首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到16条相似文献,搜索用时 203 毫秒
1.
董汉文  许志琴  孟元库  易治宇 《岩石学报》2017,33(12):3741-3752
北喜马拉雅片麻岩穹窿带(NHGD)内保存了大陆碰撞后青藏高原中下地壳的构造变形、高级变质、陆壳深熔作用等重要信息,是研究喜马拉雅造山带的深部岩浆作用和构造变形之间的耦合关系、深部岩浆活动乃至青藏高原隆升历史等大陆动力学过程的关键部位。本文对藏南错那洞穹窿内淡色花岗岩进行锆石LA MC-ICP-MS U-Pb、白云母~(40)Ar/~(39)Ar年代学和岩石地球化学分析。锆石U-Pb定年和白云母~(40)Ar/~(39)Ar测年结果表明错那洞淡色花岗岩形成于19.5±0.3Ma~19.7±0.7Ma,冷却年龄为15Ma。岩石地球化学特征显示该花岗岩具有明显的Eu负异常,稀土配分模式和微量元素蛛网图与以Manaslu为代表的高喜马拉雅淡色花岗岩一致,而不同于具有加厚地壳的埃达克岩的特征的北喜马拉雅淡色花岗岩,其形成于与南北向拆离相关的伸展环境。  相似文献   

2.
民久玛淡色花岗岩大地构造属于喜马拉造山带中东部的喜马拉雅地块,呈不规则状侵位于侏罗系普普嘎组碳酸盐岩中,其主要岩性为(含电气石)白云母二长花岗岩。通过对白云母二长花岗岩进行LA-ICP-MS锆石U-Pb测年,年龄为:23±0.7Ma(MSWD=1.4),时代为中新世。属于新喜马拉雅阶段(Neo-Himalayan:26~13Ma),与藏南拆离系(STDS)活动时代相吻合。反映了STDS的活动促使了高喜马拉雅地区的快速隆起,产生淡色花岗岩,使喜马拉雅地区从挤压背景过渡到了伸展垮塌背景这一造山过程。为喜马拉雅淡色花岗岩的研究提供了新的年代证据。  相似文献   

3.
错那洞穹窿位于北喜马拉雅片麻岩穹窿带(NHGD)的东段,是近年来新发现的穹窿构造。穹窿由内向外依次由核部、滑脱系和盖层三部分组成,错那洞铍钨锡稀有金属矿化主要赋存在穹窿滑脱系的矽卡岩和矽卡岩化大理岩中,矿体产在含石榴子石十字石云母片岩中,与强烈变形的淡色花岗岩或伟晶岩密切相关,部分矽卡岩矿物呈定向排列,具强烈的剪切特征;淡色花岗岩与矽卡岩的接触关系部分呈渐变接触,部分呈突变关系,表明矽卡岩与该期岩浆关系密切,矽卡岩与淡色花岗岩属于同构造的产物。本次研究获得错那洞穹窿滑脱系含石榴子石十字石云母片岩中黑云母Ar-Ar坪年龄为(16.6±0.3)Ma,反等时线年龄为(16.7±0.3)Ma,该年龄代表第二期由南向北伸展构造变形时间,即藏南拆离系(STDS)在错那洞穹窿的活动时间;含白云母的矽卡岩化大理岩中白云母Ar-Ar坪年龄为(16.9±0.2)Ma,与含石榴子石十字石云母片岩中黑云母Ar-Ar年龄一致,代表同构造矽卡岩的形成时间,也是错那洞铍钨锡稀有金属矿床的成矿时间。错那洞铍钨锡稀有金属矿床形成于由藏南拆离系强烈活动引起的伸展减薄构造背景,减压熔融形成的岩浆沿着构造通道上涌侵位,并与围岩交代反应形成同构造矽卡岩及其中的富铍钨锡矽卡岩型矿体。  相似文献   

4.
民久玛淡色花岗岩大地构造属于喜马拉造山带中东部的喜马拉雅地块,呈不规则状侵位于侏罗系普普嘎组碳酸盐岩中,其主要岩性为(含电气石)白云母二长花岗岩。通过对白云母二长花岗岩进行LA-ICP-MS锆石U-Pb测年,年龄为:23±0.7Ma(MSWD=1.4),时代为中新世。属于新喜马拉雅阶段(Neo-Himalayan:26~13Ma),与藏南拆离系(STDS)活动时代相吻合。反映了STDS的活动促使了高喜马拉雅地区的快速隆起,产生淡色花岗岩,使喜马拉雅地区从挤压背景过渡到了伸展垮塌背景这一造山过程。为喜马拉雅淡色花岗岩的研究提供了新的年代证据。  相似文献   

