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1.
湘南地区燕山期成矿花岗岩有3种类型,其主要造岩矿物化学成分和种属明显不同;矿物的化学成分变异特征均显示出壳幔岩浆混合成因的特点:①角闪石均属于钙质角闪石亚类。②MC型早期次花岗岩中的黑云母多属镁质黑云母;CM型晚期次花岗岩中的黑云母主要为铁质黑云母;C型花岗岩中的黑云母主要为铁叶云母-铁黑云母,且多为铁锂黑云母。3类型花岗岩中黑云母的成分变异呈线型关系,暗示有成因联系。③3类型花岗岩中斜长石有明显区别,MC型多为中长石,CM的多为更长石,C型多为钠长石。斜长石环带构造发育程度不同,CM型早期次单元花岗岩中的斜长石环带最发育。④CM型花岗岩及其暗色微粒包体中的碱性长石主要属于相对富钾的正长石,包体中的个别属歪长石,表明其形成温度较高;C型花岗岩中碱性长石为相对贫钾的钠正长石及微斜长石。⑤造岩矿物特征和成分变异显示了成矿花岗岩的形成与壳幔岩浆混合作用有关,形成MC型和CM型早期次单元花岗岩的岩浆演化主要是岩浆混合作用,而CM型花岗岩晚期次的花岗岩类和C型花岗岩类的岩浆演化可能还存在分离结晶作用。  相似文献   

2.
苏北东海地区主侵入花岗岩类岩石属Ⅰ型花岗岩类。其主要造岩矿物为阳起角闪石、富镁黑云母、更长石、钾长石和石英。主要副矿物为榍石、磷灰石、锆石、磁铁矿等。主侵入岩体的形成温度为910—690℃,logfo_2=-12,fH_2O=(1.3—1.8)×10~8Pa,log(fH_2O/f_(HF))=3—4。第一类过渡元素富集于角闪石、黑云母和榍石中,而在更长石、钾长石和石英中明显亏损。由于榍石、角闪石、黑云母和更长石对全岩REE含量的贡献最大,因此它们控制了本区花岗岩类岩石的稀土配分模式。前三者富重稀土,负Eu异常较强,斜长石相对富轻稀土,并表现为正Eu 异常。因此可以认为随着花岗质岩浆中铁镁矿物和斜长石的分离,将会导致残余岩浆中第一类过渡元素、重稀土元素和Eu的亏损。  相似文献   

3.
长石是一族矿物的名称,从组分说有四种:钾长石、钠长石、钙长石、和钡长石。长石族有三个亚族:钾钠长石亚族,又名正长石亚族,由于阳离子是K、Na故又名碱性长石亚族,斜长石亚族和钡长石亚族。钾长石与钠长石,高温时可以形成完全类质同象,低温是不完全类质同象,它们的类质同象称碱性长石系列;钠长石和钙长石也可以形成类质同象,称斜长石系列,通常仍不正确  相似文献   

4.
郭娜欣  吕晓强  赵正  陈振宇 《地质学报》2014,88(12):2423-2436
南岭地区是我国重要的有色金属矿产资源集中区,中生代多金属成矿与本区广泛分布的花岗质岩石具有密切的成因关系.本文在总结南岭地区与花岗质岩石有关的钨锡钼铋和铜(钼)铅锌金银两类多金属矿床时空分布规律、岩体特征的基础上,探讨并对比了这两种成矿花岗质岩的岩石学和矿物学特征,指出:①与钨锡钼铋成矿有关的岩浆岩以壳源物质重熔形成的黑云母花岗岩为主,但不少岩体也带有幔源物质信息.造岩矿物组合为石英+钾长石+斜长石+黑云母+白云母±角闪石,石英、长石、黑云母包含结构十分发育.斜长石以钠长石为主,An平均值为8;黑云母为富铁黑云母—铁叶云母—铝铁叶云母,MF值为0.001~0.5311;个别岩体中含角闪石,Mg# =0.21~0.53.②与铜(钼)铅锌金银成矿有关的岩浆岩以壳幔混源的花岗闪长岩为主.造岩矿物组合为石英+斜长石+钾长石+黑云母+角闪石±白云母,包含结构不发育.斜长石以更长石为主,An平均值为22;黑云母为富镁黑云母,MF值为0.5120~0.7216;普遍见有角闪石,Mg# =0.48~1.00.两类成矿岩浆岩的岩石学和矿物学差异可以为南岭花岗质岩石地区找矿提供初步的指示意义.  相似文献   

