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 93 毫秒
1.
岩浆混合作用:来自岩石包体的证据   总被引:20,自引:1,他引:19  
镁铁质岩浆与长英质岩浆之间的混合作用是导致壳幔混源花岗岩类形成的主要机制。暗色、细粒且具火成结构的岩石包体是指示岩浆混合作用存在的可靠证据。这些岩石包体具有下列特征:(1)包体常呈等轴状,表明包体岩浆曾以液态球滴状存在于寄主岩浆中;(2)由于基性岩浆温度恒高于酸性岩浆(温度超出约300℃),这类包体常具有淬冷边;(3)包体有时含有反向脉;(4)包体中能见到自寄主岩浆捕获的长石捕虏晶。进一步分析了三个典型的含暗色微粒包体的花岗质杂岩(平潭、普陀山、花山—姑婆山)研究实例,认为暗色微粒包体的形成,可用来自深部岩浆房的玄武质岩浆向浅部酸性岩浆房的注入作用来解释。  相似文献   

2.
浙江青田花岗岩中岩石包体特征及成因   总被引:7,自引:2,他引:7  
浙江青田燕山晚期黑云母花岗岩中有许多石英闪长质岩石包体,它们大小不一,形态各异,以微细粒结构、具冷凝边构造、并发育针状磷灰石为特征。岩石包体与寄主花岗岩的主要氧化物、微量元素的变化趋势呈线性关系。岩石学、矿物学、岩石化学及地球化学等特征的研究表明,石英闪长质岩石包体属淬冷包体,由玄武质岩浆和花岗质岩浆通过不均匀的混合作用而形成。  相似文献   

3.
镇江石马杂岩体中岩石包体的成因研究   总被引:2,自引:0,他引:2  
石马杂岩体,为南京—镇江地区出露面积较大的燕山期花岗质杂岩体,具大量暗色、细粒辉石闪长质-石英闪长质岩石包体,岩浆动力学理论的应用和详细的岩相学,岩石地球化学研究表明,该杂岩体中的岩石包体是不同成分岩浆大规模对流、不均一混合机制驱动下形成的,在成因类型上属淬冷包体.  相似文献   

4.
铜陵地区岩浆岩中产有两类石包体,一类为属高于高角闪岩相的变质岩(残余)包体;另一类为属于二长岩-闪长岩类的岩浆岩包体,对这两类岩石包体进行了详细的岩石学和矿物学研究,并计算了了各类岩石包体的形成条件,在此基础上探讨了岩石包体与寄主岩浆岩之间的关系,分析了岩浆岩和有关矿床的物质来源和成岩成矿作用机制,提出了深部古老变质基底部分融-岩浆积聚,分异,并在不同层位就形,形成深位和浅位岩浆房-不同成分的岩浆混合-气液隐爆迁移沉淀这样一种与同熔型岩浆岩有关的新的层控矽卡岩矿床成矿模式。  相似文献   

5.
新疆西准噶尔地区克拉玛依花岗质岩体中发育大量闪长质微粒包体,并形成有岩浆混合成因的岩浆混合岩——石英闪长岩。包体成分主要为闪长质,显微镜下具有岩浆岩结构,岩浆混合特征十分明显,如:针状磷灰石,角闪石包裹辉石残晶,长石斑晶的溶蚀环带等特征。岩体中寄主岩石、岩浆混合岩、闪长质微粒包体、闪长玢岩脉分别代表岩浆混合演化过程中两端元岩浆按不同比例混合的产物。在岩石地球化学方面,包体与寄主岩石的主要氧化物之间具有良好的线性关系,寄主岩石和包体的稀土元素配分曲线和微量元素蛛网图形态相似;各种地球化学元素参数特征显示,寄主岩石与包体在岩石形成过程中发生过成分交换及均一化。特征元素比值及同位素等特征表明,闪长质包体的端元岩浆可能为幔源基性岩浆,寄主岩石的端元岩浆可能是以壳源为主的酸性岩浆。岩石地球化学特征进一步佐证了该区岩浆混合作用的存在,同时也暗示岩浆混合作用可能是新疆北部后碰撞过程中重要的岩浆活动形式。  相似文献   