5.
本文采集藏南冲巴淡色花岗岩样品并进行系统的锆石LA-ICP-MS U-Pb和白云母~(40)Ar-~(39)Ar年代学分析。锆石U-Pb定年结果显示,冲巴淡色花岗岩年龄为12.4±0.4 Ma,处于前人划分的新喜马拉雅阶段与后喜马拉雅阶段分界处。结合淡色花岗岩沿藏南拆离系分布的特征,可将其归入新喜马拉雅阶段。冲巴淡色花岗岩为同构造侵位花岗岩,是藏南拆离系活动导致的构造减压熔融的产物,12.4±0.4 Ma的锆石U-Pb年龄代表了研究区藏南拆离系的活动时代。然而,这一活动时代明显滞后于喜马拉雅中西部地区,呈现自西向东启动时代和停止活动时代逐渐变晚的趋势;白云母~(40)Ar-~(39)Ar年代学分析表明,冲巴淡色花岗岩冷却年龄分别为9.11±0.25 Ma和9.62±0.10 Ma。锆石U-Pb和白云母~(40)Ar-~(39)Ar年代学计算表明,冲巴淡色花岗岩体从12.4 Ma到9.11 Ma发生了快速冷却剥露,冷却速率高达137~162℃/Ma,这一结果与前人通过变质P-T-t研究得到的快速折返的结论相吻合。综合前人研究成果,认为12.4~9.11 Ma的快速冷却事件可能与研究区藏南拆离系的大规模伸展拆离导致的构造剥露有关。  相似文献   

6.
特提斯喜马拉雅是继华南和新疆阿尔泰之后又一条新发现的大型稀有金属成矿带,其成矿时代受到广泛的关注。本文以代表性矿床错那洞铍稀有多金属矿床为研究对象,挑选出矽卡岩型矿化体中的热液白云母,利用Ar-Ar同位素定年的方式测定热液活动时间,以此限制成矿时代。结果显示错那洞穹窿矽卡岩型矿体中白云母Ar-Ar同位素坪年龄为14.21±0.22Ma,对应的~(40)Ar/~(36)Ar-~(39)Ar/~(36)Ar的等时线年龄为14.21±0.27Ma,与错那洞穹窿中具有高分异特征的白云母花岗岩浆侵位时间(~14Ma)一致,表明错那洞矽卡岩型铍稀有多金属矿床的成矿年龄为~14Ma,而与穹窿内高分异白云母花岗岩一致的年龄暗示了该高分异花岗岩为该期矽卡岩型稀有金属矿化的成矿母岩浆。  相似文献   

7.
藏南伸展拆离系聂拉木一带构造抬升的热年代学证据   总被引:2,自引:0,他引:2  
在野外构造填图的基础上 ,采集藏南伸展拆离系 (STDS)断层面及断层下盘的糜棱岩及花岗岩进行了初步研究 ,获得糜棱岩中白云母单矿物Ar Ar坪年龄为 15 .6Ma ,磷灰石裂变径迹测年得到 9~ 11.7Ma ,MDD模式处理获得 12Ma以来的抬升速率为 5 3℃ Ma。热年代测试结果表明 ,喜马拉雅山体北侧地区在伸展作用形成后发生了快速的抬升。  相似文献   

8.
造山带穹隆构造记录了陆-陆碰撞及其碰撞后地壳和地表演化过程的信息,是探讨造山带构造演化的重要窗口。康巴穹隆位于藏南特提斯喜马拉雅地区,是北喜马拉雅片麻岩穹隆带(NHGD)的组成部分,其剥露过程及其动力学机制仍然存在争议。通过对康巴穹隆核部花岗片麻岩开展锆石U-Pb、锆石裂变径迹(ZFT)年代学研究和三维数值模拟,获得了康巴穹隆的锆石U-Pb年龄为497.89±1.2Ma,锆石FT年龄(17~11 Ma)明显小于锆石U-Pb结晶年龄,说明这些径迹年龄是岩体冷却抬升形成的。Pecube三维数值模拟对穹窿核部样品的ZFT数据进行反演显示,康巴穹隆核部岩体自中新世以来经历15.9~11.4Ma和ca. 4.2Ma两次快速剥露,结合区域构造演化,提出第一次快速剥露与藏南拆离系(STDS)的活动有关,第二次快速剥露是对气候变化过程的响应。  相似文献   

