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1.
黑龙江嘉荫连珠山金矿床成岩成矿年代学及其地质意义   总被引:2,自引:0,他引:2  
连珠山矿床位于小兴安岭北麓,是一个产于花岗岩内部断裂体系的蚀变岩型金矿床。为了限定其成矿时代与成矿地质背景,本文对其赋矿围岩黑云母二长花岗岩和石英闪长岩进行了岩石地球化学、锆石U-Pb和绢云母40Ar/39Ar年代学的系统研究。定年结果表明黑云母二长花岗岩形成时代为中三叠世(243.7±1.3Ma,MSWD=0.77,n=12),岩浆上侵过程中受到早古生代(474~438Ma)和中二叠世(267~261Ma)的岩浆混染,而石英闪长岩形成于晚三叠世(215.3±1.3Ma,MSWD=0.35,n=17);黄铁绢英岩化矿石中的绢云母40Ar/39Ar坪年龄为194.2±2.0Ma,指示为早侏罗世成矿;元素地球化学特征显示连珠山侵入岩为准铝质-弱过铝质、高钾钙碱性岩石系列,具有I型花岗岩的地球化学属性;轻稀土元素富集,相对亏损重稀土元素,且具有弱的负Eu异常;富集大离子亲石元素(LILE),亏损高场强元素(HFSE)。结合小兴安岭-张广才岭地区已有年代学资料和区域构造演化特征,认为其成矿地质背景为兴蒙造山晚期与古太平洋板块俯冲转换期,或成矿发生在兴蒙造山期后的伸展阶段。  相似文献   

2.
葛茂卉  张进江  刘恺 《岩石学报》2020,36(3):726-740
小兴安岭-张广才岭地区中生代岩浆活动的成因及动力学背景对于揭示古太平洋的构造演化具有重要意义。本文选取小兴安岭-张广才岭铁力地区出露的辉绿岩墙为研究对象,进行锆石LA-ICP-MS U-Pb年代学、全岩地球化学和锆石Hf同位素等分析,对该基性岩的形成时代、岩石成因、岩浆源区以及形成的大地构造背景进行讨论。研究表明:辉绿岩锆石具有高Th/U比值( 0.3),CL图像显示微弱的振荡环带结构,具有岩浆锆石特征,~(206)Pb/~(238)U加权平均年龄为187±2Ma,即形成于早侏罗世;该岩体主要经历了橄榄石和单斜辉石的分离结晶作用,未遭受明显的地壳混染作用,并且具有Rb、Ba、U、Pb、K和Sr等流体活动元素相对富集,Th、Nb和Ta等非流体活动性元素相对亏损的地球化学特征,暗示其形成于被俯冲流体富集交代的亏损地幔部分熔融,源区可能为尖晶石-石榴石二辉橄榄岩,部分熔融程度约为6%~20%。结合该地区同时代的岩浆岩、变形构造、矿床特征和黑龙江蓝片岩的相关报道,本文认为小兴安岭-张广才岭地区在中生代期间处于活动大陆边缘环境,其岩浆岩的形成主要是由于存在于佳木斯地块和松嫩-小兴安岭地块间的牡丹江洋西向俯冲造成的。  相似文献   

3.
黑龙江省松嫩地块北缘大面积分布的玄武安山岩的时代厘定对讨论区域构造演化具有重要意义。对该区原划为早白垩世板子房组的玄武安山岩进行了LA-ICP-MS锆石U-Pb年代学、岩石学和地球化学等研究,获得两个样品的锆石U-Pb年龄分别为(200.0±1.4)Ma和(200.0±1.3)Ma,表明其形成时代为晚三叠世—早侏罗世,并非早白垩世。岩石地球化学研究表明,玄武安山岩属准铝质,以高钾钙碱性系列为主,富集Ba、Rb、K、Pb等大离子亲石元素和轻稀土元素,亏损Nb、Ce、Nd、Ti等高场强元素和重稀土元素,为典型的大陆弧火山岩,表明松嫩地块小兴安岭—张广才岭存在一条近南北向展布的晚三叠世—早侏罗世火山岩带,该火山岩带与同时代略晚的花岗岩一起构成近南北向带状展布的中生代岩浆岩带。  相似文献   

