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1.
冀北凤山地区侵位于前寒武纪岩石组合中的晚古生代的闪长岩-花岗质岩石,具有富Na,高Sr,低Y和重稀土元素等地球化学特征,Sr/Y在37.15~151.22之间变化,绝大多数样品均显示正Eu异常(一个样品例外),Eu·在0.92~1.53之间变化.LA-ICP-MS锆石U-Pb同位素测年和锆石Hf同位素分析表明闪长岩(JB6024)和二长花岗岩(样品JB6037-1)分别形成于315±2.8Ma和306.6±6Ma,即该区晚古生代存在两个岩浆作用幕.地球化学、全岩Sr-Nd同位素和锆石Hf同位素研究揭示凤山晚古生代闪长岩是EMI型富集岩石圈地幔部分熔融形成的岩浆与古老下地壳部分熔融形成的长英质岩浆混合作用结果,而花岗质岩石则是闪长质岩浆发生分离结晶作用的残余岩浆同化上部地壳岩石形成的.  相似文献   

2.
江西慈竹英云闪长岩体及其周围区域变质岩石的成因   总被引:6,自引:0,他引:6  
慈竹英云闪长岩体位于江西弋阳县南,岩体在平面上呈哑铃状,面积约45平方公里。利用钾氩法测定其同位素地质年龄为477×10~6 年,形成时代属加里东早期。岩体附近为一套区域变质岩石,按变质程度可划分出三个变质带:硅线石黑云母斜长片麻岩带,红柱石二云母片岩带,碳质板岩与石英岩带。英云闪长岩体主要位于硅线石黑云母斜长片麻岩中。从硅线石和红柱石的出现,本区区域变质岩石属于比较典型的高温低压变质带。岩体内部可见到围岩的包体,岩体产状与围岩基本一致,边部具形状奇特的塑性流动构造,岩体周围发育条带状混合岩、褶皱状混合岩和肠状混合岩。岩体分相不清楚,边部具片麻状构造,而内部为致密块状。英云闪长岩与硅线石黑云母斜长片麻岩在矿物组合方面非常相似.区别在于矿物的相对含量有所不同。二者的副矿物成分也相同,均属锆石磷灰石型。镜下观察,组成英云闪长岩的矿物,结晶有一定顺序,交代结构不明显。根据以上特征,初步认为英云闪长岩的形成是在区域变质作用的背景上,在变质程度最深部位由泥质、粉砂质岩石发生深熔作用的结果,开始阶段产生少量的花岗质熔体,当温度进一步升高,终于导致英云闪长质熔体形成,后者向上侵入,但位移的幅度不大。综合各方面证据得到的结论是:慈竹英云闪长岩体属于深熔作用产生的半原地型具流化特征的同褶皱岩体。  相似文献   

3.
西秦岭光头山花岗岩锆石U-Pb年代学及其地质意义   总被引:9,自引:0,他引:9  
光头山花岗岩体出露于勉略缝合带北侧, 主要由英云闪长岩和二长花岗岩组成。英云闪长岩表现为片麻状构造, 局部英云闪长岩糜棱岩化形成花岗质糜棱岩。而二长花岗岩在糜棱岩带形成之后侵位, 含有少量的石榴石,弱的片麻状到块状构造。LA-ICPMS 锆石原位U-Pb同位素定年结果表明, 光头山岩体为两个阶段侵位, 糜棱岩化英云闪长岩( 样品GT18-01)的侵位结晶年龄是221±6Ma, 而二长花岗岩(样品GT11-01)的结晶年龄是199±4Ma,代表了晚期二长花岗岩形成的时代。结合区域构造背景和前人研究的地球化学特征, 早期的英云闪长岩可能在勉略洋盆闭合前的岛弧发育阶段侵位, 代表了洋壳俯冲的弧岩浆活动的产物。然后扬子地台与秦岭微陆块拼合, 形成勉略缝合带。约199Ma秦岭主造山期同碰撞岩浆活动形成了晚期(石榴石)二长花岗岩。因此, 勉略洋盆闭合和勉略缝合带形成时期大约为221~199Ma 。  相似文献   

