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1.
新疆东准噶尔北缘位于西伯利亚板块和哈萨克斯坦-准噶尔板块的结合部位,是中亚造山带的重要组成部分,也是新疆北部最重要的成矿带之一。老山口碱性花岗岩和乔夏哈拉碱性花岗岩即位于该区域,LA-ICP-MS锆石U-Pb年龄显示其结晶年龄分别为330.5±3.5 Ma和331.1±3.1 Ma。结合区域内存在的多处近同时期的碱性花岗岩(布尔根碱性花岗岩、哈腊苏碱性花岗斑岩、乌图布拉克碱性花岗岩),指示东准噶尔北缘存在一期重要的早石炭世碱性花岗岩岩浆活动,并大致可分为东、中、西三段。这些早石炭世碱性花岗岩具有高硅(SiO_2=67.14%~83.02%)、富碱(Na_2O+K_2O=5.37%~10.73%)、低钛(TiO_2=0.04%~0.23%)、贫钙(CaO=0.04%~1.19%)的特征,与典型A型花岗岩特征相类似,成因类型上属A1型花岗岩,个别具有A2-A1型花岗岩过渡性质。微量元素组成具有富集大离子亲石元素K、Rb及高场强元素Nb、Zr、Hf、Th,亏损Ba、Sr、P、Eu、Ti的特征。轻稀土元素明显富集(LREE/HREE=3.42~8.11),具强烈的负Eu异常(δEu=0.03~0.74),稀土元素配分模式呈右倾海鸥型。岩石具有较高的ε_(Hf)(t)(7.6~12.4)和ε_(Nd)(t)值(5.4~6.9)。上述特征表明,这些碱性岩的母岩浆具有复杂的成因,推测为幔源岩浆底侵到下地壳,促使下地壳先存的富Nb玄武岩部分熔融,并发生岩浆混合,经过一定程度的分离结晶形成。综合本文数据及地质事实,我们认为东准噶尔北缘在358 Ma部分地区开始进入板内后造山伸展环境,即板内早期环境,但早石炭世(360~327 Ma)整体处于由后碰撞向板内后造山环境转化的过渡阶段。东准噶尔北缘东、中、西段进入板内环境的时间不尽相同,可能与其多俯冲岛弧系统拼贴增生时代的不均一性有关。  相似文献   

2.
杨多  陈满  龚全德  陈天红  黄菲  吴昊  李昊璐 《地质论评》2017,63(5):1209-1225
内蒙古白音图嘎地区位于西伯利亚板块东南缘晚古生代陆缘增生带,地处二连—贺根山板块对接带西北侧,该区发育大量晚古生代花岗岩,主要岩石类型为斑状二长花岗岩和碱长花岗岩。本文对该区花岗岩进行了LA-ICP-MS锆石U-Pb测年和岩石地球化学测试。结果表明:斑状二长花岗岩和碱长花岗岩锆石U-Pb年龄分别为302.8±1.3Ma(MSWD=1.4)和301.1±0.6 Ma(MSWD=0.84),属于晚石炭世;岩石地球化学数据显示,岩体属钾玄岩系,具有高硅(SiO_2=70.83%~75.01%),富碱(Na_2O+K_2O=11.58%~13.20%),贫钙(CaO=0.50%~1.22%)和镁(MgO=0.11%~0.33%)特征。铝饱和指数A/CNK=0.81~1.01,为准铝—弱过铝质花岗岩。岩体整体富集Rb、Th、U等大离子亲石元素(LILEs),亏损Ba、Sr以及高场强元素(HFSEs)Nb、Ta、P、Ti;LERR富集,HERR相对亏损,具有明显的负Eu异常(δEu=0.11~0.43)。初始岩浆温度(759.33℃~801.81℃)和岩石地球化学分析表明,白音图嘎花岗岩具有A型花岗岩特征。同时,低的Nb/Ta(7.38~19.50)、Zr/Hf(29.61~35.26)和Sm/Nd(0.22~0.32)比值指示其源岩为壳源。综合研究表明,白音图嘎花岗岩为陆壳变杂砂岩部分熔融的产物,形成于晚石炭世早期西伯利亚板块和华北板块后碰撞作用的板内伸展环境,为兴蒙造山带晚古生代构造岩浆演化及古亚洲洋闭合的时限提供了新的约束和佐证实例。  相似文献   

