首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 140 毫秒
1.
对新疆西准噶尔达尔布特蛇绿岩套柳树沟镁铁质杂岩中橄榄辉长岩、蛇纹石化橄榄辉长岩、辉长岩和蚀变辉长岩地球化学分析表明:辉长岩和蚀变辉长岩具有钙碱性和拉斑玄武岩的双重特征,橄榄辉长岩和蛇纹石化橄榄辉长岩属镁铁质堆积岩,为蛇绿岩组成单元;稀土总量较高,具微弱正Eu异常,稀土元素配分模式为略左倾平坦型,与SSZ型镁铁质堆晶岩稀土配分模式相同;微量元素蛛网图上,富集大离子亲石元素Cs、K、Th、U,相对亏损高场强元素Nb、Ta,可能代表俯冲板片的流体交代上覆地幔楔使地幔岩石发生部分熔融。地球化学构造环境判别柳树沟镁铁质岩石岩浆源区为亏损型地幔向富集型地幔过渡的适度富集型地幔,其形成的最佳模型是在成熟岛弧基础上裂谷化形成的一个不成熟的类似边缘海性质弧后盆地,不具成熟大洋或盆地那样的洋壳-上地幔结构,在盆地扩张初期岩浆具岛弧特征,随着盆地被进一步打开,镁铁质岩石具N-MORB特征。对辉长岩采用SHRIMP锆石U-Pb同位素年龄测试,获得特柳树沟镁铁质岩石的结晶时间为314.9±1.7 Ma。  相似文献   

2.
西秦岭同仁隆务峡蛇绿岩矿物成分特征及构造环境   总被引:6,自引:0,他引:6  
同仁隆务峡蛇绿岩大地构造位置位于西秦岭造山带与中祁连带结合部,其组成为:地幔橄榄岩(纯橄岩、蛇纹石化纯橄岩)、超镁铁质堆晶单元(单辉橄榄岩、橄榄辉石岩)、镁铁质堆晶单元(含橄榄石辉长岩、辉长岩等)及少量辉绿岩,各单元均以断层接触,弱蚀变.镜下研究发现其岩浆结晶序列为橄榄石-单斜辉石-(斜方辉石)-斜长石,与典型的SSZ型(Supra-Subduction Zone type)蛇绿岩结晶序列吻合.对各单元矿物电子探针研究发现:橄榄石成分多为贵橄榄石,单斜辉石则多为普通辉石和透辉石,在利用其成分进行构造环境判别中,本区蛇绿岩形成于与挤压背景密切相关的环境.该蛇绿岩表现出轻稀土元素略富集、重稀土元素平坦的稀土元素配分形式,与MORB有较大差异.微量元素特征为相对富集大离子亲石元素Ba、Rb、K,而强烈亏损Nb、P,这恰与俯冲带组分特点吻合;同时高场强元素构造判别图解佐证了前述构造环境的判定.研究区的蛇绿岩应形成于成熟度较高的岛弧环境中.  相似文献   

3.
新疆阿尔金长沙沟超镁铁质岩锆石U-Pb年龄及其地质意义   总被引:5,自引:0,他引:5  
通过1∶50000地质填图,表明新疆长沙沟(蛇绿)构造混杂岩带超镁铁质岩主要岩石类型为斜长辉石角闪岩、辉石橄榄岩、强蛇纹石化辉石橄榄岩等;总体贫SiO2、CaO、K2O、Na2O,富含MgO、FeO特征,分异指数DI=0.35~14.45,固结指数SI=47.82~70.05,表明岩浆分异不明显,固结程度较高;里特曼指数σ=0.97,属钙性系列;M/F=1.94~4.39,属镁铁质超基性岩类;其中,辉石橄榄岩TiO2含量接近洋中脊地幔(TiO2=0.10%~0.40%),稀土元素、微量元素特征与地幔橄榄岩近似,认为属原始地幔分离产物,为蛇绿岩套组成部分;斜长辉石角闪岩可能为超镁铁质杂岩。首次获得了辉石橄榄岩206 Pb/238 U加权平均年龄为(510.60±1.40)Ma(MSWD=0.11),形成时代为寒武纪,其可能代表了南阿尔金洋盆早期的产物。  相似文献   

