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1.
确定南澜沧江缝合带的火山岩地球化学证据   总被引:9,自引:0,他引:9  
本文着重根据火山岩的主量元素、稀土元素和微量元素特征厘定了我国西南“三江”地区昌宁-孟连带C1—P2火山岩和南澜沧江带P—T3火山岩的构造-岩浆类型。昌宁-孟连火山岩带为洋脊/准洋脊型-洋岛型玄武岩、蛇绿混杂岩带,代表澜沧江洋或古特提斯的残迹;南澜沧江火山岩带是一个陆缘火山弧带,是澜沧江洋盆向东俯冲消减、碰撞以及陆内俯冲过程的产物。两带火山岩是成对分布的古特提斯缝合带的产物。  相似文献   

2.
“三江”哀牢山—李仙江带火山岩构造岩浆类型   总被引:6,自引:1,他引:5  
本文从火山地质、岩石组合、岩石化学、稀土元素、微量元素、大地构造环境等诸方面论述了该带四个火山岩构造岩浆带:哀牢山洋脊/准洋脊火山岩带、太忠-李仙江带弧火山岩带、邓控-五素裂谷火山岩带、潘家寨裂谷火山岩带的特征,探讨了该带特提斯演化。  相似文献   

3.
滇西羊拉地区构造——岩浆——成矿作用分析   总被引:7,自引:0,他引:7  
金沙江缝合带的洋-陆转换过程(洋盆扩张、洋壳俯冲、洋盆闭合),在羊拉地区引发了三期构造-岩浆事件,分别形成海西期裂谷洋盆洋脊-洋岛型火山岩、印支期陆缘弧同熔型花岗岩、燕山早期同造山碰撞型花岗岩及与之相对应的海底喷流-热水沉积型、矽卡岩型和斑岩型矿床。  相似文献   

4.
云南哀牢山地区构造岩石地层单元及其构造演化   总被引:28,自引:5,他引:28  
依据新获得的同位素年代学资料和构造岩石地层单元,重新认识了云南哀牢山造山带形成与演化历史。认为:在哀牢山地区元古界深变质岩系属基底构造层;前造山期岩石组合及构造演化为扬子地块西缘被动大陆边缘志留纪深水相碎屑岩→陆缘泥盆纪被动裂谷盆地中火山-沉积岩→石炭纪哀牢山有限洋盆及蛇绿岩石组合→晚二叠世-早三叠世哀牢山洋-陆碰撞成陆及弧火山岩-陆相碎屑岩组合。燕山期主造山期及岩石组合为晚三叠世-侏罗纪前陆盆地磨拉石建造-同造山期中酸性侵入岩-燕山期脆韧性剪切带及构造岩。喜马拉雅山期陆内造山成原的岩石组合为第三-第四纪陆内山间盆地中磨拉石建造-红河韧性剪切带及构造岩-富碱侵入岩和煌斑岩。  相似文献   

5.
华南中部中新元古代造山带构造演化探讨   总被引:3,自引:0,他引:3  
华南中部中新元古代造山带可以划分为5个地质构造单元:乐平-歙县构造混杂岩亚带、万年海相-滨海相沉积-火山沉积建造、赣东北蛇绿混杂岩亚带、怀玉火山-火山碎屑岩系、东乡-龙游混杂岩亚带。通过对不同构造单元形成大地构造环境分析,认为它们分别形成于火山弧-弧后盆地、弧间盆地、大洋岛弧、洋中脊、火山岛弧、弧前盆地等大地构造环境;华南中部中新元古代造山带属陆-弧-弧-陆碰撞造山带,发育在汇聚型板块边缘地带,古洋盆为一个多岛洋体系。中元古代末期(约1024Ma)古华南多岛洋开始关闭,大约在850Ma左右,整个古华南多岛洋最终关闭。  相似文献   