5.
内蒙古乌拉山金矿田内主要出露晚太古代乌拉山群区域变质岩和规模不一的花岗岩体以及不同时代、不同种类的脉状地质体。含金矿脉中主要矿物共生组合为碱性长石、石英、斜长石、碳酸盐矿物(方解石、白云石)和少量金属硫化物。矿床的显著特征为碱性长石交代作用强烈,碱性长石也广泛产于该地区其他各种类型的岩石中。本文采用电子显微探针分析了共生碱性长石和斜长石的化学成分,并采用三元二长石温度模型估计了碱性长石的平衡温度。结果表明,第一成矿阶段的碱性长石一石英含金矿脉中碱性长石的形成温度为353℃,第二成矿阶段石英含金矿脉中碱性长石的形成温度为281℃,矿脉碱性长石形成压力约为5kbar。这些结果与同类矿石中平衡共生的碳酸盐矿物和云母类矿物的地质温度计估计的形成温度以及共生石英中流体包裹体的均一温度非常一致。因此,乌拉山金矿床形成和富集的温度可估测为260~380℃,压力约为5kbar。此外,应用二长石温度计计算了本地区区域变质片麻岩和花岗岩中碱性长石的平衡温度,所得温度比采用共生铁铝榴石和黑云母温度计估计的温度要低约250℃。这表明共生的铁铝榴石和黑云母的平衡温度可能代表其寄主变质岩变质期温度及寄主花岗岩原生温度,而区域变质岩和花岗岩中的碱性长石在经历了随后多次热液作用后,可能重新平衡再生,这也与前人对乌拉山金矿的矿床地质和同位素研究的结果一致。  相似文献   

6.
东秦岭北部富碱侵入岩的主要矿物组成   总被引:7,自引:0,他引:7  
在秦岭富碱侵入岩主要集中分布在陕西省洛南与河南省卢氏-确山一带,岩石类型有碱性岩、碱性花岗岩和石英长岩三大类。电子探针测定结果表明,岩石中的暗色矿物辉石类主要为霓辉石和霓石,角闪石类主要为钙质浅闪石、阳起石质闪石、镁质角闪石、钠钙质绿闪石、黑云母类主要为铁云母和金云母。浅色矿物化学及碱性长石粉晶X射线衍射研究表明,长石类主要为富K端员的微粒长石和最大微斜长石,少量钠长石,极少Na-Ca系列的斜长石。霞石类主要为钾霞石和钙霞石。  相似文献   

7.
本文吸收了一般岩石化学换算法的合理部分,根据稳定矿物组合与化学成分之间的规律性联系,确定了前者的岩石化学特征值.以简单联立方程解出某元素不同矿物中的配比.根据不同岩石化学条件确定成分多变矿物中元素组合和分配方式;并考虑了钾钠长石之间的常见类质同象范围,以确定符合自然实际的矿物组合和含量.计算结果投影于Qu-A-P1三角图,确定矿物成分的岩石命名.本文对各种常见的酸性深成-火山岩都建立了系统的自然矿物换算法和命名系统,其中深成岩系统包括各种含锂的云母类花岗岩、碱性花岗岩、堇青石花岗岩、萤石黑云母花岗岩、榍石角闪石黑云母花岗岩以及黑云母白云母花岗岩等.本换算法改进  相似文献   