6.
长英质岩石中暗色微粒包体的形成机理   总被引:9,自引:0,他引:9       下载免费PDF全文
朱永峰 《地球科学》1995,20(5):521-525
通过对熔体网络结构中基性组分和酸性组分的分布特征和各自联结程度的定量描述,确定了岩浆液态分离作用发生的临界状态。长英质岩石中广泛分布的暗色微粒包体是岩浆演化过程中液态不混溶作用发生的结果,是岩浆体系自身演化到某一特阶段的产物。  相似文献   

7.
安徽铜陵铜官山矿区的燕山期中酸性-酸性小侵入岩体在时间上和空间上与区内的层控矽卡岩型铜(金)矿床密切相关。在这些小侵入岩体中,特别是在老庙基、小铜官山和金口岭岩体中,产有二长质到闪长质的同源包体、角闪石堆积岩包体和黑云母片岩残余包体。对这三类岩石包体及其寄主岩进行了详细的岩石学和矿物学研究以及单矿物氧同位素分析,同时收集了相关的岩石化学和地球化学资料,为阐明矿区岩浆-热液过程提供了依据。分析结果表明,闪长岩和辉石岩包体的(^87r/^86Sr),为0.7070~0.7073,εM(t)为-9.7,而石英二长闪长岩主岩(^87r/^86Sr)。为0.7072~0.7077,εNd(t)为-10.6~-11.9。铜官山矿区堆积岩包体中的堆积晶、同源包体和寄主岩中的斑晶以及同源包体及寄主岩中的基质的矿物结晶温度分属890~970℃,730~755℃和675~730℃三个区间,对应的深度为24~29km,9~15km和4~6km。它们分别代表了深位岩浆房、浅位岩浆房和岩浆侵位处矿物结晶的温度和深度深位岩浆房的深度对应于岩石圈中下地壳硅镁层的深度,而浅位岩浆房的深度对应于岩石圈中-新元古界浅变质岩系的深度从宕石包体及其寄主岩锶、钕同位素以及岩石学和矿物学资料来看,深位岩浆房中的岩浆可能是由底侵的碱性玄武岩浆与下地壳硅镁层发生相互作用形成的,而浅位岩浆房中的岩浆可能是由来自深位岩浆房的演化岩浆与中-新元古界浅变质岩系发生相互作用形成的。二长质同源包体与黑云母片岩残余包体过渡,有时闪长质同源包体与寄主岩过渡,相互之间的界线模糊不清。角闪石堆积岩包体中金属氧化物和硫化物的共存表明,在堆积岩结晶时已有相当数量的铁、铜和硫溶解在演化的岩浆中。由此可以推断,已初步富集铁、铜和硫的演化岩浆与深度同浅位岩浆房相当且富合成矿元素的变质岩发生同化混染作用,可以富集足够的成矿物质以形成铜官山矿区的矽卡岩型铜铁硫化物矿床,矿区同源包体中斜长石的δ^18OSMOW‰值为9.0~9.2,寄主岩中斜长石和石英为9.4~9.9,矽卡岩中石榴石和石英为3.92~11.84,矿石中磁铁矿和石英为3.84~5.85,而相应的δ^18H2O‰值在寄主岩中为6.87,矽卡岩中为6.85~6.89,矿石中为8.18~12.64。此外,在寄主岩及其岩石包体中同时产有熔融包裹体、熔融-流体包裹体和流体包裹体,并能见到不混溶包裹体。这些事实结合矿物平衡地质温度计计算结果和收集的包裹体测温资料,表明矿区的岩浆-热液过程可以分为:1)岩浆结晶;2)岩浆流体出溶和出溶流体演化(大致对应于矽卡岩化);和3)成矿热液活动(对应于铜金矿化)三个阶段。  相似文献   

8.
酸性-中酸性火山-侵入杂岩中岩石包体研究的新进展   总被引:2,自引:1,他引:2  
概括了近几年来酸性-中酸性火山-侵入杂岩中岩石包体研究的新进展,介绍了岩石包体的成因分类,综述了利用岩石包体研究岩浆作用机制及其动力学、研究有关矿床成矿物质来源和成矿机制,以及研究中下地壳物质组成和力学状态等方面的内容。  相似文献   

