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1.
许伟  李才  江庆源  胡培远  吴浩  解超明 《地质通报》2014,33(11):1696-1701
望果山组是发育在龙木错—双湖—澜沧江板块缝合带内的一套早石炭世基性—酸性火山岩沉积地层,以火山角砾岩、火山凝灰岩、安山岩及流纹岩为主,夹少量玄武岩,具有多旋回式喷发的特点,被下石炭统日湾茶卡组整合覆盖,总体为一套近火山口相的海相火山岩沉积地层,表现出扬子型地层的亲缘性。在青山梁地区获得的望果山组安山岩的LA-ICP-MS锆石U-Pb年龄为350Ma±1Ma,结合下石炭统日湾茶卡组砂岩碎屑锆石的最年轻年龄峰值(362Ma),认为望果山组应形成于早石炭世杜内阶。望果山组的建立对龙木错—双湖构造地层区地层系统的完善,以及探讨龙木错—双湖—澜沧江洋的演化历史等具有重要的地质意义。  相似文献   

2.
范建军  李才  彭虎  毛文朋  许伟  王明 《地质通报》2014,33(11):1690-1695
天泉群岛出露于龙木错—双湖—澜沧江板块缝合带的中西段,也是目前该缝合带上所发现的第一套洋岛型岩石组合。通过野外踏勘、剖面测制等对天泉群岛进行了较为详细的研究,结果显示,天泉群岛由9个孤立、岩石组合不同的洋岛组成,其中独泉沟洋岛、屏风岭洋岛的洋岛组分齐全,见玄武岩、灰岩、砾岩、硅质岩等,其他洋岛的洋岛组分不全。天泉群岛与展金组复理石沉积为整合接触,表明其形成时代为晚石炭世—早二叠世。天泉群岛的厘定,说明龙木错—双湖—澜沧江大洋在晚石炭世—早二叠世仍具有成熟的洋壳。该项研究进一步丰富了龙木错—双湖—澜沧江板块缝合带的演化内容,为反演区域地质演化历史提供了依据。  相似文献   

3.
吴浩  李才  解超明  范建军  陈景文 《地质通报》2018,37(8):1428-1438
龙木错-双湖-澜沧江缝合带将羌塘板块划分为南、北2个次级板块,在缝合带两侧大规模发育晚三叠世岩浆作用,并伴随大量的高压超高压变质岩。在缝合带以南的日湾茶卡地区识别出一套安山岩,其中发育大量的暗色闪长质捕虏体,锆石U-Pb测年结果在安山岩中获得了364.7±1.9Ma和223.9±1.3Ma两组年龄信息,锆石原位Hf同位素测试结果εHf(t)分别为+7.22~+8.69和-5.94~-4.14。结合羌塘中部已有的研究成果,认为闪长质捕虏体形成于晚泥盆世洋壳俯冲背景,是地幔楔部分熔融底侵至地壳的产物;而安山岩形成于晚三叠世碰撞后伸展背景,是深部板片断离机制下深俯冲陆壳边缘一侧熔体混染晚泥盆世新生地壳的产物。安山岩中闪长质捕虏体的发现支持了俯冲带作为大陆生长的重要场所的观点。  相似文献   

4.
翟庆国  李才 《地质学报》2007,81(6):795-800
那底岗日组主要为一套中酸性火山岩、火山碎屑岩,夹砂砾岩的岩石组合,主要分布在藏北羌塘中部地区,龙木错-双湖缝合带的北侧。对那底岗日组底部安山岩进行锆石SHRIMP测年,时代为219±4Ma,确定那底岗日组火山岩早期喷发时间为晚三叠世而不是早侏罗世,与龙木错-双湖一线的低温高压变质带的时代基本一致。结合区域地质资料,那底岗日组火山岩可能形成于板块消减的火山弧构造环境,为龙木错-双湖缝合带晚三叠世向北俯冲消减的产物。  相似文献   

