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1.
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   

2.
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   

3.
小兴安岭晚石炭世花岗岩具有明显的岩浆混合特征。岩体中暗色岩浆包体发育,主要为细粒闪长质岩浆包体,包体形态多样、大小不一,与寄主岩石呈截然、模糊或过渡关系。包体的矿物组合明显不平衡,如出现了寄主岩石中的碱性长石捕虏晶,有时可见其具暗色矿物镶边,发育针状磷灰石。这表明小兴安岭晚石炭世花岗岩的岩浆混合表现为基性岩浆和酸性岩浆的混合。这为探讨这些花岗岩的成因提供了岩石学依据,同时也暗示晚古生代佳木斯—松嫩古陆可能发生过地壳的垂向生长。  相似文献   

4.
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   

5.
马昌前  王人镜 《地质论评》1992,38(2):109-119
北京周口店岩株,主要由两次侵入的石英二长闪长岩和花岗闪长岩组成,其中包体广泛分布。在岩体南缘的关坻变质岩中,零星出露了一种块状的闪长质岩石。关坻闪长岩与主岩体同期侵入的岩浆结晶产物,角闪石质包体的形成是二长辉长岩浆结晶—再平衡的结果,富云包体系花岗闪长岩浆源区的耐熔残余。通过二长辉长岩与花岗闪长岩两种岩浆简单混合可形成细粒石英二长质包体,由二长辉长岩、关坻闪长岩和花岗闪长岩3种岩浆混合形成了微粒闪长质包体。主岩体的成分变异,也与岩浆混合有关。  相似文献   

6.
内蒙古东北部激流河花岗岩中包体的特征及成因   总被引:1,自引:3,他引:1  
内蒙古东北部阿龙山地区,沿激流河两岸呈NE向分布的二长花岗岩、花岗闪长岩体中发育暗色微粒镁铁质包体。包体具典型的岩浆结构、淬火结构及针状磷灰石,部分包体中含寄主岩石的钾长石、石英巨晶。包体形态主要呈浑圆状,可见明显的塑性流变特点,与寄主岩石间常呈截然的接触关系,有时呈过渡状、雾迷状。寄主岩石富Si、K,并表现出岩浆演化的特点,包体富Mg、Fe、Ca,贫Si、Al,Na〉K。寄主岩石和包体的稀土、微量元素曲线形态相近,均为左高右低的不对称右倾型、轻稀土富集型,包体Eu微弱亏损,寄主花岗岩的Eu中等—弱亏损。包体与寄主岩石在地球化学特征上既表现出了相似性,也表现出了明显的非同源性特点。这些特征表明早石炭世激流河花岗岩类中的暗色包体是岩浆混合的产物,部分代表了混合岩浆的基性端元。  相似文献   

7.
范洪海  王德滋等 《地质学报》2001,75(1):64-69,T002
在江西相山大型塌陷式火山盆地北部的潜火山岩岩墙中,笔者发现了闪长质的岩石包体,这种包体具典型的反向脉及淬冷边,且淬冷边内含有大量针状磷灰石。在包体内部或包体与寄主岩的边界均见有钾长石及斜长石捕虏晶,这种捕虏晶是包体岩浆从寄主岩岩浆中捕获的,常被熔蚀成筛状或浑圆状。包体与寄主岩(次斑状花岗闪长岩)的稀土元素曲线和不相容元素蛛网图的形态非常相似。因此,相山潜火山岩岩墙中的闪长质岩石包体是不同成分、不同温度的岩浆经对流及不均一岩浆混合作用而形成,在成因类型上属淬冷包体。  相似文献   

8.
王晓霞  王涛等 《地质通报》2002,21(8):523-529
老君山和秦岭梁岩体具有明显的岩浆混合特征。岩体中暗色包体发育,主要类型为细粒闪长质和二长质的岩浆包体,有的岩浆包体具有细粒边,有的和寄主岩石呈过渡关系。包体的矿物组合明显不平衡:出现石英-角闪石眼斑;暗色矿物中有石英包裹体;磷灰石呈针状。在包体、寄主岩石及其边界上广泛出现卵球状的碱性长石斑晶。这些混合特征表明:老君山和秦岭梁环斑结构花岗岩、环斑结构与岩浆混合关系紧密;岩浆作用也具双峰式的特点,表现为基性岩浆和酸性岩浆的混合。这为探讨该类花岗岩和环斑结构的成因提供了直接的岩石学依据。同时,也为探讨北秦岭中生代壳幔混合作用和地壳增生提供了新的信息。  相似文献   