8.
西秦岭柴家庄和酒刺梁花岗岩地球化学及与矿产的关系   总被引:4,自引:0,他引:4  
柴家庄和酒刺梁花岗岩是西秦岭地区两个典型的岩体。岩石均为二长花岗岩,岩石化学表现为富硅、偏碱和铝过饱和的特征,均属钙碱性系列花岗岩;斜长石矿物电子探针分析显示斜长石An为6.68~12,主要为钠长石和更长石,岩浆演化不明显。稀土元素配分型式均为几乎不具负铕异常的轻稀土富集型。两个岩体岩石地球化学特征相近,但由于其时代相差很远,并非同源岩浆结晶演化的产物。柴家庄岩体虽然可为柴家庄金矿提供部分成矿物源,但不可能提供热能;酒剌梁岩体既不能为柴家庄金矿提供热能,也不可能提供物源。  相似文献   

9.
岩浆岩,特别是期中的花岗岩类岩石,不仅分布广泛,而且与绝大多数的金属矿床有着密切的成因联系。在岩浆岩中,仅仅除了超基性岩之外,长石矿物几乎是所有其余岩浆岩个可缺少和唯一主要的矿物成份。尤其是斜长石类,由于它们广泛的并按自已成份的变化(Ca 与 Na 含量比例的变化),而有规律性的出现在酸性到基性岩浆岩中,因而就成了鉴定岩浆岩(包括肉眼和镜下)唯一重要的标志了。所以,在野  相似文献   

10.
塔里木盆地志留系柯坪塔格组砂岩岩石学特征与物源分析   总被引:4,自引:0,他引:4  
张鑫  张金亮  覃利娟 《矿物岩石》2007,27(3):106-115
通过对塔里木盆地志留系柯坪塔格组砂岩的碎屑矿物含量与氧化物、微量元素变化规律分析,研究该地区砂岩的岩石学及其物源特征。研究结果表明塔里木盆地志留系柯坪塔格组构造环境为活动大陆边缘和被动大陆边缘,物源区主要为再循环造山带。砂岩成分主要在石英、钾长石、斜长石、伊利石和绿泥石等矿物之间变化。化学风化作用指标(CIW)和化学蚀变作用指标(CIA)反映了该地区砂岩受到了强烈的风化作用,风化作用强度为:塔中地区砂岩>塔北地区砂岩>满东地区砂岩。化学组分变化指标(ICV)反映有些砂岩中含有第一次旋回沉积物。A-CN-K三角图反映了砂岩的母岩中斜长石含量要高于钾长石含量,在花岗闪长岩和花岗岩之间变化,砂岩在风化过程中受到了钾的交代作用,长石以及长石中的高岭石发生了伊利石化。微量元素及其特征参数(如La/Yb-ΣREE、δEu等)也反映了该地区砂岩来源于花岗岩物源区。  相似文献   

11.
Located in the Luonan county, Shaanxi Province, northwest China, Jinduicheng, Shijiawan and Huanglongpu molybdenum deposits constitute the most important molybdenum mineralized district in China. Among these three deposits, the Jinduicheng and Shijiawan molybdenum deposits are connected spatially and genetically with granitoid porphyry (124 ± 6 Ma, K-Ar biotite), and consist of disseminated-veinlet ores. Geochemical studies of rare earth elements (REE) furnish further evidence for understanding the rock- and ore-forming processes of these two porphyry molybdenum deposits and their related granitoid rocks. The REE distribution in molybdenum ore, granitoids and their Middle Proterozoic meta-volcanic wall rocks is discussed. The similarities between the REE signatures of the Shijiawan molybdenum-bearing monzogranite porphyry and the neighbouring Laoneushan monzogranite (130 ± 5 Ma, K-Ar biotite) show that they were produced at the same evolutional stage of granitoid magma derived mainly from crustal anatexis. The Shijiawan biotite monzogranite porphyry may be an apophysis of the Laoneushan granitoid batholith. Compared to the Shijiawan monzogranite porphyry, the Jinduicheng molybdenum-bearing granite porphyry is characterized by a high content of HREE, and depletion in LREE. The unique REE patterns indicates that the molybdenum-bearing granite porphyry was formed by thermogravitation diffusion of a granitoid magma. The slight depletion of REE abundance in the altered granitoid porphyry and meta-volcanic wall rocks shows that leaching of REE occurred during breakdown of the primary mineral assemblage, and crystallization of secondary minerals. The high REE content of molybdenum ore represented re-deposition of the mobilized molybdenum and REE.  相似文献   

