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1.
阿尔金红柳沟蛇绿混杂岩中MORB与OIB组合的地球化学证据   总被引:23,自引:0,他引:23  
阿尔金红柳沟地区早古生代蛇绿混杂带中含有地幔橄榄岩、辉长辉绿岩、细碧化玄武岩、硅质岩、复理石等岩石组合。笔者研究证实,该地区蛇绿岩中变基性岩具有过渡型洋中脊玄武岩(T-MORB)的特征,并发现蛇绿岩在混杂带中与洋岛玄武岩(OIB)共生。在球粒陨石标准化的稀土元素配分图上,T-MORB型变基性岩配分型式为平坦型;OIB中TiO2含量高,近3%,富集高场强元素Nb、Ta等,稀土元素配分型式为轻稀土富集型。MORB和OIB组合的出现说明早古生代时,该地区存在过洋盆。这一组合可与北祁连进行对比。  相似文献   

2.
羌塘东部治多县直根尕卡一带二叠纪栖霞期火山岩主要由中基性火山碎屑岩及熔岩组成,火山岩地球化学研究表明,其主元素表现为高TiO_2和低TiO_2两种特征,球粒陨石标准化稀土配分模式为LREE富集型.MORB标准化的微量元素配分型式为大洋隆起型,显示岩浆形成于板内裂谷构造环境.Sr、Nd、Pb同位素地球化学研究表明火山岩显示明显的亏损地幔源区特征.综合研究表明直根尕卡一带二叠纪栖霞期火山岩形成于大陆边缘拉张构造(或陆缘始裂谷)环境,岩浆起源于地幔,属地幔柱作用的产物.  相似文献   

3.
张虎  范柱国  曾文涛 《云南地质》2005,24(4):421-426
澜沧江断裂以东的景洪变质岩带中的绿片岩分布较为广泛,其原岩为基性火山岩。主量元素表现为低碱、低钛、低FeO*/MgO、富纳、稀土配分曲线呈平坦型。微量元素比值蛛网图上,不相容元素亦具平坦型特点。显示作为绿片岩原岩的基性火山岩属大洋拉斑玄武岩。经构造环境判别,进一步证实为N型洋中脊玄武岩,其形成与原特提斯澜沧江洋密切相关。  相似文献   

4.
阿尔金茫崖地区早古生代蛇绿岩的地球化学特征   总被引:5,自引:0,他引:5  
王焰  刘良  车自成  陈丹玲  罗金海 《地质论评》1999,45(7):1010-1014
阿尔金茫崖地区基性火山岩属拉斑玄武岩系列,稀土配分模式均为LREE略富集型,Ti/V值为37~62,Th/Ta值接近1,少数大于1.5, Nb/Th值为7.7~16.8,显示了EMORB或OIB的特征。[HT5]ε[HT5\"]Nd(t)值为3.95~4.12,表明其源区来自亏损 地幔,但又有富集地幔物质的加入。茫崖基性火山岩的微量元素特征与冰岛Galapagos群岛Alcedo玄武岩的一致,说明阿尔金茫崖蛇绿岩产出在洋脊环境中,其源区是上地幔亏损物质和与地幔柱有关的富集地幔物质混合作用的结果。  相似文献   

5.
阿尔金山拉配泉地区元古宙裂谷火山岩系及其构造意义   总被引:8,自引:2,他引:8  
孙勇  刘池阳 《地质论评》1997,43(1):17-24
阿尔金山拉配泉之北,拉配泉断裂和阿尔金北缘断裂夹持的火山岩片为一套典型的双峰式大陆裂谷火山岩系,基性端员属碱性系列和亚碱性系列,亚碱性系列可分为钙碱性系列和拉斑玄武岩系列,酸性端员均属钙碱性关系,基性火山岩Sm-Nd同位素年龄为1793±270(2σ)Ma,εNd=6.4±1.4。稀土元素地球化学特征表明,基性火山岩以轻稀土富集配分型式为主,个别样品呈MORB型平坦配分型式,酸性火山岩以轻稀土高度  相似文献   

