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1.
锂是重要的战略金属矿产,锂辉石花岗伟晶岩是锂矿资源的重要来源。近来柴北缘茶卡北山地区新发现锂辉石花岗伟晶岩脉群,本文对区内锂辉石花岗伟晶岩进行了岩相学、矿物学、矿物化学、年代学研究工作,确定了锂辉石花岗伟晶岩的矿化特征及矿化年限。锂辉石花岗伟晶岩存在两期矿物组合:早期由粗粒锂辉石、粗粒钾长石、粗粒白云母、粗粒更(钠)长石、粗粒石英和铌钽铁矿等组成,属熔体结晶阶段产物;晚期由锂绿泥石、富锂云母、蠕虫状锂辉石和细粒他形石英等组成,为岩浆期后热液交代产物。根据两期矿物组合判断存在两期锂矿化,认为早期锂辉石的局部蚀变与晚期锂矿物的形成指示体系内存在锂的活化和再沉淀过程。测得与锂辉石伴生的铌钽铁矿U-Pb年龄为241.0±1.3 Ma,可代表锂辉石花岗伟晶岩熔体结晶年龄,即为早期锂成矿年代,矿床为印支期产物。  相似文献   

2.
秦克章  赵俊兴  何畅通  施睿哲 《岩石学报》2021,37(11):3277-3286
近年来,喜马拉雅新生代淡色花岗岩的"高度分离结晶、异地深成侵入"成因,及其具有良好的稀有金属成矿潜力而倍受关注。已有野外调查和资源勘查工作表明该花岗岩带可能成为我国稀有金属重要的战略储备基地。目前带内金属组合以铍-铌-钽(锡-钨)组合为主(如错那洞大型锡-钨-铍矿床),但尚未发现工业锂矿体的产出。本次工作在高喜马拉雅琼嘉岗地区发现了超大型伟晶岩型锂矿,并初步揭示该伟晶岩型锂矿的基本地质特征。琼嘉岗伟晶岩属于过铝质LCT型伟晶岩,稀有金属(REL)类REL-Li亚类钠长石-锂辉石型。含矿伟晶岩呈串珠状、囊状体产出在前寒武系肉切村群大理岩中,伟晶岩具有一定分带,目前主要包括细粒钠长石带、文象结构带、分层细晶岩带和块体微斜长石+锂辉石带,赋矿主体结构带为后两者。矿石矿物主要为锂辉石、铌铁矿-铌锰矿,以及少量锡石和绿柱石。59件样品中44件Li2O含量在工业品位(0.80%)之上,平均1.30%。4条伟晶岩脉群资源量估算表明琼嘉岗锂资源可达超大型规模,琼嘉岗是喜马拉雅首例具有工业价值的伟晶岩型锂矿,其发现证实我国高喜马拉雅地区具有找寻大型-超大型花岗伟晶岩型锂(铍)矿的潜力。  相似文献   

3.
川西甲基卡二云母花岗岩和伟晶岩内发育大量原生熔体包裹体和富晶体流体包裹体。为了查明甲基卡成矿熔体、流体性质与演化特征,运用激光拉曼光谱和扫描电镜鉴定了甲基卡花岗伟晶岩型锂矿床中二云母花岗岩及伟晶岩脉不同结构带内的原生熔体、流体包裹体的固相物质。分析结果表明,甲基卡二云母花岗岩石英内熔体包裹体的矿物组合为磷灰石+白云母、白云母+钠长石、白云母+石墨;伟晶岩绿柱石内富晶体流体包裹体的矿物组合主要为刚玉、富铝铁硅酸盐+刚玉+锂辉石、锂辉石+石英+锂绿泥石;伟晶岩锂辉石内富晶体流体包裹体的矿物组合主要为磷灰石、锡石、磁铁矿、石英+钠长石+锂绿泥石、萤石、富钙镁硅酸盐+富铁铝硅酸盐+富铁硅酸盐+石英;花岗岩浆熔体与伟晶岩浆熔体(流体)具有一定的差异,成矿熔体、流体成分总体呈现出碱质元素(Na、Si、Al)、挥发分(F、P、CO_2)含量增高及基性元素(Fe、Mg、Ca)降低的特征;包裹体中子矿物与主矿物的化学成分具有一定的差别,揭示出伟晶岩熔体(流体)存在局部岩浆分异作用,具不混溶性及非均匀性。因此认为,伟晶岩熔浆(流体)为岩浆分异与岩浆不混溶共同作用的产物,挥发分含量的增高(F、P、CO_2)使伟晶岩能够与稀有金属组成各类络合物或化合物,这对于稀有金属成矿起到了至关重要的作用。  相似文献   