9.
酸性-中酸性火山-侵入杂岩中岩石包体研究的新进展   总被引:5,自引:0,他引:5  
杜杨松 《现代地质》1996,10(2):169-174
概括了近几年来酸性-中酸性火山-侵入杂岩中岩石包体研究的新进展,介绍了岩石包体的成因分类,综述了利用岩石包体研究岩浆作用机制及其动力学、研究有关矿床成矿物质来源和成矿机制,以及研究中下地壳物质组成和力学状态等方面的内容。  相似文献   

10.
西准噶尔夏尔莆岩体岩浆混合岩石化学证据   总被引:2,自引:0,他引:2  
夏尔莆岩体是西准噶尔地区较典型岩浆混合花岗岩.岩体由寄主岩石(中酸性侵入岩)、微粒镁铁质包体和中基性岩墙群3部分组成.寄主岩石(中酸性侵入岩)与微细粒镁铁质包体具相似岩石化学特征,有明显元素双扩散现象.在图解中,寄主岩石具良好线型岩浆混合演化特征,微细粒镁铁质包体也位于演化趋势上,显示两者具共同成因联系,中基性岩墙群具独立演化趋势,属不同岩浆端元.岩石化学显示的岩浆混合信息与岩相学表现的岩浆混合特征完全吻合,支持岩浆混合成因认识,为解决该岩体成因分歧提供重要依据.  相似文献   

11.
      东江口花岗岩及闪长质包体分别获得了218 Ma 和224 Ma 的形成年龄,闪长质包体中存在岩浆不平衡结构并发育与寄 主花岗岩相同的钾长石斑晶及淬冷形成的针状磷灰石,揭示了花岗岩形成过程中曾发生二元岩浆混合作用。这种混合作用 已造成寄主花岗岩和闪长质包体化学组成的趋同,同时使得它们的Sr-Nd-Pb 同位素组成发生强烈均一化。但暗色闪长质包 体锆石具有较宽的εHf(t )值(-4.58~3.31),保留了二端元岩浆源区的特征。秦岭早中生代同期闪长质包体锆石εHf(t )> 10 及寄主花岗岩锆石εHf(t )< -10 的差异表明,它们分别来自相对亏损地幔源区和中元古代滞留于地壳的幔源基性物质, 而两个源区的岩浆,自224 Ma 以来发生强烈混合作用,形成大规模的壳幔混合花岗岩体。  相似文献   

12.
New field observations on granitoids and associated lithounits in some parts of Indus-Shyok Suture Zones have been documented in order to re-establish the geological relationships between various volcano-plutonic magmatic lithounits. Careful examination of outcrops and contact relationships between the various lithounits have pin-pointed the sequence of geological events. Field features of granitoids exposed along Leh-Saboo-Khardung_La suggest multiple pulses of mafic-felsic magma interactions (mingling to mixing) with almost 25% of the mafic to hybrid magma input in the evolution of the eastern part of Ladakh batholith. Along Khardung_La-Shyok-Diskit, thick sequence of volcanic lithounits is exposed, which dominantly consist of massive basaltic andesite, porphyritic andesite, dacite and rhyolite forming Khardung Formation. On the other hand Shyok Formation, dipping opposite to the Khardung Formation, composed predominantly of meta-sedimentary lithounits and subordinate amount of volcanic materials at present exposed level. Spectacular intrusive contacts of Ladakh granitoids with metavolcanics and meta-sedimentary country rocks of Shyok Formation near Diskit can be observed, which are manifested by ubiquitous xenoliths near the marginal parts. Although the nature of granitoid melt invasion into country-rocks was relatively winty, granitoid melt has produced leucogranite-pegmatite system because of devolatization and decompression effects. Frequent xenoliths of porphyritic andesite and dacite roof pendants are being reported in Tirit granitoids, which strongly suggest sub-volcanic emplacement of granitoid melt, extensive assimilation and roof collapse of overlying volcanic materials. It is more likely that the xenoliths hosted in Tirit granitoids belong to Shyok volcanics. It is suggested that multiple pulses of coeval mafic and felsic magmatism occurred extensively and emplaced at differential crustal levels.  相似文献   