4.
诸广山岩体是南岭地区著名的大型复式岩体之一,但其研究程度存在南体高、北体低的不均衡现象,制约了对诸广山岩体年代格架及其岩石组成的整体性认识.本文对诸广山复式岩体(北体)进行锆石年代研究,测得早古生代汤湖岩体、寨前岩体、东洛岩体(黑云母二长花岗岩)锆石U-Pb年龄分别为444±2 Ma、448±3 Ma、440±2 Ma,桂东岩体和上堡岩体(黑云母花岗闪长岩)锆石U-Pb年龄分别为444±2 Ma、442±2 Ma;中生代淋洋岩体(二长花岗岩)和鹅形岩体(正长花岗岩)锆石U-Pb年龄分别为230±3 Ma、157±1 Ma.诸广山岩体(北体)是由晚奥陶世-早志留世、晚三叠世、晚侏罗世岩体组成的复式岩体.结合南体年代与岩石学资料,认为诸广山复式岩体的侵位可划分为晚奥陶世-早志留世、中-晚三叠世、晚侏罗世三个期次,相应的岩石组合大致由花岗闪长岩-二长花岗岩→二长花岗岩→二长花岗岩-正长花岗岩演变,与显生宙南岭地区地壳物质成熟度逐渐增高的总趋势一致,这可能为晚中生代该区发生钨锡铍铌钽铀等战略性矿产大规模、集群式成矿奠定了物质基础.汤湖岩体和寨前岩体中存在的新元古代继承锆石和捕获锆石暗示本区早古生代岩体形成过程中可能有新元古代物质的参与.  相似文献   

5.
内蒙古太仆寺旗卧牛山花岗岩位于华北板块北缘晚古生代—早中生代岩浆岩带中段。卧牛山岩体LA-ICP-MS锆石~(206)Pb/~(238)U年龄加权平均值为274.7±1.2Ma(MSWD=0.82),非前人认为的侏罗纪。锆石稀土元素总量为362.67×10~(-6)~1177.09×10~(-6),平均为797.91×10~(-6),各分析点的稀土元素球粒陨石标准化配分模式高度一致,富集重稀土元素,亏损轻稀土元素,具明显的正Ce异常及负Eu异常。基于锆石的稀土元素特征,通过构造背景及结晶环境判别图解、Ti温度计,结合区域地质背景及岩浆岩特征分析,认为卧牛山花岗岩为壳幔混源,形成于古亚洲洋向华北板块俯冲的构造-岩浆活动中,是活动大陆边缘的产物,与华北板块北缘晚古生代—早中生代岩浆岩带东、西段二叠纪岩体的源区及构造背景一致。研究成果确认了华北板块北缘晚古生代—早中生代岩浆岩带中段与其东、西两段在海西晚期具有相同的成因联系。  相似文献   

6.
本文以黑龙江省西北部大兴安岭塔源镇和小兴安岭二站乡地区花岗岩为研究对象,通过岩石学、U-Pb年代学及地球化学分析,揭示了古亚洲洋在该地区的俯冲—碰撞过程。塔源黑云母二长花岗岩U-Pb年龄为308 Ma,为晚石炭世侵入体,具有高硅、高碱的特征,富集轻稀土元素和大离子亲石元素,亏损重稀土元素和高场强元素,ε_(Hf)(t)为0.8~2.5,地球化学特征显示其来源于增生的下地壳物质;二站乡二长花岗岩、碱长花岗岩U-Pb年龄分别为305和293 Ma,同样为高硅、高碱系列,富集轻稀土元素和大离子亲石元素,亏损重稀土元素和高场强元素,地球化学特征显示其来源于新生地壳。晚石炭世花岗岩为Ⅰ型花岗岩,早二叠世花岗岩为A型花岗岩。利用锆石δEu定量限定了塔源二长花岗岩和二站乡二长花岗岩的形成深度,分别为38.8和34.7 km,而碱长花岗岩形成深度为28.7 km,暗示晚石炭世至早二叠世该地区经历了地壳的拉张减薄,记录了古亚洲洋的俯冲消亡与之后的后碰撞伸展作用。  相似文献   