6.
甘孜—理塘蛇绿混杂岩带为西南"三江"多岛弧系的重要组成部分,为区域上义敦岛弧带与扬子板块间的重要界线。研究区洋岛型岩石组合主要为晶屑熔结凝灰岩、泥晶灰岩,局部夹少量的硅质岩、玄武岩,各端元之间均呈整合接触。对基性火山岩进行详细的岩石地球化学研究表明, SiO_2含量为47.16%~54.30%,TiO_2含量为2.76%~5.66%,MgO含量为5.29%~6.65%,K2O含量介于0.82%~3.66%之间,Na_2O含量在2.52%~3.66%之间变化,属于碱性玄武岩系列。稀土总量∑REE=195.21×10–6~341.81×10–6,(La/Yb)N=11.75~13.62,无明显铕异常,相对富集大离子亲石元素Rb、Ba、Th、K和高场强元素Nb、Ta、Zr、Hf,稀土和微量元素配分模式类似于OIB。基性火山岩微量元素判别表明其形成于洋岛构造环境,岩石成因研究表明其起源于地幔源区而没有遭受明显的陆壳物质混染。晶屑熔结凝灰岩的锆石U-Pb定年结果为(245.1±1.5) Ma,这表明该洋岛型基性火山岩形成时代为中三叠世早期。研究区洋岛型岩石组合的发现丰富了甘孜—理塘蛇绿混杂岩带的研究内容,为区域上甘孜—理塘洋盆中三叠世时期构造演化提供了直接的物质证据。  相似文献   

7.
藏东碧土地区古特提斯主洋盆中的亚速尔型洋岛玄武岩   总被引:1,自引:5,他引:1  
吴根耀 《地质通报》2006,25(7):772-781
采自藏东碧土蛇绿混杂岩带的据水、学巴和登巴东3条剖面的火山岩样品,主体是碱性玄武岩.常量元素的判别图解表明其构造背景是洋岛.微量元素含量显示出大洋板内玄武岩的特点.稀土元素配分型式表现为一组近于平行的右倾曲线,(Ce/Yb)N值约为6,稀土总量随岩浆分异程度的增高而增加.洋岛总体发育的时间为石炭纪(古特提斯洋盆的全盛期),属亚速尔型洋岛.其中,学巴剖面代表了洋岛形成的初期阶段,其下部有大洋拉斑玄武岩的夹层,稀土配分曲线和微量元素蛛网曲线均落入OIB与E-MORB之间;登巴东剖面则代表了洋岛火山岩发育的晚期阶段,项部有酸性熔岩的夹层,火山岩之上连续沉积有灰岩和砂岩.对这3个亚速尔型洋岛的厘定,结合以前报道的夏威夷型洋岛(瓦浦火山岩),充分说明藏东的古特提斯主洋盆曾是一个开阔的多岛洋,与滇西南昌宁-孟连多岛洋的构造面貌相同.  相似文献   

8.
朱永峰  孙世华  毛骞  刘焰 《地质论评》1999,45(7):1151-1154
本文报道了内蒙古东部早二叠纪火山岩的痕量元素地球化学特征,讨论了该区火山岩的源区特征,结果表明,内蒙古东部早二叠纪火山岩是不同性质组成的地幔不同程度部分熔融的产物。基性熔岩主要是具有亏损地幔性质的E-MORB高度部分熔融的产物,而中酸性火山岩的源区物质具有OIB特征。具有OIB型富集地幔特征的中酸性火山岩的源区可能是循环到地幔与海水发生强烈作用的古洋壳物质。这一结果表明,中晚古生代时期中朝板块与西伯利亚板块拼合后,俯冲到地幔中的古洋壳在早二叠纪以火山作用的方式返回到地壳环境中。  相似文献   

9.
周家湾变质玄武岩岩片位于秦岭-大别微板块与扬子板块的分界断裂构造混杂带内,形成于印支期。岩石为一套亚碱性拉斑系列火山岩,具扁平型稀土配分型式;Th/Yb,Ta/Yb,Ti/Zr,Ti/Y,Zr/Y比和Nb,Th丰度表明其形成于初始型小洋盆的大地构造环境。该岩片可能是秦岭勉略缝合带在大别南缘出露的岩石学证据。  相似文献   