6.
造山带火山岩研究   总被引:17,自引:4,他引:17  
造山带火山岩石学研究的主要目的在于重溯造山带的构造-岩浆演化历史。纵观我国以至全球的大陆造山带形成、演化历史,一个造山带往往经历了古大陆裂解、洋陆转换、陆块拼合-碰撞、陆内伸展-盆山耦合和新构造隆升(陆内造山)等众多不同的构造演化阶段,这些不同的构造演化阶段和不同的构造环境均有特定火山岩浆作用与这相伴。因此,可以根据造山带形成、演化不同阶段火山岩浆作用的特点来重溯造山带的构造-岩浆演化历史,进而从更大尺度上加以对比,探索全球动力学乃至比较行星动力学等重大科学问题。本文对造山带火山岩石学研究中的一些重要问题进行了讨论和评述,这些问题包括:板块内部火山岩浆活动、离散板块边界上的火山岩浆活动、会聚板块边缘的火山岩浆活动。  相似文献   

7.
从岩相学特征、岩石组合、岩石化学、稀土元素、微量元素、大地构造环境等诸多方面分析清迈带洋脊/洋岛玄武岩的东侧分布的晚二叠世—早三叠世(P2—T1)火山岩认为其具有陆缘弧火山岩特征。火山岩组合为玄武安山岩-安山岩-流纹岩;火山岩系列以钙碱性系列为主,拉斑系列次之;火山岩的化学成分以高Al2O3为特征,稀土模式为轻稀土富集右倾斜型;微量元素大阳离子元素富集,普遍富U,Th亏损Ti,Cr和P;岩石化学投点均落在岛弧火山岩区,与中国澜沧江带陆缘弧火山岩投点相一致。该陆缘弧火山岩带与清迈带的洋脊/洋岛型火山岩构成了成对分布的洋脊火山岩-弧岩浆岩带,指示清迈带洋壳向东俯冲。  相似文献   

8.
三江地区南澜沧江带火山岩构造岩浆类型   总被引:6,自引:4,他引:6  
从火山岩地质,岩石组合,岩石化学,稀土元素,微量元素,大地构造环境等诸方面论述了南澜沧江带可细化为5个火山岩构造岩浆带,即大平掌裂谷火山岩带,大兴山-小街洋脊火山岩带,大兴山-热水塘洋内弧火山岩带,邦沙陆缘弧火山岩带,小定西-民乐陆内弧火山岩带,这种细化对探讨该区的特提斯演化有极重要的作用。  相似文献   

9.
老爷庙-额仁山一带发育3套性质不同的火山岩,通过对其岩石组合、岩相、古火山机构特征的详细观察及岩石学、岩石化学、地球化学的研究,晚泥盆世老爷庙组火山岩为玄武岩-安山岩组合,发育盾状和层状火山,属海相环境,为板块消减带岛弧型高铝玄武岩;晚石炭世-早二叠世哈尔加乌组火山岩为陆相火山岩,岩石组合为安山岩.英安岩-流纹岩,以爆发相为主,常形成破火山及锥状火山机构,为陆-陆碰撞造山期火山岩;早二叠世中晚期卡拉岗组火山岩为一套以酸性为主的陆相火山岩,喷溢相发育,常形成穹状古火山机构,岩石组合为英安岩-流纹岩,为造山期弛张期火山岩,3套火山岩为板块不同阶段的火山岩,从老爷庙组火山岩→哈尔加乌组火山岩→拉岗组火山岩,岩石向酸性演化,地壳成熟度愈来愈高,南混合壳转化为陆壳.  相似文献   

10.
藏北鱼鳞山地区鱼鳞山组火山岩的特征及时代探讨   总被引:4,自引:0,他引:4  
黄勇  牟世勇  卢定彪  陈仁  易成兴  贺永忠 《贵州地质》2004,21(3):148-151,147
鱼鳞山组是青藏高原已知最新的火山岩石组合之一,属陆内裂谷型碱性火山岩,它反映了印度板块与亚洲板块碰撞后与板内造山相关的构造-岩浆作用,是青藏高原由挤压向伸展转换的标志,因而,进一步认识鱼鳞山组火山岩的特征并重新审视其时代具有重要意义。  相似文献   