3.
准噶尔盆地周缘出露大量晚古生代花岗岩,与古亚洲洋的闭合及陆陆碰撞造山过程密切相关。对东准噶尔东北缘阿舒达斯一带碱性花岗岩进行年代学和岩石地球化学研究,通过对SHRIMP锆石U-Pb测定,确定该地区碱性花岗岩结晶年龄为(319.3±2.5)Ma。岩石化学组成上碱性花岗岩具高Si O_2(70.16%~75.64%)、富碱(Na_2O+K_2O=8.57%~10.15%)和贫Ca O(0.26%~0.73%)、低Al_2O_3(11.99%~14.07%)特征。微量元素上富集大离子亲石元素Rb,Th和高场强元素Nb,Zr,Hf,亏损Ba和Sr元素,轻重稀土元素分馏较明显,(La/Yb)_N=3.07~6.77,具强Eu负异常,δEu=0.14~0.3。稀土元素分布模式呈右倾海鸥型,具极高的全岩锆石饱和温度,为873℃~918℃,平均894℃,显示典型A型花岗岩特征。据前人研究成果,阿舒达斯一带A型花岗岩为乌伦古碱性花岗岩带的一部分,可能是幔源岩浆底侵,导致富Nb玄武岩部分熔融后与其发生的岩浆混合,经一定程度陆壳混染和结晶分异作用的产物,其形成标志着东准噶尔北缘造山阶段的结束和板内伸展环境的开始。  相似文献   

4.
西准噶尔谢米斯台山中段出露大面积卡拉岗组流纹岩,准噶尔乃至整个北疆广泛发育晚古生代后碰撞花岗岩类。卡拉岗组为此类岩体喷发相的代表,岩石类型主要为流纹岩,是认识西准噶尔谢米斯台花岗岩岩石成因及构造-岩浆演化的关键。该地层流纹岩中测得LA-ICP-MS锆石年龄为(296±12)Ma(n=7,MSWD=4.9),为早二叠世。岩石地球化学研究表明,流纹岩具有高硅(SiO_2=76.49%~80.10%)、低钛(TiO_2=0.10%~0.19%)、高铝(Al2O3=10.38%~12.42%)、富碱(K_2O+Na_2O=6.91%~9.00%)、富钾(K_2O/Na_2O=1.75~11.00,平均3.33)、贫钙(0.13%~0.26%)的特征,铝饱和指数A/CNK=1.33~1.52,属过铝质系列。岩石富集大离子亲石元素Rb,Th,U,高场强元素Zr和Hf,亏损Ba,Sr,Eu,Nb,稀土元素分布曲线呈右倾"V"字型,属典型的铝质A型花岗岩。据微量元素比值及相关判别图,卡拉岗组流纹岩在成因类型上属于A2型,形成于后碰撞的张性环境中,软流圈上涌使年轻的地幔来源物质组成的下地壳发生部分熔融。  相似文献   