4.
稀有金属矿物记录了花岗伟晶岩成岩成矿的重要信息。喜马拉雅是全球著名的淡色花岗岩带,库曲岩体位于喜马拉雅东段的特提斯喜马拉雅岩系中。本文调查了库曲岩体的二云母花岗岩、白云母花岗岩、电气石花岗岩和花岗伟晶岩,其中,花岗伟晶岩涉及花岗岩的伟晶岩相和独立伟晶岩脉。库曲岩体产出的稀有金属矿物包括锂辉石、锂绿泥石、绿柱石、铌铁矿-钽铁矿、钇铀钽烧绿石和细晶石,它们主要赋存于似文象伟晶岩、石英-钠长石-白云母伟晶岩、块体长石-钠质细晶岩、块体长石-电气石钠质细晶岩、锂辉石-块体长石-细晶岩、白云母花岗岩的伟晶岩相以及电气石花岗岩内。显微镜观察、电子探针和LA-ICP-MS测试结果显示锂辉石具有四种产状,包括粗粒锂辉石自形-半自形晶、细粒锂辉石-石英镶嵌晶、中细粒锂辉石-钾长石-钠长石-云母镶嵌晶以及发育锂绿泥石的粗粒锂辉石,揭示了其形成时复杂的熔流体动荡结晶环境。绿柱石背散射电子图像(BSE)下呈均一结构和不均一结构(蚀变边、不规则分带和补丁分带),元素替代机制包括通道-八面体替代、通道-四面体替代以及通道中碱金属阳离子间的置换。铌铁矿族矿物包括原生、蚀变边和不规则分带结构,部分被钇铀钽烧绿石和细晶石交代。与原生铌铁矿相比,蚀变边和不规则分带铌铁矿族矿物总体上富钽贫锰,显示了结晶分异、过冷却引起的过饱和以及流体作用。根据稀有金属矿物揭示的成因信息,独立伟晶岩脉(似文象伟晶岩)、白云母花岗岩的伟晶岩相和电气石花岗岩在岩浆分异程度、经历的演化过程、以及流体活动方面存在差异,很可能是不同期次岩浆活动的产物。库曲岩体绿柱石的Rb和Zn含量、以及铌铁矿族矿物的Sc2O3、SiO2和PbO含量,与已有指示标志存在相关性,作为潜在指示标志仍需开展更多的研究工作。综合含锂辉石伟晶岩的产出、岩浆分异演化程度、多期花岗质岩浆活动、复杂的流体作用以及所属锂丰度高值区等因素,库曲岩体是喜马拉雅东段找锂的有利地段。  相似文献   