10.
姬红星 《物探与化探》2007,31(3):218-220
新疆西天山艾肯达坂组火山岩的岩石学和稀土元素的地球化学等研究证明,本区火山岩由基性火山岩和中性火山岩组成,火山岩均属于钙碱性系列,二者均具有低钾、富钠的特点。这些火山岩的稀土元素配分曲线均属于轻稀土富集型,明显地表现为轻稀土元素配分曲线陡倾,而重稀土元素配分曲线相对平坦的特征。这些岩石学和地球化学的特征证明本区火山岩形成于裂谷环境。  相似文献   

11.
以新疆西准噶尔玛依拉山-萨雷诺海蛇绿岩为重点进行讨论.该区出露的火成岩种类较多,表现出构造混杂特点.变质橄榄岩是具有一定亏损程度的地幔残体,LREE的富集主要是后期蚀变的结果.玄武岩的稀土分布型式是平坦型的或LREE略亏损型的.与MORB相比,REE的总量较高,高Fe和Ti,Mg值低,是一种演化的岩石,与东太平洋中隆地高Fe和Ti的铁质拉斑玄武岩成分相当,地球化学特征类似于MORB,可能形成于小洋盆环境.  相似文献   

12.
内蒙古中部发育的三条蛇绿岩带是华北板块和西伯利亚板块之间的缝合带。本文系统研究了其中的温都尔庙和巴彦敖包-交其尔两个蛇绿岩带中变质玄武岩的元素和 Sr、Nd、Pb 同位素地球化学。苏右旗温都尔庙碱性玄武岩为轻稀土富集型;岩石具有板内和大陆裂谷区玄武岩的特征,可能代表了600Ma 左右,温都尔庙地区开始发育的新洋盆。采自苏左旗的巴彦敖包-交其尔玄武岩分为两类,一类呈现轻稀土富集型,呈洋岛玄武岩特征;另一类具有明显的 Nb、Ta 负异常,显示大洋岛弧玄武岩特征,洋岛玄武岩的存在表明古亚洲洋曾经发育洋盆,大洋岛弧玄武岩的存在表明古亚洲洋内部有大洋岩石圈之间的俯冲。将本文的古亚洲洋洋岛玄武岩与中国西南地区的特提斯洋岛玄武岩进行系统的元素和同位素地球化学特征对比表明,古亚洲洋的洋岛玄武岩显示高 U/Pb(HU)和北大西洋和太平洋省的特征,而特提斯洋岛玄武岩属于印度洋省。这些说明古亚洲洋地幔域与特提斯地幔域是两个独立的构造域,它们代表了长期演化的两个不同的地幔地球化学域。  相似文献   

13.
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   

14.
榆树沟变质基性-超基性岩带出露于塔里木板块与哈萨克斯坦板块之间的南天山北缘,主要由变质橄榄岩和变质基性岩组成。变质橄榄岩富相容元素Cr、Co和Ni,贫不相容元素,太离子亲石元素Ba、Rb和Sr含量较低,与世界典型蛇绿岩相似,代表了地幔残留物特征。REE分布模式为LREE亏损型,REE含量小于或等于2.5倍球粒陨石,类似于阿尔卑斯型变质橄榄岩,显示榆树沟的变质橄榄岩是原始地幔岩部分熔融萃取出玄武岩后的残留物。变质基性岩绝大部分为LREE亏损型,类似于N-MORB。所有样品均以富集Nb和Ta、高场强元素不分异,以及微量元素含量低为特征,批示岩浆源区总体上类似于MORB,Nb、Ta富集可能与OIB型源区有关,Nd、Sr同位素特征也显示其具有OIB型源区特征。综合分析认为,榆对沟变质基性岩石的岩浆可能经历了两个阶段的演化过程,即上地幔底部或下地幔顶部的OIB型原始岩浆形成阶段和软流圈地幔亏损阶段。  相似文献   

