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1.
湘东北幕阜山岩体南部是近年来我省新发现的一处重要花岗伟晶岩型稀有金属矿产地。该区舌状岩体内外接触带分布有众多花岗伟晶岩脉,形成了仁里超大型铌钽矿、传梓源中型锂铌钽矿等多个铌钽锂矿床(点)。本文对该区密集发育的伟晶岩脉水平分带及结构分带进行研究,从花岗岩体内至外接触带随岩浆分异演化程度不断增强,依次划分出微斜长石伟晶岩带→二云母微斜长石钠长石伟晶岩带→白云母微斜长石钠长石伟晶岩带→白云母锂辉石钠长石伟晶岩带→白云母钠长石伟晶岩带等较为完整演化序列的水平分带;不同分带伟晶岩矿物组合及地球化学特征具有一定差异,对应形成了较完整的稀有金属演化序列:Be→Be+Nb→Be+Nb+Ta→Be+N b+Ta+Li+Cs。区内稀有金属伟晶岩可分为早晚两期,稀有金属伟晶岩类型由低至高,成矿时代由老至新,早期稀有金属伟晶岩以Be矿化为主,晚期稀有金属以Li、Be、Nb、Ta等矿化组合为主。不同期次、类型、结构分带伟晶岩应注意不同稀有金属的找矿。  相似文献   

2.
湘东北幕阜山岩体南部是近年来我省新发现的一处重要花岗伟晶岩型稀有金属矿产地。该区舌状岩体内外接触带分布有众多花岗伟晶岩脉,形成了仁里超大型铌钽矿、传梓源中型锂铌钽矿等多个铌钽锂矿床(点)。本文对该区密集发育的伟晶岩脉水平分带及结构分带进行研究,从花岗岩体内至外接触带随岩浆分异演化程度不断增强,依次划分出微斜长石伟晶岩带→二云母微斜长石钠长石伟晶岩带→白云母微斜长石钠长石伟晶岩带→白云母锂辉石钠长石伟晶岩带→白云母钠长石伟晶岩带等较为完整演化序列的水平分带;不同分带伟晶岩矿物组合及地球化学特征具有一定差异,对应形成了较完整的稀有金属演化序列:Be→Be+Nb→Be+Nb+Ta→Be+N b+Ta+Li+Cs。区内稀有金属伟晶岩可分为早晚两期,稀有金属伟晶岩类型由低至高,成矿时代由老至新,早期稀有金属伟晶岩以Be矿化为主,晚期稀有金属以Li、Be、Nb、Ta等矿化组合为主。不同期次、类型、结构分带伟晶岩应注意不同稀有金属的找矿。  相似文献   

3.
喜马拉雅新生代淡色花岗岩带是近年来提出的与高度结晶分异、异地深成淡色花岗岩有关的稀有金属战略远景区,目前其金属组合以铍-铌-钽(-锡-钨)为主。秦克章等(2021a)报道了在高喜马拉雅带珠峰地区发现的琼嘉岗锂矿,是喜马拉雅首例具有工业价值的伟晶岩型锂矿。本次研究重点揭示喜马拉雅琼嘉岗伟晶岩型锂矿的成矿特征、形成时代和源区特征。琼嘉岗矿区矿石矿物主要为锂辉石、铌铁矿-铌锰矿、少量锡石和绿柱石,特征性长柱状锂辉石主要产于块体微斜长石+锂辉石带和分层细晶岩带内。琼嘉岗锂辉石伟晶岩各结构分带的K/Rb含量较为相似,锂含量从边部细粒钠长石带(~100×10-6)到分层细晶岩带(~1000×10-6),再到块体微斜长石+锂辉石带(>3000×10-6)逐渐升高,而Cs含量逐渐降低。独居石和铌钽铁矿族矿物LA-ICPMS定年结果显示,琼嘉岗锂辉石伟晶岩形成于新喜马拉雅阶段早期(25~24Ma),与高喜马拉雅地区淡色花岗岩时代相近。矿物化学和独居石Nd同位素结果显示该稀有金属伟晶岩结晶于高度演化的花岗伟晶岩熔体,源区特征与高喜马拉雅结晶岩系一致。本研究所揭示的琼嘉岗成矿特征、形成时代和源区特征将为高喜马拉雅其它地区找寻大型花岗伟晶岩型锂矿提供重要借鉴意义。  相似文献   