12.
The Mesozoic porphyry assemblage in the Jinduicheng area is a special molybdenum area in China, the Mo deposits, including the Jinduicheng, Balipo, Shijiawan, Huanglongpu, are distributed. The emplacement age and geochemical features of the granites in the Jinduicheng area can provide essential information for the exploration and development of the porphyry molybdenum deposit. In this study, we report LA–ICP–MS zircon U–Pb age and zircon Hf isotopic compositions of granite porphyries from the Jinduicheng area, and provide insights on the petrogensis and source characteristics of the granites. The results show that the zircon U–Pb ages of the Jinduicheng granite porphyry (143±1 Ma) and the Balipo granite (154±1 Ma), agree well with the Re–Os ages of molybdenite in the Jinduicheng molybdenum polymetallic deposit (139±3 Ma) and the Balipo molybdenum polymetallic deposit (156±2 Ma), indicating that the emplacement of granite porphyries occurred between Late Jurassic and Early Cretaceous. Zircons granite from the Jinduicheng area give the εHf(t) values mainly ranging from ?10 to ?16, and ?20 to ?24, respectively, corresponding to two–stage model ages (tDM2: mainly focused on 1.86–2.0 Ga, and 2.2–2.6 Ga, respectively) of zircons of the granite from the Jinduicheng values. The ore–forming materials are mainly derived from crust, with minor mantle substances. Zircons of the granite from the Balipo area give εHf(t) values ranging from ?18 to ?20, ?28 to ?38, and ?42 to ?44, respectively, corresponding to two–stage model ages (tDM2: mainly focused on 1.88–3.0 Ga, and 3.2–3.90 Ga, respectively). the εHf(t) values of the Jinduicheng porphyry more than that of the Balipo porphyry, and two–stage model ages (tDM2) less than that of the Balipo porphyry, shows that he source of the porphyries originated from ancient lower crustal materials in the Jinduicheng area, and mixed younger components, more younger components contributed for the source of the Jinduicheng porphyry.  相似文献   

13.
The Qianlishan granite complex, situated 16 km southeast of Chenzhou City, Hunan Province, China, hosts the Shizhuyuan W–Sn–Bi–Mo deposit. This complex, which intruded the Protozoic metasedimentary rocks and the Devonian clastic sedimentary and carbonate rocks, consists of mainly medium- to coarse-grained biotite granites and minor amounts of fine-grained biotite granite in addition to granite and quartz porphyry. K–Ar ages suggest three episodes of plutonism: the medium- to coarse-grained biotite granite (before 152 Ma), the fine-grained biotite granite (137 Ma), and the granite porphyry (129–131 Ma). Muscovite ages of the greisen are 145–148 Ma, suggesting that the W–Sn–Bi–Mo mineralization was related to the main, medium- to coarse-grained biotite granites. The K–Ar age of the hydrothermal vein mineralization is 92 Ma and is probably related to the porphyries.  相似文献   