5.
丹池成矿带是我国重要锡多金属成矿带,过去对丹池成矿带成岩成矿研究主要集中在大厂矿田及五圩矿田,而对丹池成矿带北部的芒场矿田岩浆作用时代、源区特征及其成矿性缺少分析。芒场矿田岩浆活动强烈,发育隐伏斑状花岗岩及有关的花岗斑岩脉和隐伏细粒花岗斑岩及有关的白云母花岗斑岩脉。本文分析花岗斑岩脉U-Pb年龄及花岗斑岩脉和白云母花岗斑岩脉主、微量元素组成,以探讨岩浆活动时代、岩浆源区特征及其成矿潜力。芒场矿田花岗斑岩脉锆石U-Pb年龄为89.1±0.9Ma (MSWD=0.9),和丹池成矿带内大厂矿田岩浆活动时代相近,表明丹池成矿带岩浆活动时代都发生于90Ma左右。白云母花岗斑岩脉具高A/CNK比值(2.69~2.88),含高铝硅酸盐矿物白云母及在Th-Rb图上沿S型花岗岩趋势线分布,和大厂矿田S型黑云母花岗岩的特征基本一致,表明其主要为S型花岗岩。花岗斑岩脉形成时代晚于白云母花岗斑岩脉,但其具有更低的SiO_2含量和更高的MgO、Fe_2O_3~T、CaO和TiO_2含量,且在SiO_2与TiO_2、Fe_2O_3~T、Al_2O_3和P_2O_5关系图中分布于不同区域,没有线性变化关系,显示两者不是同一岩浆结晶分异演化形成的,而为不同沉积变质岩部分熔融形成的。白云母花岗斑岩脉富Al_2O_3、K_2O、Rb、Cs、Sn、W、Nb和Ta,在Rb/Ba-Rb/Sr图上位于富粘土源区,为强风化作用形成的富粘土质富稀有金属源区部分熔融形成的产物。华南西部基底发育经强风化作用形成的富粘土质富稀有金属元素沉积变质源区,为华南西南缘大规模锡矿床的形成提供了物质基础。  相似文献   

6.
湖南仁里超大型钽铌矿床钽铌铍矿资源丰富,Ta2O5资源量达到了超大型规模,BeO资源量达到了大型规模。为进一步研究湖南仁里超大型钽铌矿床稀有金属的赋存特征、成矿规律及矿产资源综合利用前景,开展了地球化学分析、电子探针、包裹体、同位素测年及可选性试验等研究工作,通过系统梳理仁里超大型钽铌矿床的工作进展,进一步探讨了该矿床的下一步找矿思路。仁里钽铌矿床共(伴)生矿种多,稀有金属综合回收率及矿产资源采选综合利用率高,具有极大的开发利用价值,可作为绿色、环保、无尾矿范例进行高效勘查与开发。仁里矿区钽铌铍矿资源丰富,具有较好的找矿潜力,加大地质勘查资金投入有望取得钽铌铍锂等稀有金属找矿新进展。下一步应对矿区2、3、5、6号主矿脉深部矿体进行控制,力争取得钽铌铍矿找矿突破,同时加强对矿区西部或西南部隐伏锂辉石白云母钠长石伟晶岩的研究工作,力争取得锂辉石白云母钠长石伟晶岩型锂矿找矿突破。  相似文献   

7.
Renli extra-large Ta-Nb deposit is rich in tantalum, niobium and beryllium resources. The Ta2O5 resource is of extra-large scale and the Ta2O5 resource reaches large scale. In order to further study the occurrence characteristics, metallogenic regularity and the prospect of comprehensive utilization of mineral resources of rare metals in Renli extra-large Nb-Ta deposit, the authors have carried out the research work of geochemical analysis, EPMA, fluid inclusion study, isotope dating and mineral processing experiment. Based on the systematic review of the research progress in Renli extra-large Ta-Nb deposit, the authors also discussed the following prospectiong ideas of the deposit. There are many associated minerals in Renli Nb-Ta deposit, and the recovery rate of rare metals and the comprehensive utilization rate of mineral resources are high. Therefore it has great value of development and utilization, and the efficient exploration and development that characterized by green, environmentally friendly and no tailings can be carried out in Renli Ta-Nb deposit as a typical example. Renli mining area is rich in tantalum, niobium and beryllium resources and has great prospecting potential. With increasing geological exploitation funding, it’s probable to make new prospecting progress of Ta-Nb-Be-Li rare metal. The next work will focus on the control of the deep ore bodies of No.2, 3, 5 and 6 main ore veins in the mining area in order to make new progress in tantalum niobium beryllium ore prospecting. The research work of concealed spodumene muscovite albite pegmatite in western or southwestern mining area will be strengthened in order to make a breakthrough in spodumene muscovite albite pegmatite type lithium ore prospecting.  相似文献   