4.
鞍子山蛇绿杂岩位于秦岭勉略带东段,它由蛇纹石化变质橄榄岩和MORB型变质镁铁质岩组成。蛇纹石化变质橄榄岩主要是方辉橄榄岩和少量二辉橄榄岩,表了古洋幔的上部岩石;变质镁铁质岩为斜长角闪岩,其原岩是基性火成岩类,它多以亏损LREE元素和具有很高的^143Nd/^144Nd值为特征,类似于现代洋壳中的洋中脊玄武岩(MORB),代表了古洋壳的残余部分。这表明鞍子山晕绿杂岩是勉略混杂岩带中又一个典型的蛇绿岩  相似文献   

5.
青海同仁县隆务峡地区首次发现镁铁质——超镁铁质岩带   总被引:10,自引:4,他引:10  
在青海省同仁县隆务峡南段的二叠纪地层中首次发现了北西—南东向分布的镁铁质—超镁铁质岩带,命名为隆务峡镁铁质—超镁铁质岩带。该岩带的岩石组合包括纯橄岩、辉石橄榄岩、辉长岩、辉绿岩、枕状玄武岩等。从超镁铁岩—下部堆晶岩—辉绿岩—上部堆晶岩,其稀土元素总量逐渐增加,稀土元素配分型式总体一致,从超镁铁岩的Eu正异常到上部辉长岩的Eu负异常,显示了各岩石间的同源性。根据对其两侧沉积岩中化石的研究,推测该镁铁质—超镁铁质岩带的形成时代为二叠纪。该岩带位于西秦岭造山带与祁连造山带的接舍部,对于揭示秦岭和祁连接合部的大地构造演化有重要意义。  相似文献   

6.
位于东天山黄山岩带最东端的四顶黑山镁铁质-超镁铁质层状杂岩体规模较大,呈北东向展布,可分为南、北2个岩体。主要岩石类型有单辉橄榄岩、橄榄辉石岩、橄榄苏长辉长岩、橄榄辉长岩、辉石角闪岩、辉长岩和角闪辉长岩,超镁铁岩相常与辉长岩相呈韵律互层。主量元素化学组成主要属拉斑玄武岩系列。岩石稀土元素配分曲线呈平坦型以及Eu的正异常,普遍富集大离子亲石元素(Rb、Ba、U),显示明显的Sr正异常以及Nb、Ta的亏损。通过橄榄石最高的Fo值(79.6)估算出母岩浆中MgO和FeO含量分别为6.23%和6.60%。岩浆在演化过程中发生了橄榄石、斜方辉石、单斜辉石、斜长石的分离结晶/堆晶作用以及较弱的上地壳同化混染作用。岩石高的(La/Yb)N值1.550和1.744值表明岩浆源区的深度可能大于90km;Th/U值特征以及Th/Yb-Nb/Yb和La/Ba-La/Nb图解表明,四顶黑山岩体的岩浆源区可能为受俯冲作用改造的岩石圈地幔。  相似文献   

