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1.
赵正  漆亮  黄智龙  严再飞  许成 《岩石学报》2012,28(6):1915-1927
鸡街碱性超基性杂岩体产出于攀西古裂谷南段,地处云南省境内的罗茨地区,空间上与峨嵋山玄武岩紧密伴生。岩体的主体由霞霓钠辉岩、霓霞岩和磷霞岩组成,三类岩石具有相似的微量元素和稀土元素(REE)配分,富集大离子亲石元素K、Rb、Sr、Ba,过渡族元素Sc、Cr和Ni相对亏损,Nb/Ta、Zr/Hf比值在幔源岩的范围内,Sr-Nd同位素沿"幔源趋势"线分布。鸡街碱性超基性岩中不相容元素总体亏损,含量与EMORB相当,稀土总量ΣREE=32.86~70.07偏低,(La/Yb)N=3.03~4.47,HREE亏损,指示源区的适度亏损。微量元素和同位素信息共同指示鸡街碱性超基性岩为地幔岩高压条件下低程度部分熔融的产物(<10%),岩浆演化过程中经历了橄榄石、辉石和少量磁铁矿的结晶分异。霞霓钠辉岩、霓霞岩与磷霞岩来自同一地幔源区,岩浆源区的相对亏损,可能与中-晚二叠纪大量的玄武质岩浆从深部地幔抽取有关。攀西古裂谷的多期次活动为峨嵋地幔柱提供了岩浆通道,地幔柱活动的早期阶段或晚期阶段岩石圈地幔(或混合地幔)低程度部分熔融的碱性岩浆沿此构造薄弱带上侵,形成了攀西古裂谷内呈带状分布的各碱性杂岩体。  相似文献   

2.
在浙东沿海地区存在一条北北东向线型展布的、规模可观的富碱侵入岩带,岩带由碱长花岗岩和碱性花岗岩组成。其岩石地球化学特点是高硅(SiO2>76%)、富碱(N_2O K_2O>8.2%)、低铝(Al_2O_3<12.5%)、贫钙镁(CaO<0.4%、MgO<0.2%)、富集Rb、Th(U)、Nb(Ta)、Zr、Zn和Ga等元素;稀土元素模式曲线具缓右倾“V”字形,铕亏损强烈。上述地球化学特征与福建魁歧碱性花岗岩基本一致并类似澳大利亚东南Lachlan褶皱带A型花岗岩。研究表明,该富碱花岗岩带是燕山晚期岩浆演化后期产物,受区域深断裂控制,即可能是处于活动大陆边缘的深断裂在拉张条件下由深源富碱岩浆上侵而成。  相似文献   

3.
赛马—柏林川碱性火山-侵入杂岩体岩浆成因   总被引:2,自引:0,他引:2  
呈岩席产出的赛马—柏林川碱性火山侵入 杂岩体由正长岩类及响岩霞石正长岩类组成。两类岩浆来源于统一的富集地幔源区。源区中镁铁云母、单斜 辉石等的熔融生成了贫镁铁富碱铝的碱性岩浆。地幔富集作用增强生成正长质岩浆,经一个时期的间隔,从更深位的更加富集的地幔产生了响岩霞石正长质岩浆。 岩浆中有上地壳组分的参予。  相似文献   