8.
The Wurinitu Mo deposit is one of the newly found molybdenum deposits in the southwestern part of the late Paleozoic–Mesozoic Erenhot–Dong-Ujimqin metallogenic belt(S-EDMB),Inner Mongolia,China. In the present study,the mineralization age of the Wurinitu deposit is constrained to 137.3 ± 1.3 to 131.9 ± 1.5 Ma based on a combination of the laser ablation–inductively coupled plasma–mass spectrometry(LA–ICP–MS) zircon U–Pb dating of the mineralization related fine-grained monzonitic granite and the post-mineralization granite porphyry. The results of zircon Lu–Hf isotopes,combined with the geochemical characteristics of the granites in the S-EDMB,suggest that the Wurinitu Mo deposit was formed in an extensional environment in relation to the subduction of the Paleo-Pacific plate in late Mesozoic. The Wurinitu deposit shares similarities with the classical Climaxtype porphyry molybdenum deposits in tectonic setting,mineral assemblages,and metal zonation.  相似文献   

9.
广西油麻坡钨钼矿床成岩成矿年代学研究及其地质意义   总被引:2,自引:1,他引:1  
广西博白_岑溪断裂带位于钦杭成矿带南段,既是一条长期活动的地体边界断裂带,也是一条岩浆活动频繁的W_Mo_Sn_Pb_Zn_Sb_Au_Ag多金属成矿带。文章以该带中的广西博白县油麻坡矽卡岩型钨钼矿床为研究对象,在详细的岩性鉴别和划分的基础上,对矿区内花岗岩类进行了单颗粒锆石LA_ICP_MS锆石U_Pb测年,获得深灰色花岗斑岩的等时线年龄为(479.7±3.9)Ma,灰色黑云母花岗闪长岩为(109.7±1.1)Ma,浅灰色细粒白云母花岗岩为(103.3±1.2)Ma。辉钼矿Re_Os测年获得加权平均年龄为(97.4±1.9)Ma。由此可见,油麻坡岩体为一个复式岩体,由早奥陶世(加里东期)的花岗斑岩和早白垩世(燕山晚期)的黑云母花岗闪长岩和细粒白云母花岗岩组成,其中,黑云母花岗闪长岩构成油麻坡岩体的主体。钨钼矿形成于早白垩世晚期(即燕山晚期),与黑云母花岗闪长岩和白云母花岗岩密切相关。这些高精度测年数据的获得,进一步表明博白断裂带是一条长期活动的断裂,其在加里东期已经活动,并伴有岩浆岩的侵位。燕山晚期,该断裂重新复活,并导致大量的岩浆活动和一定强度的W_Mo_Sn_Pb_Zn_Sb_Au_Ag成矿作用,形成由多个大_中型矿床组成的多金属成矿带。博白_岑溪成矿带属于华南100~80 Ma大规模成矿的一部分,成矿背景与华南地区白垩纪的地壳伸展、钦杭成矿带的再次裂陷有关。  相似文献   

10.
The Dexing deposit is located in a NE‐trending magmatic belt along the southeastern margin of the Yangtze Craton. It is the largest porphyry copper deposit in China, consisting of three porphyry copper orebodies of Zhushahong, Tongchang and Fujiawu from northwest to southeast. It contains 1168 Mt of ores with 0.5% Cu and 0.01% Mo. The Dexing deposit is hosted by Middle Jurassic granodiorite porphyries and pelitic schist of Proterozoic age. The Tongchang granodiorite porphyry has a medium K cal‐alkaline series, with medium K2O content (1.94–2.07 wt%), and low K2O/(Na2O + K2O) (0.33–0.84) ratios. They have high large‐ion lithophile elements, high light rare‐earth elements, and low high‐field‐strength elements. The hydrothermal alteration at Tongchang is divided into four alteration mineral assemblages and related vein systems. They are early K‐feldspar alteration and A vein; transitional (chlorite + illite) alteration and B vein; late phyllic (quartz + muscovite) alteration and D vein; and latest carbonate, sulfate and oxide alteration and hematite veins. Primary fluid inclusions in quartz from phyllic alteration assemblage include liquid‐rich (type 1), vapor‐rich (type 2) and halite‐bearing ones (type 3). These provide trapping pressures of 20–400 ´ 105 Pa of fluids responsible for the formation of D veins. Igneous biotite from least altered granochiorite porphyry and hydrothermal muscovite in mineralized granodiorite porphyry possess δ18O and δD values of 4.6‰ and ?87‰ for biotite and 7.1–8.9‰, ?71 to ?73‰ for muscovite. Stable isotopic composition of the hydrothermal water suggests a magmatic origin. The carbon and oxygen isotope for hydrothermal calcite are ?4.8 to ?6.2‰ and 6.8–18.8‰, respectively. The δ34S of pyrite in quartz vein ranges from ?0.1 to 3‰, whereas δ34S for chalcopyrite in calcite veins ranges from 4 to 5‰. These are similar to the results of previous studies, and suggest a magmatic origin for sulfur. Results from alteration assemblages and vein system observation, as well as geochemical, fluid inclusion, stable isotope studies indicate that the involvement of hydrothermal fluids exsolved from a crystallizing melt are responsible for the formation of Tongchang porphyry Cu‐Mo orebodies in Dexing porphyry deposit.  相似文献   