7.
为确定大兴安岭地区晚古生代花岗质岩石的成因及其构造背景,笔者对雅尔根楚地区二长花岗岩样品进行了锆石U-Pb年代学与地球化学测试分析。锆石U-Pb年龄结果显示研究区二长花岗岩形成于晚石炭世(312±2 Ma)。二长花岗岩具有较高的SiO_2(75.16%~75.32%)和全碱(8.45%~8.76%)含量,较低的MgO(0.12%~0.14%)含量,以富集大离子亲石元素(Rb、Ba、Th、U、K)和轻稀土元素,亏损Nb、Ta、Ti及P元素为特征,并且其ε_(Hf)(t)值和Hf二阶段模式年龄变化于+3.5~+9.5和1 103~715 Ma,表明其原始岩浆来源于新生地壳物质的部分熔融。结合年代学、地球化学特征与区域地质调查结果,认为研究区晚石炭世二长花岗岩的形成与古亚洲大洋板块向兴安地块下的俯冲作用有直接联系。  相似文献   

8.
小兴安岭东部早古生代花岗岩的发现及其构造意义   总被引:23,自引:4,他引:19  
通过全岩-单矿物的Rb-Sr法和锆石激光剥蚀等离子体U-Pb法定年研究,确定小兴安岭东部地区存在508~471Ma的早古生代花岗岩.根据岩石学和年代学的特征.进一步将小兴安岭东部地区的早古生代花岗岩划分为与高级变质岩伴生的片麻状花岗冈长岩-二长花岗岩(508Ma+15Ma)、块状花岗闪长岩-二长花岗岩(499Ma+1Ma)和碱长-碱性花岗岩(471 Ma±3Ma)3种岩石组合类型.上述3类花岗岩组合的依次出现反映了同碰撞-碰撞后伸展的构造演化特点,表明小兴安岭东部早古生代存在碰撞造山事件.  相似文献   

9.
大兴安岭扎兰屯地区四班岩体主要由正长花岗岩和二长花岗岩组成,内部发育细粒闪长质包体。二长花岗岩和正长花岗岩LA-ICP-MS锆石U-Pb定年结果分别为303±3Ma和291±3Ma,属于晚古生代岩浆活动的产物。四班花岗质岩石高硅(67.9~77.5 wt%)、富碱(K_2O+Na_2O=7.55~10.79 w%)、相对高铝(Al_2O_3=12.05~16.33 wt%),富集轻稀土元素(LREE)和大离子亲石元素(LILE),而亏损高场强元素(Nb、Ta、Ti和P等),属于高钾钙碱性I型花岗岩。四班花岗质岩石内部发育的闪长质微粒包体及花岗岩与其伴生的基性岩的"一锅粥"现象,表明四班花岗质岩石具有岩浆混合成因的特征,地球化学特征也支持上述观点。四班岩体显示后碰撞岩浆岩的岩石学及地球化学特征,为后碰撞阶段岩石圈地幔拆沉减薄壳幔相互作用的产物。  相似文献   

10.
对小兴安岭北部孙吴-嘉荫地区早中生代花岗岩进行了年代学和地球化学研究,据此探讨其成因及形成的构造背景。锆石U-Pb同位素定年结果表明,研究区早中生代花岗岩分为晚三叠世和早侏罗世两期,形成时代分别为210 Ma和187~181 Ma。晚三叠世碱长花岗岩属铝质A型花岗岩,岩浆源区为新元古代从亏损地幔中增生的基性火成岩地壳。早侏罗世英云闪长岩-花岗闪长岩和二长花岗岩属埃达克岩,是由加厚下地壳物质部分熔融形成的;正长花岗岩-碱长花岗岩与同期埃达克岩具明显不同的地球化学特征,岩浆源区为中元古代从亏损地幔中增生的基性地壳物质。结合区域地质构造演化特征,认为晚三叠世花岗岩是华北板块和西伯利亚板块碰撞造山后伸展构造环境下的产物,早侏罗世花岗岩的形成与古太平洋板块俯冲产生的挤压构造环境有关。  相似文献   