13.
在全面收集中国及邻区花岗岩年代学资料的基础上,在包括俄罗斯、蒙古、吉尔吉斯坦、韩国、日本、越南等境外地区开展了野外调研, 获得大量高精度锆石U-Pb年龄,发现一些重大岩浆事件;结合系统收集的公开发表的高质量数据,建立了一些关键地区的花岗岩年代学格架;初步总结了中亚、中央、特提斯和环太平洋构造域花岗岩的时空分布及构造-岩浆演化,提供相关成矿背景,编制了四个构造域的花岗岩时空分布图。在此基础上,初步编制了亚洲花岗岩时空分布图,总结了花岗岩浆作用与构造演化的关系,为探讨亚洲大地构造演化,特别是陆块聚合过程的研究提供了依据。这是一次尝试性的较系统地论述亚洲花岗岩及构造-岩浆演化的研究。  相似文献   

14.
Abstract

Along the Periadriatic Lineament in the Alps and the Sava-Vardar Zone of the Dinarides and Hellenides, Paleogene magmatic associations form a continuous belt, about 1700 km long. The following magmatic associations occur: (1) Eocene granitoids; (2) Oligocene granitoids including tonalites; (3) Oligocene shoshonite and calc-alkaline volcanics with lamprophyres; (4) Egerian-Eggenburgian (Chattian) calc-alkaline volcanics and granitoids. All of these magmatic associations are constrained by radiometric ages, which indicate that the magmatic activity was mainly restricted to the time span between 55 and 29 Ma. These igneous rocks form, both at surface and in the subsurface, the distinct linear Periadriatic-Sava-Vardar magmatic belt, with three strikes that are controlled by the indentation of Apulia and Moesia and accompanying strike-slip faulting. The geology, seismicity, seismic tomography and magnetic anomalies within this belt suggest that it has been generated in the African-Eurasian suture zone. Based on published analytical data, the petrology, major and trace element contents and Sr, Nd and O isotopie composition of each magmatic association are briefly defined. These data show that Eocene and Oligocene magmatic associations of the Late Paleogene Periadriatic-Sava-Vardar magmatic belt originated along a consuming plate margin. Based on isotopie systems, two main rock groups can be distinguished: (1) 87Sr/86Sr = 0.7036–0.7080 and δ18O = 5.9–7.2‰, indicating basaltic partial melts derived from a continental mantle-lithosphere, and (2) 87Sr/86Sr = 0.7090–72131 and δ18O = 7.3–11.5‰, indicating crustal assimilation and melting. The mantle sources for the primary basalt melts are metasomatized garnet peridotites and/or spinel lherzolites and phlogopite lherzolites of upper mantle wedge origin. The geodynamic evolution of the plutonic and volcanic associations of the Periadriatic-Sava-Vardar magmatic belt was related to the Africa-Eurasia suture zone that was dominated by break-off of the subducted lithospheric slab of Mesozoic oceanic crust, at depths of 90–100 km. This is indicated by their contemporaneity along the 1700 km long belt. © 2002 Éditions scientifiques et médicales Elsevier SAS. All rights reserved.  相似文献   

15.
安徽庐枞地区位于下扬子断陷带内,区内中生代岩浆活动强烈,壳幔交换频繁,形成了一系列A型花岗岩类,其中产有一些同源岩石包体。这些A型花岗岩类以富碱富钾为特征,为准铝质硅饱和岩石,具有高的104×Ga/Al比值和REE含量,明显富集Rb,Th,K等大离子亲石元素,而Nb,Ta,Ti和Zr等高场强元素和Sr,P相对亏损。与寄主岩相比,岩石包体SiO2和全碱含量偏低,Cr,Co,Sc,V等元素明显偏高,Zr和Eu的负异常不明显。包体和寄主岩的(87Sr/86Sr)i 值为0.7053~0.7089,εNd(t)值为-2.2~-8.66。这些资料表明,庐枞地区中生代A型花岗岩类是起源于富集岩石圈地幔的玄武质岩浆与地壳物质发生轻度同化混染作用,并经历结晶分异作用的产物,在岩浆演化过程中,结晶分异作用发挥着主导作用。从岩石组合来看,庐枞地区的A型花岗岩类主要由石英正长斑岩、正长斑岩、辉石二长岩和碱长花岗岩组成,属于碰撞后准铝质镁铁质-长英质岩套的一部分。岩石样品分析数据在Nb-Y-Ce,Nb-Y-3Ga和Rb/Nb-Y/Nb图上的投影结果表明,庐枞A型花岗岩类为碰撞后环境结束阶段的产物。结合区域地质背景分析,可以认为庐枞地区A型花岗岩类形成于岩石圈伸展背景下的碰撞后岩浆活动的末期,其出现可能标志着碰撞后环境的结束。  相似文献   