9.
老君山和秦岭梁岩体具有明显的岩浆混合特征.岩体中暗色包体发育,主要类型为细粒闪长质和二长质的岩浆包体,有的岩浆包体具有细粒边,有的和寄主岩石呈过渡关系.包体的矿物组合明显不平衡:出现石英-角闪石眼斑;暗色矿物中有石英包裹体;磷灰石呈针状.在包体、寄主岩石及其边界上广泛出现卵球状的碱性长石斑晶.这些混合特征表明:老君山和秦岭梁环斑结构花岗岩、环斑结构与岩浆混合关系紧密;岩浆作用也具双峰式的特点,表现为基性岩浆和酸性岩浆的混合.这为探讨该类花岗岩和环斑结构的成因提供了直接的岩石学依据.同时,也为探讨北秦岭中生代壳幔混合作用和地壳增生提供了新的信息.  相似文献   

10.
滇西北独龙江花岗岩中浆混包体特征   总被引:1,自引:0,他引:1  
李向东  李俊  严城民 《云南地质》2005,24(4):427-433
班公湖-东巧-怒江结合带(南段)西侧的独龙江花岗岩可划分为2个序列。早期序列(龙岗不若序列)富含混杂包体和混成包体。前者包括(石英)辉长苏长岩、辉长岩及辉长辉绿(玢)岩;后者由闪长岩、石英闪长玢岩、安山岩、安山玄武岩组成。从地球化学特征看,这些岩石由同源岩浆分异,并与生成寄主岩石的酸性岩浆混合而成。地球化学图解判别,浆混包体属钙碱性玄武岩系列,形成于岛弧环境,与寄主岩石———龙岗不若序列的生成环境一致。该类包体的存在,进一步证明了独龙江花岗岩早期序列(龙岗不若序列)由壳幔混源岩浆形成。  相似文献   

11.
新疆尾亚矿区3期岩浆混合作用的初步研究   总被引:1,自引:0,他引:1       下载免费PDF全文
新疆东天山的尾亚钒钛磁铁矿矿区,发育3期岩浆混合作用。第一期为辉长质与花岗质岩浆混合.并生成闪长质岩石;第二期为闪长质与花岗质岩浆的混合,生成了石英二长质岩浆;第三期为石英二长岩浆与闪长质岩浆的混合。在各类岩石氧化物对SiO2的哈克图解上,尾亚3期岩浆混合岩石的投影点分别呈相关的线性关系。在稀土和微量元素方面,3期岩浆混合作用形成的岩石分别表现出相近的地球化学特征。配分曲线形态各自相似.形成的过渡岩石——岩浆混合岩类与各自的端元岩石具有继承关系。3期岩浆混合作用之间具有明显的继承性:第一期形成的岩浆混合岩,成分相当于闪长岩,与第二期岩浆混合的基性端元属同类岩石.且与第二期各类岩石具有相似的地球化学特征;第二期形成的石英二长闪长岩,与第三期的端元岩石石英二长斑岩体完全可以对比。尾亚地区的3期岩浆混合作用表明,混合作用可以是多阶段、多期次的,本区火成岩类最初的母岩浆是酸性的陆壳硅铝质和基性的幔源铁镁质岩浆。岩浆混合作用反映了本区壳幔相互作用的本质。  相似文献   