4.
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   

5.
目前研究已经显示,喜马拉雅淡色花岗岩具有良好的铍-铌钽-锂等稀有金属成矿潜力。其中珠穆朗玛峰(后文简称珠峰)西侧的普士拉一带,是喜马拉雅地区锂辉石伟晶岩集中的区域。本文报道在普士拉东北的珠峰北侧热曲地区,发现有含锂辉石伟晶岩脉,这些伟晶岩呈透镜体状集中赋存于肉切村群"黄带层"大理岩与北坳组钙质硅酸岩的接触界线部位,同围岩一起经历了强烈的变形,且未出现明显内部分带结构,矿物组成中包含锂辉石、透锂长石、绿柱石、铌钽铁矿、锡石等锂-铍-铌钽-锡稀有金属矿物,其Li2O含量达1.30%~2.15%,显示经历过高程度分异演化的岩浆结晶特征。热曲含锂辉石伟晶岩的发现表明珠峰地区具有锂成矿的良好前景,是未来锂矿产勘查的重点靶区,而藏南拆离系韧性剪切带中的肉切村群"黄带层"下部与北坳组顶部位置,是锂辉石伟晶岩的重要富集层位,值得今后在锂资源寻找过程中予以充分关注。  相似文献   

6.
川西甲基卡308号脉的矿物学特征及其岩浆- 热液演化示踪   总被引:1,自引:0,他引:1  
王臻  陈振宇  李建康  陈毓川 《地质学报》2022,96(6):2039-2061
甲基卡稀有金属矿床是亚洲规模最大的伟晶岩型锂矿床,308号脉为其中出露面积最大的伟晶岩脉。308号脉具有完善的分带性:细粒白云母- 钠长石- 石英带(Ⅰ)、中粗粒钠长石- 石英- 微斜长石带(Ⅱ)、中粒电气石- 钠长石- 石英带(Ⅲ)、中粗粒锂辉石- 钠长石- 石英带(Ⅳ)和中细粒锂辉石- 钠长石- 石英带(Ⅴ),并且富含稀有金属矿物(如锂辉石、绿柱石、锡石和铌钽氧化物),因此是系统研究伟晶岩演化历史和成岩成矿机制的理想实验对象。308号脉的矿物学研究较为薄弱,其岩浆- 热液演化过程及该过程中熔- 流体性质的变化规律,以及稀有金属的富集过程和影响因素尚不清楚。本文选取该脉各结构带中的贯通性矿物云母、磷灰石,以及稀有金属矿物锂辉石和特征性矿物电气石,通过详细的电子探针工作,分析它们的产状、结构特征、化学组成及其变化,结果表明:① 308号脉边部Ⅰ带(高温结晶)中电气石的出现(~5%)反映伟晶岩初始熔体具有富B的特征(>2%);锂辉石在Ⅳ和Ⅴ带内的大量结晶说明初始熔体可能具有富Li的性质;主要含氟矿物电气石、磷灰石和云母类在岩石中的含量均较低,并且原生磷灰石具有相对偏低的F浓度(<3%),仅能形成于富F环境中的锂云母矿物也十分稀少,这些特征均表明308号脉初始熔体很可能具有较低的F含量;② 伟晶岩体系演化至Ⅴ带时发生流体出溶现象,自此进入岩浆- 热液过渡阶段,出溶流体可能具有富Cs和贫F的性质;③ 原生白云母和电气石化学成分的规律性变化说明308号脉的演化过程很可能不存在外来流体的加入;④ 308号伟晶岩的成岩和锂成矿过程主要受分异结晶作用支配,有限的出溶流体规模和伟晶岩分异演化程度(仅演化至岩浆- 热液过渡阶段,未充分进入热液阶段)对锂辉石的结晶和保存都起到了重要作用。  相似文献   