11.
Volcanism in Sanjiang Tethyan Orogenic Belt:New Facts and Concepts   总被引:1,自引:0,他引:1  
Sanjiang area in Southwestern China is tectonically sit-uated at the east end of Himalaya-Tethys tectonic do-main and at the conjunction of Tethyan MountainChain and Circum-Pacific Mountain Chain.It is one ofthe key areas to understand the global tectonics and alsoone of gigantic metallogenic provinces in China and evenin the world.Volcanism had occurred during the periodof time from Proterozoic to Cenozoic.The most impor-tant and active periods of volcanism,however,areCarboniferous,Permian and Triassic.The pattern ofspatial distribution of Sanjiang volcanic rocks andophiolites can essentially be described as that severalintra——continental micro-massif volcanic districts arerespectively sandwiched between each two of four couplingophiolite—are volcanic belts,which are successively fromwest to east:Dingqing-Nujiang belt,Laneangjiangbelt,Jinshajiang belt and Ganzi-Litang belt.Fourtectono-magmatic types of volcanic rocks have been recognized in Sanjiang area as follows:mid-ocean-ridge/para-mid-ocean-rid  相似文献   

12.
白乃庙群岛弧火山岩分布于兴蒙造山带南缘,是古亚洲洋与华北板块之间早古生代俯冲作用的岩浆记录,但以往工 作多集中在西段而较少关注其东延部分。本文对白乃庙岛弧带东段新识别出的早古生代火山岩进行了系统研究,以完善对 古亚洲洋早古生代演化的认识。白乃庙岛弧东段火山岩包括中-基性及酸性两种岩石类型,火山岩均富Cs,Rb,Th,U, 亏损Nb,Ta 等高场强元素,轻稀土富集,具有变化的Eu 异常。地球化学数据显示中-基性火山岩来源于俯冲板片熔体交 代的地幔熔融,并可能有大洋沉积物的加入,而酸性岩浆则来源于流体交代的下地壳。锆石LA-ICP-MS U-Pb 定年表明, 酸性及中-基性火山岩形成年代分别为430.5 Ma 和417.6 Ma,前者产出于俯冲岛弧环境,后者则可能为造山后环境下形成 的滞后型弧岩浆岩。年龄数据对比显示东段火山岩的形成年代晚于西段的白乃庙群地层,同时构造变质程度也更低,两者 的这种差异反映了东西两侧地质演化历史的不同,即早古生代古亚洲洋自西向东逐渐关闭。  相似文献   

13.
The Kemashi Domain, a lithotectonic subdivision of the Neoproterozoic Tuludimtu Orogenic Belt of western Ethiopia, consists of a suite of mafic–ultramafic volcanic and plutonic rocks, and interbedded deep marine sediments, mainly graphite-bearing pelitic schists and phyllites, and graphitic quartzites and cherts. Pillow structures indicate submarine extrusion of the volcanics, whilst partings within some of the basalts may represent sheeted dykes. An associated mélange unit, composed of blocks of the same rock types as above, set in a fine schistose matrix, also occurs. This assemblage is interpreted as a dismembered ophiolite—the Tuludimtu Ophiolite—formed in a deep oceanic environment. A turbiditic sequence is also present in the domain.The Tuludimtu Ophiolite underwent intense compression during the Neoproterozoic Pan African Orogeny, resulting in early recumbent folding and westwards-directed thrusting, followed by reactivation of steeper zones of the thrusts as N–S orogen-parallel strike-slip shear zones, accompanied by refolding of early folds into upright horizontal folds. This was followed by development of deep crustal NNW–SSE orogen-transecting shear zones, which were reactivated as brittle faults during orogenic collapse of the Tuludimtu Belt. Metamorphism to lower greenschist facies grade accompanied orogenesis.Major, trace and REE geochemistry of volcanic and some plutonic igneous rocks, has been employed to define the tectonic setting of the terrane. Tectonic discrimination diagrams, utilising REE and HFSE, indicate a wide distribution spectrum but with the majority of samples plotting in arc basalt and MORB fields, suggesting derivation from sources similar to N-MORB and depleted MORB (typical of many arc basalts). Most of the samples exhibit a slight depletion of immobile elements, relative to N-MORB values and also show depletion of Zr, Ti, Nb and Y, implying that their source had been depleted by an earlier melting episode. Overall, the geochemistry typifies spreading centre basalts with some compositional features transitional to those of arc basalts, a characteristic of back-arc basalts.Lithological association, structural style and geochemistry of the rock assemblage in the Kemashi Domain thus define an ophiolite interpreted to have formed within a deep marine environment. This is thought to have been due to rifting of continental crust within a back-arc basin regime in a continental margin type extensional setting. Comparison with other ophiolitic terranes within the Arabian Nubian Shield, suggests that many of these terranes may represent back-arc basin type tectonic settings, similar to the Kemashi Domain. This supports the multi-stage accretion model for closure of the Mozambique Ocean, for which the Pacific Ocean may be a present day analogue.  相似文献   

