛇绿岩组合,同时也是古特提斯洋早期裂解的重要证据。  相似文献   

9.
在中亚造山带东部构造带中发现角闪变质辉绿岩,岩相学特征表明具非典型辉绿结构,显示变余辉绿结构及变余嵌晶含长结构.主要矿物为斜长石及角闪石,次要矿物为单斜辉石和阳起石.全岩岩石化学分析结果:SiO2含量为49.15%~52.96%、Na2O+K2O含量为2.71%~5.07%、CaO含量为7.07%~10.40%、Al2O3含量为14.77%~17.31%、TFe0含量为8.80%~12.27%、MgO含量为6.45%~9.57%;在火山岩TAS分类图落入玄武岩区,属于基性岩范围;说明研究区具有非典型辉绿结构的岩石命名为角闪变质辉绿岩的正确性.角闪变质辉绿岩经历了退变质作用:基性斜长石(拉长石)退变质为中性斜长石(中长石),进一步退变质为钠长石或钠更长石;单斜辉石退变质为角闪石,角闪石退变质为阳起石.  相似文献   

10.
金沙江蛇绿岩带蛇纹岩中异剥钙榴岩的成因及意义   总被引:1,自引:1,他引:0  
金沙江蛇绿岩带绒角蛇绿岩由超镁铁岩与异剥辉长岩岩脉组成,在蛇绿岩就位过程中,异剥辉长岩岩脉碎裂为不规则的岩块包裹于超镁铁岩中,形成超镁铁岩中的构造包体。经过交代蚀变作用,超镁铁岩形成蛇纹岩,异剥辉长岩形成异剥钙榴岩。异剥钙榴岩的形成是超镁铁岩蛇纹石化和异剥辉长岩中斜长石钙铝榴石化循环作用的结果,并与对蛇绿岩起过作用的构造运动有关系,是变形作用伴随交代作用的产物。绒角蛇绿岩中的异剥钙榴岩的发现,说明金沙江蛇绿岩带不存在榴辉岩,其变质相属葡萄石一绿泥石低温低压相.也说明金沙江蛇绿岩带是洋壳残片“冷侵入”的产物。  相似文献   

11.
西藏永珠—纳木湖蛇绿岩地球化学特征及其构造环境初探   总被引:13,自引:6,他引:13  
西藏永珠—纳木湖蛇绿岩中的变质橄榄岩从超镁铁质岩到镁铁质岩均表现出高镁,其玄武岩、辉长岩的TiO2含量较低,表现出非大洋中脊玄武岩和洋岛玄武岩的特征。微量元素、大离子亲石元素相对富集,玄武岩的Nb、Ta亏损,显示其在产出时受到俯冲作用的影响,具有岛弧玄武岩的特点,但Th的高度富集和无Zr、Hf负异常说明它又不同于岛弧玄武岩。稀土元素含量较低,在球粒陨石标准化稀土分布模式图上玄武岩为平坦型,无Eu异常,显示其具有原生岩浆成分的特点;辉长岩的稀土配分模式也为平坦型,但有Eu正异常。通过与典型地区作对比和应用构造环境判别图解,判定出该区蛇绿岩的形成环境为弧后盆地。  相似文献   

12.
班- 怒带东段丁青蛇绿岩中镁铁质岩石年代学及构造背景   总被引:1,自引:0,他引:1  
丁青蛇绿岩位于班公湖-怒江缝合带东段,分为东、西两个蛇绿岩体,丁青西蛇绿岩体缺乏基性岩年代学研究。对丁青西地质填图显示,蛇绿岩主要由方辉橄榄岩、纯橄榄岩、辉绿岩、玄武岩及辉长岩组成。其中玄武岩、辉长岩及辉绿岩出露在宗白区域,玄武岩和辉绿岩与下侏罗统沉积岩呈构造接触,辉长岩呈岩脉侵入到下侏罗统沉积岩中。岩石地球化学研究表明,玄武岩和辉长岩同属于碱性基性岩石,其中玄武岩具有典型洋岛玄武岩的稀土和微量元素特征,可能形成于与地幔柱有关的洋岛环境。在玄武质凝灰岩中挑选出的锆石测年,获得U-Pb年龄为198.7±3.8Ma,属早侏罗世。辉长岩的稀土和微量元素含量低于典型洋岛玄武岩,但其REE和微量元素具有OIB的特征,与典型OIB相比,辉长岩的HREE发生了一定程度富集。辉长岩锆石的U-Pb年龄为164.3±2.6Ma,认为辉长岩在形成过程中受到了软流圈地幔和岩石圈下部LVZ中富集熔体的共同作用,其形成于大陆边缘裂谷环境;辉绿岩成分属于拉斑系列岩石,其REE和微量元素曲线显示辉绿岩同时具有N-MORB和E-MORB的特征。辉绿岩锆石U-Pb年龄为114.2±1.3Ma,其形成晚于玄武岩。结合区域地质,认为辉绿岩形成于受地幔柱影响的弧后扩张脊环境。本研究提供了丁青西蛇绿岩新的年代学和岩石学证据,为探讨丁青蛇绿岩的形成和演化历史提供了新的证据。  相似文献   