7.
刘懿馨  沙鑫  马蓁  王金荣 《岩石学报》2018,34(2):383-397
北祁连西段双龙一带出露的镁铁质-超镁铁质岩主要由蛇纹石化二辉橄榄岩、辉长岩、辉绿岩及玄武岩组成,这些岩石单元与构造卷入的前寒武纪变质岩系和深海沉积的硅质岩一起构成蛇绿混杂岩带。辉长岩LA-ICP-MS锆石U-Pb年龄为464±2 Ma(MSWD=1.3)。Zr/TiO_2-Nb/Y图解显示辉绿岩为拉斑玄武岩系列,玄武岩为碱性系列,两者均具有低的MgO和相容元素Cr、Ni含量,指示在岩浆作用过程中发生过橄榄石、辉石的分离结晶作用。球粒陨石标准化稀土元素配分模式图显示,辉绿岩呈平坦型,(La/Yb)_N=1.35~1.45,无Eu异常(δEu=1.0~1.1),以及Lu/Yb(~0.15)、Zr/Y(~2.5)、Y/Tb(~39)比值等均类似于N-MORB;但它们又相对富集Ba、Sr,亏损Nb、Ta、Pb,以及Nb/U(~21)、Zr/Nb(~16)、Th/Ta(~5.7)比值则显示了岛弧玄武岩或弧后盆地玄武岩的特征,推测辉绿岩应源于受俯冲流体交代的尖晶石二辉橄榄岩部分熔融的产物。玄武岩地球化学特征明显不同于辉绿岩,表现为相对富集LREE,~8.48,轻微负Eu异常(δEu=0.91),以及Zr/Y(~8)、Y/Tb(~30)、Ta/Yb(~0.6)、Th/Yb(~2.5)比值等类似于OIB,指示玄武岩应源于富集地幔部分熔融的产物,但岩石又表现出富集Rb、Ba、Th、U、Pb、Sr、Zr、Hf,亏损Nb、Ta、Ti、P,以及Th/Ta(~4.8)、Zr/Nb(~14)、Nb/Yb(~10)、Nb/U(~11)比值又具有岛弧或弧后盆地玄武岩的亲缘性,显示了玄武岩应源于地幔深部流体交代的石榴石二辉橄榄岩或尖晶石+石榴石二辉橄榄岩部分熔融的产物,表明早古生代北祁连古大洋在俯冲闭合过程中具有洋岛或海底高原的增生作用。结合区域地质背景,利用全球大数据建立的构造判别图解综合研究认为,北祁连西段熬油沟-玉石沟-双龙-小龙孔-卡瓦-东沟等镁铁质-超镁铁质岩共同构成一条重要的SSZ型蛇绿岩带,为北祁连古大洋向南俯冲形成的弧后盆地的残留体。  相似文献   

8.
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   

9.
云开地区蛇绿混杂岩的发现及意义   总被引:4,自引:0,他引:4  
沿信宜罗罅、茶山、罗定贵子和高州云炉一带,首次发现呈弱东-北北东向展布的蛇绿混杂岩(蛇纹石化橄榄岩、堆晶辉长岩和变基性火山岩),其中变基性火山岩(斜长角闪岩),具N-MORB和E-MORB型特征,推测蛇绿岩形成于元古宙,这一发现对于认识华南大陆构造演化,特别是罗迪尼亚超大陆的增生和裂解,具有重要意义。  相似文献   

10.
西藏丁青蛇绿岩的东杂岩体是一种与玻镁安山岩(Boninite)有关的特殊的蛇绿岩类型。其 堆晶斜方辉石岩、辉长岩和辉绿岩的岩石化学、微量元素以及稀土元素的地球化学特征均与西太平洋诸岛(伊豆—马利亚纳、巴布亚新几内亚、新喀里多尼亚等)的玻镁安山岩相似。此外,超镁铁质构造岩中的橄榄石和顽火辉石富镁,指示残余地幔具强烈亏损的性质。尖晶石的Cr含量中等至较高,与深海橄榄岩及大洋中脊玄武岩中的尖晶石不同。堆晶岩和辉长岩中的古铜辉石富镁,斜长石富钙,也明显不同于典型大洋中脊环境的特征,表明丁青东蛇绿岩形成的环境不像大洋中脊或弧后盆地,而可能是在洋内俯冲带之上的岛弧底部。  相似文献   