9.
胶北隆起晚中生代构造-岩浆演化历史   总被引:6,自引:0,他引:6  
张田 《地质学报》2008,82(9):1210-1228
基于野外观察、断层滑动矢量分析和古构造应力场反演,研究了胶北隆起区两条主要断裂带(招远-平度断裂带和牟平-即墨断裂带北段)的活动历史及古构造应力状态,结合火成岩40Ar-39Ar、SHRIMP和LA-ICPMS锆石U-Pb测年结果,确定了该区晚中生代主要构造-热事件和构造应力体制的转换时限。结果表明,晚侏罗世-早白垩世时期胶北隆起区经历了从地壳挤压为主到引张伸展为主的运动学转变历史。晚侏罗世构造幕式挤压导致地壳增厚和玲珑型花岗岩体侵位,岩浆活动年龄指示了两期构造-热事件:早期集中在160~150 Ma,晚期在147~142 Ma。胶北隆起区NNE向断裂带发生低角度逆冲和左旋走滑活动,挤压应力方向为NW-SE。早白垩世中晚期,伸展构造应力体制占据主导地位,引张应力方向为NW-SE至NWW-SEE。这期伸展作用不仅导致了胶莱断陷盆地的形成,同时诱发了I-A型花岗岩侵位(年龄集中在135~106 Ma)和中酸性火山喷发。在早白垩世莱阳群下部地层中发现的玄武质火山岩夹层,进行了角闪石40Ar-39Ar和SHRIMP锆石U-Pb测年,结果指示研究区早白垩世伸展构造应力体制起始于130 Ma。最后讨论了晚中生代从挤压到伸展构造应力体制转变的区域动力学背景。  相似文献   

10.
大兴安岭地区德尔布干断裂带北段构造年代学研究   总被引:16,自引:4,他引:12  
德尔布干断裂带是大兴安岭隆起西侧NE向的重要断裂带,处在海拉尔-拉布达林-根河盆地西缘,是著名德尔布干成矿区东南边界断裂带.为了确定德尔布干断裂带运动性质、活动时间,深入探讨该断裂带与中生代海拉尔-拉布达林-根河盆地及大兴安岭盆山格局、认识德尔布干断裂带多金属矿床成因等问题,本文应用锆石SHRIMP和云母40Ar/39Ar定年技术,分别对断裂带内的细粒黑云母花岗岩侵入体、韧性变形的花岗闪长质片麻岩、白云母石英片岩,进行了同位素年代学研究.其中花岗闪长质片麻岩岩浆型锆石SHRIMP谐和年龄300.6±9.3Ma,为花岗闪长质片麻岩海西期的侵位年龄;而花岗闪长质片麻岩中黑云母40Ar/39Ar坪年龄是130.9±1.4Ma,白云母石英片岩的白云母40Ar/39Ar坪年龄是115.6±1.6Ma,代表早白垩世伸展构造变形年龄;细粒黑云母花岗岩侵入体岩浆型锆石SHRIMP谐和年龄130.1±1.4Ma,为同伸展构造变形侵位的岩浆事件.上述地质年代说明德尔布干断裂带是早白垩世(110~130Ma)该区最年轻的重大伸展构造变形产物.控制NE向大兴安岭隆起和中生代海拉尔-拉布达林-根河等火山沉积盆地的发育格局、以及中生代以来的地壳演化与成矿类型.  相似文献   

