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1.
北阿尔金恰什坎萨伊沟南口火山岩显双峰式特征, 由变玄武岩和变流纹岩组成.地球化学分析表明变玄武岩源自富集地幔, 上侵过程中遭受地壳混染, 形成于大陆裂谷环境; 而变流纹岩与铝质A型花岗岩特征类似, 为幔源岩浆底侵下地壳部分熔融成因.变流纹岩锆石LA-ICP-MS U-Pb年龄为749.8±4.6 Ma, 代表火山岩的喷发年龄, 为北阿尔金洋的初始裂解事件提供了时代证据; 与北祁连洋初始裂解时代相近, 从洋盆的初始裂解时间证明北阿尔金与北祁连同为一个带."西域板块"新元古代中期岩浆活动与Rodinia超大陆裂解事件密切相关, 与扬子板块周缘岩浆活动有相似性, 可划分为裂解初期与峰期两个阶段.所发现北阿尔金南华纪双峰式火山岩正是Rodinia超大陆裂解峰期岩浆活动的产物.   相似文献   

2.
塔里木西南缘(西昆仑北带)发育新元古代辉绿岩及玄武岩,辉绿岩侵入青白口系而被南华系超覆,玄武岩发育在南华系下部。初步的岩石地球化学研究表明,辉绿岩及玄武岩形成于大陆板内裂解背景,来自EMI型地幔源区。结合对本区格林威尔期造山事件的确定以及新元古代815Ma左右的A型片麻状花岗岩的发现,表明新元古代玄武岩喷发、辉绿岩岩墙侵入等是古塔里木板块作为Rodinia超大陆的一员在新元古代发生裂解的岩浆事件,我们推测超大陆裂解与地幔柱活动有关。  相似文献   

3.
毛北超高压变质岩体位于苏鲁造山带南部,是由石榴石橄榄岩、榴辉岩、硬玉石英岩和石榴石多硅白云母石英片岩组成的层状岩体.富金红石榴辉岩和富钛铁矿榴辉岩在岩体中呈连续的层状产出,总厚度达200m,深度>700m,构成了一个大型的钛矿床.岩石学、地球化学和年代学研究表明,毛北岩体的原岩形成在新元古代Rodinia超大陆裂解过程中,基性岩浆经历了强烈的分异结晶作用,形成了由橄榄辉长岩-辉长岩-闪长岩-花岗岩组成的复杂层状侵入体,并在新元古代的全球冰期与高纬度大气降水发生强烈的水-岩交换作用.在印支期的大陆深俯冲过程中,经历了超高压变质作用,其峰期变质温度>800℃,压力>4.5GPa,富钛磁铁矿辉长岩转变成了富金红石榴辉岩,形成了超高压变质的钛矿床.  相似文献   

4.
张少兵  吴鹏  郑永飞 《地球科学》2019,44(12):4157-4166
超大陆的聚合必然伴随着从大洋俯冲、弧陆碰撞到陆陆碰撞等一系列板块汇聚和造山过程,这些不同阶段的俯冲和汇聚过程会产生不同特征的岩浆岩记录.华南陆块是新元古代罗迪尼亚超大陆的重要组成部分,在这个超大陆聚合过程中有格林维尔期洋壳俯冲及其伴随的壳幔相互作用.总结了华南陆块北缘记录的罗迪尼亚超大陆聚合不同阶段发生的岩浆活动,比较了其产物的地球化学特征,探讨了它们对应的构造环境.华南陆块北缘900~950 Ma的岩浆活动产物以镁铁质岩浆岩为主,伴随有少量斜长花岗岩,为洋壳俯冲作用的产物.当洋壳俯冲到大陆边缘之下形成安第斯型俯冲带,古老陆源沉积物也被携带进入俯冲带,由此部分熔融产生的含水熔体交代上覆地幔楔形成极度富集的造山带岩石圈地幔,其在新元古代中期发生部分熔融形成具有极负锆石εHf(t)值的镁铁质岩浆岩.因此,在罗迪尼亚超大陆聚合过程中地幔楔被交代形成镁铁质-超镁铁质交代岩,其中一部分在俯冲阶段就发生部分熔融形成大洋弧或大陆弧镁铁质岩浆岩,另一部分在俯冲之后由于大陆裂断引起造山带岩石圈拉张使其与上覆地壳一起部分熔融形成双峰式岩浆岩.   相似文献   