7.
铌钽铁矿族矿物(CGM)是重要铌、钽矿石矿物,记录了花岗伟晶岩型稀有金属矿床的岩浆热液演化过程.扎乌龙位于四川省西部石渠县,为大型花岗伟晶岩型稀有金属矿床.文章以扎乌龙14号伟晶岩脉为研究对象,开展了系统的铌钽铁矿族矿物研究工作.14号伟晶岩脉分带良好,从边部到中心可划分为云母石英电气石带(Ⅰ带)、斜长石带(Ⅱ带)、钠长石锂辉石带(Ⅲ带)和石英锂辉石带(Ⅳ带),均发育有铌钽铁矿族矿物.根据矿物内部结构和化学成分,推断14号伟晶岩脉存在2个阶段铌钽矿化:早阶段在各带内均形成铌铁矿-铌锰矿(CGM-1),内部呈现均一结构或振荡环带,指示以铌结晶为主的岩浆阶段;晚阶段在Ⅲ带和Ⅳ带内形成钽铁矿和少量富钽的铌铁矿-铌锰矿(CGM-2),围绕早阶段铌铁矿-铌锰矿再生长或穿切、交代早阶段铌钽矿物,指示以钽结晶为主的岩浆-热液过渡阶段.铌钽铁矿族矿物呈现出2种演化趋势,分别为早阶段铌铁矿-铌锰矿的Mn/(Mn+Fe)比值随着Ta/(Ta+Nb)比值升高而增加,晚阶段富钽矿物Mn/(Mn+Fe)比值随着Ta/(Ta+Nb)比值升高而不变,指示扎乌龙14号伟晶岩脉总体为中等程度分异,早期岩浆阶段各带内连续、晚期岩浆-热液阶段发生跳跃的不连续演化过程,并指示早阶段演化受岩浆结晶分异的控制、晚阶段演化主要受结晶分异、富Li流体环境和其他含Fe-Mn矿物共同控制的地球化学行为.  相似文献   

8.
徐兴旺  洪涛  李杭  牛磊  柯强  陈建中  刘善科  翟明国 《岩石学报》2020,36(12):3572-3592
花岗岩-伟晶岩型锂铍矿床是锂铍矿床的重要类型。关于锂铍金属在源区花岗质岩浆形成过程的富集机制,岩石学家和矿床学家多强调锂铍花岗岩-伟晶岩的母花岗岩(淡色花岗岩)源于变沉积岩的白云母熔融,但实验岩石学显示白云母熔融其熔体量小(<10vol%)、熔体从岩石中提取锂铍的效率低。这意味着白云母熔融形成花岗质岩浆过程锂铍金属富集机制可能不是花岗质岩浆获取锂铍的主要机制。基于黑云母熔融可以获得大体积熔体(可达50vol%)的实验结果,指出变杂砂岩(黑云母片麻岩)与含黑云母的英云闪长质片麻岩部分熔融形成的黑云母花岗质高温岩浆(>800℃)其结晶形成黑云母花岗岩并可分异演化为淡色花岗岩与锂铍花岗岩-伟晶岩、并构成高温花岗岩-伟晶岩锂铍成矿系统,是花岗岩-伟晶岩型锂铍矿床形成的重要成矿系统,其特征与形成机制值得进一步研究。黑云母脱水熔融过程残留相没有富含锂铍矿物的形成,新形成的花岗质岩浆可以高效地从源岩中获取锂铍金属,是一种新的锂铍富集机制。研究团队于2018年率先进入阿尔金中段无人区开展稀有金属成矿作用的地质调查与考察。经过两年的野外地质调查,新发现2个中-大型花岗伟晶岩型锂铍矿(吐格曼铍锂矿与吐格曼北锂铍矿)和塔什萨依金绿宝石矿,发现大量的黑云母花岗岩、二云母花岗岩与伟晶岩,指出这些淡色花岗岩与伟晶岩成因于黑云母花岗岩的分异演化并构成高温花岗岩-伟晶岩锂铍成矿系统,初步构建花岗岩-伟晶岩锂铍成矿系统的3种组构类型,初步揭示吐格曼铍锂矿与吐格曼北锂铍矿形成于468~460Ma,为加里东期锂铍伟晶岩区。阿尔金中段高温花岗岩-伟晶岩系统成矿特征显示:1)高温黑云母花岗质岩浆可以通过连续的分异结晶形成从下往上依次分带、垂向叠置的系统(组构A),即从黑云母花岗岩到二云母花岗岩、白云母花岗岩与钠长花岗岩、及从近岩体的电气石带到依次远离岩体的绿柱石带、锂辉石带和锂云母带。组构A锂铍伟晶岩的分带与传统的淡色花岗岩-伟晶岩系统中锂铍伟晶岩的分带相似。2)在剪切构造背景下,花岗岩的分异结晶形成从外到里依次为糜棱岩化黑云母花岗岩、二云母花岗岩与白云母花岗岩的环状岩体,而金绿宝石钠长花岗岩从环状岩体中穿出、并向外演化为金绿宝石伟晶岩、绿柱石伟晶岩和锂辉石伟晶岩,金绿宝石钠长花岗岩与金绿宝石伟晶岩的发育是此组构(组构B)的显著特征。3)在强挤压与剪切构造背景下,黑云母花岗岩呈片麻状,伴生的伟晶岩为二云母花岗质伟晶岩、顺围岩片麻理发育、无锂铍矿化。这些特征给我们一些重要启示:即构造动力作用影响与控制岩浆的结晶分异方式,金绿宝石可形成于高温花岗岩-伟晶岩锂铍成矿系统,形成于岩浆分异与演化低程度阶段的低分异花岗伟晶岩不成矿。  相似文献   