4.
卓潘碱性杂岩体为"三江"地区富碱(高钾)侵入岩的重要组成部分,位于哀牢山-金沙江缝合带的中部,侵位于兰坪盆地南部的白垩系砂岩中,主要由碱性辉长岩、辉石正长岩和霞石正长岩组成。对卓潘碱性杂岩体的岩相学、岩石学、主元素和稀土微量及同位素地球化学特征的系统研究表明,该杂岩体主量元素显示低硅、富钾、高碱(K2O+Na2O为6.92%~13.43%)、低TiO 2(0.31%~1.20%)的特征,属钾质碱性系列岩石;杂岩体的各种岩石均富集Rb、Sr、Ba、Th等大离子亲石元素、亏损Nb、Ta、Ti等高场强元素,并具有轻稀土富集的右倾型稀土元素分布模式、具较高的87Sr/86Sr、206Pb/204Pb、207Pb/204Pb、208Pb/204Pb及较低的143Nd/144Nd等特征,表明源区具有较明显的EMⅡ型富集地幔特征,源区明显受到壳源物质的混染。卓潘岩体形成于印度-欧亚大陆后碰撞的剪切和拉张的构造环境,古扬子板片向西俯冲,诱发了经过陆壳交代混染了的岩石圈地幔的部分熔融。由于兰坪走滑拉分盆地东缘断裂拉伸强度大,岩浆起源的深度大,以及岩浆源区成分(特别是CO2含量)与其它部位不同,因此在卓潘地区形成一套与金沙江-哀牢山-红河断裂带其它新生代富碱斑岩完全不同的过碱性的岩石。  相似文献   

5.
洪山碱性杂岩体出露于河北省邯郸市永年县,地处太行山南段,出露面积约53 km2,岩性以正长岩类为主体,侵位于晚古生代—中生代地层中。洪山碱性杂岩体中正长岩属于钾质的碱性系列岩石,形成于拉张环境,其形成年龄为(120.1±4.6) Ma,是华北克拉通岩浆作用峰期的产物。岩体稀土元素配分图中无Eu异常,表现为轻稀土元素富集的配分型式。富集Rb、K、Sr等大离子亲石元素,亏损Nb、Ta、Ti等高场强元素,具有大陆地壳特征。野外观察到岩石具有从深成到浅成-超浅成的特征,电子探针发现长石出现反环带,正长岩中不含继承锆石等特征,结合若要使地壳内岩石部分熔融产生无铕异常的正长质岩浆,那么压力应大于20 kbar,说明洪山碱性杂岩体形成于加厚地壳局部熔融,后经历了少量幔源岩浆混合及地幔流体的注入等过程,导致正长岩出现一定的地幔Hf、Nd同位素印记,而未改变其主微量元素特征,随后在拉张环境下快速上升至地表浅处。  相似文献   

6.
本文对鄂尔多斯盆地东缘晋西挠褶带临县紫金山杂岩体进行了锆石LA-ICPMSU-Pb年代学及地球化学研究。锆石LA-ICPMSU-Pb测得紫金山碱性杂岩的结晶年龄为138.3±1.1Ma(MSWD=2.3,9个样品点);地球化学研究表明该套火成岩富碱(K2O+Na2O=8.60%~15.62%),强烈富集大离子亲石元素和LREE、具有Eu正异常,亏损Nb、Ta、Ti等高场强元素,高Nb/Ta比值(16.85~18.19),表明岩石起源于交代富集地幔的部分熔融。结合区域地质背景,文章提出紫金山碱性杂岩可能是早白垩世华北克拉通大规模伸展背景下由交代富集地幔部分熔融作用的产物,该期岩石圈深部的强烈岩浆—热活动是鄂尔多斯盆地燕山晚期构造热事件发生的主要原因。  相似文献   

7.
青海南山构造带是衔接宗务隆构造带、南祁连构造带和西秦岭造山带的重要结合带。沟后岩浆杂岩体位于青海南山构造带东段,主要由辉长岩、辉长闪长岩、石英闪长岩、花岗闪长岩组成。本文对沟后岩浆杂岩体进行了详细的岩石学、岩石地球化学和LA-ICP-MS锆石U-Pb同位素年代学研究。结果表明,辉长岩、辉长闪长岩、石英闪长岩、花岗闪长岩及暗色微粒包体的结晶年龄分别为248.8±2.6 Ma、243.2±2.1 Ma、243.1±0.9 Ma、244.0±2.1 Ma和249±3 Ma。辉长岩富铁、镁,贫碱;辉长闪长岩高铝、富钙和钠,二者均为钙碱性岩类。石英闪长岩和花岗闪长岩为准铝-弱过铝质高钾钙碱性岩,暗色微粒包体属钙碱性-碱性岩系列。不同岩石类型均表现为富集大离子亲石元素(Cs、Rb、K)和Pb,亏损高场强元素(Nb、Ta、Ti)和P、Ba负异常;稀土元素配分曲线均具有轻重稀土分异的右倾特征,具弱-中等负Eu异常。岩相学和岩石地球化学特征表明沟后岩浆杂岩体具壳幔岩浆混合特征,暗示其可能形成于由俯冲流体交代地幔楔部分熔融的幔源岩浆底侵作用下的构造环境。辉长岩为幔源岩浆经分离结晶的产物,辉长闪长岩为幔源岩浆经分异演化并混染少量壳源岩浆的产物;中基性岩浆与壳源中酸性岩浆发生混合并经历一定的分异演化过程形成了石英闪长岩和花岗闪长岩。结合区域地质资料分析认为,沟后岩浆杂岩体可能代表了研究区早三叠世晚期-中三叠世早期宗务隆洋向南消减作用相关的构造岩浆事件。  相似文献   

