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1.
The Jiangaidarina granitic mass(JM) is an important part of the magmatic belt in Longmu CoShuanghu Suture Zone(LSSZ) in the central Tibetan Plateau. An integrated research involving wholerock geochemistry, zircon LA-ICP-MS U-Pb ages and Hf isotopic compositions was carried out to define the timing, genesis and tectonic setting of the JM. Zircon LA-ICP-MS U-Pb ages have been obtained ranging from 210 to 215 Ma, rather than the Early Jurassic as previously thought. Fifteen granite samples contain hornblendes and show a negative correlation between P_2 O_5 and SiO_2, indicating that the JM is an I-type granite. All the granites are enriched in LREE relative to HREE, with negative Eu anomalies(Eu/Eu*=0.56-0.81), and have similar trace elements patterns, with depletion of Ba, Nb, Sr and P. These suggest that the JM was fractionated, and this is also proved by the characteristic of negative correlations between oxide elements(TiO_2, MgO, FeOt, MnO, CaO) and SiO_2. Almost all ε_(Hf)(t) values of the granites are between-10.3 and-5.8, implying that the JM has a crustal source intimately related with the South Qiangtang Block(SQB), except for one(+10.2), showing a minor contribution from mantle source.Moreover, relatively low Na_2 O/K_2 O ratios(0.42-0.93) and high A/CNK values(0.91-1.50) reflect that the JM was predominately derived from the medium-high potassium basaltic crust, interacted with greywacke. Our new geochemical data and geochronological results imply that the Late Triassic magmas were generated in a post-collisional tectonic setting, probably caused by slab break-off of the Longmu Co-Shuanghu Tethyan Ocean(LSTO). This mechanism caused the asthenosphere upwelling, formed extension setting, offered an enormous amount of heat, and provided favorable conditions for emplacement of voluminous felsic magmas. Furthermore, the LSTO could be completely closed during the Middle Triassic, succeed by continental collision and later the slab broke off in the Late Triassic.  相似文献   
2.
次对藏北双湖山字形山玄武岩进行了同位素年代学和岩石地球化学研究。锆石LA ICP MS U Pb测年结果表明,玄武岩形成时代为中三叠世Ladinian期((2358±27) Ma)。主量元素SiO2质量分数为4284%~5222%,TiO2为161%~269%,FeOT/MgO为152~194,属亚碱性系列拉斑玄武岩。稀土元素∑REE含量为11409×10-6~20847×10-6,(La/Yb)N为490~650,相对富集LREE。微量元素配分模式曲线与OIB型玄武岩相似。岩石成因研究表明岩浆在演化过程中主要受分离结晶作用控制,La/Nb、La/Ta、Zr/Ba等不相容元素比值与Ti含量表明,山字形山玄武岩可能是软流圈地幔与岩石圈地幔相互作用的产物。玄武岩较高的Zr含量与Zr/Y比值显示其处于板内伸展构造背景。结合区域地质资料推测,中三叠世玄武质岩浆是南、北羌塘地块碰撞造山过程中板片断离、软流圈物质上涌熔融的产物,而晚三叠世偏铝质-过铝质岩浆岩及高压变质岩折返剥露为造山带垮塌引起的伸展作用的结果。  相似文献   
3.
海南岛西南部砂质岸滩沉积特征   总被引:1,自引:0,他引:1  
对海南岛西南部龙沐湾70个海滩表层沉积样品与12个近岸水下沉积样品进行粒度分析,结果表明,龙沐湾海滩沉积物以砂为主,平均粒径大都在0~2φ,为粗、中砂.近岸海底沉积物总体分布较细,平均粒径大都在2~6φ,为砂-粉砂-黏土的组合.沉积物粒径呈现由岸向海逐渐变细以及沿岸线南粗北细的趋势,反映了波浪的横向分选作用,以及南来沿...  相似文献   
4.
To better understand the lithosphere mantle collision tectonics between the India plate and Asia plate, we determine three dimensional P wave velocity structure beneath western Tibet using 27,439 arrival times from 2,174 teleseismic events recorded by 182 stations of Hi-CLIMB Project and 16 stations in the north of Hi-CLMB. Our tomographic images show the velocity structure significantly difference beneath northern and southern Qiangtang, which can further prove that the Longmu Co-Shuanghu ophiolitic belt is a significant tectonic boundary fault zone. There are two prominent high velocity anomalies and two prominent low velocity anomalies in our images. One obvious high velocity anomalies subduct beneath the Tibet at the long distance near 34°N, whereas it is broke off by an obvious low velocity anomaly under the IYS. We interpret them as northward subducting Indian lithosphere mantle and the low velocity anomanly under IYS likely reflects mantle material upwelling triggered by tearing of the northward subduction Indian lithosphere. The other prominent high velocity anomaly was imaged at a depth from 50 km to 200 km horizontal and up to the northern Qiangtang with its southern edge extending to about 34°N through Hoh Xil block. We infer it as the southward subducting Asia lithosphere mantle. The other widely low velocity anomaly beneath the Qiangtang block lies in the gap between the frontier of India plate and Asia plate, where is the channel of mantle material upwelling.  相似文献   
5.