14.
哀牢山缝合带中两类火山岩地球化学特征及其构造意义   总被引:14,自引:1,他引:13  
在哀牢山构造带的哀牢山断裂与花山-雅邑断裂之间出路大量不同构造环境的岩浆岩。除双沟蛇绿岩外,尚发现有景东火山岩和墨江火山岩。地球化学研究表明,景东火山岩具有类似于富集型洋中脊玄武岩(P-MORB)地球化学特征,形成于以双沟蛇绿岩为代表的哀牢山洋盆先期的陆内裂谷构造环境;墨江火山岩具有岛弧火山岩地球化学特征,形成于哀牢山洋盆向西俯冲消减作用下的岛弧构造环境。景东裂谷型火山岩和墨江岛弧火山岩分别代表了  相似文献   

15.
杨高学  李永军 《地学前缘》2015,22(6):233-240
随着研究的不断深入,在中亚造山带(CAOB)不断有不同时代的洋岛玄武岩(OIB)被识别出来。在中亚造山带西南缘的西准噶尔地区的多条蛇绿混杂岩带中,也存在具有OIB特征的玄武岩。这些玄武岩呈枕状,与超基性岩、辉长岩、块状玄武岩、灰岩及紫红色硅质岩等紧密共生。地球化学研究表明枕状玄武岩均为碱性系列,具有较高的TiO2含量(大多>2.5%)、强烈富集轻稀土元素、无明显Nb、Ta负异常,与典型的OIB极为相似,认为其可能形成于大洋板内与地幔柱有关的海山环境。通过对海山的发展阶段分析认为,西准噶尔地区海山应该发展到爆炸海山阶段,因为其中发育大量的枕状熔岩。海山中火山岩或火山碎屑沉积物富集大离子亲石元素和高场强元素,海山的俯冲将对弧及弧后地区火山岩地球化学产生明显影响,而西准噶尔地区泥盆纪-石炭纪火山岩中恰恰存在海山的信号。因此,海山俯冲模式可能能更好地解释西准噶尔地区火山岩中存在OIB特征火山岩的成因。另外,海山俯冲还存在潜在的资源效应,因此应该寻找和研究古海山及火山岛链俯冲的迹象,将对进一步找金铜等矿提供可靠依据。  相似文献   

