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1.
乌兰德勒钼(铜)矿床是近几年内蒙古国土资源大调查工作中新发现的一个中型钼(铜)矿床。矿床具典型的斑岩型矿床矿化特征, 并呈现较为复杂的上下两种矿化形态。上部矿体呈多层脉状、网脉状, 赋存于早期侵入的石英闪长岩及花岗闪长岩次生裂隙中, 辉钼矿呈大叶片状、细鳞片状集合体充填于围岩裂隙或硅化脉两侧; 下部矿体较厚大, 赋存于成矿母岩即中细粒二长花岗闪长岩、细粒花岗岩与早期石英闪长岩侵入接触带中, 构成矿床中的主要矿体, 辉钼矿呈细脉状、细脉浸染状产出。矿床具有典型的斑岩蚀变类型, 钾化(黑云母化)、黄铁绢英岩化、云英岩化与矿化作用密切相关。化探工作显示, 成矿元素Mo、Cu、W、Bi元素异常分布面积及强度大, 具有明显的浓度分带和浓集中心, 构成同心环状异常。而高精度磁测表明: 与矿化有关的石英闪长岩、黄铁矿化花岗闪长岩具有强磁性, 围岩黑云母花岗岩、蚀变花岗岩则显示无-弱磁性。激电中梯测量显示与成矿有关的闪长岩、蚀变花岗岩具有高极化低电阻率特征, 为本区的重要找矿标志。与成矿作用相关的细粒二长花岗岩中锆石的SHRIMP U-Pb年龄为131.3 ± 1.6 Ma, 而矿床中辉钼矿Re-Os同位素年龄为134.1 ± 3.3 Ma, 显示该斑岩型矿床形成于早白垩世。乌兰德勒钼(铜)矿床的地、物、化找矿标志和成矿时间的确定, 为本地区下一步找矿工作的开展提供了重要借鉴。  相似文献   

2.
东秦岭石窑沟斑岩钼矿床地质特征及辉钼矿Re-Os年龄   总被引:5,自引:0,他引:5  
在东秦岭钼成矿带最近探明的石窑沟大型钼矿床位于近东西向马超营断裂带与北东向石窑沟-焦园断裂带的交汇部位,获得钼金属储量10余万吨,平均品位0.068%。钼矿化呈细脉-网脉状分布于花岗斑岩体及其围岩熊耳群火山岩中,与矿化有关的围岩蚀变有钾长石化、硅化、绢云母化、黄铁矿化等,具有斑岩型钼矿床的一些基本特点。在矿床中选取5件不同矿化类型的辉钼矿样品,采用ICP-MS法进行Re-Os同位素定年,获得模式年龄131.3±2.4~134.3±2.6Ma,等时线年龄135.2±1.8Ma(MSWD=0.18),形成于早白垩世,与豫西熊耳山地区雷门沟、鱼池岭等钼矿床形成时代相近。据辉钼矿Re含量(8.242×10-6~30.24×10-6)推测,矿床成矿物质主要来自于下地壳。矿床为东秦岭-大别山地区中生代第三期钼成矿作用产物,形成于早白垩世中国东部岩石圈伸展环境。  相似文献   

3.
The Bugdaya Au-bearing W-Mo porphyry deposit, Eastern Transbaikal Region, Russia, is located in the central part of volcanic dome and hosted in the large Variscan granitic pluton. In its characteristics, this is a Climax-type deposit, or an Mo porphyry deposit of rhyolitic subclass. The enrichment in gold is related to the relatively widespread vein and veinlet gold-base-metal mineralization. More than 70 minerals (native metals, sulfides, sulfosalts, tellurides, oxides, molybdates, wolframates, carbonates, and sulfates) have been identified in stockwork and vein ores, including dzhalindite, greenockite, Mo-bearing stolzite, Ag and Au amalgams, stromeyerite, cervelleite, and berryite identified here for the first time. Four stages of mineral formation are recognized. The earliest preore stage in form of potassic alteration and intense silicification developed after emplacement of subvolcanic rhyolite (granite) porphyry stock. The stockwork and vein W-Mo mineralization of the quartz-molybdenite stage was the next. Sericite alteration, pyritization, and the subsequent quartz-sulfide veins and veinlets with native gold, base-metal sulfides, and various Ag-Cu-Pb-Bi-Sb sulfosalts of the gold-base-metal stage were formed after the rearrangement of regional pattern of tectonic deformation. The hydrothermal process was completed by argillic (kaolinite-smectite) assemblage of the postore stage. The fluid inclusion study (microthermometry and Raman spectroscopy) allowed us to establish that the stockwork W-Mo mineralization was formed at 550–380°C from both the highly concentrated Mg-Na chloride solution (brine) and the low-density gas with significant N2 and H2S contents. The Pb-Zn vein ore of the gold-base-metal stage enriched in Au, Ag, Bi, and other rare metals was deposited at 360–140°C from a homogeneous Na-K chloride (hydrocarbonate, sulfate) hydrothermal solution of medium salinity.  相似文献   