5.
西准噶尔乃至整个北疆地区广泛发育晚古生代后碰撞花岗岩类。接特布调岩体作为一个典型的代表, 岩石类型主要有中粗粒二长花岗岩和正长花岗岩, 是认识西准噶尔花岗岩岩石成因及构造-岩浆演化的关键。本文对接特布调岩体进行高精度锆石LA-ICP-MS U-Pb测年, 获得二长花岗岩和正长花岗岩的加权平均206Pb/238U年龄分别为(287±9) Ma(n=10, MSWD=0.92)和(278±3) Ma(n=14, MSWD=0.43), 确定其形成于早二叠世, 属于300 Ma前后准噶尔周边地区后碰撞岩浆活动的产物。岩石地球化学研究表明, 前人认为的接特布调I型花岗岩应归属于A型花岗岩。正长花岗岩具有高硅(SiO2: 76.11%~76.82%), 富碱(Na2O+K2O: 8.47%~8.49%), 低钛(TiO2: 0.04%~0.05%), 贫钙(CaO: 0.36%~0.42%)的特征。二长花岗岩与其类似, 高硅(SiO2: 68.35%~71.80%), 富碱(Na2O+K2O: 6.80%~7.86%), 低钛和钙(TiO2: 0.29%~0.82%, CaO: 1.76%~2.87%), 均属于准铝质或弱过铝质(ACNK: 0.98~1.09)高钾钙碱性系列。正长花岗岩相对于二长花岗岩具有相对较低的稀土元素总量(ΣREE)(分别为23.8×10-6~49.3×10-6, 95.23×10-6~222.2×10-6), 并具有明显的负Eu异常(Eu/Eu*分别为0.01~0.02, 0.57~0.72), 另外, 正长花岗岩相对二长花岗岩明显地富集大离子亲石元素(Rb、Th、K)及高场强元素(Zr、Hf、Nb), 而强烈亏损Ba、Sr、Eu、Ti等, 具有较高的10000Ga/Al比值(>2.44)。依据微量元素比值及相关判别图, 可将接特布调花岗岩体进一步细分为A1型和A2型。接特布调岩体就位于后碰撞环境, 来源于由年轻的地幔来源物质组成的下地壳。在后碰撞岩浆活动的初期, 年轻的下地壳部分熔融形成具有岛弧印迹的A2型二长花岗岩岩浆, 随着岩石圈进一步伸展, 可能在局部出现类似裂谷的环境, 即形成显示裂谷特征的A1型正长花岗岩岩浆。  相似文献   

6.
青海省东昆仑祁漫塔格地区肯德可克矿区外围东部发育一正长花岗岩体,主要矿物组合为正长石(50%~60%)+石英(20%~30%)+斜长石(10%~20%)+黑云母(1%~5%)。其LA-ICP-MS锆石U-Pb加权平均年龄为217.9±1.7 Ma(MSWD=0.74,n=20),形成时代为晚三叠世,与祁漫塔格地区铁多金属矿床基本同时形成。岩石地球化学组成具有高硅(Si O2=74.53%~75.28%)、富碱(K2O+Na2O=8.81%~8.95%)、富铁贫镁(Fe OT/Mg O=18.02~31.48)的特征,并具强烈的负Eu异常(δEu=0.04~0.05),富集Rb、Th、U、K、Ga,亏损Sr、Ba、Ta、P、Ti,显示其为准铝质A型花岗岩。正长花岗岩锆石εHf(t)为2.0~12.4,平均6.4,显示其源区具有壳幔混合作用的特征,壳幔物质交换为区内铁多金属矿化提供了大量成矿物质。该正长花岗岩属A2型花岗岩,暗示其形成于造山后的伸展构造体制,反映了祁漫塔格地区晚华力西-印支期造山旋回于晚三叠世由造山后期转为伸展阶段。  相似文献   