11.
Walegen Au deposit is closely correlated with granitic intrusions of Triassic age, which are composed of granite and quartz porphyries. Both granite porphyry and quartz porphyry consist of quartz, feldspar and muscovite as primary minerals. Weakly peraluminous granite porphyry(A/CNK=1.10–1.15) is enriched in LREE, depleted in HREE with Nb-Ta-Ti anomalies, and displays subduction-related geochemistry. Quartz porphyry is strongly peraluminous(A/CNK=1.64–2.81) with highly evolved components, characterized by lower TiO_2, REE contents, Mg~#, K/Rb, Nb/Ta, Zr/Hf ratios and higher Rb/Sr ratios than the granite porphyry. REE patterns of quartz porphyry exhibit lanthanide tetrad effect, resulting from mineral fractionation or participation of fluids with enriched F and Cl. LAICP-MS zircon U-Pb dating indicates quartz porphyry formed at 233±3 Ma. The ages of relict zircons from Triassic magmatic rocks match well with the detrital zircons from regional area. In addition, ε_(Hf)(t) values of Triassic magmatic zircons from the granite and quartz porphyries are -14.2 to -9.1(with an exception of +4.1) and -10.8 to -8.6 respectively, indicating a crustal-dominant source. Regionally, numerous Middle Triassic granitoids were previously reported to be formed under the consumption of Paleotethyan Ocean. These facts indicate that the granitic porphyries from Walegen Au deposit may have been formed in the processes of the closing of Paleotethyan Ocean, which could correlate with the arc-related magmatism in the Kunlun orogen to the west and the Qinling orogen to the east.  相似文献   

12.
扎乌龙-草陇锂矿床位于松潘-甘孜造山带中西部,为典型的花岗伟晶岩型稀有金属矿床.前人基于矿区花岗岩和伟晶岩紧密的时空及成因关系,认为伟晶岩与白云母花岗岩同源且成矿与花岗质岩浆的分异相关.然而,岩浆分异演化过程中熔体的信息记录及其何种地质过程对成矿起主导作用,仍缺乏有效制约.本文对矿区花岗质岩浆来源及其演化过程开展了研究...  相似文献   

13.
Grothite—a rare Al- and F-rich variety of titanite—was identified in two different gold-bearing mineral assemblages of the Berezitovy gold-base-metal deposit, Upper Amur Region, Russian Far East. Grothite is associated with quartz, orthoclase, chlorite, muscovite, tourmaline, almandine-spessartine garnet, ilmenite, pyrophanite, magnetite, fluorapatite, and sulfides. Grothite forms numerous scattered lamellar aggregates 20–100 μm in size with a relatively homogeneous structure. The lamellae grow in chlorite or between chlorite and orthoclase. According to microprobe analyses, variations in major elements of grothite are as follows (wt %): 30.56–34.07 SiO2, 7.91–12.71 Al2O3, 22.83–28.29 TiO2, 23.55–29.21 CaO, 0.52–4.25 FeO, and 2.19–6.16 F. It is suggested that grothite appeared in the gold-bearing mineral assemblages of the Berezitovy deposit due to the specifics of the primary composition of the host rocks and physicochemical conditions of the fluid regime at the final stage of deposit formation.  相似文献   