5.
在果干加年山的主脊及其以北识别出一套稳定的沉积岩系,角度不整合于蛇绿混杂岩之上,以细砂岩、硅质粉砂岩为主,其中夹有大小不等的古生代外来岩块,底砾岩成分因地而异并具有快速堆积的特点,底部夹有流纹岩。厚度大于1633m。流纹岩夹层获得的锆石SHRIMPU-Pb谐和年龄为214Ma±4Ma,时代为晚三叠世诺利期。在剖面测制和区域对比的基础上建立了上三叠统望湖岭组,代表龙木错-双湖缝合带闭合以后接受的最早的沉积盖层。望湖岭组之下的蛇绿混杂岩获得阳起石Ar-Ar年龄219.7Ma±6.5Ma。同位素定年确定构造转化事件发生在214~220Ma之间,为龙木错-双湖缝合带的闭合时间提供了确切的时间约束,望湖岭组是这一事件的沉积记录,是龙木错-双湖缝合带蛇绿混杂岩之上首次发现的沉积盖层。  相似文献   

6.
南岭东段龙头寨群南迳组的建立及其地质时代厘定   总被引:1,自引:0,他引:1  
丁辉  巫建华  劳玉军  刘帅 《地质通报》2017,36(9):1645-1655
南岭带东段晚奥陶世广泛发育一套浅变质岩系,称为龙头寨群。以南迳乔子山剖面和中寨剖面为层型剖面建立南迳组,并置于龙头寨群顶部。用SHRIMP法测得南迳盆地南迳组安山岩样品14个锆石U-Pb年龄数据,其~(206)Pb/~(238)U年龄变化范围为460~425Ma,年龄加权平均值为442.1±3.9Ma(MSWD=0.75);英安岩15个锆石~(206)Pb/~(238)U年龄变化范围为450~420Ma,年龄加权平均值为439.9±3.7Ma(MSWD=0.50)。结合司前河口破火山口碎斑熔岩的SHRIMP锆石U-Pb年龄(443.6±5.4Ma(MSWD=1.3)),可将南迳组的地质时代归于晚奥陶世末期—早志留世初期。龙头寨群南迳组的建立和地质时代的厘定,不仅为龙头寨群的地质时代归入晚奥陶世—早志留世初期提供了可靠的依据,而且为南岭带东段晚奥陶世—早志留世浅变质岩系属含有火山岩的优地槽型沉积提供了证据。  相似文献   

7.
对黑龙江省东部敦—密断裂以南的太平岭边缘隆起带上的黄松群杨木组石榴黑云片岩和阎王殿组黑云石英片岩进行了锆石LA-ICP-MS U-Pb测年,结果表明:杨木组石榴黑云片岩中锆石~(206)Pb/~(238)U加权平均峰值年龄分别为281.8 Ma、317.2 Ma、424.7 Ma、529.3 Ma;阎王殿组黑云石英片岩中锆石~(206)Pb/~(238)U加权平均峰值年龄分别为310.4 Ma、384.4 Ma、484.7 Ma;两个组所获得的最年轻的锆石~(206)Pb/~(238)U年龄分别为280±4 Ma和285±8 Ma。此外,前人对黄松群研究结果表明其变质作用时代为晚二叠世—早三叠世。因此,黄松群时代为二叠纪,海西期和加里东期岩浆岩构成了黄松群沉积物源的主体。  相似文献   

8.
青藏高原羌塘高压变质带的特征及其构造意义   总被引:2,自引:0,他引:2  
羌塘高压变质带分布于龙木错-双湖板块缝合带的南侧.西起红脊山.经片石山、蓝岭、角木查尕日、纳若.到双湖以东的才多茶卡,长约500km。向东已经延伸到巴青以北和昌都的吉塘地区,再向南进入滇西与澜沧江蓝片岩带共同构成一条断续延伸近2000km的高压变质带。羌塘高压变质带主要由蓝片岩和榴辉岩构成,蓝闪石片岩中蓝闪石和多硅白云母同位素定年结果为223-215Ma,榴辉岩的变质年龄为243-217Ma。估算蓝片岩的变质温度为410-460℃,变质压力为0.67-0.75GPa:榴辉岩相的变质作用温度不超过5000C,压力为1.56-2.35GPa。羌塘高压变质岩定年研究结果确定龙木错-双湖板块缝合带最终碰撞闭合发生在晚三叠世早期。羌塘高压变质带是冈瓦纳与欧亚大陆汇聚事件的重要记录。  相似文献   

