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1.
本文依据大量测试数据,对金堆城地区花岗岩类主要造岩矿物学特征同钼迁移富集成矿关系进行了探讨。研究结果表明:异常晶胞条纹长石和正长石以及富重稀土和具明显负铕异常的黑云母是含钼花岗岩类标型矿物,并且可作为花岗岩类岩石发育地区寻找隐伏钼矿体的指示性矿物。钾钠长石和斜长石的结构状态和成分不仅可以提供有关花岗岩类成因演化的信息,其矿物本身亦可成为钼的载体矿物。岩浆期后,强烈的热液蚀变作用可造成钾钠长石和斜长石分解,并且引起钼的释放,从而形成高品位钼矿石。  相似文献   

2.
Abstract. The Umanotani-Shiroyama pegmatite deposits, the largest producer of K-feldspar and quartz in Japan, are of typical granitic pegmatite. Ilmenite-series biotite granite and granite porphyry, hosting the ore deposits, and biotites separated from these rocks yielded K-Ar ages ranging from 89.0 to 81.4 Ma and 95.2 to 93.7 Ma, respectively. Muscovite and K-feldspar separated from the ore zone yielded K-Ar ages with the range of 96.2 to 93.1 Ma and 87.3 to 80.7 Ma, respectively. Muscovites from quartz-muscovite veins in the ore zone and in the granite porphyry yielded K-Ar ages of 90.4 and 76.3 Ma, respectively. K-feldspar is much younger in age than coexisting muscovite. It is noted that the K-Ar ages of biotite separates and the whole-rock ages are identical to those of muscovite and K-feldspar in the ore zone, respectively. These time relations, as well as field occurrence, indicate that the formation of the pegmatite deposits at the Umanotani-Shiroyama mine is closely related in space and time to a series of granitic magmatism of ilmenite-series nature. Using closure temperatures of the K-Ar system for biotite and K-feldspar (microcline), cooling rate of the pegmatite deposits is estimated to be about 82C/m.y. at the beginning, but slowed down to about 15C/m.y. in the later period.  相似文献   

3.
The Gaijing Pb–Zn–Mo deposit and Shapinggou Mo deposit in the Yinshan region, Jinzhai, Anhui province, China, are hosted in various granitic intrusions with 40Ar/39Ar ages obtained for biotite and hornblende of 136.8 ± 1.6 Ma (medium-grained monzogranite), 130.4 ± 1.2 Ma (fine-grained granite), and 125.4 ± 1.0 Ma (fine-grained diorite). The modes of occurrence and cross-cutting relationships among the igneous intrusions indicate that alkali quartz-syenite and quartz-syenite porphyry (cryptoexplosive breccia) formed later than the calc-alkali monzogranite, granite, and diorite. Molybdenum mineralization occurs in pipe-like bodies hosted in cryptoexplosive breccia (pipe), quartz-syenite (porphyry), monzogranite, and granite, whereas Pb–Zn mineralization occurs in veins distally from the Mo mineralization. The Re–Os isotopic model ages of molybdenite from the Gaijing Pb–Zn–Mo deposit are 112.6 ± 1.3 and 113.5 ± 1.3 Ma, consistent with the ages of other molybdenum deposits throughout the East Qinling–Dabie metallogenic belt. The geological characteristics and isotopic ages of the Gaijing Pb–Zn–Mo and Shapinggou Mo deposits indicate a genetic relationship to the emplacement of the quartz-syenite (porphyry) and to shallow-seated porphyry–cryptoexplosive breccia intrusions. The present results, combined with existing data, suggest that the Pb–Zn–Mo deposits and related igneous rocks were formed in a geodynamic setting of regional lithospheric thinning, delamination, and thermal erosion in East China. The deposits are part of the East Qinling–Dabie molybdenum belt, which in turn is part of a large-scale E–W-trending metallogenic belt in East China.  相似文献   