15.
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   

16.
滇西双江勐库地区新发现的退变质榴辉岩呈构造透镜体产于奥陶纪湾河蛇绿混杂岩的白云母构造片岩内,勐库地区是目前云南省境内唯一退变质榴辉岩产地。岩石地球化学分析结果显示,退变质榴辉岩的SiO2含量为4722%~5040%,全碱(Na2O+K2O)含量为228%~415%,Al2O3含量为1370%~1558%,TiO2含量为139%~395%,可分为中Ti(139%~183%)和高Ti(330%~395%)两种类型。退变质榴辉岩的主要原岩是拉班玄武岩,少部分具碱性玄武岩特征。多数原岩为拉斑玄武岩的样品具TiO2含量高、Eu异常不明显及缓右倾稀土元素配分模式特征,其稀土元素配分模式和微量元素蛛网图特征均与E MORB相似而与N MORB不同,投在MORB和E MORB范围,推测其原岩很可能形成于E MORB环境;少部分原岩为碱性玄武岩的样品,其TiO2含量中等,较原岩为拉斑玄武岩样品具更高的ΣREE和ΣLREE含量,投在OIB范围,推测其原岩可能形成于OIB环境。勐库地区退变质榴辉岩样品的岩石地球化学特征与其赋存的奥陶纪湾河蛇绿岩颇为相似,暗示可能是其俯冲消减作用的产物。此外,研究样品同时具有E MORB和OIB的特征,且与青藏高原羌塘中部榴辉岩相似,表明在特提斯洋演化过程中地幔柱岩浆和正常洋中脊亏损地幔岩浆的相互作用可能是广泛存在的。  相似文献   

17.
《International Geology Review》2012,54(11):1313-1339
ABSTRACT

The nature, magmatic evolution, and geodynamic setting of both inner and outer Makran ophiolites, in SE Iran, are enigmatic. Here, we report mineral chemistry, whole-rock geochemistry, and Sr–Nd–Pb isotope composition of mantle peridotites and igneous rocks from the Eastern Makran Ophiolite (EMO) to assess the origin and tectono-magmatic evolution of the Makran oceanic realm. The EMO includes mantle peridotites (both harzburgites and impregnated lherzolites), isotropic gabbros, diabase dikes, and basaltic to andesitic pillow and massive lava flows. The Late Cretaceous pelagic limestones are found as covers of lava flows and/or interlayers between them. All ophiolite components are somehow sheared and fragmented, probably in Cenozoic time, during the emplacement of ophiolite. This event has produced a considerable extent of tectonic melange. Tectonic slices of trachy-basaltic lavas with oceanic island basalt (OIB)-like signature seal the tectonic melange. Our new geochemical data indicate a magmatic evolution from fore-arc basalt (FAB) to island-arc tholeiite (IAT)-like signatures for the Late Cretaceous EMO lavas. EMO extrusive rocks have high εNd(t) (+8 to +8.9) and isotopically are similar to the Oman lavas. This isotopic signature indicates a depleted mid-ocean ridge basalt (MORB) mantle source for the genesis of these rocks, except isotopic gabbros containing lower εNd(t) (+5.1 to +5.7) and thus show higher contribution of subducted slab components in their mantle source. High 207Pb/204Pb and 208Pb/204Pb isotopic ratios for the EMO igneous rocks also suggest considerable involvement of slab-derived components into the mantle source of these rocks. The variable geochemical signatures of the EMO lavas are mostly similar to Zagros and Oman ophiolite magmatic rocks, although the Pb isotopic composition shows similarity to the isotopic characteristic of inner Zagros ophiolite belt. This study postulates that the EMO formed during the early stages of Neo-Tethyan subduction initiation beneath the Lut block in a proto-forearc basin. We suggest subduction initiation caused asthenospheric upwelling and thereafter melting to generate the MORB-like melts. This event left the harzburgitic residues and the MORB-like melts interacted with the surrounding peridotites to generate the impregnated lherzolites, which are quite abundant in the EMO. Therefore, these lherzolites formed due to the refertilization of mantle rocks through porous flows of MORB-like melts. The inception of subduction caused mantle wedge to be enriched slightly by the slab components. Melting of these metasomatized mantle generated isotropic gabbros and basaltic to andesitic lavas with FAB-like signature. At the later stage, higher contribution of the slab-derived components into the overlying mantle wedge causes formation of diabase dikes with supra-subduction zone – or IAT-like signatures. Trachy-basalts were probably the result of late-stage magmatism fed by the melts originated from an OIB source asthenospheric mantle due to slab break-off. This occurred after emplacement of EMO and the formation of tectonic melange.  相似文献   