4.
西秦岭中生代花岗岩锆石U-Pb-Lu-Hf同位素特征及地质意义   总被引:1,自引:0,他引:1  
对西秦岭地区中川岩体、柏家庄岩体和教场坝花岗岩体进行LA-ICP-MS锆石U-Pb同位素年代学分析, 获得其岩浆侵位年龄分别为220±1, 216±6和222±3 Ma, 表明3个岩体均形成于中?晚三叠世。样品的全岩地球化学分析结果表明, 3个岩体具有相似的稀土及微量元素特征, 均表现为显著亏损高场强元素Nb, Ti和P等, 具有明显的右倾式球粒陨石标准化稀土元素配分模式。锆石Lu-Hf同位素分析结果表明, 3个岩体锆石测年样品的εHf(t)值介于?3.31~+1.68之间, 二阶段模式年龄介于1151~1456 Ma之间。岩石成因分析表明, 这些印支期花岗岩体的母岩浆主要来源于新元古代地壳物质的部分熔融。结合岩体形成时代、岩石成因和区域岩浆作用, 认为这些岩体形成于南秦岭与华南板块沿勉略缝合带相碰撞的造山动力学背景, 可能与华南板块的俯冲板片断离有关。  相似文献   

5.
北大坂花岗岩体位于北祁连中东段,为了精确测定岩体形成年代,对岩体中的浅灰黑色中粗粒英云闪长岩锆石进行了阴极发光(CL)成像观察,并利用LA-MC-ICP-MS对锆石进行微区U-Pb同位素测年。锆石的加权平均年龄为(447. 2±2. 4) Ma,表明其属于晚奥陶世岩浆活动产物。岩石地球化学数据分析表明,浅灰黑色中粗粒英云闪长岩为准铝质-弱过铝质高钾钙碱性花岗岩,富集大离子亲石元素,亏损高场强元素,稀土元素配分曲线呈右倾型,轻、重稀土元素分馏较为明显,显示出了I型花岗岩的特征。样品在构造判别图上均落入后碰撞花岗岩区域,结合区域上其它花岗岩体形成的构造环境研究,反映了北大坂岩体形成于北祁连洋壳的北向俯冲作用导致的北祁连岛弧与阿拉善地块碰撞期结束后的构造环境,暗示着北祁连洋在奥陶世晚期已经闭合。  相似文献   

6.
目的 探讨黄陵地区TTG片麻岩的形成时代和成因.方法 采用激光剥蚀-等离子质谱(LA-ICP-MS)分析技术测定基性岩脉中锆石的U-Pb年龄.结果 ①辉绿岩脉中继承锆石的U-Pb和谐年龄为3 037 Ma,与TTG片麻岩中继承锆石的年龄(3 051 Ma)和斜长角闪岩的年龄(3 150Ma)基本一致,指示TTG花岗质岩浆可能源于斜长角闪岩的部分熔融,部分熔融作用可能与辉绿岩脉所代表的幔源玄武质岩浆的底侵作用有关.②辉绿岩脉中结晶锆石的U-Pb年龄为2 913 Ma,与TTG片麻岩的侵入年龄(2 947 Ma)基本相同.这不仅符合辉绿岩脉的走向与TTG片麻岩片麻理的延伸方向整体一致、局部切割的事实,也说明TTG片麻岩的侵入年龄和改造为片麻岩的年龄应为2 947~2 913 Ma.③表征黄陵地区原始古不整合面的构造运动称为"水月寺运动",同位素年龄值2 600-2 500 Ma.结论 辉绿岩脉中变质锆石的U-Pb年龄为2 511 Ma,可能是与"水月寺运动"相伴随的热变质事件的反映.  相似文献   

