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1.
晋冀蒙高级地体石榴石基性麻粒岩地质特征及其构造意义   总被引:6,自引:2,他引:4  
在晋、冀、蒙交界处的高级变质岩区,沿孔兹岩和怀安麻粒岩杂岩的接触带上广泛发育石榴石基性麻粒岩,其主要特征:1)以透镜状、岩脉状分布于孔兹岩系和麻粒岩杂岩的接触带上;2)和孔兹岩系及麻粒岩杂岩的接触关系为侵入或韧性剪切接触;3)具斜方辉石-单斜辉石-角闪石-斜长石-石榴石的矿物组合及围绕石榴石发育斜长石和角闪石或斜方辉石的交生结构,部分还可见到斜方辉石后成合晶定向排列;4)在孔兹岩和麻粒岩的接触带上  相似文献   

2.
本文重点研究了桦甸杂岩的主要造岩矿物黑云母、角闪石、辉石和石榴石以及它们之间的平衡共生关系。各主要造岩矿物的化学成分及相互关系都说明桦旬杂岩的变质作用高峰达麻粒岩相。文中用斜方辉石-单斜辉石、石榴石-黑云母、石榴石-普通角闪石、石榴石-斜方辉石和石榴石-斜方辉石-斜长石-石英等矿物对和矿物组合作了变质作用温度、压力估测。桦甸杂岩的变质作用温压条件约为6.4—7.1kbar,700—750℃,桦甸杂岩变质时的埋藏深度约25km,当时的地热梯度大约30℃/km。  相似文献   

3.
在冀北地区原太古代"单塔子群"内多处发现了高压基性麻粒岩构造岩片或透镜体,围岩为花岗片麻岩类,在区域上呈构造带出现。高压基性麻粒岩早期矿物组合为单斜辉石+石榴石+石英,退变组合为斜方辉石+斜长石+单斜辉石及更晚期的角闪石+斜长石,明显经历了快速的抬升过程。上述高压麻粒岩在区域上可能对应于晋北-冀西北的高压麻粒岩带,代表克拉通基底的重要构造边界,对于认识区域早前寒武纪构造演化及深部地质作用过程将产生重要影响。  相似文献   

4.
晋冀蒙高级区两期高压麻粒岩的地质特征及成因   总被引:6,自引:1,他引:5  
晋冀蒙高级区存在两期高压麻粒岩,其分布、产状、时代、成因都不同。早期高压麻粒岩,沿宣化西葛峪、大东沟、怀安蔓菁沟南部、恒山白蟒石一带分布,呈透镜状产于钾长花岗岩中,形成时代约2400Ma,属岩浆包体。晚期高压麻粒岩,沿孔兹岩系和麻粒岩杂岩的接触带分布,呈透镜状、岩脉状产出,并和孔兹岩岩片、高温韧性剪切带、超基性岩一同构成具有“混杂岩”性质的构造-岩浆杂岩带,其时代为1800Ma左右。  相似文献   

5.
晋冀蒙高级区存在两期高压麻粒岩,其分布、产状、时代、成因都不同。早期高压麻粒岩,沿宣化西葛峪、大东沟、怀安蔓菁沟南部、恒山白蟒石一带分布,呈透镜状产于钾长花岗岩中,形成时代约2400Ma,属岩浆包体。晚期高压麻粒岩,沿孔兹岩系和麻粒岩杂岩的接触带分布,呈透镜状、岩脉状产出,并和孔兹岩岩片、高温韧性剪切带、超基性岩一同构成具有“混杂岩”性质的构造-岩浆杂岩带,其时代为1800Ma左右。  相似文献   