12.
文章以西昆仑山3个花岗质深成侵入体的研究为例,认为岩浆混合形成的深成岩特征取决于发生混合作用(hybridization)的岩浆的性质,如温度、黏度、成分等物理与化学条件。岩浆的大多数性质都与温度有关,因此可以以温度为主要指标将岩浆混合作用划分为混合、混杂和注入3种类型,分别对应于高、中、低温度条件。库地北岩体具有均一的外貌特征,岩石学和地球化学特征显示其产生具有幔源与壳源岩浆的贡献,是高温岩浆混合作用(mixing)的产物;胜利桥岩体含有大量镁铁质微粒包体,注入的基性岩浆团与其寄主岩浆作用不完全,是中温岩浆混杂作用(mingling)的典型代表,也是造山带出露最广的岩浆混合成因深成岩类;赛图拉岩体形成"双峰式"岩石组合,同时侵位的镁铁质岩浆和长英质岩浆之间基本上不发生物质交换,是两种低温岩浆相互注入的结果。由于岩浆混合作用是壳幔物质与能量交换的集中体现,混合作用的类型体现了区域地热梯度及其地质过程的强度。因此,区分不同的岩浆混合作用类型对了解岩浆混合作用过程、大地构造背景和壳幔相互作用具有重要意义。  相似文献   

13.
Magma mixing has been proposed as a major mechanism for the origin of a wide variety of rock suites. In mid-ocean basalts there are few obstacles to mixing because of the similarities in chemical and physical properties of the proposed end-members. However, in calc-alkaline rocks the proposed end-members have disparate properties and these present obstacles to mixing.The Marsco suite is ideal to evaluate the process of magma mixing because it is considered to be a classic example of magma mixing of diverse magma types and because compositionally diverse, coexisting liquids were present throughout the area.The results of this study are that the chemical data for the Marsco suite fit a mixing model remarkably well and that the mixing did not take place at the present level of exposure. The Marsco mixed suite is similar to the experiments of Kouchi and Sunagawa (1982, 1983) in which mixing was produced by forced convection. Based on the Marsco suite, a similar occurrence in Ardnamurchan, and the experimental data, we conclude that mixing was dominated by mechanical mixing and this mechanical mixing was efficient enough to allow diffusional processes to homogenize the liquids.It is postulated that injection of mafic magma into the base of a silicic magma system leads to mixing and mobilization of the system. The mechanical interaction that produces the mixing also leads to disruption of the system. Liquids involved with the mixing process at depth are mobilized and coexist at shallower levels.  相似文献   

14.
天池火山千年大喷发的岩浆混合作用与喷发机制初步探讨   总被引:16,自引:14,他引:16  
根据岩浆演化和地球物理深部探测,天池火山之下存在地壳和地幔双层岩浆房。地幔玄武质岩浆向地壳岩浆房的补给,保持了天池火山逾百万年持续不断的喷发活动。本文从天池火山千年大喷发浮岩中的玄武质粗安岩一粗安岩角砾和条带状岩浆的岩相学、矿物学和岩石化学研究,提出地幔的粗面玄武质岩浆向地壳岩浆房的注入,触发千年大喷发,初步探讨了天池火山千年大喷发的岩浆混合作用与喷发机制。  相似文献   

15.
新疆北部广泛发育具有岩浆混合特征的岩体,岩体类型主要有钙碱性花岗岩、碱长花岗岩和碱性花岗岩,其中以第一类最为发育;岩体中的暗色包体类型以闪长质为主,成分可从闪长岩、石英闪长岩、石英二长闪长岩,过渡到花岗闪长岩,部分地区可发育辉长质、安山玄武质、安山玢岩质包体;有些地区还发育有岩浆混合岩.该区岩浆混合作用主要形成于四个大地构造演化阶段,即D3-C1交界的洋-陆俯冲期、C1末-C2初的碰撞期、C2-P的后碰撞期和T1的板内期.岩浆混合作用的判别标志有岩体宏观标志(近等轴状)、野外宏观标志(暗色微粒包体发育,有时可见岩浆混合岩)、显微标志(淬冷和矿物不平衡结构)、岩石地球化学标志(线性过渡特征)、年龄(一致)标志等.该区的岩浆混合作用是多级次的,其深部岩浆源区的混合表现为壳幔相互混合作用;混合作用表现出多阶段性,以基性岩浆注入到酸性岩浆为主要方式,由物理混合到化学混合渐变过渡.该区岩浆混合作用与斑岩铜钼金矿床密切相关,其成矿关系模式可概括为:基性岩浆与花岗质岩浆混合产生混合岩浆,经过进一步分异演化形成了含矿岩浆;与岩浆混合作用有关的斑岩铜钼矿的找矿标志为:岩浆混合作用强烈的大岩体内或附近晚期补充侵入的小型斑岩体具有找矿潜力.  相似文献   