16.
黑云母是花岗质岩石中常见的造岩矿物,其成分可以有效指示花岗岩形成的物理化学条件和岩石成因。巴斯铁列克矿床是近年来在新疆阿尔泰造山带南缘发现的首例二叠纪矽卡岩型钨多金属矿床。矿区出露多种类型二叠纪含钨花岗岩。为理清花岗质岩体之间、岩体与钨多金属矿化之间的关系,文章采用电子探针测定了黑云母花岗岩、二长花岗岩、二云母花岗岩和钾长花岗岩中的黑云母成分。结果表明,所有黑云母具有富铁、高铝、贫镁特征,含铁指数(Fe2+/(Mg+Fe2+))为0.66~0.80,二云母花岗岩属铁质黑云母而黑云母花岗岩、二长花岗岩和钾长花岗岩属铁叶黑云母。所有岩石是具有A型特征的I型花岗岩。不同类型岩石中黑云母的成分差异与岩浆来源、分异演化程度有关。二云母花岗岩中黑云母的w(MgO)与结晶温度最高,与黑云母平衡流体的log(fHF/fHCl)值(-1.13~-1.25)最低,log(fH2O/fHF)值(4.64~4.96)最高,母岩浆相对富Cl;黑云母花岗岩中log(fHF/fHCl)值最高,log(fH2O/fHF)最低,与二长花岗岩是同一岩浆房不同演化阶段的产物,与二云母花岗岩和钾长花岗岩属不同的岩浆体系,母岩浆相对富F元素。黑云母花岗岩与W矿化关系更密切。  相似文献   

17.
The Urumieh-Dokhtar magmatic arc (UDMA) of Central Iran has been formed during Neotethyan Ocean subduction underneath Eurasia. The Rabor-Lalehzar magmatic complex (RLMC), covers an area ~1000?km2 in the Kerman magmatic belt (KMB), SE of UDMA. RLMC magmatic rocks include both granitoids and volcanic rocks with calc-alkaline and adakitic signatures but with different ages.Miocene adakitic rocks are characterd by relatively enrichmented in incompatible elements, high (Sr/Y)(N) (>40), and (La/Yb)(N) (>10) ratios with slightly negative Eu anomalies (EuN/Eu*≈ 0.9), depletion in HFSEs, and relatively non-radiogenic Sr isotope signatures (87Sr/86Sr?=?0.7048–0.7049). In contrast, the Oligocene granitoids exhibit low Sr/Y (<20) and La/Yb (<9) ratios, negative Eu anomalies (EuN/Eu*?≈?0.5), and enrichment in HFSEs and radiogenic Sr isotope signatures (87Sr/86Sr?=?0.7050–0.7052), showing affinity to the island arc rocks. Eocene volcanic rocks which crusscut the younger granitoid rocks comprise andesites and dacites. Geochemically, lavas show calc-alkaline character without any Eu anomaly (EuN/Eu*?≈?1.0). Based on the geochemical and isotopic data we propose that melt source for both calc-alkaline and adakitic rocks from the RLMC can be related to the melting of a sub-continental lithospheric mantle (SCLM). Basaltic melts derived from a metasomatized mantle wedge might be emplaced at the mantle-crust boundary and formed the juvenile mafic lower crust. However, some melts fractionated in the shallow magma chambers and continued to rise forming the volcanic intermediate-mafic rocks at the surface. On the other hand, the assimilation and fractional crystallization in the shallow magma chambers of may have been responsible for the development of Oligocene granitoids with calc-alkaline affinity. In the mid-Late Miocene, following the collision between Afro-Arabia and Iranian block the juvenile mafic crust of UDMA underwent thickening and metamorphosed into garnet-amphibolites. Subsequent upwelling of a hot asthenosphere during Miocene was responsible for partial melting of thickened juvenile crust of the SE UDMA (RLM complex). The adakitic melts ascended to the shallow crust to form the adakitic rocks in the KMB.  相似文献   