4.
通过总结福建省南靖县南坑钼矿床的地质特征,认为该钼矿床为斑岩型钼矿床,钼矿体主要赋存于燕山早期花岗岩与文宾山组接触带,主要产在燕山早期花岗岩体内,受缓倾斜的石英脉和网脉状石英细脉控制,矿石类型为石英粗脉型和石英细脉型。该钼矿床具有弱磁异常,原生晕、次生晕异常发育,钼次生晕异常在深部见矿效果较好;与钼矿体关系密切的蚀变主要有云英岩化和硅化,找矿标志主要为燕山早期花岗岩、白楼—下楼断裂带、晚三叠世文宾山组、云英岩化、硅化及物化探异常,以上认识对区域寻找类似钼矿床具有参考价值。  相似文献   

5.
西秦岭温泉斑岩钼矿床岩浆-热液演化   总被引:5,自引:3,他引:2  
邱昆峰  宋开瑞  宋耀辉 《岩石学报》2015,31(11):3391-3404
西秦岭北缘广泛出露印支期中酸性侵入岩和相关的斑岩-矽卡岩矿床。温泉矿床位于该矿带东段,是其内已探明规模最大的斑岩钼矿床。温泉矿床发育多阶段热液脉体,黄铁矿作为其中的贯通性金属硫化物,其化学组成蕴含着岩浆-热液演化及金属沉淀过程等诸多信息,对于斑岩系统模型的厘定具有重要意义。温泉矿床热液脉体时序为:钾长石-黑云母-石英脉(A脉)、石英-黄铜矿脉、石英-辉钼矿脉(B脉)和石英-绢云母-黄铁矿脉(D脉)。A脉是斑岩系统岩浆-热液演化的最早期脉体,主要矿物组合为钾长石+黑云母+石英+黄铁矿±磁铁矿±磷灰石±黄铜矿,代表了引起早期基性岩浆矿物被蚀变为黑云母的流体通道;B脉与钾长石化蚀变关系密切,围岩中斜长石斑晶大量被蚀变为钾长石;石英-辉钼矿脉切割所有早期黑云母化-钾化蚀变阶段的石英-硫化物网脉,并形成于所有斑岩侵位之后,少量黄铁矿和黄铜矿共生于辉钼矿裂隙及边部;D脉是斑岩系统岩浆-热液成矿作用的最晚期事件,其主要被黄铁矿和石英及少量黄铜矿填充,发育晚期的绢英岩化和泥化蚀变,长石多发生破坏性蚀变。四个阶段石英网脉中黄铁矿电子探针分析显示,A脉的黄铁矿中Cu、Mo和Au含量均较低,有少量的金属硫化物(黄铁矿+黄铜矿)沉淀,但通常不能形成规模矿体;石英-黄铜矿脉的黄铁矿中Cu含量明显较高,且多与高品位Cu矿体的空间产出位置相一致,可能是斑岩系统伴随钾化蚀变作用主要的铜沉淀阶段;B脉的黄铁矿中Mo含量明显较高,与高品位钼矿体空间产出关系密切,可能代表了斑岩系统钼成矿作用的主要阶段;D脉的黄铁矿中Au含量明显升高,可能代表了金在斑岩系统岩浆-热液成矿作用的最晚期事件中的沉淀。  相似文献   