7.
孔会磊 《地质与勘探》2017,53(5):889-902
本文对青海东昆仑东段加当辉长岩进行了岩石学、年代学和地球化学分析,有助于丰富东昆仑古特提斯构造岩浆演化的整体认识。利用LA-ICP-MS锆石U-Pb定年技术,获得加当辉长岩加权平均年龄为262.5±2.5Ma(n=38,MSWD=0.18),表明岩体形成时代为中二叠世晚期。岩石地球化学研究表明,加当辉长岩具有低TiO_2(0.79%~1.09%)、贫P_2O_5(0.06%~0.09%)、低碱(K_2O+Na_2O=1.99%~2.39%)及Na_2OK_2O的特征,属拉斑玄武岩系列。岩石微量元素总体上富集大离子亲石元素(LILE:Rb、Ba、K)和Pb,相对亏损高场强元素(HFSE:Nb、Ta、P),稀土元素总量(ΣREE)为32.08×10~(-6)~46.41×10~(-6),(La/Yb)N为1.59~2.00,平均1.82,δEu=0.95~1.32,具有弱的Eu正异常。地球化学特征表明辉长岩源区为岩石圈幔源岩浆,岩浆在演化过程中遭受了地壳物质的同化混染;构造环境分析表明加当辉长岩是形成于俯冲环境的岛弧岩浆岩。结合东昆仑区域构造演化,认为加当辉长岩是阿尼玛卿古特提斯洋向北俯冲的产物,这为东昆仑晚古生代-早中生代构造演化提供了新的年代学证据。  相似文献   

8.
朱毓  赖绍聪  秦江锋 《地质论评》2017,63(6):1465-1478
松潘造山带内发育大量印支期花岗岩,这些花岗岩类对于该地区岩浆活动、基底性质和构造演化的研究有着重要的意义。金川地区观音桥二云母花岗岩位于松潘造山带东部,属于晚三叠世花岗岩。岩石具有高硅(SiO_2=72.08%~73.95%)、富碱(K_2O=4.44%~5.84%、Na_2O=3.29%~3.93%)的特征,其A/CNK值为1.08~1.22,属于过铝质高钾钙碱性S型花岗岩类。岩石富集大离子亲石元素,亏损部分高场强元素,具有明显的Eu负异常(δEu=0.26~0.38)。观音桥二云母花岗岩的ε_(Nd)(t)=-7.9~-10.1(平均为-8.9)不高,Nd同位素二阶段模式年龄T_(2DM)值为1.42~1.57 Ga,显示源岩应该为中元古代地壳岩石。岩石高的Rb/Sr值和低的CaO/Na_2O值、较低的Al_2O_3/TiO_2值和低的Rb/Ba值,表明其起源于泥质源岩的部分熔融。综合地球化学、同位素特征和区域地质资料,笔者等认为金川地区观音桥二云母花岗岩是在松潘造山带挤压背景下,由中—上地壳泥质源岩发生部分熔融而形成。  相似文献   

9.
张蕊  尹继元  邱亮  陶再礼  杨帆  陈文 《地质学报》2024,98(4):1146-11663
新疆西准噶尔造山带发育大量的晚古生代侵入岩,但它们的岩浆源区和形成的构造背景仍然存在较大争议。本文对西准噶尔造山带北部阿尔加提山石英二长岩进行了详细的岩石学、地球化学、锆石Hf- O同位素研究,旨在揭示其岩石成因和构造背景,探讨其与地壳生长的关系。两件样品的锆石U- Pb定年结果分别为301. 8±1. 4 Ma和303. 7±3. 1 Ma,形成于晚石炭世。阿尔加提山石英二长岩样品含有角闪石,高硅(SiO2=67. 8%~68. 9%)、富碱(K2O+Na2O=9. 36%~9. 89%)、具有低的铝饱和指数(A/CNK=0. 96~1. 00),伴有低的Ga/Al值(2. 27~2. 34),Rb/Sr值(0. 35~0. 50),显示出I型花岗岩的特征。同时,这些样品均富集大离子亲石元素和轻稀土,亏损高场强元素(如Nb、Ta和Ti等),和负的Eu异常(δEu=0. 72~0. 85),类似于典型俯冲相关的岛弧岩浆特征。这些I型花岗岩具有高的、正的锆石εHf(t)值(+11. 2~+14. 5)和年轻的二阶段Hf模式年龄(tDM2=604~392 Ma),以及比地幔值略高的锆石δ18O 值(5. 73‰~6. 51‰)和高的锆石饱和封闭温度(Tzr=854~895℃),可能是新生下地壳在高温背景下部分熔融的产物。结合前人在西准噶尔造山带北部发现的晚石炭世早二叠世A1和A2型花岗岩和埃达克质岩墙,本文认为这些高温岩石组合的形成可能与晚石炭世的洋中脊俯冲及其相关板片窗作用有关。在洋脊俯冲背景下,软流圈地幔上涌加热新生下地壳,促使其发生部分熔融形成I和A1和A2型花岗岩。西准噶尔造山带大多数下地壳主要形成于早古生代,表明该地区在显生宙发生了显著的地壳增长。  相似文献   