13.
Gabbros have been dredged from Gettysburg Bank, 110 km west of Portugal on the Azores/Gibraltar fracture zone. Primary minerals in olivine, pyroxene and brown hornblende gabbros are partially replaced by metamorphic minerals. Igneous textures are inhomogeneously overprinted by a granular polyhedral deformation and a cataclastic deformation. Amphiboles show characteristics which indicate a transition from crystallisation in a magma chamber to formation of amphibole in solid gabbro under metasomatic conditions. Of the amphiboles analysed, chlorine was present in the green amphiboles but below 0.05% in the brown suggesting the penetration of sea water after the formation of the brown amphibole but during the formation of the green.  相似文献   

14.
班公湖?怒江结合带西段班公湖地区蛇绿岩组合较为完整,由超镁铁质岩、镁铁质堆晶岩、辉绿岩脉、铁镁质熔岩、放射虫硅质岩等组成。这套蛇绿岩所代表的洋盆打开时间一直争论不休。该蛇绿岩中MOR型辉长岩的LA-ICP-MS锆石U-Pb定年显示,18个测点的~(206)Pb/~(238)U加权平均年龄为231.5±2.6 Ma,代表了辉长岩的结晶年龄。地球化学分析表明辉长岩SiO_2含量在46.12%~47.85%之间,TiO_2(1.52%~1.71%),具低的K_2O(0.19%~0.25%)、Al_2O_3(12.97%~13.51%)和Fe_2O_3/FeO比值(0.19~0.24);微量元素蛛网图与洋中脊玄武岩类似,Zr、Nb、Ta、Hf丰度与N-MORB相当或略高,相对富集Ba、Pb、Sr等大离子亲石元素,无Ta-Nb负异常,在基性岩构造环境判别图上显示出洋脊玄武岩的亲合性;REE配分曲线具有平缓型特点,介于E-MORB与N-MORB之间;各种地球化学特征与洋脊玄武岩类似,表明该辉长岩是在班公湖洋盆扩张阶段形成的。结合前人研究成果,本文认为班公湖中特提斯洋盆初始打开时间至少为中三叠世。  相似文献   

15.
《地学前缘(英文版)》2020,11(6):2017-2029
The newly discovered early Paleozoic Delenuoer ophiolite, in the western margin of the Central Qilian Shan, is composed of serpentinized peridotite, cumulate gabbro, diabase, massive basalt, and pillow basalt. This study presents geochronological and geochemical data for the cumulate gabbro and basalt. LA–ICP–MS U–Pb dating of zircons from the cumulate gabbro yielded a magmatic crystallization age of 472 ​± ​4 ​Ma. The basalts have normal mid-ocean ridge basalt (N-MORB) compositions and a narrow range of εNd(t) values (+4.5 to ​+5.3), which indicates they were derived from a depleted mantle source. On the basis of regional geological constraints, it is proposed that the Delenuoer ophiolite is a westward extension of the South Ophiolite Belt (Yushigou–Youhulugou–Donggou–Dongcaohe Ophiolite Belt) in the North Qilian Shan. The Delenuoer ophiolite, along with the Gulangxia–Delenuoer fault, defines the westernmost part of the tectonic boundary between the North and Central Qilian Shan. This ophiolite may have formed during southward subduction of the Qilian Ocean slab during the early Paleozoic.  相似文献   

16.
东营凹陷沙三段烃源岩中发现一些规模不大的玄武岩和辉长岩体。通过对其岩性及产状、岩石化学和地球化学元素分析,认为研究区玄武岩是碱性-亚碱性橄榄玄武岩;辉长岩的岩石化学和微量元素组成与上述玄武岩相似,认为它们具有同源性,只是辉长岩没有喷发到地表而被封存在刚刚沉积下来的沙三段烃源岩中。水下喷溢的玄赋岩对烃源岩的沉积和生烃演化具有促进作用,辉长岩可以造成局部烃源岩的热变质作用。  相似文献   

17.
西昆仑山库地蛇绿岩的特征及其构造意义   总被引:17,自引:0,他引:17       下载免费PDF全文
杨树锋  贾承造 《地质科学》1999,34(3):281-288
库地蛇绿岩套由下部超镁铁质岩、辉长岩、幔源型花岗岩和上部基性火山岩、复理石等成分构成,形成于震旦纪-寒武纪。通过基性的辉长岩、玄武岩的矿物学、岩石学和地球化学研究得出,辉长岩表现出与典型蛇绿岩套中的堆晶辉长岩的特征相一致;而玄武岩则与大洋中脊玄武岩的特征一致,认为该蛇绿岩套是形成于洋中脊的蛇绿岩套。结合库地岛弧花岗岩的特征,提出塔里木盆地南缘在震旦纪-早古生代时期存在一个广阔的大洋,这一大洋在志留纪末期关闭。  相似文献   