5.
朱小辉  曹玉亭  刘良  王超  陈丹玲 《岩石学报》2014,30(12):3717-3728
岩相学研究表明阿尔金南缘淡水泉一带出露的花岗质片麻岩的峰期矿物组合为Grt+Kfs+Ky+Rt+Qz,为典型的高压麻粒岩相矿物组合。利用Thermocalc3.33程序计算的P-T视剖面图和矿物温压计,确定其峰期变质温压条件为T=875~925℃,P=14.5~15.9kbar,该岩石后期还经历了以矿物组合Grt+Kfs+Bt+Pl+Sill+Ilm+Qz为代表的麻粒岩相和以Sill+Bt+Pl+Mu+Qz±Ilm为代表的角闪岩相的退变质作用,具有一个早期快速等温降压,后期近等压降温的顺时针型的退变质P-T演化轨迹。锆石的U-Pb同位素定年结果显示其原岩的时代为866±5Ma,峰期变质时代为505±5Ma。其中该岩石原岩的形成时代与阿尔金及其周缘地区广泛发育的由Rodinia超大陆裂解事件导致的岩浆活动时代一致,而峰期变质时代则与南阿尔金高压/超高压变质岩的峰期变质时代(486~509Ma)一致,说明花岗片麻岩原岩的形成与罗迪尼亚超大陆裂解有关,并在早古生代卷入了陆壳深俯冲事件,构成了南阿尔金高压/超高压变质带的一部分。  相似文献   

6.
王飞  王博  舒良树 《岩石学报》2010,26(2):547-558
塔里木西北缘新元古界苏盖特布拉克组不整合覆盖在前寒武纪阿克苏群蓝片岩及侵入其中的基性岩墙之上,苏盖特布拉克组底部发育两层玄武岩夹层,其形成时代和成因背景对认识塔里木板块前寒武纪构造演化及有关的超大陆循环和地球动力学过程具有重要意义。本文对这两层玄武岩进行了全岩地球化学和锆石U-Pb年代学研究。结果显示,玄武岩均属于大陆拉斑玄武岩系列,微量元素地球化学特性与典型的大陆溢流玄武岩非常相似,其岩浆来源于富集地幔,并遭受了一定程度的地壳混染作用。玄武岩中锆石的LA-ICP-MS U-Pb年龄分布在1945~755Ma,这些锆石均属于玄武岩浆上升过程中从地壳岩石捕获的继承锆石,记录了塔里木北缘元古代期间多期变质和岩浆事件。这一年龄范围表明,玄武岩形成的时代应晚于755Ma。本文的研究结果表明,阿克苏大陆拉斑玄武岩形成于板内裂谷环境,可能与新元古代Rodinia超大陆之下的地幔柱活动有关,是塔里木板块从Rodinia超大陆裂解出来的直接证据。  相似文献   

7.
大陆溢流玄武岩省(CFBs)是一种典型的大火成岩省(LIPs),代表活动周期短、喷发速率高的岩浆事件,通常由异常高温地幔部分熔融所致;一般认为它与大陆的生长、裂解以及超大陆的循环有内在的成因联系[1].古大陆溢流玄武岩省的识别对于超级大陆重建意义重大.一些学者认为地幔柱或超级地幔柱活动是导致Rodinia超大陆裂解的主要原因之一.  相似文献   