6.
西沙德盖钼矿床是近年来在内蒙古中西部地区找到的一处中型钼矿床。钼矿化在西沙德盖斑状钾长花岗岩株及其与太古界乌拉山群变质岩接触带内呈浸染状和脉状产出,并且构成透镜状矿体。本次研究过程中,对9件代表性辉钼矿样品进行了Re-Os同位素年龄测定,Re-Os同位素模式年龄值变化范围为222.4~226.3 Ma,等时线年龄为(226.4±3.3) Ma,与赋矿围岩花岗斑岩的成岩年龄一致,由此认为西沙德盖钼矿床与斑状钾长花岗岩的形成时间均为晚三叠世,属印支晚期构造_岩浆活动的产物。结合矿区外围其他钼矿床同位素年龄数据,可以推测,内蒙古中西部大规模钼矿化发生的时间为印支晚期。古大陆内部张裂构造作用所诱发的岩浆活动是导致钼矿床形成的主导因素。  相似文献   

7.
陕西洛南县石家湾钼矿Re-Os同位素年龄及地质意义   总被引:1,自引:0,他引:1  
陕西石家湾钼矿床位于东秦岭成矿带西段黄龙铺地区,钼矿化呈细脉-网脉状分布于花岗斑岩体及其围岩中,与矿化有关的围岩蚀变有钾长石化、硅化、绢云母化,属斑岩型矿床.在矿床中选取不同矿化类型的辉钼矿样品,进行了Re~Os同位素定年,获得模式年龄变化范围为143.1±2.1~145.1±2.2 Ma之间,其加权平均年龄(144.0±1.1 Ma,MSWD=0.91)、等时线年龄(145.4±2.1 Ma,MSWD=0.83)与石家湾斑岩体的成岩年龄(141.4±0.6Ma)相近,说明成岩成矿作用发生在晚侏罗世一早白垩世.综合辉钼矿中Re的含量、硫同位素以及相关岩体的源区特征等多方面证据认为,石家湾斑岩型钼矿的成矿物质主要来自于下地壳,并混有少量幔源成分.  相似文献   

8.
The Gaogangshan Mo deposit, located in the northern part of the Lesser Xing'an Range (the eastern part of the Xing'an–Mongolia Orogenic Belt), is one of the newly discovered Mo deposits in northeast China. Ore bodies occur in the granite and are generally in vein and stockwork forms. Major metallic minerals in the ore include pyrite and molybdenite. The styles of mineralization are disseminated, veinlet–disseminated, and veinlet. The major types of wall–rock alteration are silicification–potassic alteration, phyllic alteration and propylitization. Fluid inclusion analyses indicate that the ore‐forming fluid during the major mineralization stage is an H2O–NaCl–CO2 system, with wide homogenization temperature and salinity ranges. The abundant CO2–rich and coexisting halite–bearing fluid inclusion assemblages in the main stage of mineralization highlight the significance of intensive fluid boiling for porphyry Mo mineralization. Comprehensive study of the ore‐forming conditions, geological features of the deposit, micro‐thermometric analysis of fluid inclusions and comparison of the Gaogangshan deposit with other typical porphyry deposits leads to the conclusion that the deposit is a porphyry type. We obtained a weighted mean age of the molybdenite deposit at Gaogangshan of 250.7 ± 1.8 Ma. The isotopic dating results indicate that the Gaogangshan deposit was formed in the Permo–Triassic, which is the earliest Mo–only deposit in northeast China. The formation of the Gaogangshan Mo deposit may be related to the extension and break–up of the Songnen Block and Jiamusi Block in the Permo–Triassic.  相似文献   

9.
肖畈钼矿床是东秦岭-大别山地区典型的斑岩型钼矿床.与矿床有关的小侵入岩为肖畈岩体.岩体分两期侵入,第一期为花岗斑岩,第二期为斑状花岗岩.矿石中金属矿物以辉钼矿、黄铁矿为主,脉石矿物以石英为主,矿石构造有细脉状、浸染状及团块状.矿床成矿年龄为142 Ma.其与金堆城钼矿、南泥湖钼矿等斑岩型钼矿均形成于早白垩世,可归为东秦岭-大别山钼矿带第2成矿期,是印支期后大别造山带构造体制从挤压收缩向区域性伸展的成矿事件.  相似文献   