16.
The Ardnamurchan net-veined complex consists of three rock types: a porphyritic mafic rock, an aphyric intermediate rock and a silicic rock. Pillows of mafic and intermediate rock are included in the silicic rock and contain crenulated and some chilled margins. Liquid-liquid relationships are inferred for these three magmas. The trace element data, using ratio-ratio plots, are consistent with magma mixing being the dominant process and are inconsistent with any process that is dominated by crystal fractionation or melting. The major element data, using multiple linear regression techniques, are consistent with magma mixing of high-silica silicic magma and primitive mafic magma, along with about 35 percent crystal fractionation to form the intermediate rock type. All of the data taken together are consistent with a magma mixing model with some fractionation to produce the variation observed. The simplest model is that a fractionating basaltic magma comes into contact with a silicic magma and limited mixing produces the intermediate magma.This net-veined complex may be the only evidence available for interaction of mafic and silicic melts that occurred in the Ardnamurchan high-level magma chamber before the silicic magma was lost to eruptive and surface processes. In general the chemical and field relationships are consistent with Smith's model for the evolution of high-level, magma chambers.  相似文献   

17.
The Nimchak granite pluton (NGP) of Chotanagpur Granite Gneiss Complex (CGGC), Eastern India, provides ample evidence of magma interaction in a plutonic regime for the first time in this part of the Indian shield. A number of outcrop level magmatic structures reported from many mafic-felsic mixing and mingling zones worldwide, such as synplutonic dykes, mafic magmatic enclaves and hybrid rocks extensively occur in our study domain. From field observations it appears that the Nimchak pluton was a vertically zoned magma chamber that was intruded by a number of mafic dykes during the whole crystallization history of the magma chamber leading to magma mixing and mingling scenario. The lower part of the pluton is occupied by coarse-grained granodiorite (64.84–66.61?wt.% SiO2), while the upper part is occupied by fine-grained granite (69.80–70.57?wt.% SiO2). Field relationships along with textural and geochemical signatures of the pluton suggest that it is a well-exposed felsic magma chamber that was zoned due to fractional crystallization. The intruding mafic magma interacted differently with the upper and lower granitoids. The lower granodiorite is characterized by mafic feeder dykes and larger mafic magmatic enclaves, whereas the enclaves occurring in the upper granite are comparatively smaller and the feeder dykes could not be traced here, except two late-stage mafic dykes. The mafic enclaves occurring in the upper granite show higher degrees of hybridization with respect to those occurring in the lower granite. Furthermore, enclaves are widely distributed in the upper granite, whereas enclaves in the lower granite occur adjacent to the main feeder dykes.Geochemical signatures confirm that the intermediate rocks occurring in the Nimchak pluton are mixing products formed due to the mixing of mafic and felsic magmas. A number of important physical properties of magmas like temperature, viscosity, glass transition temperature and fragility have been used in magma mixing models to evaluate the process of magma mixing. A geodynamic model of pluton construction and evolution is presented that shows episodic replenishments of mafic magma into the crystallizing felsic magma chamber from below. Data are consistent with a model whereby mafic magma ponded at the crust-mantle boundary and melted the overlying crust to form felsic (granitic) magma. The mafic magma episodically rose, injected and interacted with an overlying felsic magma chamber that was undergoing fractional crystallization forming hybrid intermediate rocks. The intrusion of mafic magma continued after complete solidification of the magma chamber as indicated by the presence of two late-stage mafic dykes.  相似文献   