8.
南秦岭竹山地区发育强烈的志留纪碱性岩浆活动,主要岩性包括正长岩、火成碳酸岩、粗面岩和碱性玄武岩,侵位时间集中于450~430 Ma。该期碱性岩浆活动主要形成于幔源碱性玄武质岩浆结晶分异演化,岩浆源区以HIMU组分为主,具有HIMU和EMⅠ、EMⅡ多种富集地幔端员混合特征。碱性杂岩体普遍发育铌、稀土矿化,形成了庙垭、杀熊洞、天宝等大型或超大型矿床。区域性深大断裂及其次级断裂控制了碱性杂岩体或碱性火山杂岩的空间展布,富碱和较高的结晶分异程度是成矿有利条件。幔源与洋壳俯冲消减、陆源沉积物再循环以及地幔流体交代作用关系密切。该期碱性岩浆-成矿事件形成于板块边缘岩石圈强烈伸展和幔源岩浆底侵上涌背景。  相似文献   

9.
青藏高原西北缘米提孜北新发现多条新生代超基性-基性岩脉。岩脉侵位于长城纪赛拉加兹塔格岩群中,整体位于柯岗断裂北侧附近,近东西向展布。岩脉岩性为闪斜煌岩和云斜煌岩,分别具钠质碱性煌斑岩和钠质钙碱性煌斑岩地球化学特征。LA-ICP-MS锆石U-Pb定年获得闪斜煌岩年龄为38.24±0.54 Ma,表明岩脉形成于新生代古近纪。岩脉稀土元素总量偏低(64.28×10^-6~253.41×10^-6),Eu(δEu=1.04~1.21)和Ce(δCe=0.99~1.03)异常均不明显,稀土元素配分模式呈LREE富集(LREE/HREE=4.15~6.45)的右倾型,大离子亲石元素(LILE)相对富集,高场强元素(HFSE)相对亏损。研究结果显示,岩脉是岩石圈地幔低程度部分熔融的产物,岩浆活动持续时间短,岩脉侵位后冷却速度快;岩脉产出于走滑构造体制下,大型走滑断裂控制了岩浆活动的发生和岩脉的分布。  相似文献   

10.
长岭断陷早白垩世火山岩富硅、富碱,岩石以非碱性系列为主,包括钙碱性和高钾钙碱性系列,碱性系列火山岩为钾玄岩系列。酸性岩与中、基性岩的微量元素特征差别明显,岩石总体微量元素特征与造山带火山岩相似,富集LREE、Rb、K和大离子亲石元素,TiO2含量低,贫Sr。火山岩的形成与造山带岩石圈拆沉作用引起地壳拉张减薄的大地构造背景有关。研究区基性火山岩为地幔岩部分熔融作用的产物,岩浆演化过程中存在单斜辉石和橄榄石等矿物的分离结晶作用,中性岩为原生玄武质岩浆分异演化的产物,营城组酸性火山岩的形成与构造活动存在直接关系,为构造剪切挤压应力致使上地壳重熔的结果。  相似文献   