10.
The Miduk porphyry copper deposit is located in Kerman province, 85 km northwest of the Sar Cheshmeh porphyry copper deposit, Iran. The deposit is hosted by Eocene volcanic rocks of andesitic–basaltic composition. The porphyry‐type mineralization is associated with two Miocene calc‐alkaline intrusive phases (P1 and P2, respectively). Five hypogene alteration zones are distinguished at the Miduk deposit, including magnetite‐rich potassic, potassic, potassic–phyllic, phyllic and propylitic. Mineralization occurs as stockwork, dissemination and nine generations (magnetite, quartz–magnetite, barren quartz, quartz‐magnetite‐chalcopyrite‐anhydrite, chalcopyrite–anhydrite, quartz‐chalcopyrite‐anhydrite‐pyrite, quartz‐molybdenite‐anhydrite ± chalcopyrite ± magnetite, pyrite, and quartz‐pyrite‐anhydrite ± sericite) of veinlets and veins. Early stages of mineralization consist of magnetite rich veins in the deepest part of the deposit and the main stage of mineralization contains chalcopyrite, magnetite and anhydrite in the potassic zone. The high intensity of mineralization is associated with P2 porphyry (Miduk porphyry). Based on petrography, mineralogy, alteration halos and geochemistry, the Miduk porphyry copper deposit is similar to those of continental arc setting porphyry copper deposits. The Re‐Os molybdenite dates provide the timing of sulfide mineralization at 12.23 ± 0.07 Ma, coincident with U/Pb zircon ages of the P2 porphyry. This evidence indicates a direct genetic relationship between the Miduk porphyry stock and molybdenite mineralization. The Re‐Os age of the Miduk deposit marks the main stage of magmatism and porphyry copper formation in the Central Iranian volcano‐plutonic belt.  相似文献   

11.
岔路口巨型斑岩钼矿的发现是近年来大兴安岭北段森林覆盖区找矿的重大突破,其规模居中国北方钼矿之首。矿床位于伊勒呼里山南1 029高地火山机构旁侧,成矿与晚侏罗世—早白垩世以超浅成相侵入的石英斑岩、花岗斑岩及其相伴产生的隐爆作用有密切时空关系。矿体产于火山沉积岩和成矿斑岩体中,钼矿化以呈网脉状和细脉的裂隙充填形式为主,少量为大脉状和细脉浸染状;钼矿体呈隐伏穹隆状,延深巨大。热液蚀变发育、分带性明显,以硅化强烈、萤石化广泛为显著特征。矿区剥蚀程度甚低,地表大范围表现为泥化带,仅中心地带发育有弱石英绢云母化和低品位钼矿化;向深部蚀变矿化逐渐增强,矿化延深达千米。钼矿体上部共伴生有脉状铅锌银矿化。成矿同期火山岩碱质含量高,该矿床为碰撞拼接后陆内伸展构造环境中岩浆活动产物,成矿岩浆-热液体系具高氟富硫高氧化的特征,与美国的Climax钼矿较为相似。该矿床的发现和探明,为研究斑岩-脉状钼锌银成矿体系提供了范例,对区域构造-岩浆过程研究与区域找矿勘查均具有重要意义。  相似文献   

12.
三个顶子钼锌矿床属夕卡岩型矿床,矿体呈脉状产于奥陶系石缝组大理岩层间断裂中,成矿作用与燕山期斜长花岗岩、花岗斑岩关系密切.钼矿体多产于夕卡岩内,辉钼矿常于石榴石集中处富集,呈浸染状或细脉状.系统总结了三个顶子钼锌矿床的地质特征及矿床控制因素、矿床成因,并分析归纳出该矿床赋存富集规律,确定了该矿床的找矿标志.  相似文献   

13.
东秦岭尚古寺斑岩钼矿地质特征及成矿潜力分析   总被引:3,自引:0,他引:3  
杨宗锋 《地质与勘探》2011,47(6):1077-1090
尚古寺斑岩钼矿位于东秦岭,为东秦岭地区已知钼矿区的最东部端元。出露面积约1.5km^2,围岩主要为元古代片麻岩和碱流岩。辉钼矿化主要发育在花岗斑岩体的东部和南部区域,花岗斑岩顶部细粒花岗斑岩和其上覆花岗质伟晶岩均呈浸染状矿化,南部角岩发育裂隙矿化。花岗斑岩主体岩性主要矿物组合为石英、钾长石和斜长石,显示具有富硅、富碱和...  相似文献   