14.
张杰 《地质与勘探》2021,57(3):497-506
为进一步研究东秦岭地区稀有金属矿产特征,指导河南省卢氏县蔡家锂矿的勘查工作,本文通过对蔡家锂矿野外地质调查、岩心及薄片观察和地球化学分析,结合区域花岗伟晶岩成矿作用规律,对蔡家锂矿的地质特征和矿床成因进行了分析。结果表明,该矿床成因类型属于花岗伟晶岩型;矿石类型为微斜长石-钠长石型、锂辉石-钠长石型、锂云母-钠长石型;矿石矿物以锂辉石、锂云母为主,其次为磷锂铝石、铌锰矿、钽锰矿、铌钽铁矿、绿柱石等。在此基础上,对该区花岗伟晶岩矿脉的母岩和花岗伟晶岩密集区的形成机理进行探讨,表明研究区花岗伟晶岩母岩为桃坪花岗岩体,具有高级分异特征,主要赋存在背斜带次级构造内。  相似文献   

15.
大兴安岭南段维拉斯托锡钨锂多金属矿是近年来新发现的大型矿床,具有"上脉下体"的垂向矿化分带特征,矿集区范围内表现出以花岗岩体为中心的高温锡钨钼矿化、中温铜锌矿化、外围低温铅锌银矿化的水平分带。目前,对锡钨锂多金属矿化与外围脉状铅锌银铜矿化的内在成因关系和形成机制及深部地质背景还缺乏足够的认识。Ar-Ar年代学研究结果表明,维拉斯托锡钨锂矿区石英脉型矿石中白云母的Ar-Ar坪年龄为(131.7±1.4)Ma,显示其与外围维拉斯托铜锌矿床和拜仁达坝银铅锌矿床的成矿时代基本一致,属同一构造-岩浆活动产物。石英斑岩中铁锂云母的Ar-Ar坪年龄为(121.9±1.3)Ma,可能代表了最晚期的岩浆活动时限,暗示维拉斯托矿区存在多期次岩浆-热液活动。本次研究还获得了维拉斯托矿床东南侧磨盘山岩体边部黑云母二长花岗岩锆石U-Pb年龄为(141.6±1.5)Ma(MSWD=0.75),该年龄不仅与含矿岩体石英斑岩体的年龄一致,也与北大山高分异杂岩体的形成年龄相近,揭示了维拉斯托外围高分异花岗杂岩体深边部及其与地层接触带部位还有寻找锡多金属矿的巨大潜力。综合本次工作和大量前人工作的基础上,笔者认为大兴安岭南段稀有金属矿床都形成于大陆边缘弧后伸展和软流圈上涌的构造背景,维拉斯托锡钨锂矿化与外围脉状铅锌银铜矿化属同一岩浆-热液成矿系统,不同金属元素在不同的矿化空间内的选择性沉淀是造成元素分带性的直接原因,其成矿特征上可类比南美玻利维亚锡银成矿带。值得提出的是,维拉斯托矿区岩石组合与松潘-甘孜造山带与锂矿化有关的片麻岩穹窿群类似,锡林郭勒杂岩可能为成矿提供了部分物质来源,对于岩浆-变形-变质-深熔作用过程及对稀有金属成矿的制约还需要进一步研究。  相似文献   