9.
连云山上石含锂铍钽铌矿床地质特征及找矿前景   总被引:1,自引:0,他引:1  
连云山上石含锂铍钽铌矿床位于连云山背斜南翼上石伟晶岩密集区,其地层为板溪群二云母片岩.矿体受剪切节理控制,与燕山期花岗岩有密切联系.矿区合锂铍钽铌矿体主要有3条,规模、品位较为可观.工业有用矿物主要为但铌铁矿、锂辉石、绿柱石等.矿体类型为伟晶岩型,成因为岩浆交代作用形成.另外连云山地区具多个伟晶岩密集区,具良好的稀有金属找矿前景.  相似文献   

10.
桂北苗儿山-越城岭岩基是一个多时代复式岩体,出露有新元古代、加里东期、印支期和燕山期花岗岩,与花岗岩相关有多个加里东期和印支期的大型W矿床,如牛塘界钨(锡)、界牌钨铜、云头界钨钼矿床等,另外越城岭的戈洞坪地区还发现了燕山期铌钽成矿作用。豆乍山岩体位于苗儿山岩体中部,主要由二云母花岗岩组成,本次研究在豆乍山钻孔样品中发现富含Nb-Ta-W氧化物的(含电气石)白云母花岗岩,为进一步全面认识苗儿山-越城岭地区的多时代成矿信息,查明不同类型成矿过程,对钻孔内花岗岩及其成矿作用开展了详细的研究。钻孔样品主要包含二云母花岗岩和细粒的(含电气石)白云母花岗岩,其中细粒的(含电气石)白云母花岗岩穿插了主岩体。详细的矿物学工作显示(含电气石)白云母花岗岩中含有多样的稀有金属副矿物,其中白云母花岗岩中有铌铁矿族矿物、铌铁金红石、锡石等氧化物,而含电气石白云母花岗岩则包含了复杂的Nb-Ta-W的氧化物矿物集合体,主要为铌铁矿族矿物、钨铌铁矿、骑田岭矿和黑钨矿等;另外还在白云母花岗岩中发现一些富含白钨矿的电气石细脉。白云母花岗岩中岩浆锡石U-Pb定年结果为219±4 Ma,属于印支期成矿作用。结合岩相学观察结...  相似文献   

11.
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   

12.
The pegmatite province of the Southeastern Desert (SED) is part of a pegmatite district that extends from Egypt (extends to 1200 km2). Rare metal pegmatites are divided into (1) unzoned, Sn-mineralized; (2) zoned Li, Nb, Ta and Be-bearing; and (3) pegmatites and pegmatites containing colored, gem-quality tourmaline. The Rb/Sr data reflect a crustal origin for the rare metal pegmatites and indicate that the original SED magma was generated during the peak of regional metamorphism and predates the intrusion of post-tectonic leucogranites. These bodies developed an early border zone consisting of coarse to very coarse muscovite quartz alkali feldspar, followed by an intermediate zone of dominant quartz feldspar muscovite rock. Garnet, tourmaline, beryl, galena, pyrite, amblygonite, apatite and monazite are rare accessories in both zones. Cassiterite tends to concentrate in replacement zones and along fractures in albite quartz muscovite-rich portions. The highest concentrations of cassiterite occur in irregular greisenized zones which consist dominantly of micaceous aggregates of green Li-rich muscovite, quartz, albite and coarse-grained cassiterite. The different metasomatic post-solidification alterations include sodic and potassic metasomatism, greisenization and tourmalinization. Geochemically, the pegmatite-generating granites have a metaluminous composition, showing a differentiation trend from coarse-grained, unfractionated plagioclase-rich granite towards highly fractionated fine- to medium-grained, local albite-rich rock. Economically important ore minerals introduced by volatile-rich, rare metal-bearing fluids, either primarily or during the breakdown of the primary mineral assemblages, are niobium-tantalum oxides, Sn-oxides (cassiterite), Li-silicates (petalite, spodumene, euctyptite, and pollucite), Li-phosphates (amblygonite, montebrasite and lithopilite) and minor REE-minerals (Hf-zircon, monazite, xenotime, thorian, loparite and yttrio-fluorite). The pollucite is typically associated with spodumene, petalite, amblygonite, quartz and feldspar. The primary pollucite has Si/Al (at) ratios of 2.53-2.65 and CRK of 79.5- 82.2. Thorian loparite is essentially a member of the loparite (NaLREETi2O6)-lueshite (NaNbO3)-ThTi2O6-ThNb4O12 quaternary system with low or negligible contents of other end-member compositions. The mineral compositionally evolved from niobian loparite to niobian thorian and thorian loparite gave rise to ceriobetafite and belyankinite with high ThO2 contents. Thorian loparite is metamict or partly metamict and upon heating regains a structure close to that of synthetic loparite NaLaTi2O6.  相似文献   