8.
罗改 《地质与勘探》2017,53(4):643-656
滇西北石鼓岩群位于羌塘-三江造山系中咱-中甸地块南缘丽江地区石鼓-巨甸一带,石鼓岩群变质岩系中发育的新元古代变质基性岩是Rodinia超大陆裂解的重要构造-岩浆记录。通过对石鼓岩群中的变质基性岩岩石学、地球化学的研究表明,其主要为大洋拉斑玄武岩,具有介于EMORB与OIB之间的地球化学特征,岩浆起源于富集地幔区,是尖晶石地幔橄榄岩部分熔融的产物,并经历了地壳的混染作用。LA-ICP-MS锆石U-Pb定年表明石鼓岩群变质基性岩形成于新元古代中期(833.9±3.5Ma),时代与扬子陆块西缘大量分布的新元古代岩浆岩一致,其形成可能与该时期的地幔柱活动有关。  相似文献   

9.
阿尔泰大型-超大型矿床富集区地壳演化   总被引:4,自引:0,他引:4  
通过构造、岩浆、变质、成矿等地质作用及其时空演化规律的对比分析,以及物探重力、航磁及遥感信息的综合研究,认为古生代阿尔泰富蕴地幔热柱成因的三联点裂谷形成与演化———“手风琴式”开合,是阿尔泰大型- 超大型矿床富集区形成与演化的根本原因。地幔热柱热地幔物质大规模上涌和横向扩张,产生三联点裂谷系统,导致古大陆解体,形成阿尔泰“洋岛型”蛇绿岩、阿尔泰型花岗岩、花岗岩化、高温低压变质带和主要大型- 超大型矿床;地幔热柱活动停止或间息,导致三联点裂谷系统发生A 型俯冲而封闭造山,形成三叉式陆间造山带和同造山花岗岩、  相似文献   

10.
辽东—吉南地区早元古代两种类型变质作用及其构造意义   总被引:53,自引:25,他引:28  
贺高品  叶慧文 《岩石学报》1998,14(2):152-162
辽宁东部和吉林南部的早元古代变质岩系可划归两个性质不同的变质地体。辽北地体包括北辽河群和老岭群,其中常见有石榴石、十字石、蓝晶石等特征变质矿物,属于典型的中压变质作用,并具有大陆碰撞带的顺时针PTt轨迹,峰期阶段的变质条件达到低角闪岩相,它们和推覆构造所产生的构造增压作用有密切关系。辽南地体包括南辽河群和集安群,其中常见有石榴石、十字石、红柱石、堇青石、夕线石等特征变质矿物,属于典型的低压变质作用,并具有大陆边缘岩浆增生带的逆时针PTt轨迹,峰期阶段的变质条件达到高角闪岩相,它们和大量片麻状花岗岩侵位所引起的岩浆增温作用有密切关系。研究结果表明北辽河群和南辽河群、老岭群和集安群不是同一个裂陷槽内的“同时异相”关系或“上下叠置”关系,而是两个变质地体的变质岩系在早元古代晚期经构造作用拼贴在一起。  相似文献   

11.
南苏鲁超高压变质地体中罗迪尼亚超大陆裂解事件的记录   总被引:14,自引:11,他引:14  
通过苏鲁超高压变质地体南部不同类型超高压变质岩石的原岩重塑.揭示超高压变质岩的原岩形成于由大陆玄武质岩石、辉长岩、表壳岩和花岗岩组成的被动陆缘拉伸构造环境。中国大陆科学钻探主孔中不同类型超高压变质岩石的锆石SHRIMP U-Pb定年表明。花岗质片麻岩原岩年龄为780~680Ma;榴辉岩、石榴角闪岩的原岩年龄为765~730Ma,副片麻岩中包含了730Ma、680Ma、621Ma和较年轻的继承性碎屑锆石和结晶锆石年龄。结合前人的研究成果表明,苏鲁超高压变质地体南部正片麻岩类和榴辉岩的原岩所代表的花岗岩浆和基性岩浆活动为罗迪尼亚超大陆形成后的新元古代裂解事件的产物.而副片麻岩的原岩为新元古代.古生代时期形成的扬子被动陆缘的沉积-火山表壳盖层,它们与结晶基底一起在240~220Ma期间经历了超高压变质作用。  相似文献   