6.
王洛娟  郭敬辉  彭澎  刘富 《岩石学报》2011,27(12):3689-3700
大同孤山石榴石基性麻粒岩出露在华北克拉通孔兹岩带与中部带的构造接触部位,以大小不等的透镜体形式产于孔兹岩带内的夕线石榴片麻岩和紫苏二长片麻岩中.根据岩相学观察、矿物化学研究、P-T视剖面图和传统温压计计算结果,揭示孤山石榴石基性麻粒岩经历了4个阶段的变质演化:早期进变质阶段(M1)的主要矿物组合为石榴石核心及其内部包体矿物单斜辉石+角闪石+斜长石+石英+钛铁矿±金红石.反环带斜长石富钠核部记录了早期压力可达11k bar;峰期变质阶段(M2)的矿物组合是石榴石斑晶和基质中的单斜辉石+斜方辉石+斜长石+钛铁矿+石英,记录的温压条件为850~900℃、9~10kbar;峰期后降压阶段(M3)的标志是石榴石外围发育的后成合晶和冠状环,主要有单斜辉石+斜长石、斜方辉石+斜长石和角闪石+斜长石组合,其形成温压条件为760 ~820℃、5~8kbar;晚期低角闪岩相角闪石的生长表明岩石又经历了降温冷却的过程(M4),温度降至690℃以下.石榴石基性麻粒岩记录了含有近等温降压(ITD)阶段的顺时针变质作用P-T轨迹,揭示了阴山地块与鄂尔多斯地块之间俯冲碰撞加厚下地壳的折返过程.石榴石基性麻粒岩的变质锆石LA-ICP-MS U-Pb定年得到了两组变质年龄数据,分别为1945±25Ma和1828±36Ma,它们与阴山地块、鄂尔多斯地块碰撞形成孔兹岩带的时代及华北克拉通东、西陆块碰撞形成中部带的时代一致.结合该地区其他研究结果推断,石榴石基性麻粒岩在~ 1.95Ga鄂尔多斯地块与阴山地块碰撞过程中俯冲进入下地壳底部,经历早期的高压麻粒岩阶段,随后缓慢地抬升到下地壳上部;之后在~1.85Ga东、西部陆块碰撞过程中,石榴石基性麻粒岩折返到中上地壳.  相似文献   

7.
迁西群以混合杂岩为主,占岩石出露面积80%以上。变质岩零星分布在混合岩中。变质岩系由麻粒岩、黑云(辉石、角闪石)斜长片麻岩、变粒岩及黑云母(石榴石)浅粒岩为主体的岩石组成。岩系下部出现较多暗色麻粒岩,上部具薄层夕线石碱长片麻岩。为麻粒岩相区域变质岩石。其变质原岩自下而上由中基性火山沉积岩——中性火山沉积岩——酸性火山岩及火山沉积岩、杂砂岩夹薄层泥质沉积岩组成,伴有基性层状或脉状侵入体及小型超镁铁质岩体。在上部岩层中,赋存有条带状磁铁石英岩大型铁矿床。工作区岩层厚度4000公尺以上。  相似文献   

8.
山东半岛基性高压麻粒岩的成因矿物学及变质演化   总被引:27,自引:22,他引:5  
刘平华  刘福来  王舫  刘建辉 《岩石学报》2010,26(7):2039-2056
在山东半岛的平度-莱西-莱阳-烟台一带,广泛出露基性高压麻粒岩,它们呈大小不等的透镜体或不规则脉状体产于TTG片麻岩中,且与超镁铁质岩石密切"伴生"。根据岩相学、矿物相转变、变质反应以及温压条件的系统研究结果,确定山东半岛基性高压麻粒岩经历了四个阶段的变质演化。早期进变质阶段(M1)的标志性矿物组合以石榴石及其内部的细粒单斜辉石+斜长石±石英为特征,记录的温压条件为T=740~770℃、P=0.9~1.0GPa;峰期高压麻粒岩相变质阶段(M2)的矿物组合以基质中石榴石(富Ca核部)+单斜辉石(富Al核部)+斜长石(富Na核部)±石英为特征,记录的温压条件为T=850~880℃、P=1.45~1.65GPa;峰后近等温减压(中压)麻粒岩相退变质阶段(M3),以发生一系列典型减压反应和斜方辉石的大量出现为标志,典型的矿物组合为斜方辉石+单斜辉石+斜长石+磁铁矿±角闪石,记录的温压条件为T=780~830℃、P=0.65~0.85GPa;晚期角闪岩相退变质阶段(M4)以石榴石发生降温反应、形成角闪石+斜长石+磁铁矿±石英等退变矿物组合为特征,记录的温压条件为T=590~650℃、P=0.62~0.82GPa。高压基性麻粒岩的变质演化的P-T轨迹具有顺时针型式,先后经历了近等温减压过程(ITD)和近等压降温过程(IBC)变质演化过程,指示研究区基性高压麻粒岩是古老陆块之间在俯冲-碰撞造山过程中加厚下地壳折返地表的产物。该项成果对于重新认识华北克拉通在早前寒武纪古老陆块的碰撞-拼贴及其演化的动力学过程具有重要科学意义。  相似文献   