16.
Tectonic discrimination diagrams are a key tool for understanding ancient volcanic rock origins. In this contribution we compile over 15,000 whole rock compositions to re-evaluate the Ti-V discrimination diagram and compare it to another commonly used tool, the Nb/Yb-Th/Yb diagram. We have reformulated the Ti-V diagram into a log–log plot to distinguish samples more clearly at lower concentrations. The compilation shows that MORB are dominated by Ti/V = 20–43, whereas juvenile arc tholeiites and boninites are characterized by Ti/V < 20 generally, although there is minor overlap at the boundary (Ti/V = 20–22). Plume-related volcanic rocks (ocean island basalts, oceanic plateaux, and continental flood basalts) generally have Ti/V > 43, although there may be significant overlap with MORB-like ratios for ridge-centered OIB and for some oceanic plateaux. About 56% of alkaline OIB have Ti/V > 70. Back-arc basins are dominantly MORB-like. Melt models show that MORB and juvenile arc volcanics most likely formed under different ?O2 conditions, but are permissive of similar ?O2 if the arc rocks form by much higher melt fractions. The Nb/Yb vs. Th/Yb plot clearly distinguishes most oceanic basalts (MORB, plateaux, OIB) from subduction-related volcanic rocks (boninite, juvenile arc tholeiite, calc-alkaline) and from flood basalts. We propose here a new two-proxy diagram of Ti/V vs. Th/Nb, which incorporates the advantages of both.  相似文献   

17.
甘肃省夏河县腾布—日周一带发育早白垩世多禾茂组(K1d)火山岩地层,该套地层属于典型的陆内裂谷沉积组合。岩石组成主要为玄武岩,底部偶见复成分砾岩。岩相学及岩石地球化学特征表明腾布—日周玄武岩为钠质碱性橄榄玄武岩,富集LREE及Nb、Ta、La、Zr等,亏损Rb和K等,稀土元素球粒陨石标准化配分曲线及微量元素原始地幔标准化蛛网图,均与世界典型的OIB型玄武岩相似。但是Th/Nb=0.055~0.060,平均为0.057(OIB为0.08),Zr/Nb=6.9~8,平均为7.25(OIB为5.83),Th/La=0.07(OIB为0.11),又与之不同,表明玄武岩岩浆来自软流圈地幔,同时受到地壳物质混染。LA-ICP-MS锆石U-Pb同位素年龄为(106.27±1.3) Ma,另外麦秀山一带多禾茂组中产以Classopollis-Osmundacidites为主的孢粉组合。认为该玄武岩是西秦岭晚中生代大陆裂谷岩浆作用的产物,但是未发育典型的双峰式火山岩,多禾茂组有陆相红层建造,上部万秀组发育类磨拉石建造。因此裂谷作用很可能夭折于岩石圈拉张的早期阶段,并未发展到陆间裂谷阶段。  相似文献   

18.
The Kekekete mafic-ultramafic rocks are exposed in the Kekesha-Kekekete-Dawate area,which are in the eastern part of the East Kunlun Orogenic Belt.It outcrops as tectonic slices intruding tectonically in the Paleoproterozoic Baishahe Group and the Paleozoic Nachitai Group.The Kekekete mafic and ultramafic rocks is located near the central fault in East Kunlun and lithologically mainly consists of serpentinite,augite peridotite,and gabbro.The LA-ICP-MS zircon U-Pb age of the gabbro is 501±7 Ma,indicating that Kekekete mafic-ultramafic rocks formed in the Middle Cambrian.This rock assemblage is relatively poor in SiO2 and(Na2 O+K2 O) but rich in MgO and SFeO.The chondrite-normalized REE patterns of the gabbro dip slightly to the right;the primitive mantle and MORBnormalized spidergrams of trace elements show enrichment of large-ion lithophile elements(Cs,Rb,Ba,etc.) and no differentiation of high field strength elements.The general dominance of E-MORB features and the geochemical characteristics of OIB suggest that the Kekekete mafic-ultramafic rocks formed in an initial oceanic basin with slightly enriched mantle being featured by varying degrees of mixing of N-MORB depleted mantle and a similar-OIB-type source.From a comprehensive study of the previous data,the author believes that the tectonic history of the East Kunlun region was controlled by a geodynamic system of rifting and extension in the late stages of the Neoproterozoic to early stages of the Early Paleozoic and this formed the paleo-oceanic basin or rift system now represented by the ophiolites along the central fault in East Kunlun,the Kekekete mafic-ultramafic rocks and Delisitan ophiolite.  相似文献   