12.
During the Late Palaeozoic Variscan Orogeny, Cambro‐Ordovician and/or Neoproterozoic metasedimentary rocks of the Albera Massif (Eastern Pyrenees) were subject to low‐pressure/high‐temperature (LPHT) regional metamorphism, with the development of a sequence of prograde metamorphic zones (chlorite‐muscovite, biotite, andalusite‐cordierite, sillimanite and migmatite). LPHT metamorphism and magmatism occurred in a broadly compressional tectonic regime, which started with a phase of southward thrusting (D1) and ended with a wrench‐dominated dextral transpressional event (D2). D1 occurred under prograde metamorphic conditions. D2 started before the P–T metamorphic climax and continued during and after the metamorphic peak, and was associated with igneous activity. P–T estimates show that rocks from the biotite‐in isograd reached peak‐metamorphic conditions of 2.5 kbar, 400 °C; rocks in the low‐grade part of the andalusite‐cordierite zone reached peak metamorphic conditions of 2.8 kbar, 535 °C; rocks located at the transition between andalusite‐cordierite zone and the sillimanite zone reached peak metamorphic conditions of 3.3 kbar, 625 °C; rocks located at the beginning of the anatectic domain reached peak metamorphic conditions of 3.5 kbar, 655 °C; and rocks located at the bottom of the metamorphic series of the massif reached peak metamorphic conditions of 4.5 kbar, 730 °C. A clockwise P–T trajectory is inferred using a combination of reaction microstructures with appropriate P–T pseudosections. It is proposed that heat from asthenospheric material that rose to shallow mantle levels provided the ultimate heat source for the LPHT metamorphism and extensive lower crustal melting, generating various types of granitoid magmas. This thermal pulse occurred during an episode of transpression, and is interpreted to reflect breakoff of the underlying, downwarped mantle lithosphere during the final stages of oblique continental collision.  相似文献   

13.
During the 1:50000 regional geological survey in Jimo,east Shandong Province,Paleoproterozoic metamorphic supracrustal rocks and Neoproterozoic metamorphic plutonite were newly discovered. These rocks displayed inclusions which had occurred in the Mesozoic granite,and the main lithologies are schist,granulite,marble,and granitic gneiss. Geochemical analyses suggest that Neoproterozoic metamorphic plutonite are characterized by high-K,metaluminous to weakly peraluminous. They are enriched in LILE and depleted in HFSE,with moderately enrichment of LREE,weak fractionation of LREE from HREE and negative Eu anomalies. The surface age of plutonic rocks in the survey area is 770.2±2.4 Ma,representing the age of magma crystallization,which is agreement with the the Neoproterozoic magmatic event after Rodinia supercontinent in the northern margin of Southern China continental block. In addition,the age of sporadic distribution(298 Ma and 269 Ma) is mixed zircon age,representing the rocks experienced metamorphism in Indosinian period. According to the associated mineral assemblages,and the characteristic metamorphic minerals and temperature pressure conditions,four metamorphic facies were identified,including amphibolitic,epidote amphibolite,greenschist,and mid-high pressure greenschist. Analysis of tectonic setting suggests that granitic gneiss is formed in an extensional environment and was involved from the continental margin magmatic arc to intraplate environment. Jimo is distributed in the east of Zhuwu fault,and has the same Spatial distribution location with the Weihai uplift UHP metamorphic belt rocks. The metamorphic rocks in Jimo area have similar geochemical characteristics of elements,tectonic setting and retrograde metamorphism with that in the Sulu UHP metamorphic belt. Therefore,Zhuwu fault may be the boundary fault of Sulu UHP metamorphic belt.  相似文献   