7.
内蒙古固阳地区分布着广泛的新太古代变质侵入岩,总体呈东西向带状,展布方向与区域构造线方向一致。岩石类型为斜长角闪岩、闪长岩、石英闪长岩、英云闪长岩,岩石总体为钙碱性系列,属于太古代TTG岩系的一部分;稀土配分曲线与高铝型TTG岩石的演化趋势相一致。在片麻状石英闪长岩中取2组锆石U-Pb年龄,获得2575~2676Ma锆石U-Pb等时线年龄,属新太古代末期。  相似文献   

8.
对西藏冈底斯西部措勤县打加错地区粗粒二长花岗岩、中粒二长花岗岩、花岗岩进行LA-ICP-MS锆石U-Pb法定年、锆石同位素组成、主量元素测定,获得年龄值分别为(43.5±1.5)Ma、(44.2±2.6)Ma及(44.2±1.7)Ma,结合区域岩浆侵位规律,根据侵入岩地质特征、岩石学、同位素年代学、岩石化学等特征,将研究区出露的花岗岩划分为喜山早期侵入岩,属冈底斯-念青唐古拉中酸性杂岩带南亚带重要组成部分之一。其物质来源与上地壳变质泥岩的部分熔融有关,所形成的构造环境与区域构造背景息息相关,是始新世末喜马拉雅陆块同冈底斯陆块碰撞,陆-陆碰撞造山结束后相对松弛阶段的产物,构造环境同碰撞花岗岩。  相似文献   

9.
中阿尔泰构造带出露大面积晚三叠世花岗岩,对其进行详细研究是了解阿尔泰造山带构造演化和陆壳增生过程的重要途径。本文对霍热木德克岩体进行详细的岩石学、锆石U-Pb年代学、岩石地球化学及Sr-Nd同位素研究。霍热木德克花岗岩体主要有粗粒二长花岗岩、细粒二长花岗岩和正长花岗岩。LA-ICP-MS锆石U-Pb年代学研究结果表明,其结晶年龄为(222.3±1.8)Ma(MSWD=1.6),为晚三叠世岩浆活动产物。地球化学研究表明,岩石具有高SiO_2、Al_2O_3、ALK,低TiO_2、MnO、MgO、P_2O_5的特征,轻稀土富集、轻重稀土分馏明显,具有Eu的负异常(δEu=0.37~0.50),富集大离子亲石元素、相对亏损高场强元素,显示出强过铝质S型花岗岩的特征,花岗岩具有负的εNd(t)(-3.7~-2.7)和较老的二阶段模式(T2DM)年龄(1.2~1.3Ga)。综合分析认为,霍热木德克花岗岩由富含白云母和黑云母的变泥质岩经历部分熔融形成,其源区有富钙斜长石、钛铁矿的残留,为同碰撞造山阶段挤压环境下地壳加厚而发生部分熔融的产物,形成于同碰撞构造环境。  相似文献   

10.
目的 确定东秦岭沙河湾花岗岩体形成时代、源区性质及其成因.方法 在锆石内部结构的CL图像研究基础上,用LA-ICFMS和MC-ICPMS测定锆石U-Pb年龄及Hf同位素组成,探讨寄主花岗岩、暗色闪长质包体及及围岩中闪长质脉体锆石U-Pb年代学及Hf同位素组成特征.结果 寄主花岗岩、暗色包体及其围岩中闪长质脉体分别存在210 Ma和197 Ma,197 Ma和188 Ma以及230M a和210 Ma两组年龄的锆石;对应的εHf(t)值在一个略微偏正或负的范围内变化,指示该岩体非单一源区岩浆物质所能形成,至少是两个源区岩浆混合作用的结果.结论 该岩体是以新元古带古老地壳物质熔融为主体的壳源岩浆与源自略富集地幔的幔源岩浆高度混合的产物.这一壳、幔岩浆混合作用首先以230Ma的幔源岩浆活动为标志,并可能在210 Ma前就由于幔源岩浆活动热源的持续积累而诱发了该区地壳物质的部分熔融,形成以壳源岩浆为主的岩浆房.此后.约在200 Ma深部幔源基性岩浆进入壳源酸性岩浆房发生岩浆混合,并一直持续到185 Ma左右,证明了秦岭中生代壳、幔岩浆混合作用持续了大约60 Ma.  相似文献   