19.
Three tectonic units have been recognized in the Chifeng area, Inner Mongolia, from north to south, including the Qiganmiao accretionary prism, Jiefangyingzi arc belt and Sidaozhangpeng molasse basin, which formed an Andeantype active continent margin during the early to middle Paleozoic. The Qiganmiao accretionary prism is characterized by a mélange that consists of gabbro, two-mica quartz schist and basic volcanic rock blocks and heterogeneously deformed marble matrix. Two zircon U-Pb ages of 446.0±6.3 Ma and 1104±27 Ma have been acquired and been interpreted as the metamorphic and forming ages for the gabbro and two-mica quartz schist, respectively. The prism formed during the early to middle Paleozoic southward subduction of the Paleo Asian Ocean(PAO) and represents a suture between the North China craton(NCC) and Central Asian Orogenic Belt(CAOB). The Jiefangyingzi arc belt consists of pluton complex and volcanic rocks of the Xibiehe and Badangshan Formations, and Geochronology analysis indicates that the development of it can be divided into two stages. The first stage is represented by the Xibiehe Formation volcanic rocks, which belong to the subalkaline series, enriched LREE and LILE and depleted HFSE, with negative Eu anomalies, and plot in the volcanic arc field in discrimination diagrams. These characters indicate that the Xibiehe Formation results from to the continental arc magmatic activity related to the subduction of the PAO during 400–420 Ma. Magmatism of the second stage in 380–390 Ma consists of the Badangshan Formation volcanic rocks. Geochemistry analysis reveals that rhyolite, basaltic andesite and basalt of the Badangshan Formation were developed in continental margin arc setting. Moreover, the basaltic andesite and basalt display positive Sr anomalies, and the basalt have very low Nb/La values, suggesting that fluid is involved in magma evolution and the basalts were contaminated by continental crust. The sequence of Sidaozhangpeng molasse basin is characterized by proximity, coarseness and large thickness, similar to the proximity molasses basin. According to our field investigation, geochronological and geochemical data, combined with previous research in this area, a tectonic evolutionary model for Andes-type active continental margin of the CAOB has been proposed, including a development of the subduction-free PAO before 446 Ma, a subduction of the PAO and arc-related magmatism during 446–380 Ma, and formation of a molasse basin during 380–360 Ma.  相似文献   

20.
冈底斯作为重要的中、新生代岛弧岩浆岩带,历来是青藏高原最热门的地质研究领域,但是对晚古生代火山岩的性质及其形成的构造背景仍缺乏研究。本文在区域地质调查资料的基础上,对冈底斯带石炭纪火山-沉积岩系进行了系统的地层学和岩石地球化学研究,测量了重点剖面,对火山岩进行了常量、微量元素和Sr、Nd、Pb同位素地球化学测试。研究表明,石炭系与下伏泥盆系或前寒武系之间普遍存在不整合或岩性、沉积相的突变面,代表重要的构造转换面。石炭纪的沉积环境大致有两次滨海-深海或深水斜坡-滨海沉积演化旋回,深海-深水斜坡沉积或冰海相含砾板岩与两次火山活动伴生。石炭纪火山岩主要为安山玄武岩和英安岩、流纹岩类,略具双峰式火山岩特点。安山玄武岩类的成分与典型MORB和岛弧玄武岩相比,具有MgO含量低,TiO2、Al2O3、P2O5含量高等特点,稀土和微量元素为LREE和LILE富集型分配模式,与大陆拉斑玄武岩相似。石炭纪酸性火山岩的稀土和微量元素地球化学特征与陆内流纹岩相似。岩石地球化学示踪和地层学研究表明,冈底斯带石炭纪为伸展背景下的冈瓦纳陆缘裂陷环境。火山岩的源区地幔具有典型的Dupal异常,发生过复杂的混合作用,涉及到原始地幔、富集地幔EMII和地壳成分等,说明发生过冈瓦纳古陆壳俯冲、再循环进入古老地幔等过程。玄武岩类成分的某些特殊性,可能与源区混合作用有关。  相似文献   

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