13.
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   

14.
当前新型材料、新能源在各个领域应用不断深化,稀有金属矿床迎来了世界范围内的研究与勘探热潮。新疆可可托海稀有金属矿床是我国最早开发利用稀有金属矿产资源的重要基地,但对其典型矿物和围岩的热红外反射光谱的认识还很缺乏,制约了对同类型矿床开展遥感地质调查和遥感地质学研究工作的推进。本文采用便携式热红外光谱仪,对可可托海3号脉的典型矿物岩石开展热红外光谱特征研究。结果表明:热红外光谱可以有效识别锂辉石、锂云母、绿柱石、电气石等典型的稀有金属矿物。其中,与锂云母相比,含锂云母伟晶岩产生了新的特征峰;含锂辉石伟晶岩、含电气石伟晶岩相比于各自单晶矿物,其反射特征峰均明显向短波方向偏移;含绿柱石伟晶岩光谱曲线反射特征峰比绿柱石单晶反射特征峰明显向长波方向偏移。本文初步建立了可可托海典型矿物和岩石热红外光谱特征数据库,总结了以锂辉石、锂云母等稀有金属矿床矿物、含矿伟晶岩及围岩的热红外光谱特征,可为热红外光谱进行稀有金属矿物的识别及花岗伟晶岩型矿床的勘探提供必要的基础数据支撑。  相似文献   

15.
The pegmatite complex of epi‐Permian age at Bismuth near Torrington, N.S.W., consists of an elongated intrusion of a granitoid quartz‐topaz rock (silexite) together with a series of pegmatites of varying composition. The principal pegmatite consists of orthoclase, biotite, quartz and beryl with concentric zoning passing outwards into fine‐grained biotite‐beryl rock containing a number of ore minerals: arsenides of Co, Fe and Ni, wolframite, bismuth, bismuthinite, molybdenite, joseite, cassiterite, rutile, uraninite and monazite. Small pegmatite veins issuing from this main body contain, in addition to the silicate minerals, high temperature tetrahedrite, chalcopyrite and sphalerite. A second group is characterised by quartz, orthoclase and beryl with occasional patches of tourmaline.

Emplacement at no great depth is indicated by breccia veins and stock‐works filled with pegmatite.

The origin of a silica hydromagma is considered in terms of existing experimental work and in terms of field occurrence. Structural evidence suggests that the quartzose intrusion preceded the injection of the pegmatite fluids, both being derived from the parent Mole biotite granite.  相似文献   

16.
新疆阿尔泰造山带是我国重要的稀有金属矿床矿产资源基地,尤以富Li和富Be伟晶岩型矿床广泛发育为特色。本研究选择阿尔泰造山带卡鲁安-阿祖拜矿田富Li和富Be伟晶岩型矿床开展典型解剖,以贯穿岩浆阶段-伟晶岩阶段的白云母矿物为研究主线,探讨不同矿化类型伟晶岩中云母的成分演化规律、花岗岩与伟晶岩的成因联系。矿物学特征显示富Be伟晶岩中发育大量磷酸盐矿物,而富Li伟晶岩含较多橙色锰铝榴石、锂云母而缺乏典型的Fe-Mn磷酸盐。白云母成分分析显示,从白云母花岗岩→富Be伟晶岩→富Li伟晶岩,白云母总体呈Nb含量和Nb/Ta值降低,指示白云母花岗岩、富Be伟晶岩经历了不同程度的分离结晶作用,也代表了富Li伟晶岩的岩浆分异演化程度更高。尽管利用云母成分变化(尤其是K、Rb、Cs等大离子亲石元素)模拟岩浆结晶演化过程,显示可由初始花岗质岩浆经瑞利分离结晶作用依次形成白云母花岗岩→富Be伟晶岩→富Li伟晶岩的假设。但研究区年代学、矿物学、同位素证据指示富Li伟晶岩和富Be伟晶岩具有不同的熔体性质和形成时代。因此,应用云母成分探讨伟晶岩的成因联系应当建立在花岗岩-伟晶岩系统具有合理的时空分布和其它支持源自同一...  相似文献   