4.
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   

5.
石家湾钼矿床位于东秦岭钼成矿带的西部黄龙铺地区,矿体主要分布于石家湾花岗斑岩外接触带的围岩中,呈细脉-网脉浸染状产出,属斑岩型矿床。花岗斑岩岩石呈斑状结构,斑晶与基质成分相同,主要矿物包括钾长石、石英、斜长石和黑云母。锆石的LA-ICP-MSU-Pb年代学研究表明,花岗斑岩的年龄为139.9~145.6Ma,加权平均年龄为(141.4±0.6)Ma(MSDW=1.00),侵位于早白垩世,与辉钼矿的Re-Os同位素年龄138Ma相近。岩石地球化学分析表明,石家湾花岗斑岩具有高硅〔w(SiO2)70.52%~73.04%〕、富碱〔w(Na2O)+w(K2O)为8.13%~9.12%〕、准铝质特征(A/CNK为0.99~1.13);稀土元素总量中等偏低(∑REE为145.27×10-6~156.97×10-6),富集轻稀土元素(∑LREE为135.38×10-6~145.97×10-6),中等Eu亏损(δEu0.65~0.71),标准化曲线呈右倾;微量元素以富集Rb、Ba、U而亏损P、Ti、Ta、Nb元素为特征。岩石具有较高的Sr初始比值(0.7073~0.7077)及较低的εNd(t)值(-14.8~-16.0)...  相似文献   

6.
黑龙江省岔路口超大型斑岩钼矿床位于大兴安岭北部,是目前我国东北地区最大的钼矿床,矿体赋存于中酸性杂岩体及侏罗系火山-沉积岩内,其中花岗斑岩、石英斑岩、细粒花岗岩与钼矿化关系密切.本文采用LA-ICP-MS锆石U-Pb定年方法,获得了矿区内二长花岗岩、花岗斑岩、石英斑岩、细粒花岗岩、流纹斑岩、闪长玢岩及安山斑岩的结晶年龄分别为162±1.6 Ma、149±4.6 Ma、148±1.6 Ma、148±1.2 Ma、137±3.3 Ma、133±1.7Ma和132±1.6 Ma.岔路口矿区内至少存在3期岩浆活动,其顺序为侏罗纪火山-沉积岩、二长花岗岩→晚侏罗世花岗斑岩、石英斑岩、细粒花岗岩→早白垩世流纹斑岩、闪长玢岩、安山斑岩.岔路口矿床成矿时代为晚侏罗世,是东北亚大陆内部构造-岩浆活化的产物,形成于古太平洋板块俯冲作用引起的挤压向伸展构造体制转折背景,与我国东部大规模钼矿化爆发期相对应.  相似文献   

7.
张向飞  李文昌  尹光候  杨镇  唐忠 《岩石学报》2017,33(7):2018-2036
休瓦促钨钼矿床位于义敦岛弧南段的香格里拉北部,目前已达中-大型。该区发育由两期岩体(晚三叠世的黑云母花岗岩和晚白垩世的斑状二长花岗岩)叠加而成的复式岩体,而该矿区钨钼矿形成于82~86Ma。然而,两期岩体间关系,以及晚三叠世岩体对矿床的形成有怎样的贡献,目前未有报道。笔者通过对两期岩体形成时间及其地球化学特征的研究,从成岩年代学、岩浆氧逸度等方面探究上述问题,并揭示两期岩体的成矿特征,为找矿实践提供一定的参考依据。研究表明,黑云母花岗岩结晶年龄为211.7±2.6Ma,SiO_2偏高(69.48%~73.73%),属高钾的钾玄质系列,偏铝质,富集轻稀土元素和大离子亲石元素而亏损重稀土元素以及高场强元素Nb、Sr、Ti等,有微弱的负Eu异常,岩浆氧逸度相对较高(fO_2=-19.4~-9.1,平均-13.7);斑状二长花岗岩结晶年龄为76.8±3.8Ma,且有一颗锆石核部的年龄值为219±2.6Ma,该岩体与前者有相似的地球化学特征,SiO_2高(67.35%~75.65%),属偏铝质的钾玄质系列,ΣREE较高,高于黑云母花岗岩,铕负异常明显大于前者,岩浆氧逸度相对较低(fO_2=-30.4~-18.2,平均-23.4)。据此,结合休瓦促矿区断层发育情况,提出矿区内两期岩体以近南北向F_4为界呈断层接触关系,北西向走滑断层(F_1-F_3)为控矿构造。本文认为,晚期斑状二长花岗岩对早期黑云母花岗岩具有一定的继承性关系,黑云母花岗岩来源于晚三叠世甘孜-理塘洋向西俯冲环境下地壳的部分熔融,岩浆富水、氧逸度高,利于形成Cu-Au矿床,且在找矿实践中得到部分验证;斑状二长花岗岩来源于加厚下地壳的部分熔融,岩浆贫水、氧逸度低于黑云母花岗岩,与W-Mo矿床相关。即,晚白垩世岩浆热液沿矿区断裂-裂隙系统运移,继承和发展早期岩浆活动,形成脉状细晶岩和W-Mo矿床。  相似文献   