10.
西准噶尔乃至整个北疆地区广泛发育晚古生代后碰撞花岗岩类。作为其中的一部分,乌尔喀什尔山一带库鲁木苏岩基中的库鲁木苏序列主要由二长花岗岩、细粒正长花岗岩、中粗粒正长花岗岩、碱长花岗岩和碱长花岗斑岩组成。该序列富硅(Si O2=70.78%~76.85%)、富碱(K2O+Na2O=7.87%~9.71%)、低钛(Ti O2=0.08%~0.41%)、贫钙(Ca O=0.16%~1.42%),为准铝质至强过铝质(ACNK=0.98~1.15);稀土元素配分曲线为典型的"V"字型,具有明显的负Eu异常;微量元素特征显示富集大离子亲石元素(Rb、Th、K)及高场强元素(Zr、Hf),而强烈亏损Ba、Sr、P、Eu和Ti。以上特征表明库鲁木苏序列为A2型花岗岩,结合区域构造演化,认为库鲁木苏序列形成于后碰撞环境。  相似文献   

11.
With aim of providing constraints on the Late Paleozoic tectonic evolution of the southern Central Asian Orogenic Belt(CAOB),an integrated study was conducted on the geochronological and geochemical data for dioritic,granitic and diabase dykes from the Aqishan-Yamansu belt in the eastern Tianshan,NW China.Zircon U-Pb dating indicates that the dioritic and granitic dykes were both emplaced in the Late Carboniferous(~311 Ma and^315 Ma).The dioritic dykes show adakitic characteristics and have high Na2 O and positiveεHf(t)values(+12 to+17),which suggest an origin from partial melts of a subducted oceanic slab.The granitic dykes have high SiO2 and K2 O contents and are characterized by en riched light rare earth elements(LREE)and slightly flat heavy rare earth elements(HREE),with negative Eu and Nb-Ta-Ti anomalies.These dykes are alkali-calcic and show geochemical features of highly fractionated Itype granites.Their positiveεHf(t)values(+16 to+17)suggest that they were derived from a juvenile accreted oceanic crustal sou rce.The coeval diabase dykes have low SiO2 and K2 O contents but high TiO2,MgO and Mg#(54-59).They are enriched in LREE and show characteristics of enriched mid-ocean ridge basalts(E-MORB).The relatively high Ba/Th,slightly low Th/Ta ratios,and negative Nb-Ta anomalies imply a mantle source metasomatised by slab-derived fluids.Thus,these basic dykes were generated likely by partial melting of the upwelling asthenosphere mantle with a slight influence of slab-derived fluids.Therefore,we suggest that the formation of these Late Carboniferous dykes were triggered by a post-collisional slab breakoff and the Aqishan-Yamansu belt was a continental arc formed by southdipping subduction of the Kangguer oceanic plate.  相似文献   

12.
准噶尔是新疆北部古生代造山带的重要组成部分,以广泛发育晚古生代花岗岩为特征,是中亚造山带总显生宙陆壳生长作用非常显著的地区之一。根据最新获得的LA-ICP-MSU-Pb锆石年龄,木斯塔巴岩体锆石年龄为(303±2.0) Ma(晚石炭世),岩石地球化学分析,岩石具高硅(66.04%~70.4%),高碱(2.26~2.87),高铝(13.25%~15.46%),高钾(3.4%~4.58%),低镁,A/CNK=1.06~1.22,低固结(6.34~12.87),高分异(78.35~84.5),富轻稀土(LREE/HREE=3.57~12.97)和大离子亲石元素K,Rb,Ba,Sr,亏损高场强元素Nb,Ta,Ti,P,为过铝质高钾钙碱性系列花岗岩,具碰撞花岗岩特征,属额尔齐斯构造带的重要组成部分,其形成与板块俯冲作用关系密切。本区石炭纪花岗岩的数据与北准噶尔地区对比,显示晚石炭世额尔齐斯构造带闭合,进入后碰撞阶段。  相似文献   