9.
冀东早太古代迁西群是由火山-沉积岩系变质生成的一套变质杂岩。它的主体是麻粒岩类以及退变质生成的斜长角闪岩类的岩石。该套变质岩系的下部夹有层状和透镜状变质超镁铁质岩(变橄辉岩、变辉橄岩、变辉石岩及变闪辉岩),而上部为变质的含铁岩系。以石渣子山和娄子山为例,它们的含铁岩层分别为辉石磁铁石英岩和英榴易熔岩。 本区的麻粒岩和斜长角闪岩在岩相学上呈渐变关系。绝对不含角闪石和/或富钛黑云母的麻粒岩是很少的。本文将以角闪石和斜长石为主要组成矿物的岩石归为斜长角闪岩类。在斜长角闪岩类岩石中,角闪石含量大大超过辉石,另外常见被角闪石交代的辉石残晶。  相似文献   

10.
Shar.  RS 马瑞 《世界地质》1991,10(1):27-28
Sand Mata麻粒岩岩组形成印度半岛西北部Rajasthan地区太古宙片麻岩杂岩体。其主要岩石为泥质麻粒岩,由石榴石、矽线石、蓝晶石、黑云母、堇青石、紫苏辉石、石英和长石组成。在各种规模范围内可见由石榴石、石英、长石等组成的成分条带。该岩组另一个岩石类型为基性麻粒岩,其矿物组合为石榴石、透辉石、紫苏辉石、斜长石和少量石英。这些麻粒岩被苏长岩脉侵入,而岩脉的年龄还没有确定。它们主要特征是有变余辉绿结构,同时有时含有橄榄石。麻粒岩岩组为卵形,并被片麻岩-片岩-花岗岩杂岩体围绕,该杂岩体被称为条带状片麻岩杂岩体(Banded Gneissic Complex)。它们的接触界线为韧性剪切带,该剪切带具有陡的下倾线理。基性麻粒岩在紫苏辉石和斜长石表面具有石榴石—透辉石和石英的反应边。反应边矿物的随机方位表明结晶作用是在麻粒岩相变质的静态环境中进行的。石榴石—透辉石—石英组合在冷却过程中还没有形成,这可由其P-T估算以及苏长岩脉中石榴石的发  相似文献   