14.
温泉斑岩钼矿床位于西秦岭东段,是该区发现的一个具有大型矿前景的斑岩型钼矿床。围岩温泉复式岩体发育5个岩相单元(Ⅰ~Ⅴ),钼矿体(化)主要赋存于复式岩体Ⅱ单元富含镁铁质包体的黑云母二长花岗斑岩和Ⅲ单元富含镁铁质包体的似斑状二长花岗岩及其接触带内,其余岩相(包括单元Ⅴ似斑状正长花岗岩)很少发育矿化。该研究使用全岩地球化学数据和锆石微量元素含量数据,计算得到不同岩相单元的氧逸度。Ⅱ单元和Ⅲ单元含矿斑岩相对氧逸度ΔFMQ分别为1.35和1.38。Ⅰ单元黑云母花岗岩和Ⅳ单元二长花岗斑岩相对氧逸度ΔFMQ分别为-0.61和-0.73,明显低于含矿斑岩。富集地幔物质的加入与否可能是造成不同岩相之间氧逸度差异的主要原因。高氧逸度的熔体可以将秦岭地区古生代富钼沉积物中的钼氧化萃取出来,并使钼与高价态硫络合,不断在熔体中高度富集,最终成矿。氧逸度较低的熔体很难萃取和保存足够的钼,因而很少发育矿化。  相似文献   

15.
长山钼矿位于青海省东昆仑西段祁漫塔格地区,在以往发现接触交代型铁矿体的基础上,近年来发现了花岗斑岩及斑岩型钼矿。斑岩型钼矿的发现,对于东昆仑西段祁漫塔格地区斑岩成矿研究和矿产勘查实践具有重要的意义。在初步研究长山矿区侵入岩分布、岩石类型、岩石学和岩石化学的基础上,发现矿区花岗斑岩呈岩枝状侵入于似斑状二长花岗岩中,地表出露面积小于0.01km2,深部揭露最大厚度可达30m,岩石具有高Si,低Ti,K/Na值大,分异程度高,固结程度低的特征。与西藏冈底斯钾质钙碱性花岗岩和含矿斑岩具有相似的岩石化学特征,但SiO2含量更高,Al2O3含量较低。综合分析认为,矿区花岗斑岩可能与碰撞后伸展构造背景密切相关。矿区钼矿具有斑岩型成矿的特点,矿区中西部的深部及区域具有进一步寻找斑岩型矿产的前景。  相似文献   

16.
The East Qinling–Dabie orogenic belt accommodates the largest Mo ore district in the world. It contains 8.43 Mt of proven Mo metal reserves which accounts for 66% of the total proven Chinese Mo reserves. The Mo ore district includes 24 deposits and 12 occurrences, with four major types of Mo mineral systems, i.e., porphyry, porphyry-skarn, skarn and hydrothermal veins. The latter can be further subdivided into quartz vein and carbonatite vein types. Although Mo mineralization in the belt began in the Paleoproterozoic (1680 ± 24 to 2044 ± 14 Ma), all economically significant deposits were formed during the Mesozoic. Re/Os dating of molybdenite has shown that there are three episodes of Mo mineralization, i.e., Late Triassic (233–221 Ma), Late Jurassic to Early Cretaceous (148–138 Ma) and Early to middle Cretaceous (131–112 Ma).Late Triassic Mo deposits developed as molybdenite–quartz veins and carbonatite vein types. Stable isotope systematics (C, O, S) and high contents of Re and Sr indicate that the carbonatite Mo veins are mantle-derived. Porphyry and porphyry–skarn Mo mineral deposits were formed in the Late Jurassic to Early Cretaceous and Early to middle Cretaceous. The Late Jurassic to Early Cretaceous granite porphyries that are associated with the Mo deposits usually occupy less than 1.5 km2 at the surface and are situated in the East Qinling area, far west of China's continental margin. On the other hand, the Early to middle Cretaceous batholiths and granite porphyries, , with associated Mo deposits are located in the Dabieshan area and eastern part of the East Qinling area. The Late Jurassic to Early Creataceous granitoids and related Mo deposits possibly formed in a back-arc extensional setting of the Eurasian continental margin, which was probably triggered by the oblique subduction of the Izanagi plate. The Early to middle Cretaceous batholiths and granite porphyries are linked to the tectonic regime of lithospheric thinning, asthenospheric upwelling and partial melting of the crust, induced by a change in Izanagi Plate motion parallel to the continent margin.In the East Qinling–Dabie belt there are vein type Pb–Zn–Ag deposits surrounding porphyry and/or porphyry–skarn Mo (W) deposits, forming well defined ore clusters. The same spatial arrangement (i.e., porphyry Mo stockworks and outlying Pb–Zn–Ag ore veins) is also observed at the deposit scale. Thus, Mo porphyry stockworks and distal polymetallic veins belong to the same ore system and may reflect an outward temperature decrease from the highly fractionated granite plutons. Both, porphyry stockworks and polymetallic veins, can be used as vectors for further prospecting.  相似文献   