11.
The Xainza-Dinggye rift is one of several north-south trending rifts in central and southern Tibet created by Cenozoic east-west extension during Indo-Asian convergence. The southern part of the rift cuts through the Tethyan and High Himalayas. In the Tethyan Himalaya, this rift consists of an early domal structure and a late normal fault developed during the progressive deformation. The dome is cored by leucogranitic plutons that intruded during extension. Muscovite 40Ar/39Ar ages of the mylonitic leucogranite indicate that extension in the Tethyan Himalaya began at 8 Ma or before. In the High Himalaya, the rift is controlled by a normal fault dipping to the southeast. This fault has a structural constitution similar to a detachment fault. Its lower block is made up of mylonitic High Himalayan gneiss, intruded by early mylonitic leucogranite sills and late less-deformed biotite-bearing leucogranite dikes. Mica 40Ar/39Ar ages of these leucogranites and the retrograded metamorphosed gneiss of the lower block range from 13 to 10 Ma. In the study area, the south Tibetan detachment system (STDS) is a ductile shear zone composed of mylonitic leucogranite that is intruded by less-deformed leucogranite and overlain by low grade metamorphic rocks. Mica 40Ar/39Ar ages of leucogranites in the shear zone and schist from the detachment hanging wall indicate a protracted deformation history of the STDS from 19 to 13 Ma. The Xainza-Dinggye rift is younger than the STDS because it offsets the STDS; this north-south trending rift belongs to a different tectonic system from the east-west striking STDS, and may be caused by geological process related to India–Asia convergence. This temporal and spatial relationship of the STDS to the rift may indicate an important change in tectonic regime at 13 Ma in the building of the plateau.  相似文献   

12.
First comprehensive investigations of the Cuonadong leucogranite exposed in North Himalayan gneiss dome of southern Tibet are presented in this study. The SIMS U–Pb ages of oscillatory zircon rims scatter in a wide range from 34.1 to 16.0 Ma, and the Cuonadong leucogranite probably emplaced at 16.0 Ma. High-precision 40Ar/39Ar dating on a muscovite sample yields an essentially flat age spectrum with consistent plateau and isochron ages, indicating that the Cuonadong leucogranite cooled below 450 °C at 14 Ma. Based on the youngest zircon U–Pb age and muscovite 40Ar/39Ar age, the Cuonadong leucogranite experienced rapid cooling with a rate of 119 °C/Myr from 16 to 14 Ma. The geochronological data of this undeformed leucogranite also suggest that the ductile extension of the South Tibetan Detachment System in the eastern Himalaya ceased by ca. 14 Ma. Furthermore, the initial Sr–Nd isotopic compositions and Nd model ages demonstrate that the leucogranite was derived from metapelitic source within the Greater Himalayan Crystalline Complex. The distinct Ba depletion with high Rb/Sr ratios and negative Eu anomalies make it clear that the leucogranite melts were generated by breakdown of muscovite under fluid-absent conditions.  相似文献   

13.
《Geodinamica Acta》2013,26(5):267-282
The interaction of distinct geologic processes involved during late orogenic extensional exhumation history of the metamorphic units in the Eastern Rhodope is refined by new and reviewing 40Ar/39Ar geochronological and structural data. Minerals with different closure temperatures from metamorphic rocks investigated in this study are combined with those from magmatic and ore-forming hydrothermal rocks in two late stage metamorphic domes – the Kesebir-Kardamos and the Biala reka-Kehros domes. The 38-37 Ma muscovite and biotite cooling ages below 350°-300°C characterize basement metamorphic rocks that typified core of the Kesebir-Kardamos dome, constraining their exhumation at shallow crustal levels in the footwall of detachment. These ages are interpreted as reflecting last stage of ductile activity on shear zone below detachment, which continued to operate under low-temperature conditions within the semi-ductile to brittle field. They are close to and overlap with existing cooling ages in southern Bulgaria and northern Greece, indicating supportively that the basement rocks regionally cooled between 42-36 Ma below temperatures 350°-300°C. The spatial distribution of ages shows a southward gradual increase up structural section, suggesting an asymmetrical mode of extension, cooling and exhumation from south to the north at latitude of the Kesebir-Kardamos dome. The slightly younger 36.5-35 Ma crystallization ages of adularia in altered rocks from the ore deposits in the immediate hanging-wall of detachments are attributed to brittle deformation on high-angle normal faults, which further contributed to upper crustal extension, and thus constraining the time when alteration took place and deformation continued at brittle crustal levels. Silicic dykes yielded ages between 32-33 Ma, typically coinciding with the main phase of Palaeogene magmatic activity, which started in Eastern Rhodope region in Late Eocene (Priabonian) times. The 40Ar/39Ar plateau ages from the above distinct rock types span time interval lasting approximately ca. 6 Ma. Consequently, our geochronologic results consistently indicate that extensional tectonics and related exhumation and doming, epithermal mineralizations and volcanic activity are closely spaced in time. These new 40Ar/39Ar age results further contribute to temporal constraints on the timing of tectonic, relative to ore-forming and magmatic events, suggesting in addition that all above mentioned processes interfered during the late orogenic extensional collapse in the Eastern Rhodope region.  相似文献   