11.
We report the presence of a Grenvillian ophiolite on the northern margin of the Yangtze craton, drastically changing current ideas about South China's role in plate reconstructions of the Rodinia supercontinent. Strongly deformed amphibolites that locally show relict pillow lavas, isotropic and layered metagabbro, diabase dikes, serpentinized dunite and harzburgite with podiform chromite are dated at circa 1100–985 Ma (U–Pb zircon). The ophiolite is structurally dismembered and thrust over the Proterozoic shelf sequence that covers the north margin of the Yangtze craton, and overrode a flysch to conglomerate-wildflysch unit shed from the ophiolite and a magmatic arc terrane and deposited on the older Yangtze carbonate platform. The youngest clasts in the conglomerate are circa 861–813 Ma (U–Pb zircon), giving a maximum age for ophiolite emplacement. Fine-grained layered amphibolites exhibit slightly depleted-flat type REE curves with no obvious Eu anomalies, and are N-MORB type tholeiites. Metagabbro has typical cumulate textures, flat REE distributions and obvious positive Eu anomalies. The REE characteristics of serpentinized dunites show a U-shape of slight loss of middle REE, representing cumulates metasomatized by LREE slightly enriched mantle. All these features indicate that the metamafic–ultramafic rocks from the Proterozoic Miaowan Formation form a structurally dismembered ophiolite resting above an ophiolitic wildflysch, sitting on top of the Proterozoic shelf sequence on the Yangtze craton. The ophiolite is contemporaneous with an arc sequence preserved to the north on the edge of the Yangtze craton, suggesting that the entire ophiolitic forearc–arc was accreted to the Yangtze craton between 1000 and 850 Ma. Xenocrystic zircons in granite clasts in the basal wildflysch unit have ages consistent with Australian affinity, and detrital zircons in the arc sequence also show derivation from Australia, suggesting that the arc formed on the Australian segment of Rodinia before collision with the Yangtze craton. The discovery of the Proterozoic Miaowan ophiolite supplies important evidence for the existence of a Neoproterozoic oceanic basin on the north margin of the Yangtze craton, and demonstrates that the Yangtze craton first collided with Rodinia on its northern margin, with subsequent accretion of the Cathaysian block on the southern margin of the craton.  相似文献   

12.
New major and trace element data on the Proterozoic Chimalpahad layered anorthositic Complex and associated basaltic amphibolites of the Nellore Schist Belt of South India provide new constraints on their petrogenesis and geodynamic setting. The Complex consists of layered anorthosites, leucogabbros, gabbros, ultramafic rocks and is spatially associated with basaltic amphibolites. Despite deformation and metamorphism, primary cumulate textures and igneous layering are locally well preserved throughout the Complex. Whereas the amphibolites display diverse REE systematics, the Chimalpahad anorthositic–gabbroic rocks are characterized by moderately depleted to strongly enriched LREE patterns and by flat to depleted HREE patterns. The field relations, major and trace element compositions of the basaltic amphibolites suggest that they are petrogenetically related to the anorthositic–gabbroic rocks by fractional crystallization. The anorthositic rocks and the basaltic amphibolites share the depletion of Nb relative to Th and La on primitive mantle-normalized diagrams. They exhibit signatures of arc magmatic rocks, such as high LILE and LREE relative to the HFSE and HREE, as well as high Ba/Nb, Ba/Zr, Sr/Y, La/Yb ratios that mimic chondrite-normalized REE and primitive mantle-normalized trace element patterns of arc magmas. Similarly, on log-transformed tectonic discrimination diagrams, the Chimalpahad rocks plot within the field of Phanerozoic magmatic arcs, consistent with a subduction zone origin. On the basis of field relations and geochemical characteristics, the Chimalpahad Complex is interpreted as a fragment of a magma chamber of an island arc, which is tectonically juxtaposed against its original volcanic cover. A new preliminary Sm–Nd date of anorthosite from the Chimalpahad Complex indicates a model age of 1170 Ma.  相似文献   