18.
高精度LA-ICP-MS锆石U-Pb测年结果表明,黄羊山岩浆混合花岗岩加权平均~(206)Pb/~(238)U年龄为311±12Ma,首次获得闪长质微细粒包体加权平均~(206)Pb/~(238)U年龄为300±6Ma,在误差范围内完全一致,均属于晚石炭世,前者代表黄羊山岩浆混合花岗岩成岩年龄,后者代表暗色闪长质微粒包体的形成年龄,表明两者是同时代形成的,属于300Ma前后准噶尔周边地区后碰撞岩浆活动的产物.岩石地球化学研究表明,寄主岩石具有高硅、低铝、贫钙镁、富碱和高分异的特征,寄主岩石、包体和辉绿岩脉成分均落在了混合趋势线上,寄主岩富集Rb和Th等大离子亲石元素及Zr、Hf等高场强元素,亏损Ba、Sr、Ta和Ti等元素,δEu值(为0.01)极低,具有低的~(87)Sr/~(86)Sr初始比值和高正的ε_(Nd)(t)值.黄羊山碱性花岗岩是在后碰撞拉张的构造背景下,幔源岩浆发生底垫作用,由于幔源岩浆底垫作用,下地壳温度升高而熔融形成酸性壳源岩浆,部分幔源岩浆沿着地壳中的深断裂带上涌,发生不同程度壳幔混合形成的,其中闪长质微细粒包体就是基性的幔源岩浆和酸性的壳源岩浆不同程度的混合的记录者,研究区的辉绿岩脉是幔源岩浆直接分异演化的产物.  相似文献   

19.
东昆仑造山带广泛出露三叠纪岩浆混合成因花岗岩,它们具有共同的特征:岩体成分变化大;花岗岩类岩石中富含镁铁质微粒包体(mafic microgranular enclave--MME);不同岩性之间常常呈渐变过渡关系。同时,这些岩体无一例外都和代表下地壳的深变质岩共生,暗示岩浆就位于地壳深部。此外,东昆仑地区广泛发育基性侵入体,它们产在深变质岩中,或者与岩浆混合成因花岗岩类共生,暗示下地壳物质的部分熔融和岩浆混合成因花岗岩的形成有可能与基性岩浆底侵作用有关。笔者选择东昆仑加鲁河这一典型的岩浆混合成因花岗岩体为例,对其岩石学、地球化学、同位素地球化学等特征进行了详细研究,认为幔源岩浆底侵作用是这类岩体形成的直接原因,并对幔源岩浆底侵作用和岩浆混合成因花岗岩之间的成因联系以及幔源岩浆底侵作用在东昆仑造山带三叠纪地壳生长和构造演化中所起的重要作用进行了讨论,构建了加厚陆壳背景下的断离-底侵-混合-拆沉作用模型。  相似文献   

20.
Pre-eruption processes are investigated for magmas erupted in1983 from Miyake-jima volcano, which is one of the most activevolcanoes in Japan. The whole-rock compositional trends of theeruptive products are principally smooth and linear. Magmaserupted from some fissures have compositions that deviate fromthe main linear trend. Phenocryst contents of samples displacedfrom the linear compositional trends are significantly lowerthan those of samples on the main trends. Anorthite-rich plagioclasephenocrysts, present throughout the 1983 products, are too calcicto have crystallized from the erupted magma composition, andwere derived from a basaltic magma through magma mixing. Althoughthe linear whole-rock composition trends favor simple two-componentmagma mixing, this cannot explain the presence of samples thatdeviate from the main trend. Instead, the observed compositiontrends were formed by mixing of a homogeneous basaltic magmawith andesitic magmas exhibiting compositional diversity. Theoriginal linear composition trends of the andesitic end-membermagma were rotated and shifted to the direction of the basalticend-member magma by magma mixing. The samples out of the maintrends represent magmas with less basaltic component than thoseon the trend. The density and viscosity of the basaltic end-membermagma were comparable with those of the andesitic end-membermagmas. The basaltic magma, discharged from one magma chamberat 2 kbar pressure, was injected into a magma chamber at lowerpressure occupied by the chemically zoned andesite magma (1kbar), and possibly as a fountain. To establish the characteristicmixing trend of the 1983 magma, the basaltic component musthave been distributed systematically in the zoned andesite magma.A requirement is that the basaltic magma spread laterally andmixed with the andesite magma at various levels of ascent ofthe fountain in the host andesite magma. Analysis of compositionalzoning in titanomagnetite crystals revealed that the eruptionof the 1983 magmas was initiated soon after the replenishmentof the basaltic magma in the 1 kbar magma chamber. KEY WORDS: compositional trend; liquid–liquid blending; magma chamber; magma mixing; Miyake-jima Volcano  相似文献   

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