17.
十二排钼矿床位于上杭-云霄断裂带与闽西南拗陷的复合部位,是紫金山铜金矿田外围新近探明的一处具有中大型远景的斑岩型钼矿床。野外地质调查显示,其钼矿化呈细脉状、网脉状主要产出于黑云母二长花岗岩和黑云母花岗斑岩中。热液蚀变具有斑岩型矿床的分带特征,由黑云母花岗斑岩向外依次发育钾硅酸盐化带、绢英岩化带和青磐岩化带,钼矿体主要赋存于绢英岩化与钾硅酸盐化构成的叠加带中。锆石U-Pb定年结果表明,黑云母二长花岗岩和黑云母花岗斑岩分别形成于(143.1±0.9)Ma和(143.5±0.4)Ma。4件辉钼矿样品的Re-Os加权平均年龄为(143.9±2.1)Ma。辉钼矿的w(Re)为1.2×10~(-6)~7.8×10~(-6),说明成矿物质可能主要来自地壳。岩石地球化学分析结果显示,十二排含矿花岗岩具有相似的主量和微量元素组成,均属于弱过铝质高钾钙碱性I型花岗岩,其中,黑云母花岗斑岩表现出高分异花岗岩特征,两者可能是古老变质基底来源的熔体经历不同程度分异结晶的产物,并混入有少量幔源物质。综合已有的资料,文章认为十二排斑岩型钼矿化与早白垩世早期花岗质岩浆活动密切相关,上杭-云霄断裂带存在古太平洋板块俯冲后撤引发构造体制转换阶段的成岩成矿响应,进一步找矿勘查工作应加强评价早白垩世早期高分异花岗岩体的钼多金属成矿潜力。  相似文献   

18.
张可  聂凤军  侯万荣  李超  刘勇 《矿床地质》2012,31(1):129-138
内蒙古哈什吐矿床是新发现的钼矿床。为进一步查明哈什吐钼矿床的形成时间,首次对主要钼矿体的10件辉钼矿样品进行铼-锇同位素分析,所获铼-锇同位素模式年龄变化范围为(147.0±2.1) Ma~(149.5±2.2) Ma,加权平均值为(148.22±0.67) Ma,获得等时线年龄为(148.8±1.6) Ma,MSWD值为0.95。铼-锇同位素年代数据及野外地质证据表明,哈什吐钼矿床为晚侏罗世构造-岩浆作用及相关流体活动的产物。哈什吐钼矿床辉钼矿的w(Re)介于(0.65~2.06)×10-6,平均值为1.28×10-6,通过与区域内同时期形成的若干相似类型钼矿床的Re含量对比分析,初步推测认为哈什吐钼矿床成矿物质源区具有更偏向于壳源的特征。哈什吐斑岩型钼矿床形成时代的厘定对于提高该矿床的理论研究水平和指导隐伏金属矿床的找矿勘查工作均具有重要意义。  相似文献   