11.
V.E. Camp  R.J. Griffis 《Lithos》1982,15(3):221-239
Igneous rocks in the Sistan suture zone have characteristics that can be correlated with important tectonic events. A Late Cretaceous ocean basin is recorded by ophiolites now exposed in numerous mélange zones. Subduction beneath the Afghan block is indicated by Late Cretaceous-Paleocene calc-alkaline volcanics. Collision of the Lut block with the subduction complex in the middle Eocene produced widespread deformation and was followed by the emplacement of late Eocene-early Oligocene calc-alkaline granitic batholiths that probably formed by widespread anatexis of marine sediments. A dominantly Oligocene magmatic event is represented by widespread alkaline volcanics and minor intrusions that appear to be related to major transcurrent faults. Miocene calc-alkaline activity was limited to sporadic volcanism in the north and minor intermediate intrusions farther south. These units are largely underformed and not related to any major faults. The youngest magmatic event is recorded by late Miocene-Pliocene mafic flows that are weakly alkaline, clearly related to right-lateral faults and probably were derived from a deep crustal or upper mantle source.  相似文献   

12.
河南省崤山地区金银矿床控矿构造特征与成矿模式   总被引:1,自引:0,他引:1  
崤山位于华北陆块南缘,是河南省重要的有色金属成矿区。为进一步明确崤山地区控矿构造特征,分析探讨成矿就位机制,指导崤山地区中深部地质找矿工作,本文对崤山地区矿床地质特征、构造性质等要素进行了分析研究,将崤山地区控矿构造分为拆离断层控矿构造、韧性剪切带控矿构造和张扭性断裂控矿构造三类。①拆离断层沿太古界太华岩群的结晶基底与中元古界熊耳群盖层间发育,带内发育糜棱岩,崤山北部主要含矿石英脉多发育在紧靠拆离断层带下盘的太华岩群中,矿体就位于拆离剪切形成的拆离断层及其次级断裂带中;②韧性剪切带主要位于崤山中西部和北部,早期呈压扭特性,发育绿泥片岩质初糜棱岩、糜棱岩、花岗质超糜棱岩等,申家窑韧性剪切带晚期表现为张性特征,在其下盘发育有多组与其走向一致的羽列状次级断裂构造,矿体就位于韧性剪切带及其下盘羽状次级断裂带中;③张扭性断裂多发育于崤山中东部,断裂内充填有含金石英脉条带,围岩中多具绿泥石化、绿帘石化、钾化、黄铁矿化等,矿体就位于张扭性断裂带中。按照岩体、构造对成矿的作用关系,建立了崤山地区以深源岩浆为流体、以构造侵位为空间的"双控"成矿模式,指出韧性剪切带、拆离断层带中深部及其次级断裂带是寻找脉型金银矿床的有利地段,燕山期中酸性侵入岩体周缘有斑岩型铜钼矿成矿潜力。  相似文献   

13.
杨占兴  王彬娜 《世界地质》2016,35(2):378-386
对瓦房店地区30号金伯利岩管岩石学、地球化学和成矿地质条件等研究认为,30号岩管金伯利岩岩浆来源于深部地幔,部分遭到壳源混染,碳来源于深源,属于富含碱性组分正常系列超基性岩;岩管中金伯利岩SiO_2、MgO含量较低,而CaO、CO_2含量较高;微量元素含量与地幔中石榴二辉橄榄岩微量元素含量相似;矿床形成于晚古生代;郯庐断裂为导矿构造,金伯利岩浆在北东东向和东西向断裂交汇处侵入成矿,岩管是由爆发与侵入交替作用形成。  相似文献   