9.
华北板块北缘与其北部地块之间古亚洲洋闭合的时限,涉及到大陆形成过程中的古洋陆格局及演化过程的重建。晚二叠世-早三叠世大兴安岭地区的构造演化过程是承上启下的转折时期,即是古亚洲洋向古太平洋构造体系转变的关键时期。本文通过对大兴安岭中段龙江地区上二叠统林西组和下三叠统老龙头组砂岩样品进行系统的碎屑锆石U-Pb同位素年代学研究,证实林西组和老龙头组存在280 Ma、370 Ma和500 Ma的三组峰值年龄,分别代表物源区存在早二叠世大石寨组火山岩、晚泥盆世-早石炭世岩浆弧以及北侧地块的统一基底,林西组和老龙头组碎屑锆石最小年龄分别为254Ma和247 Ma,结合野外实测剖面研究结果,认为上二叠统林西组和下三叠统老龙头组连续沉积,整合接触。1∶20万地质图显示内蒙古东部大兴安岭大部分地区缺失三叠系,笔者发现研究区晚侏罗世满克头鄂博组、白音高老组与下伏晚二叠世林西组呈角度不整合接触,结合大兴安岭中部零星出露的早三叠世地层、二连盆地参1井中也存在早三叠世地层,综合分析认为研究区应存在早三叠世地层,上二叠统与下三叠统应为连续沉积,现今多数地区早三叠世地层的缺失是由于后期构造抬升剥蚀造成的。根据上二叠统林西组和下三叠统老龙头组中碎屑锆石存在1800 Ma左右的典型华北板块基底年龄和两者的整合接触关系,结合内蒙古贺根山缝合带中花岗闪长岩244 Ma的年龄以及双井子岩体、哈拉图岩体、吉林中部大玉山岩体均为后碰撞的地球化学特征,认为华北板块北缘与其北侧地块群最终闭合时间应为P3-T1。  相似文献   

10.
黄长煌 《地质通报》2017,36(10):1722-1739
台湾玉里带位于台湾东部,其主体为变质砂岩、千枚状泥岩夹绿帘片岩、阳起片岩、浅变质枕状玄武岩等(原岩为海相火山-陆源沉积岩),其次为高压相的蓝闪片岩。火山岩属钙碱性系列,具低Ba、Nb、Sr和高Pb丰度,稀土元素总量普遍较低,具有轻稀土元素弱富集、Eu无亏损的稀土元素配分模式;(含火山碎屑)变质砂岩的LA-ICP-MS锆石U-Pb年龄表明,~(206)Pb/~(238)U表面年龄有6个峰值:最新年龄23.3Ma(古近纪)为火山碎屑锆石年龄,也是成岩年龄;中生代—古生代年龄有96.7Ma(晚白垩世)、124.2Ma及130.6Ma(早白垩世)、214.1~228Ma(晚三叠世)、283.7Ma和289Ma(早二叠世)等,锆石为次棱角状或次圆状,代表了源岩的岩浆年龄;~(207)Pb/~(206)Pb表面年龄出现古元古代峰值(1769~1852Ma)和新太古代峰值(2506Ma和2530Ma),均为磨圆的碎屑变质或岩浆锆石,代表了不明古元古代变质基底的年龄。玉里带变质岩原岩可能形成于古近纪(23.3Ma),与南海扩张的白云运动同时,属白云运动有关的火山作用的产物。  相似文献   