14.
The Xiaoxinancha Au–Cu deposit is located at the eastern segment of the Tianshan–Xingmeng orogenic belt in northeast China. The deposit includes porphyry Au–Cu orebodies, veined Au–Cu orebodies and veined Mo mineralizations. All of them occur within the diorite intrusion. The Late Permian diorite, Late Triassic granodiorite, Early Cretaceous granite and granite porphyry are developed in the ore area. The studies on geological features show that the porphyry Au–Cu mineralization is related to the Late Permian diorite intrusion. New geochronologic data for the Xiaoxinancha porphyry Au–Cu deposit yield Permian crystallization zircon U–Pb age of 257 ± 3 Ma for the diorite that hosts the Au–Cu mineralization. Six molybdenite samples from quartz + molybdenite veins imposed on the porphyry Au–Cu orebodies yield an isochron age of 110.3 ± 1.5 Ma. The ages of the molybdenites coeval to zircon ages of the granite within the errors suggest that the Mo mineralization was genetically related to the Early Cretaceous granite intrusion. The formation of the diorite and the related Au–Cu mineralization were caused by the partial melting of the subduction slab during the Late Palaeozoic palaeo‐Asia Ocean tectonic stage. The Re contents and Re–Os isotopic data indicate that the crustal resource is dominated for the Mo mineralization during the Cretaceous extensional setting caused by the roll‐back of the palaeo‐Pacific plate. Copyright © 2014 John Wiley & Sons, Ltd.  相似文献   

15.
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   

16.
采用辉钼矿Re-Os同位素定年,获得的内蒙古阿巴嘎旗比鲁甘干钼矿的辉钼矿Re-Os同位素模式年龄变化范围为236.9±3.7~238.7±2.4Ma,年龄加权平均值为237.9±1.7Ma,表明该矿床形成时代应为印支期。辉钼矿的Re含量平均值为74.065×10~(-6),表明其主要为幔壳混合来源特征。该矿床位于贺根山断裂带以南的兴蒙造山系索伦山-霍林郭勒弧盆系内,为斑岩型钼矿床。钼矿体主要赋存在黑云母花岗斑岩和角岩内,受内外接触带控制。接触带控矿容矿断裂主要有北西向、北东向及近东西向,其内多充填有石英脉。细脉状、网脉状石英脉越发育,钼矿化越强。区域研究表明,印支期是兴蒙造山带及其邻区钼(钨)成矿的重要成矿期之一,但在本区尚属首次发现,为开展索伦山-霍林郭勒成矿带区域成矿规律研究提供了重要参考。  相似文献   

17.
王少怀 《地质论评》2013,59(5):885-892
福建武平十二排铝矿床是近年来在闽西南地区找到的又一处铝矿床.钼矿化在中细粒黑云母花岗岩岩体与新元古界楼子坝群、晚古生界变质岩接触带内呈浸染状和脉状产出,并且构成透镜状矿体.本次研究过程中,对5件代表性辉钼矿样品进行了Re-Os同位素年龄测定,模式年龄值变化范围为149.7 ~ 152.8Ma,等时线年龄为(151 ±2) Ma,略晚于黑云母花岗岩的成岩年龄,由此认为十二排钼矿床与黑云母花岗岩的形成时间均为晚侏罗世,属燕山早期构造—岩浆活动的产物.结合矿区外围其他钼矿床同位素年龄数据,可以推测闽西南大规模钼矿化发生在印支期台地向活动大陆边缘转变阶段,并伴随燕山早期挤压隆升(约160 ~ 145 Ma)和燕山晚期由挤压向拉张机制转换(约105 ~90 Ma)作用所诱发的岩浆活动是导致钼矿床形成的主导因素.  相似文献   