14.
Geological studies on saturated to oversaturated and subsolvus aegirine-riebeckite syenite bodies of the Pulikonda alkaline complex and Dancherla alkaline complex were carried out. The REE distribution of the Dancherla syenite shows a high fractionation between LREE and HREE. The absence of Eu anomaly suggests source from garnet peridotite. The Pulikonda syenite shows moderate fractionation between LREE and HREE as reflected by enrichment of HREE and moderate enrichment of LREE. The negative Eu anomaly indicates role of plagioclase fractionation.Three distinct co-eval primary magmas i.e. mafic syenite-, felsic syenite- and alkali basalt magmas — all derived from low-degrees of partial melting of mantle differentiates and enriched metasomatised lower crust played a major role in the genesis and emplacement of the syenites into overlying crust along deep seated regional scale trans-lithospheric strike-slip faults and shear zones following immediately after late-Archaean calc-alkaline arc magmatism at different time-space episodes i.e. initially at craton margin and later on into the thickened interior of the Eastern Dharwar craton. The ductile sheared and folded Pulikonda alkaline complex was evolved dominantly from the magmas derived from partial melting of lower crust and minor juvenile magmas from mantle. Differentiation and fractionation by liquid immiscibility of mafic magma and commingling-mixing of intermediate and felsic magmas followed by fractionational crystallisation under extensional tectonics during waning stages of calc-alkaline arc magmatism nearer to the craton margin were attributed as the main processes for the genesis of Pulikonda syenite complex. Commingling and limited mixing of independent mantle derived mafic and felsic syenitic magmas and accompanying fractionation resulting into soda rich and potash rich syenite variants was tentatively deduced mechanism for the origin of Dancherla, Danduvaripalle, Reddypalle syenites and other bodies belonging to Dancherla alkaline complex at the craton interior. The Peddavaduguru syenite was formed by differentiation of alkali mafic magma (gabbro to diorite) and it’s simultaneous mingling with fractionated felsic syenitic magma under incipient rift. Vannedoddi and Yeguvapalli syenites were derived due to desilicification and accompanying alkali feldspar mestasomatism of younger potash rich granites along Guntakal-Gooty fault and along Singanamala shear zone respectively.  相似文献   

15.
陈丹丹 《地质与勘探》2017,53(1):187-197
巴布亚新几内亚利希尔岛拉多拉姆金矿处于太平洋板块与印澳板块的板块边界部位,为西南太平洋地区最大的碱性侵入岩有关的低硫型浅成低温热液型金矿。矿床赋存在Luise火山内,成矿与更新世碱性二长闪长岩侵入体有关,该岩体形成于俯冲带环境下被流体交代的上地幔的部分熔融。矿床的矿化可分为三个阶段,在岩体侵入后形成斑岩铜矿化,并在之后逐渐过渡为浅成低温热液型金矿化。该类矿床在成矿过程和矿体的分布明显受到区域性构造、蚀变带和成矿有关角砾岩等成矿结构面的控制,在找矿标志上具有特定的物化探和地质特征,具有较好的找矿远景。  相似文献   

16.
The Zijinshan rocks in Lvliang area of Shanxi Province, are one of the famous alkaline plutons in China. The petrography and petrogeochemistry of the main rocks of the rock mass were studied to explore the material source and geological significance of Zijinshan alkaline rock mass. The results show that Zijinshan rocks of all stages show characters of low silicon, rich alkali and high potassium, which indicates zijinshan rocks belong to potassium alkaline rocks. These rocks demonstrate a high degree of fractionation and are characterized by the richness of LREE and the poorness of HREE, without obvious Eu anomaly. The trace element pattern exhibits the enrichment of large ion lithophile elements, such as Rb, Ba, K and Sr, and relative depletion of high field strength elements, such as Th, Nb, Ta, La, Ce, Nd, P and Ti. The magma of Zijinshan rocks comes from a deeper source and is closely related to the enriched mantle. The mechanism of magma evolution is mainly partial melting and it may be inter-contamination of continental crust materials. Combined with the characteristics of alkaline and partial alkaline rocks of same age in many places in Shanxi, the authors deduce that the alkaline magma activity in the middle of North China during the Early Cretaceous is closely to the destruction of North China Craton under the background of the subduction of Pacific plate.  相似文献   