14.
粤东北基底变质岩的组成和形成时代   总被引:23,自引:0,他引:23  
基底变质岩的成分和形成时代对揭示地壳演化至关重要.利用锆石U-Pb-Hf研究和全岩成分分析, 发现粤东北及邻区的许多基底变质岩是晚新元古代形成的沉积岩, 它们具有高的SiO2、Rb、Zr、Y和过渡金属元素含量以及相对低的Al2O3、CaO、Na2O、Sr、Nb含量.它们沉积于活动大陆边缘环境.盆地的形成与Rodinia超大陆裂解时的张性背景相关.粤东北龙川地区新元古代沉积岩主要由新太古代和中元古代碎屑物质组成, 并含少量中太古代和新元古代物质, 明显不同于闽西南和粤北地区新元占代沉积岩.粤东北这些变质岩没有受到加里东运动的强烈影响, 而是在印支期发生变质-重熔作用.   相似文献   

15.
Abstract The sedimentary and igneous rocks comprising the lower Proterozoic Olary Block, South Australia, were deformed and metamorphosed during the mid-Proterozoic 'Olarian'Orogeny. The area is divided into three zones on the basis of assemblages in metapelitic rocks, higher grade conditions occurring in the south-east. Mineral assemblages developed during peak metamorphism, which accompanied recumbent folding, include andalusite in Zones I and II and sillimanite in Zone III. Upright folding and overprinting of mineral assemblages occurred during further compression, the new mineral assemblages including kyanite in Zone II and kyanite and sillimanite in Zone III. The timing relationships of the aluminosilicate polymorphs, together with the peak metamorphic and overprinting parageneses, imply an anticlockwise P–T path for the 'Olarian'Orogeny, pressure increasing with cooling from the metamorphic peak.  相似文献   

16.
The Vorontsovskii terrane of the Eastern Sarmatian orogen underwent HT/LP metamorphism at temperatures of 430–750°C and pressures of 3–5 kbar. The TIMS monazite age of this metamorphism is 2067 ± 9 Ma and corresponds to the most probable age range (2050–2080 Ma) when large volumes of mafic and granitoid intrusions were emplaced. The time spans of the magmatic activity and metamorphic event are closely similar, which suggests that the melts could have served as sources of metamorphic heat. However, geological data on the relations between the metamorphic zones and magmatic bodies (the largest of the mafic, diorite, and granitoid intrusions are hosted in zones of low-temperature metamorphism) and the occurrence of relict metamorphic mineral assemblages and crystallization foliation in metapelite xenoliths in these intrusions suggest that the intrusions were emplaced after the metamorphism. The most probable reason for the HT/LP metamorphism was an increase in the heat flux in the course of viscous deformations and folding in the warm lithosphere of the young Paleoproterozoic Vorontsovskii terrane during collision processes.  相似文献   

17.
新疆库鲁克塔格地区南华系地层层序十分发育,该区南华系有3次冰川活动的沉积记录; 该区与Rodinia 超大陆裂解有关的构造岩浆事件发生时限为830~630 Ma; 区域内分布的且干布拉克蛭石矿和兴地Ⅱ号铜镍矿床与南华纪的Rodinia超大陆裂解有关; 库鲁克塔格地块在南华纪可能是华南板块的边缘块体,它与华南板块上大范围分布的同期火成岩为Rodinia超大陆裂解时地慢柱活动的产物。  相似文献   