13.
东河铂钯矿化超基性岩脉位于扬子陆块北缘房县东河地区,铂钯矿体产于超基性岩辉石岩脉中.LA-ICP-MS锆石U-Pb测年表明该超基性岩脉结晶侵位年龄为433.2±2.9 Ma,属于早志留世.地球化学特征上,岩石具有较低含量的SiO_2(39.73%~47.46%,均值为41.41%)、中等偏低的Mg#(46.98~67.37)和高铝(11.25%~15.46%)的特征,整体上属于高铝质超基性岩类.微量和稀土元素方面,岩石具有较高的稀土总量、轻稀土富集和无明显的Eu正异常特征(ΣREE=59.59×10-6~375.02×10-6,(LaN/YbN)=3.94~19.13,δEu=0.93~1.13),所有岩石富集Rb、Ba、Sr、Nb、Ti等元素,亏损K、Hf、P等元素,且具有显著不同于地壳的不相容元素组成.Sr、Nd、Hf同位素研究表明,东河超基性岩具有低的(87 Sr/86 Sr)i(0.703 26~0.704 15),正的εNd(t)(4.37~5.27)和正的εHf(t)(7.29~10.26).综合研究表明:东河超基性岩来自亏损的岩石圈地幔源区,可能有富集岩石圈地幔组分的加入,原始岩浆在上升侵位过程中地壳物质的混染不明显.微量元素构造环境判别显示其形成于板内构造环境,通过分析表明东河地区在早志留世应处于被动大陆边缘,拉张伸展的状态,研究区出露的两期超基性岩床(脉)为岩石圈处于拉张状态下大陆裂谷早期阶段的产物.  相似文献   

14.
《地学前缘(英文版)》2020,11(6):2347-2364
The Late Cretaceous Sabzevar ophiolite represents one of the largest and most complete fragments of Tethyan oceanic lithosphere in the NE Iran. It is mainly composed of serpentinized mantle peridotites slices; nonetheless, minor tectonic slices of all crustal sequence constituents are observed in this ophiolite. The crustal sequence contains a well-developed ultramafic and mafic cumulates section, comprising plagioclase-bearing wehrlite, olivine clinopyroxenite, olivine gabbronorite, gabbronorite, amphibole gabbronorite and quartz gabbronorite with adcumulate, mesocumulate, heteradcumulate and orthocumulate textures. The crystallization order for these rocks is olivine ​± ​chromian spinel → clinopyroxene → plagioclase → orthopyroxene → amphibole. The presence of primary magmatic amphiboles in the cumulate rocks shows that the parent magma evolved under hydrous conditions. Geochemically, the studied rock units are characterized by low TiO2 (0.18–0.57 ​wt.%), P2O5 (<0.05 ​wt.%), K2O (0.01–0.51 ​wt.%) and total alkali contents (0.12–3.04 ​wt.%). They indicate fractionated trends in the chondrite-normalized rare earth element (REE) plots and multi-element diagrams (spider diagrams). The general trend of the spider diagrams exhibit slight enrichment in large ion lithophile elements (LILEs) relative to high field strength elements (HFSEs) and positive anomalies in Sr, Pb and Eu and negative anomalies in Zr and Nb relative to the adjacent elements. The REE plots of these rocks display increasing trend from La to Sm, positive Eu anomaly (Eu/Eu1 ​= ​1.06–1.54) and an almost flat pattern from medium REE (MREE) to heavy REE (HREE) region [(Gd/Yb)N ​= ​1–1.17]. Moreover, clinopyroxenes from the cumulate rocks have low REE contents and show marked depletion in light REE (LREE) compared to MREE and HREE [(La/Sm)N ​= ​0.10–0.27 and (La/Yb)N ​= ​0.08–0.22]. The composition of calculated melts in equilibrium with the clinopyroxenes from less evolved cumulate samples are closely similar to island arc tholeiitic (IAT) magmas. Modal mineralogy, geochemical features and REE modeling indicate that Sabzevar cumulate rocks were formed by crystal accumulation from a hydrous depleted basaltic melt with IAT affinity. This melt has been produced by moderate to high degree (~15%) of partial melting a depleted mantle source, which partially underwent metasomatic enrichment from subducted slab components in an intra-oceanic arc setting.  相似文献   

15.
江西周潭群斜长角闪岩的地球化学特征及其成因   总被引:2,自引:0,他引:2  
胡恭任  刘丛强 《矿物学报》2002,22(4):335-342
周潭群斜长角闪岩的基本组成矿物是斜长石和角闪石,不同样品中还可以出现黑云母、石英和碱性长石等。所有斜长角闪岩显示石英拉斑系列特征,其稀土元素配分曲线呈平坦型,显示轻微的轻稀土亏损和Eu亏损,与由岛弧及洋拉斑玄武岩形成的斜长角闪岩的稀土分布型式及稀土特征一致。根据微量元素蛛网图的斜率和Nb、Zr异常情况以及低的Zr/Nb比值、V-Ti、Y-Cr、Zr-Ti-Sr、Zr-Y相关性,认为斜长角闪岩之原岩为岛弧型玄武岩,周潭群的原岩形成于岛弧环境。元素地球化学和Nd同位素特征指示它们的母岩浆起源于亏损程度低的地幔或来源于亏损地幔的岩浆受到地壳物质的混染。  相似文献   