11.
Zircon U-Pb ages and geochemical analytical results are presented for the volcanic rocks of the Naozhigou, Ergulazi, and Sidaogou Formations in the Linjiang area, southeastern Jilin Province to constrain the nature of magma source and their tectonic settings. The Naozhigou Formation is composed mainly of andesite and rhyolite and its weighted mean 206Pb/238U age for 13 zircon grains is 222±1 Ma. The Ergulazi Formation consists of basaltic andesite, basaltic trachyandesite, and andesite, and six grains give a weighted mean 206Pb/238U age of 131±4 Ma. The Sidaogou Formation consists mainly of trachyandesite and rhyolite, and six zircon grains yield a weighted mean 206Pb/238U age of 113±4 Ma. The volcanic rocks have SiO2=60.24%–77.46%, MgO=0.36%–1.29% (Mg#=0.32–0.40) for the Naozhigou Formation, SiO2=51.60%–59.32%, MgO=3.70%–5.54% (Mg#=0.50–0.60) for the Ergulazi Formation, and SiO2=58.28%–76.32%, MgO=0.07%–1.20% (Mg#=0.14–0.46) for the Sidaogou Formation. The trace element analytical results indicate that these volcanic rocks are characterized by enrichment in light rare earth elements (LREEs) and large ion lithophile elements (LILEs), relative depletion in heavy rare earth elements (HREEs) and high field strength elements (HFSEs, Nb, Ta, and Ti), and negative Eu anomalies. Compared with the primitive mantle, the Mesozoic volcanic rocks in the Linjiang area have relatively high initial 87Sr/86Sr ratios (0.7053-0.7083) and low εNd(t) values (?8.38 to ?2.43), and display an EMII trend. The late Triassic magma for the Naozhigou Formation could be derived from partial melting of a newly accretional crust with the minor involvement of the North China Craton basement and formed under an extensional environment after the collision of the Yangtze Craton and the North China Craton. The Early Cretaceous volcanic rocks for the Ergulazi and Sidaogou Formations could be formed under the tectonic setting of an active continental margin related to the westward subduction of the Izanagi plate.  相似文献   

12.
The metamorphic belt in the Dongjiu area is located in the eastern segment of the Lhasa terrane in South Tibet. The Dongjiu metamorphic rocks are primarily composed of schist and gneiss, with minor amounts of marble, and the protoliths are sedimentary rocks with Precambrian and early Palaeozoic zircons probably deposited during the Palaeozoic or late Neoproterozoic. On the basis of petrology and phase equilibria modelling, this study shows that the Dongjiu metamorphic belt has experienced a kyanite-grade metamorphism, which is characterized by a decompressional vector with slight cooling from a peak of 9.6 kbar and 745°C to medium-pressure amphibolite-facies metamorphic overprinting at 5–6 kbar and 600–630°C. This P–T path was well recorded and recovered by garnet zoning profiles. Laser ablation inductively coupled plasma mass spectrometry in situ U–Pb analyses on metamorphic zircons and zircon rims yielded concordant 206Pb/238U ages of c. 194–192 Ma, suggesting that the Dongjiu metamorphic rocks were formed during the Early Jurassic. Therefore, the Dongjiu metamorphic belt, together with the western Nyainqentanglha, Basongco, and Zhala metamorphic belts, constitutes a nearly continuous tectonic unit with an E–W extension of at least 500 km between the northern and southern Lhasa terranes. The metamorphic ages of these belts, ranging from 230 to 192 Ma, show a younger trend from west to east, indicating that the central segment of the Lhasa terrane experienced an eastward asynchronous collisional orogeny during the Late Triassic to Early Jurassic.  相似文献   