18.
A Late Palaeozoic accretionary prism, formed at the southwestern margin of Gondwana from Early Carboniferous to Late Triassic, comprises the Coastal Accretionary Complex of central Chile (34–41°S). This fossil accretionary system is made up of two parallel contemporaneous metamorphic belts: a high‐pressure/low temperature belt (HP/LT – Western Series) and a low pressure/high temperature belt (LP/HT – Eastern Series). However, the timing of deformation events associated with the growth of the accretionary prism (successive frontal accretion and basal underplating) and the development of the LP/HT metamorphism in the shallower levels of the wedge are not continuously observed along this paired metamorphic belt, suggesting the former existence of local perturbations in the subduction regime. In the Pichilemu region, a well‐preserved segment of the paired metamorphic belt allows a first order correlation between the metamorphic and deformational evolution of the deep accreted slices of oceanic crust (blueschists and HP greenschists from the Western Series) and deformation at the shallower levels of the wedge (the Eastern Series). LP/HT mineral assemblages grew in response to arc‐related granitic intrusions, and porphyroblasts constitute time markers recording the evolution of deformation within shallow wedge material. Integrated P–T–t–d analysis reveals that the LP/HT belt is formed between the stages of frontal accretion (D1) and basal underplating of basic rocks (D2) forming blueschists at c. 300 Ma. A timeline evolution relating the formation of blueschists and the formation and deformation of LP/HT mineral assemblages at shallower levels, combined with published geochronological/thermobarometric/geochemistry data suggests a cause–effect relation between the basal accretion of basic rocks and the deformation of the shallower LP/HT belt. The S2 foliation that formed during basal accretion initiated near the base of the accretionary wedge at ~30 km depth at c. 308 Ma. Later, the S2 foliation developed at c. 300 Ma and ~15 km depth shortly after the emplacement of the granitoids and formation of the (LP/HT) peak metamorphic mineral assemblages. This shallow deformation may reflect a perturbation in the long‐term subduction dynamics (e.g. entrance of a seamount), which would in turn have contributed to the coeval exhumation of the nearby blueschists at c. 300 Ma. Finally, 40Ar–39Ar cooling ages reveal that foliated LP/HT rocks were already at ~350 °C at c. 292 Ma, indicating a rapid cooling for this metamorphic system.  相似文献   

19.
中国西部的柴达木陆块和欧龙布鲁克陆块的基底岩系虽然在地球化学上与扬子陆块具有亲缘性,但它们之间的组成和变质作用历史却显著不同。欧龙布鲁克陆块下部基底德令哈杂岩和达肯大坂岩群于~1.95Ga发生了角闪岩相-麻粒岩相区域变质作用并克拉通化,响应了全球Columbia超大陆汇聚事件;随后又与中元古代万洞沟岩群一道于~1.0Ga发生绿片岩相变质作用,共同响应了全球Rodinia超大陆汇聚事件;新元古代中晚期裂解后于中奥陶纪受原特提斯洋关闭影响而隆起。柴达木陆块基底主体由中元古代金水口岩群白沙河岩组(柴南缘)和沙柳河岩群乌龙滩岩组(柴北缘)组成,以S-型花岗岩的侵入活动和相应的变质作用响应了全球Rodinia超大陆汇聚事件。晚泛非期(520~480Ma)柴达木陆块与冈瓦纳主大陆俯冲碰撞,发生中压角闪岩相-麻粒岩相和高压超高压变质作用,经短暂拼贴后很快进入到原特提斯洋域,随460~420Ma的大洋关闭而发生变质叠加。区域对比表明,在基底组成和地壳演化史上,欧龙布鲁克陆块与阿拉善陆块和塔里木陆块(包括扬子陆块)相似,柴达木陆块则与北秦岭陆块以及祁连陆块相似,因而分属两个陆块群。塔—欧陆块群记录的~500Ma热事件与塔—欧和柴—秦陆块群共同记录的~450Ma热事件是两个性质不同的构造热事件。  相似文献   

20.
卢成忠  顾明光 《中国地质》2007,34(4):565-571
杭州南部新元古界青白口系上墅组火山岩,由基性岩和酸性岩组成,缺乏SiO2在57×10-2~68×10-2的中性及中酸性成分,构成一套双峰式火山岩组合。基性火山岩与酸性火山岩的稀土元素和微量元素特征存在明显差异,表明酸性火山岩并不是由基性岩浆分离结晶产生,而是分别由不同的源区熔融形成,基性火山岩起源于亏损程度较低的地幔或来源于亏损地幔的岩浆受到陆壳物质的混染,酸性火山岩主要由上地壳经不同程度的部分熔融而形成,其形成的构造环境为陆内至陆缘张裂环境。上墅组双峰式火山岩的形成,是华南Rodinia超大陆裂解事件的岩石学记录,揭示了华南Rodinia超大陆裂解始于青白口纪。  相似文献   

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