11.
Abstract The widespread khondalite series of south-east Inner Mongolia consists largely of biotite–sillimanite–garnet gneiss and quartzo-feldspathic gneiss with some marble and mafic granulite layers. It has experienced two metamorphic events at c. 2500 and 1900–2000 Ma.
A pre-peak stage of the first metamorphism at T = 600–700°C and P > 6–7 kbar is recognized by the relict amphibolite facies assemblage Ky–Grt–Bt–Pl–Qtz and 'protected'inclusions of biotite, hornblende, sodic plagioclase and quartz in garnet or orthopyroxene. The peak stage, with T = c. 800 ± 50°C and P 8–10 kbar, is characterized by the widespread granulite facies assemblages Sil–Grt–Bt–Kfs–Pl–Qtz in gneiss and Opx–Cpx–Pl ± Hbl ± Grt in granulite. The P–T–t path suggests that the supracrustal sequence was buried in the lower crust by tectonic thickening during D1–D2.
The beginning of the second metamorphism is characterized by further temperature rise to 700°C or more at lower pressure. This stage is manifested by the appearance of cordierite after garnet, fibrolite (Sil2) after biotite in gneiss and transformation of Hbl1 into Opx2 and Cpx2 in granulite. Coronas of symplectitic Opx2 + Pl2 surrounding Grt1 and Cpx1 in mafic granulite are interpreted as products of near-isothermal decompression. The P–T–t path may be related tectonically to waning extension of the crust by the end of the early Proterozoic.  相似文献   

12.
The Seiland Igneous Province of the North Norwegian Caledonides consists of a suite of deep-seated rift-related magmatic rocks emplaced into paragneisses during late Precambrian to Ordovician time. In the south-eastern part of the province, contact metamorphism of the paragneisses and later reworking of intrusives and associated contact aureoles have resulted in the development of three successive metamorphic stages. The contact metamorphic assemblage (M1) Opx + Grt + Qtz + Pl + Kfs + Hc + Ilm ± Crd is preserved in xenolithic rafts of paragneiss within metagabbro. Geothermobarometric calculations yield 930-960d? C and 5-6.5 kbar for the contact metamorphism. M1 was followed by cooling, accompanied by strong shearing, formation of the gneiss foliation and recrystallization at intermediate-P granulite facies conditions (M2). Stable M2 phases are Cpx + Opx + Pl +Ilm ± Hbl in metagabbro and Grt ± Sil ± Opx + Kfs + Qtz + Pl ± Bt + Ilm in host paragneiss. The M2 conditions are estimated to 700-750d? C and 5-7 kbar. A subsequent pressure increase is recorded in the M3 episode, which is associated with recrystallization in narrow ductile shear zones and secondary growth on M2 minerals. M3 is defined by the assemblages Grt + Cpx ± Opx + Pl + Ru + Qtz in metagabbro, and Grt ± Ky + Qtz + Pl ± Kfs + Bt + Ru in host paragneiss. M3 conditions are estimated to 650-700d? C and 8-10 kbar. The substantial pressure increase related to the M2 → M3 transition is interpreted to be a result of (early?) Caledonian overthrusting. Chemical zoning in cordierite and biotite suggest rapid cooling following the M3 event. The proposed P-T-t evolution implies that the tectonic evolution of the Seiland Igneous Province was long (at least 330 Ma) and complex and involved initial rifting and extension followed by crustal thickening and compression.  相似文献   

13.
Abstract Granulite in eastern Shandong is mainly exposed in Laixi, Pingdu, Changyi and Anqiu, and the diagnostic mineral assemblage is Opx+Cpx+Hb+Pl ± Q ± Sea. The appearance of orthopyroxene and its coexistence with hornblende indicate that the reaction Hb+Q = Opx+Cpx+Pl+H2O did not proceed completely and therefore these rocks belong to the amphibolite- granulite transition facies, i.e., belonging to hornblende-granulite subfacies. According to the data obtained from such geothermometers and geobarometers as Opx- Cpx, Opx- Hb, Cpx- Hb, Hb- PI, Sca- Pl and Fe- Ti oxides, it has been determined that the temperature of the main metamorphic stage was 720° – 810°C, the pressure 0.5 GPa and fo210?15.5, showing a geothermal gradient of 41–46°C / km, and thus the rocks belong to “low-temperature” and low-pressure granulite facies.  相似文献   