8.
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   

9.
邦铺斑岩型钼(铜)矿床位于甲玛铜多金属矿床北东约30 km处,与钼(铜)成矿有关的岩体主要为二长花岗斑岩,次为花岗闪长斑岩及闪长(玢)岩.通过对二长花岗斑岩体进行LA-ICP-MS锆石U-Pb年龄测试,获得了含矿母岩的年龄,二长花岗斑岩的26颗锆石206Pb/238U加权平均年龄为(16.23±0.19)Ma(MSWD...  相似文献   

10.
Many hydrothermal Cu–Mo–Au deposits related to granitoid intrusives were recently discovered in the West Qinling Orogenic Belt (WQOB). These deposits were mainly formed during the late Indosinian epoch (ca. 214 Ma), and the regional geological setting of Cu–Mo ore formation in WQOB during this epoch is poorly understood until now. This paper describes the geochronology and geochemistry of the Wenquan ore-bearing pluton, a composite granite body, to study the geologic background of magmatic emplacement and ore formation. The Mo mineralisation occurs at the contact between a fine-grained biotite monzogranite and a medium- to fine-grained porphyritic monzogranite. Zircon 206Pb/238U ages of 223 ± 3 Ma (biotite monzogranite) and 225 ± 3 Ma (porphyritic monzogranite) were obtained. Geochemical analyses show that the Wenquan pluton is a high-K calc-alkaline to shoshonite series rock with relatively high LREE and low HREE and a moderate to weak negative Eu anomaly. Relatively negative anomalies of Ba, Ti, P, Nb, Ta also exist. These results imply that the Wenquan pluton was emplaced during a transitional process (from collision to extension) between the Yangtze Craton and North China Craton. During the later Indosinian epoch, the East Qinling Orogenic Belt (EQOB) and WQOB had similar tectonic settings, and intensive magmatic activity and Mo mineralisation occurred. The EQOB was then involved in the Mesozoic subduction of the Pacific plate, and its subsequent tectonic evolution was different from that of the WQOB.  相似文献   

11.
北祁连金佛寺岩体地球化学特征及构造意义   总被引:1,自引:0,他引:1  
金佛寺岩体为北祁连华力西早期形成的一个较大的复式深成岩基,主要岩石类型为二长花岗岩、黑云二长花岗岩和正长花岗岩,为高钾钙碱性岩系,具高钾、高铝和低钛的特点;REE分布模式为弱Eu异常;在Peace的Rb-Y-Nb图解中位于后碰撞花岗岩类区。岩体的同位素锆石U-Pb年龄为345.0±75.0Ma,代表其形成时代为晚泥盆世...  相似文献   