17.
山西吕梁地区出露的紫金山岩体为我国著名的碱性岩体之一。为了探讨紫金山碱性岩体的物质来源及地质意义,对该岩体主要岩石进行了岩相学及岩石地球化学研究。结果表明: 紫金山岩体各期次岩石具有低硅、富碱、高钾的特点,属钾质碱性岩石; 岩石轻重稀土元素分馏较强烈,具有轻稀土相对富集、重稀土相对亏损、无明显Eu异常的特征; 微量元素总体表现为大离子亲石元素(Rb、Ba、K、Sr等)明显富集、高场强元素(Th、Nb、Ta、La、Ce、Nd、P、Ti等)亏损的特征。紫金山岩体岩浆来源较深,与富集地幔关系密切,岩浆演化机制以部分熔融作用为主且存在陆壳物质混染。结合山西境内多处同时期的碱性、偏碱性岩体特征,推断华北中部早白垩世碱性岩浆活动与古太平洋板块俯冲背景下华北克拉通破坏作用关系密切。  相似文献   

18.
文章简要介绍了幔枝构造成矿理论,探讨了幔枝构造的特征、单元划分、断裂构造体系以及成矿控矿作用。在燕山运动晚期,华北东部地区进入了以伸展构造为主的地幔热柱演化阶段,在胶西北地区形成了莱阳地幔亚热柱及其外围郭家店、栖蓬、牟乳等幔枝构造。其中,郭家店幔枝构造于燕山运动晚期发生强烈的构造活动,总体形成了以焦家断裂为主的拆离带和与其相交的以三山岛断裂为反向铲状断裂的构造体系,同时控制着玲珑、焦家、三山岛等一系列大型—超大型矿床的形成。在众多成矿控矿因素中,区域性断裂构造是重要的主导性因素,既为成矿流体的运移提供了通道,又为成矿储矿提供了有利空间。深源含矿流体可通过地幔热柱→地幔亚热柱→幔枝构造→有利构造扩容带,即脆韧性-韧脆性剪切带、侵入岩体的内外接触带、密集的构造裂隙带、各种脉岩与围岩的接触带等有利构造部位集聚成矿。近年来在胶西北深部勘查发现,浅部沿断裂展布的若干个大—中型金矿在其深部的成矿蚀变构造带可能是连为一体的,一起组合成为超大型金矿。   相似文献   

19.
The Isfahan fault system, a north-trending, dextral strike-slip fault across the Sanandaj-Sirjan zone, represents the boundary between the northwestern and the southeastern parts of the Sanandaj-Sirjan zone and it terminates in the north at the southern boundary of the Urumieh-Dokhtar zone. This paper focuses on the continuation of the Isfahan fault system across the Urumieh-Dokhtar zone north of Isfahan city. The Urumieh-Dokhtar magmatic assemblage belt is located along the active margin of the Iranian plate and the Arabian plate. The Karkas fault strikes nearly north-south, has a length of about 40 km, a normal component of movement, and it truncates the Urumieh-Dokhtar zone. Due to the location of this fault and the mechanism similar to the Isfahan fault system, the Karkas fault can be considered a continuation of the Isfahan fault system that has been displaced dextrally by the southwestern bordering faults of the Urumieh-Dokhtar zone. The unique juxtaposition association of the Silurian volcanic rocks in the Urumieh-Dokhtar zone, near the Karkas fault, provides an important evidence regarding the major role of this fault in the geological evolution of the region. The Silurian volcanic rocks outcrop in two districts of the study area and generally are composed of basalts. The alkaline basalt composition is determined from mineralogy and immobile elements geochemistry. The geotectonic setting diagrams classified the Silurian volcanic rocks as the within plate basalts. Thus, an intracontinental rifting under extensional tectonic regime can be inferred as the setting that controlled formation of these volcanic rocks. They were created by an alkaline to transitional magmas generated due to low partial melting at depth. The alkaline basalts were most likely derived from an asthenosphere-dominated mantle source due to extension and partial melting. The north trending extensional faults affected thinned overlying continental lithosphere in the Paleozoic era, facilitating magma penetration and eruption.  相似文献   

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