18.
Early Proterozoic granitoids are of a limited occurrence in the Baikal fold area being confined here exclusively to an arcuate belt delineating the outer contour of Baikalides, where rocks of the Early Precambrian basement are exposed. Geochronological and geochemical study of the Kevakta granite massif and Nichatka complex showed that their origin was related with different stages of geological evolution of the Baikal fold area that progressed in diverse geodynamic environments. The Nichatka complex of syncollision granites was emplaced 1908 ± 5 Ma ago, when the Aldan-Olekma microplate collided with the Nechera terrane. Granites of the Kevakta massif (1846 ± 8 Ma) belong to the South Siberian postcollision magmatic belt that developed since ~1.9 Ga during successive accretion of microplates, continental blocks and island arcs to the Siberian craton. In age and other characteristics, these granites sharply differ from granitoids of the Chuya complex they have been formerly attributed to. Accordingly, it is suggested to divide the former association of granitoids into the Chuya complex proper of diorite-granodiorite association ~2.02 Ga old (Neymark et al., 1998) with geochemical characteristics of island-arc granitoids and the Chuya-Kodar complex of postcollision S-type granitoids 1.85 Ga old. The Early Proterozoic evolution of the Baikal fold area and junction zone with Aldan shield lasted about 170 m.y. that is comparable with development periods of analogous structures in other regions of the world.  相似文献   

19.
山西堡子湾金矿床地质地球化学特征   总被引:3,自引:0,他引:3  
吴保全 《铀矿地质》2003,19(4):220-224
山西堡子湾金矿床位于华北地台北缘,是以金为主伴生银铜多金属的中型金矿床。赋存地层为太古界集宁群。燕山期岩浆活动形成的石英二长岩及有关的隐爆角砾岩与成矿关系密切。围岩蚀变分布于角砾岩体内,主要为绢云母化、高岭石化、碳酸盐化和硅化。石英二长岩的稀土分布型式和岩石地球化学特征,说明其为重熔型岩浆侵入所形成。矿体中石英的氧同位素δ^18O值接近花岗岩类范围;矿床中硫化物的δ^34S值范围为-3.2‰~-1.2‰,接近陨石硫。堡子湾金矿的成矿物质来源于岩浆,成矿作用与燕山期岩浆期后热液活动以及隐爆作用和流体作用有关。  相似文献   

20.
《International Geology Review》2012,54(11):1040-1053
The Ordovician Famatinian-age magmatic cordierite-andalusite-bearing Capillitas batholith, in the Pampean Ranges of northwestern Argentina, encompasses a coarsely porphyritic to equigranular two-mica monzogranite with equigranular, fine-grained, late leucogranitic muscovite-rich facies. This batholith exhibits sharp, discordant contacts with low-pressure biotite-andalusite-cordierite schists of the La Cébila Formation, locally developing biotite-cordierite-muscovite-bearing contact hornfels aureoles.

The two-mica monzogranite contains cordierite, andalusite, and sillimanite, although cordierite and andalusite are more abundant in the leucogranitic equigranular facies. These minerals are not homogeneously distributed and the three minerals are found together only locally. The presence of biotite-rich xenoliths with a high amount of anhydrous aluminum silicates (andalusite, sillimanite) and cordierite, exhibiting textures similar to those of the host monzogranites, suggest that, at least in part, they have been incorporated into the magma and reequilibrated. The pressure during emplacement was probably 4 kbar under near-solidus temperature, thus preserving the anhydrous aluminum-silicate stability under high H2O activity.

The major-element data indicate a peraluminous calc-alkalic trend with compositional gaps. They attest to the existence of two distinct magma pulses. The chondrite-normalized REE patterns and multi-element spidergrams point to a probable origin by crustal (metasediment?) anatexis for both pulses. Peraluminous granitic magma cannot be a primary melt of metaluminous quartz-amphibolite, since there is a great geochemical homogeneity of all the granitoids. Igneous xenoliths are absent and the isotopic compositions of the granitoids correspond to those of metasedimentary sources. Both major and trace elements point to a collisional tectonic environment of an inner-continental magmatic arc.  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