12.
内蒙古八大关矿区印支期岩浆活动及其找矿意义   总被引:3,自引:0,他引:3       下载免费PDF全文
通过对八大关矿区主要花岗岩体进行了系统采样,其镜下鉴定结果显示该区侵入岩主要为花岗岩、黑云母花岗岩、花岗斑岩、钾长花岗岩、花岗闪长斑岩;6件样品的LA-MC-ICP-MS锆石U-Pb年龄主要在243.87~231.63Ma。结合成矿斑岩的形成时代,矿区主要侵入岩均形成于印支期,并不存在海西期或燕山期侵入岩体。根据岩体年龄的分布情况,将矿区印支期岩浆活动划分为243.87~237.11 Ma和231.63~229.00 Ma2个阶段,早阶段岩浆活动主要形成矿体围岩;而铜钼矿化主要与晚阶段岩浆活动有关。此外,整个鄂霍次克造山带两侧的印支期岩浆活动也具有两阶段的特点,且与鄂霍次克洋的俯冲密切相关,考虑到两侧已查明的印支期超大型-大型斑岩型矿床,认为八大关矿区外围及额尔古纳地区存在寻找印支早期斑岩矿床的可能性。  相似文献   

13.
The Huanglongpu carbonatite-related Mo ore field is located in the Lesser Qinling Orogenic belt in the southern margin of the North China block. The ore field is composed of six deposits, Yuantou, Wengongling, Dashigou, Shijiawan, Taoyuan and Erdaohe, all of which are genetically related to carbonatite dykes except for the Shijiawan deposit which is associated with a granitic porphyry. The Yuantou carbonatite dykes intruded into Archean gneiss and other carbonatites emplaced into Mesoproterozoic volcanic and sediment rocks. The carbonatites are mainly composed of calcite and variable amounts of quartz and K-feldspar and minor molybdenite. Re–Os dating of molybdenite from the Yuantou carbonatite yields a weighted average age of 225.0 ± 7.6 Ma, consistent with the molybdenite age (221 Ma) from the Dashigou deposit. The rocks are characterized by high heavy REE (HREE) contents and consistent flat REE distribution patterns with La/Ybcn ~ 1. Quartz in the carbonatites from Yuantou and Dashigou deposits shows consistent O isotopes (8.1–10.2‰) similar to the associated calcite (7.2–9.5‰). The quartz and associated K-feldspar contain lower Zr, Hf and higher HREE abundances and negligible Eu anomaly relative to those from the granite porphyry in Shijiawan. Both minerals are primary products in the carbonatitic liquid, and not captured from the wall-rocks or crustal-derived silicate magmas, or a hydrothermal origin. Thus, the Huanglongpu carbonatitic liquids were enriched in Si and Mo, which may be produced by intensely fractional crystallization of non-silicate minerals.  相似文献   

14.
甘肃小柳沟矿区钨钼矿控矿因素及成因关系探讨   总被引:1,自引:0,他引:1       下载免费PDF全文
小柳沟矿区是北祁连造山带西段主要的钨钼成矿区。钨成矿主要受岩体、地层岩性、构造控制。岩体是成矿的最主要因素,是矿床的成矿物质来源之一,酸性侵入体为成矿提供了丰富的物质来源;岩体在侵入过程中所提供的含矿热液对元素的活化迁移起了积极作用。千枚岩、灰岩、角闪云母片岩是成矿的主要矿源层。小柳沟隐伏岩体上升形成的断层为成矿流体的运移和富集提供了条件。钼成矿与岩体及岩体顶部的裂隙网脉有关。小柳沟热流体在斑状花岗岩体顶部形成构造裂隙网,上升热流体与地下水发生对流循环,使钼在岩体和围岩的裂隙中成矿。小柳沟矿区有着三(多)位一体的成矿系列,岩体外接触带和地层层间裂隙形成以夕卡岩型为主的白钨矿,岩体内部及岩体顶部形成斑岩型和石英脉型钼矿。  相似文献   