The high-pressure metamorphic belt (HPMB) of eciogite-blueschist in Central Qiangtang (羌塘) lies in the Longmu Co (龙木错)-Shuanghu (双湖) suture zone. To the west, the HPMB extends 500 km from Hongjishan (红脊山) to Caiduochaka (才多茶卡), east of Shuanghu; to the east it extends to Baqing (巴青) and Jitang (吉塘) in Qamdo (昌都), and then bends southward to Yunnan (云南)Province. Including the Lancangjiang (澜沧江) blueschist belt, the entire HPMB is about 2 000 km long. In Central Qiangtang, the belt is mainly composed of blueschist and eclogite, whereas in West Yunnan it contains only blueschist. The Baqing-Jitang segment is dominated by garnet phengite schist. 40Ar-39Ar dating of giaucophane and phengite from the blueschists yielded plateau ages ranging from 223 to 215 Ma, whereas SHRIMP U-Pb dating of zircon from the eclogites gives metamorphic ages of 243-217 Ma. The calculated metamorphic conditions for the blueschists are 410-460℃ and 0.67-0.75 GPa, and for the eclogites, <500 ℃ and 1.56-2.35 GPa. The metamorphic ages suggest that the Longmu Co-Shuanghu suture closed in the Late Triassic. The region south of the Longmu Co-Shuanghu-Laneang suture consists of the pan-African basement overlain by Gondwana sedimentary and meta-sedimentary rocks, whereas the region north of the suture is dominated by the Jinning (晋宁) basement and Yangtze sedimentary and metasedimentary rocks. The Qiangtang HPMB marks the closure of the paleo-Tethys Ocean.  相似文献   
6.
刘波  彭智敏  耿全如  张璋  关俊雷 《地质通报》2015,34(203):283-291
龙木错—双湖缝合带内呈东西向断续分布大小不等的花岗岩,1∶25 万区域地质调查研究结果显示,该花岗岩时代为早—晚侏罗世。本文对双湖纳若地区原为早侏罗世的花岗闪长岩2 件样品进行了LA-ICP-MS 锆石U-Pb 测年,获得年龄为215.1±1.8Ma、217.0±1.5Ma,属晚三叠世。岩石地球化学研究表明,花岗岩闪长岩属偏铝质—过铝质高钾钙碱性花岗,轻、重稀土元素分馏较明显,高场强元素Nb、Ta、Ti 强烈的亏损。形成于龙木错—双湖古特提斯洋闭合后陆—陆碰撞晚期的后碰撞阶段的伸展环境,以龙木错—双湖缝合带所代表的特提斯洋岩石圈向北俯冲,伴随之后的俯冲板片的断离,软流圈物质上涌,压力减低,温度升高,促使地壳物质发生了部分熔融,花岗闪长岩就是地壳物质部分熔融的产物。  相似文献   
7.
8.
Three Late Triassic plate sutures, namely, the Longmu Co-Shuanghu suture, Kunlun-Qinling suture and Xijinwulan-Jinshajiang suture, have been recognized on the Qinghai-Tibet plateau. Data show that the last two sutures have no essential elements of the northern boundary of Gondwana. This paper briefly introduces the facts of the existence of the paleo-Tethys Ocean in the Longmu Co-Shuanghu suture, i.e., the ages and natures of Early Paleozoic ophiolites, Permian ophiolites, Devonian-Permian radiolarian cherts, accretionary relics of different natures, two types of tectonic mélange zones and ophiolites. The starting time of paleo-Tethys Ocean in Qiangtang may be traced back to the Early Paleozoic and the records about the oceanic basin evolution lasted from the Late Devonian to Late Triassic. It is thought that the Longmu Co-Shuanghu suture was the site for the extinction of the paleo-Tethys Ocean on Qinghai-Tibet plateau and an important window for the reconstruction and inversion of the early-stage formation and evolution of the Qinghai-Tibet plateau, as well as the northern boundary of Gondwana wich the geoscience community has paid attention to in the past few decades. Translated from Geological Bulletin of China, 2007, 26(1): 13–21 [译自: 地质通报]  相似文献   
9.
西藏羌塘中部独泉沟地区发现青藏高原首例富锰矿   总被引:1,自引:0,他引:1  
罗安波  李才  彭虎  王明 《地质通报》2017,36(6):956-963
独泉沟锰矿是青藏高原发现的首例富锰矿,成矿元素分析结果表明,矿石中Mn平均品位为41.95%,达到了Ⅰ级富锰矿石的品位标准。该锰矿体主要呈层状、似层状产出于上二叠统—下三叠统天泉山组复理石碎屑岩内;矿体地表部分为残坡积,残坡积范围宽20~30m,长约50m。根据产状及结构构造的差异,将研究区锰矿体分为层状锰矿体和脉状锰矿体,二者的矿石矿物皆是硬锰矿,脉石矿物以石英为主。初步研究认为,独泉沟锰矿是海相热水沉积型锰矿。作为青藏高原地区发现的首例富锰矿,独泉沟锰矿的发现填补了区内锰矿找矿工作的空白,对其成因的研究能为今后的找矿工作提供重要的线索和依据,在区域找矿方面具有一定的指示意义。  相似文献   
10.
青藏高原龙木错-双湖板块缝合带从碰撞缝合何时转为羌塘盆地的沉积基底并接受沉积,一直受到地学界密切关注。羌塘中部的果干加年山主脊首次发现未变质的沉积岩以角度不整合覆盖于蛇绿混杂岩岩之上,上覆地层底部流纹岩夹层锆石SHRIMP U-Pb年龄为214±4Ma,为沉积盖层提供了可靠的年龄依据;不整合面之下强烈变形的阳起片岩(变质玄武岩)中阳起石Ar-Ar年龄为219.7±6.5Ma,与羌塘中部龙木错-双湖高压变质带获得的榴辉岩多硅白云母、蓝闪石等Ar-Ar变质年龄一致。Ar-Ar和SHRIMP定年结果表明该角度不整合的时限为220~214Ma之间。角度不整合上下岩石的定年研究,为龙木错-双湖缝合带的闭合提供了确切的时间约束:羌塘地区冈瓦纳与欧亚(扬子)板块在214Ma以前实现了闭合,古特提斯消亡,进入陆表海演化阶段。  相似文献   
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