16.
在华北克拉通中部的山西云中山地区,新太古代花岗闪长质片麻岩中存在一些超镁铁质岩-镁铁质岩块及由斜长角闪岩、角闪变粒岩、石英岩和石榴夕线黑云片岩等岩石类型构成的变质表壳岩残片,其中的超镁铁质-镁铁质岩、斜长角闪岩和角闪变粒岩构成一套高镁火成岩组合。超镁铁质岩已变质为橄榄绿泥阳起片岩等岩石类型,呈变余斑状结构,橄榄石斑晶仍有保存;岩石SiO_2含量为39.22%~44.99%,Al_2O_3为8.82%~13.47%,Mg O为19.24%~22.13%,Na_2O+K_2O=0.71%~1.11%,CaO为5.75%~8.42%;Al_2O_3/TiO_2=14.8~17.4,CaO/Al_2O_3=0.60~0.84;化学成分上与科马提岩有一定的相似性。与之紧密伴生的斜长角闪岩也具有高镁特征,Mg O含量为11.28%~15.09%,铝、硅和碱质均偏低,具正铕异常,显示堆晶辉长岩的特征。非高镁斜长角闪岩有相对高的铝、硅和碱质,其原岩应为钙碱性玄武岩。角闪变粒岩样品的SiO_2含量为54.21%~55.71%,Al_2O_3为14.24%~15.49%,Mg O为6.26%~8.28%,Fe OT/Mg O=1.11~1.58,高钠低钾,Na_2O+K_2O=3.7%~4.78%,Na_2O/K_2O=5.15%~13.13,Mg#=53.0~61.5,属于高镁安山岩。由超镁铁质质岩-斜长角闪岩-角闪变粒岩构成的变质高镁火山岩组合具有钙碱性系列趋势。超镁铁质岩稀土元素含量总量较低,具有轻稀土富集和重稀土亏损的稀土型式;斜长角闪岩与超镁铁质岩比较,除富集大离子亲石元素和Cr、Ni明显较低外,具有相似的微量元素图谱形态。三种岩石类型在微量元素蛛网图上均显示出Ta、Nb、Ti负异常和Pb正异常。野外产状和岩石地球化学特征表明超镁铁质岩和高镁斜长角闪岩属于阿拉斯加型杂岩体,角闪变粒岩属于赞岐岩质高镁安山岩。在Zr/Nb-Nb/Th和Nb/Y-Zr/Y构造环境判别图解上显示出与俯冲相关的演化趋势,在Hf-Th-Ta、Nb/La-(La/Sm)N和Th/Yb-Nb/Yb图解上也落在岛弧钙碱性岩石区域。以上特征表明高镁火成岩组合形成于与板块俯冲相关的岛弧构造背景。野外地质关系和锆石U-Pb年龄限定高镁火成岩组合形成时代在~2.5Ga。云中山地区阿拉斯加型镁铁质-超镁铁质杂岩与赞岐岩质高镁安山岩共生,表明该地区存在新太古代的板块俯冲作用,为太古宙存在板块构造机制提供了新证据。  相似文献   