15.
云南澜沧老厂隐伏花岗斑岩体地球化学特征及构造环境   总被引:4,自引:1,他引:3  
详细阐述了老厂隐伏花岗斑岩的地球化学特征,利用图解判别了其形成的构造环境,并初步探讨其成因机制。老厂花岗斑岩SiO2含量(68.09%~73.48%)与中国花岗岩平均值基本相当,富碱(Na2O+K2O为7.73%~8.51%),富钾(K2O/Na2O为1.85~25.8),属酸性偏铝质高钾钙碱性系列岩浆岩。轻稀土元素中等富集,重稀土元素相对亏损,(La/Yb)N=12.01~24.85,δEu=0.79~0.99(为弱负异常),稀土元素分布曲线为平滑的右倾曲线。通过花岗斑岩地球化学特征、图解判别、锆石标型特征等的综合研究,认为老厂隐伏花岗斑岩体是以壳源为主的壳幔源混合成因花岗斑岩,形成于青藏高原新生代碰撞造山主碰撞阶段区域挤压机制下的主碰撞构造环境。碰撞激发深部地幔局部熔融,使熔融体沿穿透性构造发育的早期裂谷带轴部上涌,成为构造-岩浆-热事件的主要驱动力;地幔物质涌入,向下地壳注入新生物质,诱发下地壳物质熔融,形成壳幔混合源富钾含矿岩浆。  相似文献   

16.
霍吉河钼矿床位于小兴安岭—张广才岭成矿带北段,是近年发现的钼矿床。该钼矿含矿岩体主要为黑云母花岗闪长岩,钼矿体大多数呈细脉浸染状在花岗闪长岩中绕角砾岩筒分布。含矿花岗闪长岩锆石U-Pb谐和年龄为(184.0±1.5)Ma,形成于燕山早期;其SiO2质量分数为60.06%~69.34%、K2O和Na2O质量分数分别为3.36%~5.78%和2.60%~3.78%,铝指数A/CNK=0.78~0.98,属于偏铝质高钾钙碱性I型花岗岩;轻重稀土分馏强烈(LaN/YbN=10.96~24.99),Eu负异常不明显(Eu/Eu*=0.72~0.86);富集Rb、Ba、Th、U、K、Pb和Sr等元素,亏损Nb、Ta、Ti、Y和Yb等元素,这或者暗示其岩浆源区相对富水,或者反映岩浆源区可能遭受过俯冲带流体的交代作用,其形成与太平洋板块俯冲作用有关。结合主成矿温度、成矿地质特征及成矿构造背景,认为霍吉河钼矿成因应属于斑岩型钼矿。  相似文献   

17.
Summary The composite Yozgat batholith consists of a S-I-A-type granitoid association intruding the supra-subduction zone-type (SSZ-type) central Anatolian ophiolite and medium- to high-grade metasedimentary rocks of the central Anatolian crystalline complex. These rocks are unconformably covered by Palaeocene to Early Eocene sedimentary rocks. The I-type granitoids are the most common rock association of this huge batholith. In an area between the towns of Şefaatli and Yerk?y, the southwestern part of the batholith can be subdivided into five mappable units: the Ak?akoyunlu quartz monzodiorite (mafic; hornblende K-Ar cooling ages of 77.6–79.3 Ma); the Cankılı monzodiorite (mafic; hornblende K-Ar cooling age of 71.1 Ma); the Adatepe quartz monzonite (mafic; hornblende K-Ar cooling age of 68.0 Ma); the Yassıağıl monzogranite (felsic; hornblende + biotite K-Ar cooling ages of 69.9–79.8 Ma) and the Karakaya monzogranite (felsic; hornblende + biotite K-Ar cooling ages of 71.3–77.0 Ma). All the lithological units, except the Karakaya monzogranite, include large K-feldspar megacrysts and various types of mafic microgranular enclaves in field outcrops, indicating mingling and mixing. In addition, microscopic textures showing the hybridization between the coeval mafic and felsic magma sources are present. Whole-rock major element geochemistry shows a high-K calc-alkaline, metaluminous, I-type composition with an aluminium saturation index (ASI) less than 1.10 and with CIPW diopside content in all the lithological units. Large ion lithophile elements (LILE), light rare earth elements (LREE), some high field strength elements (HFSE) (except Nb) enrichments and significant crustal contribution revealed by the oxygen and sulphur stable isotope compositions in the mafic and felsic I-type granitoid units are consistent with mafic lower crustal and metasomatized mantle sources the latter of which were metasomatized by earlier supra subduction zone (SSZ)-derived fluids during the development of the SSZ-type central Anatolian ophiolite. Supplementary material to this paper is available in electronic form at  相似文献   