14.
孔兹岩系事件与太古宙地壳构造演化   总被引:1,自引:0,他引:1  
孔兹岩系是太古宙高级变质岩区中较为常见的变质沉积岩石地层单位 ,它以富铝(含墨 )的矽线榴云片麻岩为特征 ,伴有石英岩、钙硅酸盐岩及富镁大理岩等组合而成的一套岩石地层。内蒙古大青山地区近年来研究工作的重要进展之一 ,是对发育在该区的孔兹岩系进行了系统构造地层学研究 ,提出了由下至上三个岩层单位组成的地层序列 :即榴云片麻岩岩组、含黑榴云片麻岩岩组及大理岩岩组或透辉片麻岩岩组 ,下与兴和岩群的麻粒岩系 ,上与浅变质的古元古代美岱召岩群呈不整合接触。根据侵入孔兹岩系中的单斜辉石斜长角闪岩的Sm Nd同位素年龄 2 80 0Ma(杨振升等 ,另文发表 ) ,确定孔兹岩系时代应属中太古代 ,按区域太古宙地层构造格架 ,在大青山—乌拉山及色尔腾山地区孔兹岩系应位于新太古代色尔腾山群之下。大青山地区所建立的孔兹岩地层层序及其在太古宙地层系统中的位置 ,无疑对相邻地区高级变质区的岩石地层研究有重要借鉴意义。联系到全球太古宙高级变质区中相当于孔兹岩系的组成分布的广泛性与其惊人的相似性 ,作者建议使用孔兹岩系事件一词来表达 350 0~ 2 80 0Ma时期地壳上曾经存在超洲际规模的克拉通大陆 ,这规模巨大的克拉通的富铝 (含黑 )碎屑岩—石英岩—碳酸盐岩 (钙硅酸盐 )的沉积事件 ,即孔兹岩系事  相似文献   

15.
In mafic granulites, garnet can form by reactions such as Opx + Pl = Cpx + Grt + Qtz; Opx + Pl = Grt + Qtz. As a result of isothermal decompression (ITD), garnet can then break down to a characteristic orthopyroxene-plagioclase symplectite. Mafic, iron-rich garnet-pyroxene granulite from the Guaxupé Massif has symplectite that formed by near-isothermal decompression, as a consequence of uplift of the granulite facies terrane. This symplectite was found to consist of vermicular clinopyroxene-orthopyroxene-plagioclase, with clinopyroxene clearly growing from the garnet that is breaking down, modal amounts of clinopyroxene being less than orthopyroxene. Electron probe analyses show clear differences between core (Cpx1), rim, and symplectite clinopyroxene (Cpx2). Considering also the presence of magnetite in the symplectite texture, garnet breakdown is thought to be better represented by a reaction such as Cpx1 + Grt + O2 = Cpx2 + Opx + Pl +Mt + Qtz.  相似文献   

16.
Based on the chronological data and relevant geological evidence, the chronological framework of the major geological events of the granulite terrain in northwestern Hebei Province and its adjacent areas has been established. Basic lava eruption occurred in the span of 2868-2932 Ma, resulting in the formation of the early crust. The TTG magma emplacement took place c.2761 Ma ago. Subsequently basic magma intruded into the supracrustal rocks at 2650 Ma, resulting in crustal thickening. The thickening was enhanced at 2561-2503 Ma by the widespread intrusions of granodioritic magma. In the period of 2477-2461 Ma charnockite intruded, accompanied by regional granulite facies metamorphism. The second stage of granulite facies metamorphism occurred c. 2300 Ma ago, and finally pink granite intrusions at 2144-2087 Ma resulted in the formation of a granite zone.  相似文献   