11.
《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   

12.
ABSTRACT

This paper presents geochronological, geochemical, and zircon Hf–O isotope data for late Mesozoic intrusive rocks from the northeastern North China Craton (NCC), with the aim of constraining the late Mesozoic tectonic nature of the NE Asian continental margin. U–Pb zircon data indicate that the Late Mesozoic magmatism in the northeastern NCC can be subdivided into two stages: Late Jurassic (161 ? 156 Ma) and Early Cretaceous (125 ? 120 Ma). Late Jurassic magmatism consists mainly of monzogranites. These monzogranites display high Sr/Y ratios and the tetrad effect in their REE, respectively, and have negative εHf(t) values (?22.6 to ?15.8). The former indicates that the primary magma was generated by partial melting of thickened NCC lower crust, the latter suggests that the monzogranites were crystallized from highly fractionated magma, with the primary magma derived from partial melting of lower continental crust. Combined with the spatial distribution and rock associations of the Late Jurassic granitoids, we conclude that the Late Jurassic magmatism in the eastern NCC formed in a compressional environment related to oblique subduction of the Paleo-Pacific Plate beneath the Eurasia. The Early Cretaceous magmatism consists mainly of granitoids and quartz diorites. The quartz diorites formed by mixing of melts derived from the mantle and lower crust. The coeval granitoids are classified as high-K calc-alkaline and metaluminous to weakly peraluminous series. Some of the granitoids are similar to A-type granites. The granitoid εHf(t) values and TDM2 range from ?14.3 to ?1.4 and 2089 to 1274 Ma, respectively. These values indicate that their primary magma was derived from partial melting of lower crustal material of the NCC, but with a contribution of mantle-derived material. We therefore conclude that Early Cretaceous magmatism in the northeastern NCC occurred in an extensional environment related to westward subduction of the Paleo-Pacific Plate beneath Eurasia.  相似文献   

13.
小兴安岭晚石炭世花岗岩具有明显的岩浆混合特征。岩体中暗色岩浆包体发育,主要为细粒闪长质岩浆包体,包体形态多样、大小不一,与寄主岩石呈截然、模糊或过渡关系。包体的矿物组合明显不平衡,如出现了寄主岩石中的碱性长石捕虏晶,有时可见其具暗色矿物镶边,发育针状磷灰石。这表明小兴安岭晚石炭世花岗岩的岩浆混合表现为基性岩浆和酸性岩浆的混合。这为探讨这些花岗岩的成因提供了岩石学依据,同时也暗示晚古生代佳木斯—松嫩古陆可能发生过地壳的垂向生长。  相似文献   

14.
小兴安岭西北部达音河岩体主要由碱长花岗岩、正长花岗岩组成。碱长花岗岩的锆石LA-ICP-MS U-Pb定年结果为304.4±1.3 Ma,时代属于晚石炭世,而不是过去认为的晚侏罗世。该岩体化学组成以高硅、钾、钠,低钙为特征,富集Rb、La、Th等大离子亲石元素,亏损Ba、Sr、Eu等大离子亲石元素和Nb、Ta、Zr高场强元素,反映斜长石作为源区残留相对岩浆地球化学特征的控制。该岩体同区域上十二站、新开岭、龙镇、扎兰屯等岩体构成晚石炭世造山后伸展背景下形成的I型和A型花岗岩带,反映了兴安、松嫩块体在晚石炭世结束块体碰撞造山,转入造山后伸展环境。  相似文献   

15.
The Late Paleozoic intraplate magmatism of the Selenga-Vitim structural zone of the Baikal region (Khamar-Daban Range) produced granitoids of different geochemical types: palingenic calc-alkaline granitoids, subalkaline monzogranites, and rare-metal Li-F granitoids and their subvolcanic analogues. Subalkaline and rare-metal granitoids occur in the periphery of the Late Paleozoic magmatic zone. Rare metal granite magmatism is manifested in this region as nearly N-S trending intrusive-dike belts comprising multiphase intrusions (Kharagul, Urugudei, and Bitu-Dzhida massifs) with an exposed area of ∼10 km2 and an age of formation from 311 to 321 Ma and series of accompanying dikes. The early phases of the intrusions are made up of biotite granites usually with fluorite, which are changed during the late stage by typical topazbearing rare-metal amazonite-albite granites. In the subvolcanic facies, thicker subalkaline dikes of monzonite porphyry, granite porphyry, and elvan are changed by ongonites, topaz rhyolites, and topazites, which occasionally serve as cement in eruptive and fluid-explosive breccias. The development of multiphase intrusions from early biotite granites to late amazonite-albite granites with Li-F mica was accompanied by an increase in SiO2 and, especially, Na2O contents, whereas the level of (FeO + Fe2O3), CaO, and K2O declined. Geochemical evolution includes an increase in the same direction in the contents of F, Li, Rb, Cs, Sn, Be, Ta, and Pb and a decrease in Ba, Sr, Zn, Zr, Th, and U. Similar evolution is also characteristic of the subvolcanic rocks, which emphasizes the genetic relation of the whole intrusive-dike complex of the Khamar-Daban province. Significant differences were detected in the distribution of K, Ba, Sr, and Zr between the calc-alkaline granitoids and rare-metal Li-F granites. The continental crust-normalized patterns of the raremetal granites show positive anomalies for Li, Rb, Nb, and Pb. The rare-metal Li-F granites could not be produced by palingenesis only, and their formation required specific conditions causing extensive accumulation of characteristic trace elements. During the evolution of granite melts, Li, Rb, Ta, Nb, Sn, W, and F are extensively accumulated in late intrusive phases, which indicates an important role of the processes of magmatic and fluid-magmatic differentiation during their formation. The composition and isotope geochemical characteristics of the supposed magma source material correspond to the ancient Precambrian continental crust with a mean model age of more than 1200 Ma.  相似文献   