18.
小兴安岭霍吉河钼矿区含矿花岗岩类特征及成矿年龄   总被引:5,自引:3,他引:2  
张琳琳  刘翠  周肃  孙凯  邱瑞照  冯瑶 《岩石学报》2014,30(11):3419-3431
黑龙江霍吉河钼矿区内含矿花岗岩类岩石组合为黑云母二长花岗岩、二长花岗岩和花岗细晶岩,属高钾钙碱性岩-钾玄岩系列准铝质-过铝质岩石,具有轻稀土富集、重稀土亏损分馏模式;富集不相容元素(Cs、Th)并表现为Ta和Nb负异常以及Pb、Sr正异常,显示俯冲带地球化学特征.含矿岩浆岩明显富集Mo、Cu、Pb、Zn、W、Cr等金属元素.岩石全岩铅同位素来源比较复杂,具有混合成因铅特征.辉钼矿Re-Os模式年龄为180.7±2.5Ma和181.3±2.6Ma,钼矿成矿时代为早侏罗世.霍吉河钼矿是在蒙古-鄂霍茨克洋和古太平洋相向联合俯冲作用下,导致霍吉河地区发生地壳增生和壳幔相互作用以及后来的拆沉作用,形成了该区花岗质岩石和钼矿床.高度演化的花岗岩体(脉)可以作为今后本区钼矿床的找矿方向.  相似文献   

19.
西南三江北段是青海省重要的斑岩型铜钼矿成矿带,纳日贡玛铜钼矿是近年来在三江北段发现的与侵入岩有关的斑岩型铜钼矿。利用锆石U-Pb方法测得纳日贡玛黑云花岗斑岩的形成年龄为41.53Ma±0.24Ma,属于喜马拉雅早期。纳日贡玛斑岩型铜钼矿的成矿时代主要在40.86~40.80Ma之间。在多期热液叠加、多期成矿作用中,纳日贡玛斑岩型铜钼矿的热液应是纳日贡玛黑云花岗斑岩(41.53Ma±0.24Ma)和纳日贡玛斜长花岗斑岩(41.00Ma±0.18Ma)共同提供的。由于该区有较多的中酸性岩体存在,因而确定这些侵入体的形成年龄,对于在该区寻找同时代的斑岩型铜钼矿有重要的理论意义和现实意义。  相似文献   

20.
西南三江北段是青海省重要的斑岩型铜钼矿成矿带,纳日贡玛铜钼矿是近年来在三江北段发现的与侵入岩有关的斑岩型铜钼矿。利用锆石U-Pb方法测得纳日贡玛黑云花岗斑岩的形成年龄为41.53Ma ±0.24Ma,属于喜马拉雅早期。纳日贡玛斑岩型铜钼矿的成矿时代主要在40.86~40.80Ma之间。在多期热液叠加、多期成矿作用中,纳日贡玛斑岩型铜钼矿的热液应是纳日贡玛黑云花岗斑岩(41.53Ma ±0.24Ma)和纳日贡玛斜长花岗斑岩(41.00Ma ±0.18Ma)共同提供的。由于该区有较多的中酸性岩体存在,因而确定这些侵入体的形成年龄,对于在该区寻找同时代的斑岩型铜钼矿有重要的理论意义和现实意义。  相似文献   

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