13.
Laser Raman spectroscopy and cathodoluminescence (CL) images show that zircon from Sulu‐Dabie dolomitic marbles is characterized by distinctive domains of inherited (detrital), prograde, ultrahigh‐pressure (UHP) and retrograde metamorphic growths. The inherited zircon domains are dark‐luminescent in CL images and contain mineral inclusions of Qtz + Cal + Ap. The prograde metamorphic domains are white‐luminescent in CL images and preserve a quartz eclogite facies assemblage of Qtz + Dol + Grt + Omp + Phe + Ap, formed at 542–693 °C and 1.8–2.1 GPa. In contrast, the UHP metamorphic domains are grey‐luminescent in CL images, retain the UHP assemblage of Coe + Grt + Omp + Arg + Mgs + Ap, and record UHP conditions of 739–866 °C and >5.5 GPa. The outermost retrograde rims have dark‐luminescent CL images, and contain low‐P minerals such as calcite, related to the regional amphibolite facies retrogression. Laser ablation ICP‐MS trace‐element data show striking difference between the inherited cores of mostly magmatic origin and zircon domains grown in response to prograde, UHP and retrograde metamorphism. SHRIMP U‐Pb dating on these zoned zircon identified four discrete 206Pb/238U age groups: 1823–503 Ma is recorded in the inherited (detrital) zircon derived from various Proterozoic protoliths, the prograde domains record the quartz eclogite facies metamorphism at 254–239 Ma, the UHP growth domains occurred at 238–230 Ma, and the late amphibolite facies retrogressive overprint in the outermost rims was restricted to 218–206 Ma. Thus, Proterozoic continental materials of the Yangtze craton were subducted to 55–60 km depth during the Early Triassic and recrystallized at quartz eclogite facies conditions. Then these metamorphic rocks were further subducted to depths of 165–175 km in the Middle Triassic and experienced UHP metamorphism, and finally these UHP metamorphic rocks were exhumed to mid‐crustal levels (about 30 km) in the Late Triassic and overprinted by regional amphibolite facies metamorphism. The subduction and exhumation rates deduced from the SHRIMP data and metamorphic P–T conditions are 9–10 km Myr?1 and 6.4 km Myr?1, respectively, and these rapid subduction–exhumation rates may explain the obtained P–T–t path. Such a fast exhumation suggests that Sulu‐Dabie UHP rocks that returned towards crustal depths were driven by buoyant forces, caused as a consequence of slab breakoff at mantle depth.  相似文献   

14.
杨红  刘福来  杜利林  刘平华  王舫 《岩石学报》2012,28(9):2994-3014
大红山群是扬子地台西缘相对较老的地层单元,普遍经历了绿片岩相-低角闪岩相变质作用。其中部的曼岗河组、红山组已获得古元古代晚期~1.68Ga的成岩年龄,其底部的老厂河组却未有相关年龄的报道。大红山群的变质时代目前也无精确的年龄结果。本文以老厂河组厚层变质沉积岩中的薄层变质火山岩样品为研究对象,在岩相学研究的基础上,运用LA-ICP-MS方法对变质火山岩锆石进行原位U-Pb同位素定年及相关的微量、稀土元素测试,获得变质火山岩的原岩年龄和变质年龄:(1)老厂河组变质中酸性岩和变质基性岩中岩浆锆石微区的207Pb/206Pb加权平均年龄分别为1711±4Ma和1686±4Ma,限定老厂河组的形成年龄范围为1711~1686Ma;(2)变质基性岩(石榴斜长角闪岩)中变质锆石的206Pb/238U年龄为849±12Ma。本文结果表明,大红山群的形成时代可提早至1711±4Ma,又一次证明了扬子地台西缘古老结晶基底的存在;大红山群在~850Ma经历了一期新元古代变质事件,这期变质可能是与扬子地台西缘新元古代岩浆事件有关的区域变质事件。  相似文献   

15.
大兴安岭扎兰屯地区前寒武纪变质岩系年龄及其构造意义   总被引:2,自引:0,他引:2  
大兴安岭扎兰屯地区出露较多的前寒武纪变质岩系,包括先前认为是古元古代的兴华渡口群、新元古代的佳疙瘩组和新元古代—早寒武世的倭勒根岩群,但一直缺少精确的年代学依据。通过LA-ICP-MS锆石U-Pb同位素测年,对这3个变质岩群的原岩时代进行了厘定。结果显示,兴华渡口群中绿泥石白云母片岩的锆石~(206)Pb/~(238)U年龄加权平均值为520.1±4.3Ma(n=11,MSWD=1.6),佳疙瘩组中长英质糜棱岩锆石~(206)Pb/~(238)U年龄加权平均值为512.0±2.9Ma,倭勒根岩群中绿泥绢云片岩最年轻锆石~(206)Pb/~(238)U年龄加权平均值为491.7±11.9Ma,年龄最密集区加权平均值为516.7±4.5Ma。锆石图像特征及Th/U值均显示岩浆型锆石特征。综上所述,扎兰屯地区出露的兴华渡口群、佳疙瘩组和倭勒根群形成时代均为早古生代早期,而非先前认为的"前寒武纪"。同时,上述年龄谱系表明,该地区在480~500Ma和500~530Ma存在2期强烈的岩浆活动,应与东北地区晚泛非期岩浆-变质事件有关。  相似文献   