18.
甘肃红石山蛇绿岩地球化学特征及构造环境   总被引:6,自引:0,他引:6       下载免费PDF全文
黄增保  金霞 《地质科学》2006,41(4):601-611
红石山蛇绿岩产出于塔里木板块北缘红石山深大断裂带中,主要由变质橄榄岩、辉长岩和玄武岩组成。玄武岩的主要地球化学特征与MORB相似,微量元素特征表明它属N-MORB。结合区域地质特征,认为红石山蛇绿岩早期为初始洋盆环境,晚期有洋脊扩张中心环境的玄武岩形成。早石炭世早期是洋盆发育的全盛期,早石炭世晚期洋壳发生消减,于二叠纪晚期构造侵位,伴有绿片岩相变质作用。  相似文献   

19.
月牙山蛇绿质构造混杂岩带位于红柳河—洗肠井蛇绿岩带东部的月牙山一带。月牙山蛇绿岩套出露较完整,自下而上由超基性杂岩、辉长岩、层状玄武岩、枕状玄武岩及放射虫硅质岩组成。蛇绿岩套北侧发生了强烈的构造混杂作用,形成蛇绿质构造混杂岩带,由强糜棱岩化、强蛇纹石化的辉橄岩、玄武岩基质和辉石岩、堆晶辉长岩、斜长花岗岩、橄榄岩、橄辉岩、角闪石岩、白云岩、放射虫硅质岩、蚀变玄武岩等岩块组成。通过对蛇绿岩套中辉石岩、辉长岩、斜长花岗岩、辉长闪长岩及蛇绿岩套北侧斜山——东七一山火山弧中的安山岩、花岗闪长岩等开展锆石U-Pb同位素测年研究,确定月牙山蛇绿岩套形成时代约为530Ma,相当于早寒武世;洋盆发生大规模自南向北俯冲作用的时间为421.0±15~442.4±1.5Ma,相当于志留纪。通过对蛇绿岩带两侧地层形成环境及蛇绿岩带对两侧地层单位的限定意义等研究认为,红柳河—洗肠井蛇绿岩带是代表古大洋闭合的板块缝合带,以该带为界,北侧为哈萨克斯坦板块,南侧为塔里木板块。  相似文献   

20.
The ophiolite in the southern Tianshan, Uzbekistan, is interrupted distributed along the northern border (NW‐trending) of the Nuratau Mountain. It's the suture zone between kyzylkum‐Alai and Kazakhstan paleo‐continents. In order to study the tectonic evolution of the Turkestan ocean during the Paleozoic, we present zircon U‐Pb ages, major element, trace element data for rocks from the ophiolite in the Nuratau segment. The ophiolite comprises the rock blocks of serpentinite, altered basalt, allalinite, altered diabase, pillowed basalt, limestone, etc and the matrix of quartz schist, forming the grid structure. The matrix suffers strong deformation and deterioration, while the mylonitization occurred in the western outcrop. New LA‐ICP‐MS zircon U‐Pb ages were determined for six magmatic rock blocks and two quartz schist matrix and these ages confirm the presence of Late Devonian‐Early Permian (ca. 411 to 294 Ma). Five zircon grains from greenschist facies metamorphic basic rock yielded a group minimum weighted mean age of 226 Ma, interpreted as the result of Late Triassic thermal event. The apex of zircon ages for 2 quartz schist is about 450 Ma (Late Ordovician). That indicates sedimentary material from the Late Ordovician. The basalt (SiO2=48.15‐49.93%) are Na‐enriched (average Na2O=2.32‐4.02%), with high HREE/LREE ratios (average=4.93), Weak positive anomalies (average Eu*/Eu=1.02) and convex‐type mantle‐normalized immobile trace elements patterns, which are similar to the geochemical characteristics of Alkaline Ocean island basalt (OIB) and subalkaline Oceanic plateau basalt (OPB). This ophiolite is characterized by Mantle (serpentinite) and Ocean crust (altered basalt, allalinite, pillowed basalt), formed in Early Devonian at the latest. During the evolution of the Turkestan ocean, the growth of OIB and OPB, Ordovician provided a large amount of sedimentary material. The earliest start time of the ocean closed and paleo‐continents assembly is the Early Permian. Afterward, a Late Triassic thermal event occurred on a region scale and is recorded by metamorphic zircon.  相似文献   

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