13.
NE China is the easternmost part of the Central Asian Orogenic Belt (CAOB). The area is distinguished by widespread occurrence of Phanerozoic granitic rocks. In the companion paper (Part I), we established the Jurassic ages (184–137 Ma) for three granitic plutons: Xinhuatun, Lamashan and Yiershi. We also used geochemical data to argue that these rocks are highly fractionated I-type granites. In this paper, we present Sr–Nd–O isotope data of the three plutons and 32 additional samples to delineate the nature of their source, to determine the proportion of mantle to crustal components in the generation of the voluminous granitoids and to discuss crustal growth in the Phanerozoic.

Despite their difference in emplacement age, Sr–Nd isotopic analyses reveal that these Jurassic granites have common isotopic characteristics. They all have low initial 87Sr/86Sr ratios (0.7045±0.0015), positive Nd(T) values (+1.3 to +2.8), and young Sm–Nd model ages (720–840 Ma). These characteristics are indicative of juvenile nature for these granites. Other Late Paleozoic to Mesozoic granites in this region also show the same features. Sr–Nd and oxygen isotopic data suggest that the magmatic evolution of the granites can be explained in terms of two-stage processes: (1) formation of parental magmas by melting of a relatively juvenile crust, which is probably a mixed lithology formed by pre-existing lower crust intruded or underplated by mantle-derived basaltic magma, and (2) extensive magmatic differentiation of the parental magmas in a slow cooling environment.

The widespread distribution of juvenile granitoids in NE China indicates a massive transfer of mantle material to the crust in a post-orogenic tectonic setting. Several recent studies have documented that juvenile granitoids of Paleozoic to Mesozoic ages are ubiquitous in the Central Asian Orogenic Belt, hence suggesting a significant growth of the continental crust in the Phanerozoic.  相似文献   


14.
《China Geology》2018,1(1):84-108
There are large volumes of the Phanerozoic granitoid rocks in China and neighboring areas. In recent years, numerous new and precise U-Pb zircon ages have been published for these granitoids, and define many important magmatic events, such as ca. 500 Ma granitoid events in the West Junggar, Altai orogens in the NW China, and Qinling orogen in the central China. These ages accurately constrain the time of important Early Paleozoic, Late Paleozoic, Early Mesozoic and Late Mesozoic magmatic events of the northern, central, western, southern and eastern orogenic Mountains in China. There occur various types of granitoids in China, such as calc-alkaline granite, alkali granite, highly-fractionated granite, leucogranite, adakite, and rapakivi granite. Rapakivi granites are not only typical Proterozoic as in the North China Craton, but were also emplaced during Paleozoic and Mesozoic in the Kunlun-Qinling orogen, a part of the China Central Orogenic Belt (CCOB). Nd-Hf isotopic tracing and mapping show that granitoids in the southern Central Asian Orogenic Belt (CAOB) in China (or the Northern China Orogenic Belt) are characterized predominantly by juvenile sources. The juvenile crust in this orogenic domain accounts for over 50% by area, distinguishing it from other orogenic belts in the world, and those in central (e.g., Qinling), southwestern and eastern China. Based on a large amount of new age data, a preliminary granitoid and granitoid-tectonic maps of China have been preliminarily compiled, and an evolutionary framework of Phanerozoic granitoids in China and neighboring areas has been established from the view of assembly and breakup of continental blocks. Research ideas on granitoid tectonics has also been proposed and discussed.  相似文献   