17.
内蒙古大青山地区石榴花岗岩的地质特征和岩相学特征   总被引:2,自引:0,他引:2  
内蒙古大青山地区石榴花岗岩出露于哈德门沟-平方沟-虎本汉沟一带,沿麻粒岩系与孔兹岩系之间的构造不整合面呈不规则带状分布,从其野外地质特征和岩相学特征可确定石榴花岗岩与围岩为渐变过渡关系.石榴花岗岩中的变质表壳岩以及部分包体不仅在岩性上可与外围的同类岩石对比,而且也显示了明显的深熔作用改造的痕迹.现有证据表明石榴花岗岩总体上是由孔兹岩系的石榴黑云片麻岩原地熔融形成的,为深熔作用的产物.石榴花岗岩的研究为本区的深熔作用演化提供了依据.  相似文献   

18.
Rb-Sr and Sm-Nd isotopic studies were carried out for metamorphic rocks in the Namaqualand Metamorphic Complex, South Africa. The metamorphic rocks give the Rb-Sr mineral isochron ages (whole-rock - biotite - felsic fractions) of 844±85 Ma and 811.6±6.6 Ma for the lower granulite zone and of 776.5±5.4 Ma for the upper granulite zone. The rocks yield the Sm-Nd mineral isochron ages of 1071±18 Ma (whole-rock - garnet - felsic fractions) and 1067±158 Ma (whole-rock - hornblende - biotite rich fraction - felsic fractions) for the lower granulite zone and of 1052.0±3.6 Ma and 1002.5±1.4 Ma (whole-rock - garnet - felsic fractions) for the upper granulite zone. These age data suggest that the granulite facies metamorphism took place at 1060-1000 Ma, and that the rocks cooled down at 850-780 Ma. The Sr and Nd isotopic compositions of metamorphic rocks are different between the lower and upper granulite zones.  相似文献   

19.
中国与蒙古之地质   总被引:26,自引:0,他引:26  
东昆仑中部缝合带清水泉一带发育石榴斜长紫苏麻粒岩、紫苏辉石黑云母石榴子石麻粒岩、石榴二辉斜长麻粒岩和石榴单斜辉石麻粒岩,它们与混合岩化黑云母石榴子石变粒岩、黑云母辉石变粒岩、石墨大理岩、含透辉石透闪石大理岩、透辉石大理岩、黑云斜长角闪岩和片麻岩等高级变质岩系以及纯橄岩、辉橄岩、橄长岩、辉长岩、辉绿岩和玄武岩等共同构成蛇绿混杂岩。麻粒岩相变质作用的温压条件为T=760~880℃,p=830~1200MPa,为高温中高压麻粒岩相变质作用,估算其形成深度为40~45km。麻粒岩相变质作用的SHRIMP锆石U-Pb年龄为(507·7±8·3)Ma。清水泉地区蛇绿岩形成于~520Ma,到~508Ma时俯冲至地下40~45km深处而发生中高压麻粒岩相变质作用,然后发生构造折返而剥露至地表。证实了清水泉高级变质岩和基性—超基性岩片是形成于早—中寒武世的蛇绿混杂岩,标志一个古生代早期的非常重要的板块汇聚边界,这对于进一步研究东昆仑造山带构造演化、乃至中国西部大地构造格局具有非常重要的意义。  相似文献   

20.
内蒙古大青山—乌拉山位于华北克拉通北缘,是我国高级区发育较好的区域之一。区内高级变质杂岩总体上呈近东西向延伸,经历多期变质变形作用改造。近水平顺层伸展变形是高级变质杂岩中最早的塑性流动变形作用,发生在下地壳麻粒岩相环境下。变形作用伴随麻粒岩相变质作用、深熔作用,形成了顺层滑动韧性变形带、穹隆构造、层内底辟褶皱和L构造岩等构造形迹组合。这期变形作用不仅导致区内的孔兹岩系和麻粒岩系以近水平构造面接触,也造成孔兹岩系中各个地层单位具有以透镜状岩片堆叠的地层结构,并且还伴随有不同类型的深熔片麻岩形成。近水平顺层伸展变形作用的确立,对研究早前寒武纪高级区地壳形成演化和高级变质地层构造格架的建立具有重要的理论意义。  相似文献   

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