17.
The Naga Hills Ophiolite(NHO) represents one of the fragments of Tethyan oceanic crust in the Himalayan Orogenic system which is exposed in the Phek and Kiphire districts of Nagaland, India. The NHO is composed of partially serpentinized dunite, peridotite, gabbro, basalt, minor plagiogranite,diorite dyke and marine sediments. The basalts are mainly composed of fine grained plagioclase feldspar, clinopyroxene and orthopyroxene and show quenching and variolitic textures. The gabbros are characterized by medium to coarse grained plagioclase, orthopyroxene and clinopyroxene with ophitic to sub-ophitic textures. The ultramafic cumulates are represented by olivine, Cpx and Opx.Geochemically, the basalts and gabbros are sub-alkaline to alkaline and show tholeiitic features.The basalts are characterized by 44.1-45.6 wt.% of SiO_2 with 28-38 of Mg#, and the gabbros by38.7-43.7 wt.% of SiO_2, and 26-79 of Mg#. The ultramafic rocks are characterized by 37.4-52.2 wt.% of SiO_2, and 80-88 of Mg#. In multi-element diagrams(spidergrams) both basalts and gabbros show fractionated trends with strong negative anomalies of Zr. Nb. Sr and a gentle negative anomaly of P.However, the rare earth element(REE) plots of the basalts and gabbros show two distinct patterns. The first pattern, represented by light REE(LREE) depletion, suggests N-MORB features and can be interpreted as a signature of Paleo-Tethyan oceanic crust. The second pattern, represented by LREE enrichment with negligible negative Eu anomaly, conforms to E-MORB, and may be related to an arc tectonic setting. In V vs. Ti/1000, Cr vs. Y and AFM diagrams, the basalts and gabbros plot within Island Arc Tholeiite(IAT) and MORB fields suggesting both ridge and arc related settings. The ultramafic rocks exhibit two distinct patterns both in spidergrams and in REE plots. In the spidergram, one group displays highly enriched pattern, whereas the other group shows near flat pattern compared to primordial mantle. In the REE plot, one group displays steeper slopes [(La/Yb)N = 4.340-4.341], whereas the other displays moderate to flat slopes [(La/Yb)N = 0.97-1.67] and negative Eu-anomalies. Our study suggests that the ultramafic rocks represent two possible mantle sources(fertile and refractory).  相似文献   

18.
One of the best-preserved Neo-Tethyan ophiolite complexes of Iran (Southern Caspian Sea ophiolite complex) is exposed in north of Iran. Crustal ultramafic cumulative rocks are mainly composed of dunite, wehrlite, olivine clinopyroxenite and clinopyroxenite. Mafic plutonic rocks consist of isotropic and layered gabbros. Geochemical studies show that these rocks have subalkalic tholeiitic affinity. Partial melting has been an important process in the formation of the studied rocks. Normalized trace element patterns in the studied rocks show enrichment in LREE and depletion in Nb and Zr. Studied mafic–ultramafic samples are formed by 30 % partial melting of mantle lherzolite from a depleted-arc source. These characteristics show suprasubduction environment and formation in a marginal basin above a subduction zone.  相似文献   

19.
The Hegenshan ophiolite in Inner Mongolia is a remnant of oceanic lithosphere of probable Devonian age. The ophiolite consists of several blocks composed chiefly of serpentinized ultramafic rocks with lesser amounts of troctolite and gabbro, and sparse lavas and dikes. The ultramafic rocks consist chiefly of depleted harzburgite and minor dunite and are interpreted as mantle tectonites. In the Hegenshan block dunite is relatively abundant and is typically associated with podiform chromitite. Both the chromite ore and the residual chromites in this body are relatively aluminous with average Cr numbers of 44–54. A few small chromite bodies and some of the residual chromites have much higher Cr numbers (72–76). Several blocks have well-layered cumulate sequences of gabbro and troctolite. Sheeted dikes are absent but small mafic dikes are common in some of the ultramafic sections. Most of the mafic dikes have flat chondrite-normalized REE patterns and are strongly depleted in incompatible elements, similar to depleted tholeiites from immature island arcs. The basaltic lavas of the Hegenshan ophiolite have two distinctly different chemical signatures—one similar to the mafic dikes and one similar to ocean island basalts. The entire complex was probably formed within an island arc–marginal basin system that was later accreted to the southern margin of the Siberian Altaids.  相似文献   

20.
TheYangtzeandNorthChinacratons(smYCandNCC)aretwoofthemainconstituentpartsofthecontinentinChi-na,andconnectwiththefamousQinlin...  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号