15.
准噶尔是新疆北部古生代造山带的重要组成部分,以广泛发育晚古生代后碰撞花岗岩为特征,是中亚造山带中显生宙陆壳生长作用非常显著的地区之一。根据新近获得的SHRIMP锆石U-Pb年龄,并参考已经发表的锆石U-Pb年龄,本文重新厘定了准噶尔晚古生代后碰撞深成岩浆活动的时限。按照最新的国际地质年表中石炭纪和二叠纪划分方案(Gradstein et a1.,2004),准噶尔后碰撞深成岩浆活动是从早石炭世中-晚维宪期开始、于早二叠世末期结束的。东准噶尔后碰撞深成岩浆活动发生在330-265Ma之间,而西准噶尔后碰撞深成岩浆活动的时限在340-275Ma之间,持续时间分别约65Ma。但是,在东准噶尔,后碰撞深成岩浆活动集中在330~310Ma和305~280Ma两个时段发生,而在西准噶尔,后碰撞深成岩浆活动的高峰发生在310~295Ma之间。准噶尔晚古生代后碰撞深成岩浆活动在空间上没有受到重要地质界线(如蛇绿岩带)的分隔控制,在有的地方花岗岩还可以侵位在蛇绿岩带之中。而晚古生代后碰撞深成岩浆活动不但在准噶尔分布广泛,而且在准噶尔北邻的阿尔泰造山带和南邻的天山造山带中均有出现,具有广泛的区域性。  相似文献   

16.
西准噶尔是巨型中亚造山带的重要组成部分。该地区分布有多条蛇绿混杂岩带,其中达尔布特蛇绿混杂岩带被认为是西准噶尔规模最大的蛇绿混杂岩带,主要是以方辉橄榄岩为主的超镁铁质岩、镁铁质橄长岩、辉长(绿)岩,枕状熔岩、块状玄武岩及硅质岩。对达尔布特蛇绿混杂岩带中的块状玄武岩进行详细的岩石学、岩相学、同位素年代学及地球化学分析。结果表明,块状玄武岩的LA ICP MS锆石U Pb(加权平均206Pb/238U)年龄为(375±2) Ma,时代属于晚泥盆世。岩石SiO2质量分数为45.24%~49.86%,具有高镁、钛和碱的特征(w(MgO)=2.45%~6.85%,w(TiO2)=1.68%~3.74%,w(Na2O+K2O)=2.37%~5.34%),属于碱性玄武岩系列。碱性玄武岩具有典型洋岛玄武岩的稀土元素和微量元素模式,且相对富集轻稀土元素和大离子亲石元素Rb、Ba、Th等。高场强元素Zr、Hf、Nb、Ta没有明显负异常,显示其来源于富集地幔,主要组成为尖晶石和石榴石二辉橄榄岩,并发生了5%~10%的部分熔融。结合研究区与碱性玄武岩伴生的沉积岩特征、前人资料及对比邻区同期火山岩,可知达尔布特蛇绿混杂岩碱性玄武岩形成于大洋板内与地幔柱有关的洋岛环境,即碱性玄武岩是晚泥盆世地幔柱活动的产物,暗示中亚造山带在晚泥盆世就有地幔柱活动。假若这里提出的晚泥盆世地幔柱模式是正确的,将意味着地幔柱活动在显生宙中亚造山带地壳增生过程中起到重要作用。  相似文献   