11.
The large southern Zhuguangshan granitic batholith composite consists of granites with ages varying from the Caledonian through Indosinian to Yanshanian. Based on K-Ar dating data, the ages of the major parts of this composite were previously regarded as Yanshanian. In this study, the SHRIMP zircon U-Pb dating method has been adopted for six plutons, Ledong, Longhuashan, Dawozi, Zhaidi, Baiyun and Jiangnan, in the southern Zhuguangshan composite, in which the four plutons other than Baiyun and Jiangnan were previously regarded as Yanshanian granites. Magmatic zircons from these six plutons, dated by this study, have yielded ages of 239±5 Ma (MSWD = 2.5), 239±5 Ma (MSWD = 2.5), 239±2 Ma (MSWD = 1.7), 239±4 Ma (MSWD = 3.2), 231±2 Ma (MSWD = 0.81) and 231±3 Ma (MSWD = 1.8), respectively. The results indicate that these plutons were formed by early Indosinian magmatism. Geochemical characteristics suggest that these granites were formed in an extensional tectonic environment. Therefore, the Indosinian period granites in the southern Zhuguangshan composite were formed by partial melting of the Paleo-Mesoproterozoic crustal components during the collapse of thickened lithosphere after the collision between the South China and Indosinian plates.  相似文献   

12.
锆石SHRIMP U-Pb定年结果显示: 内蒙古中部白音乌拉地区原宝力高庙组的流纹岩形成时代为300.0±2.9 Ma, 属晚石炭世; 青格勒宝拉格地区原宝力高庙组的凝灰岩结晶年龄为159.6±1.4 Ma, 并获得 3颗捕获锆石的年龄分别为291.8±3.4, 304.0±3.3和734.7±9.2 Ma, 应属于晚侏罗世满克头鄂博组。锆石LA-MC-ICP-MS Hf同位素分析显示: 流纹岩锆石εHf(t) 值为+10.5~+12.9, TDMC值为493~645 Ma; 凝灰岩岩浆锆石εHf(t)值为+10.1~+13.1, TDMC值为369~563 Ma。研究结果表明, 流纹岩源于晚古生代新生地壳的重熔并混入少量老地壳物质, 凝灰岩源于晚古生代地壳的熔融。Hf同位素特征显示晚古生代流纹岩和中生代凝灰岩源于相似的源区, 揭示了晚古生代的一次重要的增生事件, 并且在约160 Ma时期发生过地壳的再造。结合前人的研究成果表明, 兴蒙造山带在约300 Ma时处于古亚洲洋演化过程中岛弧向碰撞后伸展环境的转换时期, 在约160 Ma受到蒙古?鄂霍茨克构造域的影响。  相似文献   

13.
The genesis of the Carboniferous volcanic rocks in the Dahalajunshan group, mainly consisting of trachytes and trachy-andesites and distributing widely in western Tianshan Mountains, remains to be controversial. It has been proposed to be relevant to “rift” or “plume”. Detailed petrology and geochemical data presented in this paper show that these volcanic rocks represent typical continental arc magmatism. The volcanic rocks are mainly trachy-andesitic, and the magma source is enriched in LILE, Th and Pb, and depleted in HFSE and Ce. Trace element geochemical study suggests that the basalts could be modeled by 7% -11% partial melt of garnet Iherzolite. The volcanic rocks in the Dahalajunshan group are neither the products of “rift” nor so-called “plume”but represent the continental island arc of the Paleo-Southern Tianshan Ocean. The mantle wedge had been modified by the melt generating in subduction zone during a long evolution history of this island arc. The continental crust materials (i.e. mainly sediment on ocean floor) had been added into island arc through melt in subduction zone. Volcanic rocks occurring in different regions might represent magma eruption in different time. The zircon SHRIMP dating indicates that the ages of the basalt varies between 334.0 Ma and 394.9 Ma. The 13 analyses give an average age of 353.7±4.5 Ma (MSWD = 1.7). The apparent ages of zircons in trachy-andesite vary between 293.0 Ma and 465.4 Ma. All analyses fall on the U-Pb concordant line and are divided into two groups. 8 analyses produce an average age of 312.8±4.2 Ma (MSWD = 1.7), which represents the crystallizing age of zircon rims in trachy-andesite. The acquired two ages (i.e. 354 and 313 Ma) belong to the Early Carboniferous and Late Carboniferous epochs, respectively. Thus, the Dahalajunshan group would be separated into several groups with the accumulation of high-quality age dating and data of trace element and isotopic geochemistry, in our opinion.  相似文献   