16.
河南省东沟超大型钼矿床流体包裹体研究   总被引:13,自引:6,他引:7  
杨永飞  李诺  王莉娟 《岩石学报》2011,27(5):1453-1466
河南省东沟钼矿床是东秦岭钼矿带新发现的燕山期超大型斑岩钼矿床,是大陆碰撞成矿理论预测在先,勘查突破在后的成功范例。该矿床的形成与东沟A型花岗斑岩有关,矿体产于斑岩体外接触带的熊耳群火山岩中。以岩体为中心发育典型的斑岩蚀变分带,由内到外依次是钾化、绢英岩化和青磐岩化。流体成矿过程包括早、中、晚3个阶段,分别以石英-钾长石组合、石英-(钾长石)-多金属硫化物组合和石英-碳酸盐-萤石组合为标志,矿石矿物主要沉淀于中阶段。早、中阶段热液石英中发育CO2-H2O型包裹体(C型)、水溶液包裹体(W型)和含子晶多相包裹体(S型),但晚阶段只发育水溶液包裹体(W型)。早阶段C型和W型包裹体均一温度集中于380~550℃,盐度为7.70%~18.28% NaCleqv;S型包裹体中常见石盐、黄铜矿、方解石和未知透明子矿物,其均一温度范围为318~516℃,加热过程中除石盐外其他子矿物不熔;不包括不熔子矿物的贡献,该类包裹体盐度变化于12.85%~17.87 和35.55%~47.67% NaCleqv。中阶段C型和W型流体包裹体均一温度集中于260~410℃,盐度为4.62%~18.28% NaCleqv;除不熔子矿物外,S型包裹体均一温度为197~436℃,盐度变化于7.45%~19.30% NaCleqv和31.71%~49.22% NaCleqv。晚阶段流体包裹体均一温度集中于125~225℃,盐度介于0.5%~7.25% NaCleqv之间。估算的早、中阶段流体捕获压力分别为63~117MPa和12~67MPa,推测最大成矿深度为4.7km。上述流体包裹体研究表明成矿流体由早阶段高温、富CO2的岩浆热液演化为晚阶段低温、贫CO2的大气降水热液。这种高温、富CO2的岩浆热液可视为大陆内部体制斑岩成矿系统的标志性特征,以区别于岩浆弧区同类矿床高温、贫CO2的岩浆热液。通过对比东秦岭-大别钼矿带典型斑岩成矿系统,认为成矿流体中CO2等挥发组分的含量和围岩性质(化学成分、结晶程度、抗剪抗压程度等)是控制矿体空间定位的重要因素。  相似文献   

17.
稀有金属矿产是江西省优势矿产资源,成矿类型以花岗岩型为主,主要分布于赣西和赣北地区,以宜春414超大型钽铌矿为代表,而花岗岩广泛分布的赣南地区鲜有关于燕山期花岗岩型稀有金属矿床的报道。本文以赣南石城海罗岭铌钽矿床为研究重点,结合详细的野外调查,开展花岗岩的岩石学、岩石地球化学和同位素年代学等研究,厘定了海罗岭的中粒斑状黑云母二长花岗岩- 中细粒黑云母二长花岗岩岩石组合,明确了钠长石化叠加白云母化的中粒斑状黑云母二长花岗岩与铌钽矿密切相关的成矿专属性。海罗岭的成矿作用具两阶段特征,早阶段以蚀变花岗岩型钽铌矿为主,赋存于钠长石化白云母化中粒斑状黑云母二长花岗岩中,晚阶段则以花岗伟晶岩型锂矿为主,赋存于云母锂辉石伟晶岩中。海罗岭的花岗岩主要经历了钠长石化、白云母化、黄玉化、绢云母化、硅化等蚀变作用,呈现碱性长石化→云英岩化的演化过程。海罗岭花岗岩具富硅、富碱、富铝,贫钛、镁的特征,其中钠长石化白云母化中粒斑状黑云母二长花岗岩(富钽花岗岩)中F含量为8330×10-6~13076×10-6,平均为10475×10-6,具极低的Nb/Ta值(0. 34~0. 49)、Zr/Hf值(3. 73~4. 19)、稀土总量低(ΣREE为16. 3×10-6~23. 2×10-6)和“四分组”效应等特征,显示其成矿经历了岩浆- 流体相互作用的过程。研究显示,Li矿化富集程度与F含量呈明显的正相关,与稀土总量、K/Rb值呈负相关;Ta矿化富集程度与F含量呈明显的正相关,与Nb/Ta值、Zr/Hf值呈明显的负相关。中细粒黑云母二长花岗岩锆石U- Pb年龄为141. 9±1. 1 Ma,云母锂辉石伟晶岩和碱性长石伟晶岩独居石U- Pb年龄分别为141. 68±0. 69 Ma和137. 62±0. 73 Ma,均归属于早白垩世。研究表明,赣南地区140 Ma左右可能存在一次与钠长石化叠加白云母化中粒斑状黑云母二长花岗岩相关的独特的铌钽矿成矿事件和与花岗伟晶岩相关的锂成矿事件。这一发现打破了以往华南稀有金属主要赋存于燕山期复式岩体晚期二云母花岗岩- 白云母花岗岩中的认识,拓宽了找矿思路,为赣南乃至华南地区稀有金属找矿提供了新的方向。  相似文献   