17.
内蒙古东乌旗狠麦温都尔地区发育了大量的晚古生代花岗岩,主要岩石类型为二长花岗岩、正长花岗岩。SHRIMP锆石U-Pb同位素定年结果表明,二长花岗岩和正长花岗岩的成岩年龄分别为307.0±1.9 Ma和299.7±5.3 Ma,时代为晚石炭世—早二叠世。岩石地球化学特征显示,主要岩石的SiO2含量为65.65%~71.86%,具富碱(K2O+Na2O为9.59%~9.90%)、富钾(K2O/Na2O为1.00~1.73)的特点,准铝质(A/CNK为0.96~1.00),属高钾钙碱性-钾玄岩系列;岩石富集Rb、Th、K等大离子亲石元素,而亏损Nb、Ta、Sr、P、Ti等元素;稀土元素总量为82.60×10-6~177.58×10-6,(La/Yb)N为4.13~15.37,配分曲线模式略微右倾,δEu为0.44~0.87,中等-弱负铕异常,具岛弧或后碰撞高钾钙碱性花岗岩的特征,结合岩石具块状构造、晶洞构造特征显示为后碰撞花岗岩。综上所述,认为狠麦温都尔高钾钙碱性花岗岩可能为后碰撞早期伸展阶段的产物,与华北板块和西伯利亚板块碰撞作用有关,这一认识为兴蒙造山带晚古生代构造岩浆演化及古亚洲洋闭合的时限提供了新的约束。  相似文献   

18.
This paper presents age and geochemical data of a recently identified Late Paleozoic volcanic sequence in central Jilin Province, with aims to discuss the petrogenesis and to constrain the tectonic evolution of the Central Asian Orogenic Belt in this area. Firstly, the volcanic rocks have zircon U-Pb ages of 290–270 Ma. Secondly, they are characterized by(a) ranging in composition from the low-K tholeiite series to high-K calc-alkaline series;(b) enrichment in light rare earth elements and depletion of heavy rare earth elements, with negative Eu anomalies; and(c) negative Nb, Ta, and Ti anomalies. Finally, the volcanic rocks yield εHf(t) values of +7.1 to +17. These data suggest that the central Jilin volcanic rocks were possibly derived from predominant partial melting of a depleted lithospheric mantle that might have been modified by subducted slab–derived fluids. Combined with previous studies, the Late Paleozoic–Early Mesozoic magmatism in Central Jilin can be divided into two stages:(a) a volcanic arc stage(290–270 Ma) represented by low-K to high–K, tholeiite to calc–alkaline plutons and(b) a syn–collisional stage(260–240 Ma) represented by high-K calc–alkaline I-type granites. Furthermore, the timing and the tectonic setting of the above magmatic rocks show that the arc was probably produced by the northward subduction of the Paleo-Asian Ocean and that the final closure of the Paleo-Asian Ocean occurred prior to the Early Triassic.  相似文献   

19.
作为一种特殊产状的岩浆岩,岩墙保存有岩浆活动和地球动力学背景等方面的重要信息。为了研究和探讨西准噶尔乃至中亚地区古生代晚期的地球动力学环境,我们对西准噶尔地区侵入花岗岩的暗色岩墙开展了卫星遥感影像解译、地表地质调查和相关室内研究工作。研究发现,新疆西准噶尔红山花岗岩体中发育大量环状和非环状闪长岩岩墙。环状岩墙从中心到外围,岩墙宽度逐渐变窄,矿物粒度也逐渐变细;非环状岩墙切割环状岩墙,宽度和矿物粒度都没有明显变化。为了确定这些岩墙的形成时代,对3个环状岩墙样品、2个非环状岩墙和1个花岗岩样品进行了锆石LA-ICP-MSU-Pb定年,得到环状岩墙的年龄为:304±1Ma、302±1Ma、303±1Ma;非环状岩墙的年龄为:302±1Ma、302±1Ma;花岗岩的年龄为304±1Ma。结合不同类型岩墙及其与岩体的穿切关系,确定红山岩体的形成时代为304Ma左右,环状岩墙的形成时代为303Ma左右,非环状岩墙的形成时代为302Ma左右。这一年代学研究成果揭示出西准噶尔地区在石炭纪末期发育不同类型的岩浆活动,闪长质岩墙所占据的裂隙是在石炭纪末期形成的;为从岩浆活动和由这些岩墙所占据的裂隙研究,探讨该区古生代晚期的地球动力学环境,提供了有力的时间约束。  相似文献   

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