14.
对华北克拉通与兴蒙造山带结合部位的内蒙古四子王旗地区出露的一套原定为中?下侏罗统的流纹岩进行岩石学、岩石地球化学、锆石U-Pb同位素年代学和Hf同位素组成研究, 确定其岩石成因及地球动力学意义。新获得的流纹岩和流纹斑岩LA-ICP-MS锆石U-Pb 年龄分别为262±2和261±2 Ma, 表明流纹岩的时代应为中二叠世晚期。四子王旗地区流纹岩多属高钾钙碱性系列和钾玄岩系列岩石, 具有高硅、高碱、富铝以及贫钙、贫镁的特征。稀土元素总量较大, 配分曲线明显右倾, 具有中度到重度Eu负异常, 富集大离子亲石元素Rb, Th和轻稀土元素, 亏损Nb, Ta, Sr和Ba等元素。火山岩的εHf(t)为负值(-25.97~-11.94), 可能主要来源于古老地壳熔融岩浆。该套火山岩具有高硅流纹岩的地球化学特征, 表明岩浆经历过结晶分异过程, 岩浆喷出与深部幔源岩浆的加热有关。结合相关构造判别图解, 判断该套火山岩可能形成于后碰撞伸展阶段。  相似文献   

15.
Eclogite cobbles were discovered by Wang et al. (2001) in the Fenghuangtai Formation of the northern margin of Dabie Mountains in the Dushan area of Anhui Province, China[1]. They proposed that after the formation during the Triassic, the high-pressure (HP) and ultra-high-pressure (UHP) metamorphic rocks reached the sur-face through exhumation and uplifting before the late Ju-rassic. However, they have not provided any evidence about isotopic ages. One kind of cobbles of HP-UHP rocks w…  相似文献   

16.
The petrochemical as well as zircon U-Pb and Lu-Hf isotopic studies of granulite facies metamorphic rock from the Tao'xi Group in eastern Nanling Range, Central Cathaysia indicate that its protolith is the sedimentary rock with low maturation index. The clastic materials are mostly from middle Neoproterozoic (-736 Ma) granitoid rocks with minor Neoarchaean and Paleoproterozoic rocks. The timing of this Neoproterozoic magmatism is in agreement with the second period of magmatism widespread surrounding the Yangtze Block. Hf isotopic data indicate that the Neoproterozoic granitoids resulted from the recycled Paleoproterozoic mantle-derived crustal materials. The sedimentary rock was deposited in Late Neoproterozoic Era, and carried into low crust in Early Paleozoic. The partial melting of the meta-sedimentary rock took place at about 480 Ma and subsequently granulite facies metamorphism occurred at ca. 443 Ma. The zircons forming during this time interval (Early Paleozoic) show large Hf isotope variations, and their ZHf(t) values increase from -13.2 to +2.36 with decreasing age, suggesting the injection of mantle-derived materials during partial melting and metamorphism processes in the Early Paleozoic. Calculation results show that this metamorphic rock, if evolved to Mesozoic, has similar isotopic composition to the nearby Mesozoic high Si peraluminous granites, implying that this kind of granulite facies metamorphic rock is probably the source material of some Mesozoic peraluminous granitoids in eastern Nanling Range.  相似文献   