16.
曾涛  王涛  童英  张磊  郭磊 《地质通报》2012,31(5):732-744
在俄罗斯远东地区晚中生代花岗岩类年龄和相关地球化学数据的基础上,初步建立了该区晚中生代花岗岩类的年代学格架:大致以145Ma为界,分为侏罗纪(178~151Ma)和早白垩世(142~122Ma)2期。侏罗纪的花岗岩类主要为花岗岩-花岗闪长岩-石英二长岩组合,总体上为准铝质—强过铝质高钾钙碱性系列;早白垩世的花岗岩类主要为花岗岩-石英闪长岩-石英二长岩组合,主要为过铝质钙碱性—高钾钙碱性系列—钾玄岩系列。2期花岗岩稀土元素配分曲线均呈右倾型,重稀土元素曲线较平坦,都富集大离子亲石元素(如U、K)和轻稀土元素。与中国东北地区晚中生代花岗岩类对比,中国东北地区总体以兴安岭为中心,中间为早白垩世的花岗岩类,两侧为侏罗纪花岗岩类对称分布。境内外的侏罗纪花岗岩类构造背景不同,其分布与鄂霍次克洋和太平洋板块的俯冲有关,早白垩世花岗岩类可能形成于鄂霍次克带挤压造山后的伸展垮塌和太平洋板块的俯冲弧后伸展阶段。  相似文献   

17.
刘新  钱青  苏文  李继磊 《岩石学报》2012,28(8):2401-2413
阿吾拉勒山西段出露大量古生代侵入岩体.其中木汗巴斯陶岩体由角闪辉长岩和花岗岩组成.它们均富集大离子亲石元素(Rb、Ba、Sr等)、强烈亏损高场强元素(Nb、Ta、Ti),不具明显的轻重稀土分异和铕异常,类似于大陆弧钙碱性岩浆岩的地球化学特征.LA-ICP-MS锆石U-Pb测年结果表明角闪辉长岩和花岗岩的侵位时代分别为317.0±2.2Ma和319.1±2.4Ma.木汗巴斯陶侵入岩体的地球化学和年代学表明包括阿吾拉勒山西段在内的整个伊犁-中天山地块南缘在早石炭世晚期至晚石炭世早期处于一个活动大陆边缘环境.  相似文献   

18.
采用LA-ICP-MS方法对青藏高原祁漫塔格山西部枯草沟地区花岗岩和闪长岩进行锆石U-Pb测年,获得405.7±1.3Ma、420.8±1.6Ma、423.9±1.5Ma和421.0±1.7Ma四个年龄,属于晚志留世—早泥盆世。这些锆石具有高Th/U值,是典型的岩浆锆石,其结晶年龄代表岩石形成年龄。综合统计目前已有锆石U-Pb年龄数据表明,该地区主要存在2期岩浆活动:350~500Ma和200~350Ma,分别对应早古生代和晚古生代—早中生代。祁漫塔格早古生代岩浆活动年龄数量占统计的60%以上,为主要岩浆活动期,主要分布于祁漫塔格北部和西部。东昆仑晚古生代—早中生代的岩浆约占古生代以来岩浆总量的77%以上,为东昆仑主要岩浆活动期。祁漫塔格晚古生代—早中生代岩浆活动主要分布于其东南部,靠近东昆仑山,暗示其可能受东昆仑主要岩浆活动的影响。以上结果暗示,早古生代期间祁漫塔格洋的活动性强于东昆仑洋的活动性,祁漫塔格和东昆仑可能自晚古生代以来才逐步形成统一的造山带。  相似文献   

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