18.
冰沟蛇绿混杂岩是阿尔金山红柳沟蛇绿混杂岩带的东段部分,岩石组合包括蛇纹岩、方辉橄榄岩、辉石岩和辉长岩等。蛇纹岩具高Mg,Mg/Fe值大于9,低Al、Ca、Na、K为特征,从稀土元素和微量元素特征来看,基性辉长岩和洋壳以及洋中脊玄武岩极为相似,而超基性岩与原始地幔较为接近。辉长岩获得锆石SHRIMP年龄为449.5±10.9Ma。蛇绿混杂岩的围岩为一套巨厚的碎屑岩、火山碎屑岩、火山岩,以及部分碳酸盐岩构成,其中含有具有洋中脊特征的枕状构造玄武岩,以及放射虫硅质岩,放射虫时代为奥陶纪中晚期,与辉长岩的SHRIMP年龄一致。这些证据进一步证实了红柳沟一带存在早古生代洋盆的地质事实。  相似文献   

19.
The Zedang and Luobusa ophiolites are located in the eastern section of the Yalung Zangbo ophiolite belt,and they share similar geological tectonic setting and age.Thus,an understanding of their origins is very important for discussion of the evolution of the Eastern Tethys Ocean.There is no complete ophiolite assemblage in the Zedang ophiolite.The Zedang ophiolite is mainly composed of mantle peridotite and a suite of volcanic rocks as well as siliceous rocks,with some blocks of olivinepyroxenite.The mantle peridotite mainly consists of Cpx-harzburgite,harzburgite,some lherzolite,and some dunite.A suite of volcanic rocks is mainly composed of caic-aikaline pyroclastic rocks and secondly of tholeiitic pillow lavas,basaltic andesites,and some boninitic rocks with a lower TiO2 content (TiO2 < 0.6%).The pyroclastic rocks have a LREE-enriched REE pattern and a LILE-enriched (compared to HFSE) spider diagram,demonstrating an island-arc origin.The tholeiitic volcanic rock has a LREE-depleted REE pattern and a LILE-depleted (compared to HFSE) spider diagram,indicative of an origin from MORB.The boninitic rock was generated from fore-arc extension.The Luobusa ophiolite consists of mantle peridotite and mafic-ultramaflc cumulate units,without dike swarms and volcanic rocks.The mantle peridotite mainly consists of dunite,harzburgite with low-Opx (Opx < 25%),and harzburgite (Opx > 25%),which can be divided into two facies belts.The upper is a dunite-harzburgite (Opx < 25%) belt,containing many dunite lenses and a large-scale chromite deposit with high Cr203; the lower is a harzburgite (Opx >25%) belt with small amounts of dunite and lherzolite.The Luobusa mantle peridotite exhibits a distinctive vertical zonation of partial melting with high melting in the upper unit and low melting in the lower.Many mantle peridotites are highly depleted,with a characteristic U-shaped REE pattern peculiar to fore-arc peridotite.The Luobusa cumulates are composed of wehrlite and olivine-pyroxenite,of the P-P-G ophiolite series.This study indicates that the Luobusa ophiolite was formed in a fore-arc basin environment on the basis of the occurrence of highly depleted mantle peridotite,a high-Cr2O3 chromite deposit,and cumulates of the P-P-G ophiolite series.We conclude that the evolution of the Eastern Tethys Ocean involved three stages:the initial ocean stage (formation of MORB volcanic rock and dikes),the forearc extension stage (formation of high-Cr203 chromite deposits and P-P-G cumulates),and the islandarc stage (formation of caic-alkaline pyroclastic rocks).  相似文献   

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