17.
The Paleocene collision-related granite porphyries are identified for the first time along the western margin of the Lhunzhub Basin, Tibet. SHRIMP U-Pb zircon analysis indicates that the granite porphyries were emplaced at 58.7±1.1 Ma (MSWD = 0.79) during the Indo-Asian continental collision. The granite porphyries are peraluminous and high in K, belonging to the calc-alkaline to high-K calc-alkaline series. They are relatively enriched in LILE, Th and LREE and depletion in Ba, Nb, P and Ti, characterized by LREE-enriched patterns with slightly to moderately negative Eu anomalies. These Paleocene granite porphyries are interpreted as the products generated by partial melting of the pre-existing arc crustal rocks caused by the increase of pressures and temperatures during the crustal shortening at the early stages of the Indo-Asian continental collision since 65 Ma. Despite inherited geochemical features and tectonic settings of the arc protoliths, they are significantly different from the volcanic rocks of the Dianzhong Formation within the Linzizong Group and the Miocene granite por- phyries in the Gangdise belt.  相似文献   

18.
Single-grain zircon U-Pb dating was carried out to constrain the emplacement timing of granitic plutons at Chaxinzi, Xiaoweishahe and Longtou in the Tonghua area, south of Jilin Province. The results show that these plutons formed in the Triassic with ages of 203—217 Ma. Geological and geochemical characteristics indicate that the plutons are composed of quartz diorite and granite. The former was derived from partial melting of mafic lower crust, whereas the latter originated from thickened crust with garnet as the residue in the source. It appears that protoliths of these two types of granitits are different although they have the same emplacement age. Considering that these plutons are petrologically different from the coeval granites in the Xingmeng (Xing‘an-Mongolian) to Jihei (Jilin-Heilongjiang) orogenic belt in the north, it is suggested that their formation was related to the Dabie-Sulu ultrahigh-pressure collisional orogenesis since their ages are only 10—20 Ma younger than timing of the ultrahigh-pressure metamorphism, but comparable to that of the first rapid exhumation of the ultra-high-pressure metamorphic rocks and the emplacement of the post-collisional granites.  相似文献   

19.
Gao  LiE  Zeng  LingSen  Xie  KeJia 《科学通报(英文版)》2012,57(6):639-650
Determination of the timing and geochemical nature of early metamorphic and anatectic events in the Himalayan orogen may provide key insights into the physical and chemical behavior of lower crustal materials during the early stage of tectonic evolution in large-scale collisional belts.The Yardoi gneiss dome is the easternmost dome of the North Himalayan Gneiss Domes(NHGD),and contains three types of amphibolites with distinct mineral assemblage,elemental and radiogenic isotope geochemistry,as well as various types of gneisses.SHRIMP zircon U/Pb analyses on the garnet amphibolite and garnet-bearing biotite granitic gneiss yield ages of nearly peak metamorphism at 45.0±1.0 Ma and 47.6±1.8 Ma,respectively,which are 2 to 4 Ma older than the age for partial melting in migmatitic garnet amphibolite(43.5±1.3 Ma).Available data have demonstrated that ultra-high pressure metamorphism in the Tethyan Himalaya occurred at ~55 Ma,and high amphibolite facies to granulite facies metamorphism at 45 to 47 Ma.In addition,partial melting at thickened crustal conditions occurred at 43.5±1.3 Ma,which led to the formation of high Sr/Y ratios two-mica granites.The high-grade metamorphic rocks in the NHGD may represent the subducted front of the Indian continental lithosphere.In large collisional belts,fertile components in crustal materials could melt and form granitic melts with relatively high Na/K and Sr/Y ratios under thickened crustal conditions,significantly different from those formed by decompressional melting during rapid exhumation.  相似文献   

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