18.
铜厂沟钼多金属矿床位于扬子陆块西缘坳陷带与义敦岛弧和甘孜-理塘结合带3个构造单元交汇部位,它是近年来对该区燕山期成矿作用研究并取得找矿突破的重要成果。该矿床包含了岩枝全岩矿化、顶部矽卡岩型及围岩热液脉型等热液交代矿化,构成了斑岩成矿系列。矿床已达大型,并显示出超大型的远景。运用辉钼矿Re-Os同位素定年技术,获得了6件样品的模式年龄,为(82.34±1.28)88.27±1.23Ma,其加权平均年龄为(85±2)Ma,等时线年龄为(85±10)Ma,两者在误差范围内一致,表明成矿作用发生于燕山期,此时,该区处于中咱地块与扬子陆块强烈碰撞至后碰撞阶段,由于地壳加厚,壳熔或壳幔混熔形成了S型花岗(斑)岩和强烈的钼多金属矿化。铜厂沟矿床内辉钼矿样品的w(Re)为16 44043 530 ng/g,指示其成矿物质来源为壳幔混源,以壳源物质为主。据野外调查和室内研究推测,在该矿区的深部存在燕山期的隐伏花岗(斑)岩体,成矿作用与岩浆上侵有关。该区的燕山期酸性岩带穿过了义敦岛弧进入扬子陆块西缘,呈近NS向展布,滇西北地区,北部从休瓦促向南至热林、红山、铜厂沟,形成了一系列大-中型钼多金属矿床。成矿背景和成矿预测研究对该带的找矿勘查具有十分重要的指导意义。  相似文献   

19.
戴盼  吴胜华  丁成武 《岩石学报》2018,34(9):2598-2614
王坞斑岩型Mo-Cu矿床位于北武夷地区,地处钦杭构造岩浆成矿带北段。目前钻孔信息显示,该矿床的矿体主要由网脉状石英-辉钼矿-黄铜矿矿石组成,也含少量的浸染状和细脉浸染状Cu-Mo矿化,主要的蚀变作用包括硅化、绢英岩化和绿泥石化。矿区内隐伏燕山期的花岗斑岩脉及石英闪长玢岩脉。本文对该矿床的花岗斑岩进行了LA-ICP-MS锆石U-Pb测年,对主要矿石类型(网脉状石英-辉钼矿矿石)中的辉钼矿进行了Re-Os同位素测年。结果显示,花岗斑岩的锆石U-Pb年龄为136. 7±2. 2Ma,辉钼矿的Re-Os同位素模式年龄为132. 6±1. 8Ma~134. 5±2. 0Ma,加权平均值为133. 7±0. 94Ma,对应的Re-Os等时线年龄为134. 8±2. 1Ma。花岗斑岩的锆石U-Pb年龄和辉钼矿的Re-Os年龄在误差范围内基本一致,且花岗斑岩和矿体之间具有密切的空间关系,指示王坞Mo-Cu矿床的Mo矿化可能与矿区内的花岗斑岩存在密切的成因联系。北武夷地区主要的斑岩-矽卡岩和岩浆热液脉型Cu-Mo多金属矿床的成岩成矿年龄数据的统计结果显示,北武夷地区的Cu-Mo-Pb-ZnAg成矿作用主要集中在燕山期,可被划分为150~165Ma和140~125Ma两个阶段。结合区域构造背景资料,王坞Mo-Cu矿床形成于早白垩纪伸展的构造背景下。  相似文献   

20.
小狐狸山钼矿是内蒙古北山地区近年来新发现的一个中型规模的斑岩型矿床。通过对成矿斑岩锆石和成矿晚阶段石英脉型钼矿的同位素研究,获得小狐狸山含矿花岗岩锆石LA-ICP-MS U-Pb年龄216.9Ma±0.5Ma(MSWD=0.41),与斑岩型钼矿化的时间220Ma±2.2Ma在误差范围内基本一致,为该矿床主要为一个斑岩型钼矿床提供了同位素年代学的佐证;晚成矿阶段辉钼矿单矿物Re-Os模式年龄加权平均值为213.2Ma±4.6Ma(MSWD=1.3)。小狐狸山钼矿床成矿岩体的展布受控于沿黑河展布的北东东向构造,该组构造切割了早期形成的北西向区域构造,暗示216~220Ma为北山地区由后碰撞进入板内伸展环境提供了初步的年龄约束,北山地区印支期的成矿作用值得重视。  相似文献   

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