14.
特提斯喜马拉雅带以广泛发育近E-W向和近S-N向断裂以及北喜马拉雅片麻岩穹隆带为典型特征.藏南错那洞穹隆位于特提斯喜马拉带的东部,是近两年新发现并厘定的穹隆构造.该穹隆从外向内主要由3部分组成:上部单元(盖层)、中部单元(滑脱系)和下部单元(核部),其中滑脱系主要由一套强烈变形的片岩、伟晶岩、花岗岩、大理岩和矽卡岩组成,片岩包括含石榴石云母片岩、含石榴石十字石云母片岩、含蓝晶石石榴石十字石片岩、含矽线石蓝晶石石榴石片岩和云母石英片岩.野外构造变形特征表明滑脱系为一条强烈变形的韧性剪切带,发育大量的鞘褶皱、"Z"形揉褶皱和眼球状构造、石榴石的旋转碎斑、S-C组构和压力影构造.错那洞穹隆记录了4期构造变形:第1期由北向南的逆冲挤压构造、第2期由南向北的韧性伸展构造、第3期近E-W向的韧性伸展构造变形和第4期成穹后的脆性垮塌构造.通过对滑脱系中含石榴石云母片岩的白云母进行Ar-Ar同位素测年,获得坪年龄为14.0±0.2 Ma,等时线年龄为13.7±0.5 Ma,二者基本一致,同时微观构造特征显示石英呈亚颗粒旋转重结晶(SGR),其韧性变形的温度为450~550℃,该变形温度高于白云母的封闭温度.因此,白云母Ar-Ar坪年龄(14.0±0.2 Ma)代表错那洞穹隆近E-W向伸展变形的时间,也即近S-N向桑日-错那裂谷的活动时间.结合构造变形和年代学特征,认为错那洞穹隆是STDS向北伸展拆离的主导机制叠加后期近E-W向韧性伸展活动的结果.   相似文献   

15.
Zircon and monazite U-(Th)-Pb ion microprobe analysis were performed on the Mazeno Pass pluton and the Jutial pluton, two leucogranite bodies within the Nanga Parbat-Haramosh massif (NPHM), Pakistan Himalaya. Zircon rim ages and monazite ages indicate the Mazeno Pass pluton in southwest NPHM intruded at 1.40 ± 0.05 Ma; the Jutial pluton, to the north, similarly yields concordant zircon and monazite ages suggesting crystallization at 9.45 ± 0.06 Ma. The Jutial pluton was subsequently intruded by leucogranite dikes at 5.3 Ma, as revealed by monazite ages. Concordancy of U-Pb and Th-Pb accessory mineral ages demonstrates the robustness of the technique on young rocks. Both plutons, some of the youngest in the Himalaya, have a general association with nearby shear zones that we interpret to have played an integral role in granite evolution and emplacement setting (`deformation enhanced ascent'). Together with new field observations, these results provide an insight on the spatial and temporal relationship between plutonism and deformation relating to the development of the massif. Received: 31 August 1998 / Accepted: 10 March 1999  相似文献   

16.
LA-ICP-MS U-Pb analyses performed on zircon grains from the Lizio granite yielded an emplacement age of 316 ± 6 Ma. Typical S-C structures show that the Lizio granite was emplaced contemporaneously with dextral shearing along the northern branch of the South Armorican Shear Zone and that it was therefore active at that time. 40Ar/39Ar analyses performed on muscovite grains yielded plateau dates ranging between 311.5 and 308.2 Ma. Muscovite chemistry is typical of primary magmatic muscovite, which precludes a late fluids-induced resetting of the K-Ar isotopic system. 40Ar/39Ar dates thus likely correspond to the cooling ages below the argon closure temperature. Considering the uncertainties on the measured ages, we can propose that either the Lizio granite cooled down quickly in less than a million of years or that it remained in a hot environment for several millions of years after its emplacement. This latter scenario could have been sustained by shear heating during dextral shearing along the northern branch of the South Armorican Shear Zone.  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