16.
羌塘中部高压变质带的退变质作用及其构造侵位   总被引:6,自引:1,他引:5  
董永胜  李才  施建荣  王生云 《岩石学报》2009,25(9):2303-2309
羌塘中部的高压变质带主要由榴辉岩、石榴石白云母片岩和蓝片岩等组成,它们在遭受高压变质作用之后折返,构造侵位于晚古生代展金组地层中,二者以韧性变形带为接触边界.本文以高压变质带中的榴辉岩和韧性变形带为研究对象,讨论了高压变质带折返过程中的退变质作用特征及折返时代.研究表明,榴辉岩在高峰期变质作用之后的折返过程中经历了由榴辉岩相→蓝片岩相→绿帘角闪岩相的退变质作用演化过程;在高压变质带构造侵位过程形成的韧性变形带中,白云母石英片岩的白云母40Ar-39Ar坪年龄为219±2Ma.高压变质带在219Ma左右构造侵位于展金组地层中,并于214Ma之前最终抬升出露地表.  相似文献   

17.
在滇西南澜沧江构造带东侧、扬子板块西缘中元古代团梁子岩组含有大量的平行于区域面理(S2)的构造热液石英脉,利用LA-ICP-MS对3件石英脉和1件绿片岩中的锆石进行~(206)U/~(238)Pb测年,获得3组明显的组合年龄:395~461Ma、240~260Ma和222~228Ma,大部分集中于222~228Ma。对比研究表明,区域上2期变质变形(M_1D_1、M_2D_2)与获得的锆石年龄有较好的对应性,早期的变质变形(M_1D_1)形成于早古生代(395~461Ma)原特提斯洋盆向东俯冲阶段;晚期的2期变质变形(M_(2a)D_(2a),M_(2b)D_(2b))发生于晚古生代—中生代早期(240~260Ma)古特提斯洋盆向东俯冲阶段和晚三叠世早期(222~228Ma)古特提斯洋盆闭合阶段。晚三叠世早期变质变形(M_(2b)D_(2b))构造热液发生在临沧花岗岩侵位和弧陆碰撞型忙怀组火山岩(229~235Ma)之后,早于小定西组/芒汇河组拉伸期火山岩(210~222Ma),是古特提斯洋与扬子陆块碰撞后的应力松弛阶段俯冲岩片快速折返的证据,同时也反映了古特提斯洋盆在晚三叠世早期之前已经关闭。  相似文献   

18.
扬子陆块西缘安益大湾山地区出露一套由变质玄武岩等组成的变质基性火山岩,前人将其归为中元古界,并作为寻找磁铁矿的主要对象。调查发现,安益大湾山变质基性火山岩与下伏浅变质岩系间发育一套稳定沉积的砾岩。应用LA-ICP-MS技术对其底砾岩之上最底部的变质玄武岩进行了锆石U-Pb年龄测定,获得了781.3±1.9Ma的岩浆锆石~(206)Pb/~(238)U年龄加权平均值和1008±14Ma、1142±15Ma、2714±10Ma的继承性岩浆锆石~(207)Pb/~(206)Pb年龄,指示该套变质基性火山岩形成于南华纪,并将其从浅变质岩系中解离出来,对比为澄江组。继承性锆石年龄数据指示,扬子地块西缘安益地区存在新太古界和中元古界物质记录。结合前人研究成果和近来获得的年龄数据,将滇中澄江组的时代界定于820~740Ma,并将南华系的底界界定于820Ma。大湾山中-大型磁铁矿产于扬子地块西缘澄江组的变质基性火山岩中,其主成矿期为南华纪,可能属于热液氧化物-铜-金矿床。  相似文献   

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