19.
Situated in the Henan-Shaanxi fault-uplift area on the southern margin of the Sino-Korean Paraplatform, the Jinduicheng porphyry molybdenum deposit is the most important molybdenum producer in China. During Yenshanian the Jinduicheng granite porphyry was emplaced in metaspilite of the Proterozoic Xionger Group, controlled by a NW-trending fault. Mineral compositions are mainly quartz (25–40%), microcline and microcline-perthite (27–40%) and plagioclase (An 8–14, 14–32%), associated with minor biotite and muscovite, and phenocrysts are made up of K-feldspar, quartz and plagioclase. Accessory minerals include magmatite, apatite and zircon. The porphyry contains SiO2 73.83% and K2O + Na2O 8.06% (with K2O/Na2O ratio being 1.82), beloning to the calc-alkaline series. Mineralization occurs in the porphyry body and biotitized and hornfelsized spilite within the exocontact zone. The maximum depth of mineralization reaches 1000 meters below the surface. According to mineral assemblage, ore veins are classified into five types: (1) pyrite-quartz; (2) pyrite-K-feldspar-quartz; (3) pyrite-molybdenite-quartz; (4) pyrite-molybdenite-K-feldspar-quartz; and (5) muscovitefluorite-pyrite-molybdenite-quartz. As the most important economic molybdenum mineral, molybdenite occurs in various forms. Wall-rock alterations show a gross zonation of K-feldspathization-greisenization → silicification → propylitization from the porphyry outwards, of which silicification is most intense and has close genetic relationship with Mo mineralization. Fluid inclusion studies yield homogeneous temperatures ranging from 250 to 240°C, with the main stage between 400 and 300°C. Gas inclusions frequently coexist with multiphase inclusions containing such daughter minerals as halite, sylvite, molybdenite and K-feldspar. Under moderate-high temperatures, lowerfo2, highfs2 and weak acidity conditions, boiling of ore-forming fluids is a prerequisite for the precipitation of molybdenite. Sulfur, oxygen and carbon isotopic compositions suggest that at the high temperature stage (450°C) magmatic water is dominant and at the main ore-forming stage a mixture of magmatic water and meteoric water is expected. At the late stage, the mixture is predominated by meteoric water. Sulfur and molybdenum are mostly of magmatic origin.  相似文献   

20.
本文对满洲里地区灵泉盆地、包格德乌拉盆地及额尔古纳地区上护林盆地和恩和盆地及周边的原确定为古生代和中
生代的花岗质岩石进行了岩石学和锆石LA-ICP-MS U-Pb 年代学研究,以便揭示研究区中生代的构造演化历史。研究区内
12 个代表性花岗岩中的锆石均呈自形-半自形晶,显示出典型的岩浆生长环带,结合其较高的Th/U比值(0.31~3.63),暗
示其为岩浆成因。测年结果表明,该区中生代花岗质岩浆活动可划分成以下三期:(1)中三叠世岩浆活动,可进一步划分
成241 Ma 和229 Ma 两期岩浆事件,241 Ma 黑云母正长花岗岩和229 Ma 正长花岗岩的存在可能与古亚洲洋闭合后的伸展环
境有关;(2)早- 中侏罗世岩浆事件,可进一步划分成(180±5)Ma 和(171±2)Ma 两期岩浆事件,黑云母二长花岗岩-
正长花岗岩组合,结合其斑岩型Mo 矿的存在,反映研究区处于活动陆缘的构造背景,可能与蒙古- 鄂霍茨克洋的俯冲作用
有关;(3)早白垩世早期岩浆活动,可进一步划分成(140~150)Ma 和(134±2)Ma 两期岩浆事件,前者与区域内发育的
吉祥峰组火山岩形成时代相近,后者的火口充填型产状表明它们应是该期岩浆事件演化晚期的产物,该期岩浆事件在松辽
盆地以东地区的缺乏暗示它们形成于伸展环境,并与蒙古-鄂霍茨克缝合带的演化有关。  相似文献   

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