18.
对富金钠长石岩的岩石化学、微量元素及稀土元素分析显示,大沟谷钠长石岩与区域上震旦系乐昌峡群片岩及附近花岗岩没有成因联系.富金钠长石岩主要是热水沉积形成的.钠长石岩与金矿有紧密的内在联系,钠长石岩型金矿床是热水沉积+改造作用形成的.  相似文献   

19.
The Changfagou Cu deposit is a newly discovered porphyry deposit located in the southern Jilin Province of Northeastern China, on the northeastern margin of the North China Craton. To better understand the formation of the Cu deposit, we report the zircon U–Pb and molybdenite Re–Os dating, and Sr-, Nd-, and Hf- isotopic data of the granite porphyry. LA-ICP-MS dating of zircon grains from two mineral zones in the granite porphyry yield ages of 115.7 ± 0.8 and 115.3 ± 0.6 Ma, which is interpreted as the emplacement age of the granite porphyry. The molybdenite Re–Os model ages of 112.5 to 113.8 Ma, an isochron age of 113.3 ± 1.3 Ma, and a weighted mean model age of 113.0 ± 0.7 Ma, which represents the age of the Cu mineralization quite well. The Changfagou granite porphyry samples lack amphibole and muscovite, and are compositionally characterized by high SiO2, high Na2O+K2O, and low P2O5, enriched in some Rb, Th, U, and Pb, and depleted in Nb, Ta, Ti, P, and Eu. Mineralogical and geochemical features suggest that the Changfagou granite porphyry samples are slightly peraluminous and are of highly fractionated I-type granitoids. The granitic rocks also have relatively high (87Sr/86Sr)i (0.71199 to 0. 71422), and both low εNd(t) (?14.56 to ?13.19) and εHf(t) values (?14.916 to ?8.644), which suggest that Changfagou granite porphyry are derived from mixed sources of crustal and mantle, and diagenesis and mineralization were possibly related to the switch in subduction direction of the Palaeo-Pacific Plate in the late phase of Early Cretaceous.  相似文献   

20.
王世伟  袁峰  王彪  姜伦 《岩石学报》2018,34(1):241-254
舒家店岩体位于长江中下游成矿带中部的铜陵断隆区,与繁昌断凹区(盆地)临近,主要的岩浆岩岩石类型有辉石闪长岩、石英闪长斑岩和花岗闪长岩等。正长花岗岩为舒家店岩体深部新发现的岩石类型,其矿物组合与岩体内其他类型岩石明显不同,其形成的背景存在争议。本文通过对岩体中正长花岗岩的锆石LA-ICP MS精确定年、Hf同位素和地球化学组成分析,研究舒家店岩体正长花岗岩的年代学、岩浆源区等问题。研究显示舒家店岩体为"异源同体"的复式岩体,岩体中的正长花岗岩的侵入时间为126.5±1.6Ma~129.8±2.4Ma,明显晚于早期的辉石闪长岩和石英闪长斑岩(138.2±4.6Ma~143.7±1.7Ma),也明显晚于舒家店斑岩型铜矿床的形成时代。全岩元素地球化学和锆石Hf同位素组成指示舒家店岩体中正长花岗岩为叠加到早期辉石闪长岩及石英闪长斑岩之上的后期岩浆活动的产物,可能与繁昌盆地内花岗岩有相同的源区,为新元古代新生地壳(类似新元古花岗岩)部分熔融的产物,其岩浆源区处于高温低压的环境,相较于辉石闪长岩和石英闪长斑岩起源更浅,指示长江中下游成矿带在145~123Ma地壳处于不断减薄的过程。  相似文献   

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