17.
The geology of the Komu area, south-western Nigeria was investigated in order to determine the nature of occurrence, petrography and chemical composition, and to evaluate the mineral potential of granitic pegmatites. The pegmatites are hosted by para-gneisses, amphibolites and granitic rocks. These host rocks are characterized by low pressure mineral assemblages of upper greenschist to lower amphibolite facies grades. The pegmatites consist of four lithological units: alkali feldspar unit, graphic granite unit, quartz-albite-muscovite-tourmaline unit and saccharroidal albite-muscovite-tourmaline-garnet unit.
A K/Rb ratio of below 100 is indicative of a mineralization potential in most pegmatites, except for the saccharroidal albite-muscovite-tourmaline-garnet unit which has exceptionally high ratios. The discrimination diagrams Rb versus K/Rb, Zn versus K/Rb and Th versus K/Rb show a limited range of fractionation, suggesting that the pegmatites belong to the barren muscovite and rare element classes. The rare element class is moderately enriched in beryl, tourmaline and niobium–tantalum minerals. The pegmatite has affinity for beryl columbite sub-type and lithium–cesium–tantalum (LCT) family. The ores plot mainly in the field of mangano-tantalite of tantalite-columbite quadrilateral diagram. These results indicate that the pegmatites are promising hosts for Nb-Ta ores.  相似文献   

18.
Two distinct series of Variscan granitic rocks have been distinguished in the Gravanho-Gouveia area of Portugal, based on field work, variation diagrams for major and trace elements, rare earth patterns and δ18O versus total FeO diagram of rocks, anorthite content of plagioclase, BaO and P2O5 contents of feldspars and AlVI versus Fe2+ diagram for magmatic muscovite. One series consists of a late-orogenic porphyritic biotite > muscovite granite (G1), less evolved beryl-columbite pegmatites and more evolved beryl-columbite pegmatites showing gradational contacts. The other series consists of post-orogenic porphyritic muscovite > biotite granodiorite to granite (G2), slightly porphyritic muscovite > biotite granite (G3) and lepidolite pegmatites. In each series, pegmatites are derived from the parent granite magma by fractional crystallization of quartz, plagioclase, K-feldspar, biotite and ilmenite. Some metasomatic effects occur like muscovite replacing feldspars, chlorite in pegmatites of the first series and a late muscovite in pegmatites of the second series, probably due to hydrothermal fluids. The lepidolite pegmatites contain cassiterite and two generations of rutile. The first magmatic generation consists of homogeneous crystals and the second generation occurs as heterogeneous zoned crystals derived from hydrothermal fluids. The beryl-columbite pegmatites and lepidolite pegmatites also contain the first magmatic generation and the late hydrothermal generation of zoned columbite-group minerals. More evolved beryl-columbite pegmatites were converted into episyenite by intense hydrothermal alteration and regional circulation of fluids in the granitic rocks.  相似文献   

19.
Rare metal mineralization of Sn, Nb-Ta and W is encountered in the Gebel Dihmit area (GDA), southeastern Aswan, Egypt. The mineralization is related to muscovite granites and their pegmatite derivatives. The pegmatites are divided into three types according to their main mineral assemblages: K-feldspar-muscovite-tourmaline, K-feldspar-albite-muscovite and albite-K-feldspar-lepidolite veins. Petrogenetic studies indicate that Sn and Nb-Ta mineralization extends from the late-magmatic stage to the pegmatite and hydrothermal stages of the (GDA) suite. The albite-K-feldspar-lepidolite granite is composed dominantly of albite, lepidolote, and quartz, with topaz, K-feldspar and amblygonite. The accessory minerals are zircon, monazite, pollucite, columbite-tantalite, microlite and Ta-rich cassiterite. Phenocrysts of quartz, topaz and K-feldspar contain abundant inclusions of albite laths and occasional lepidolite crystals along growth zones (snowball texture), indicating simultaneous crystallization from a subsolvus, residual magma. The origin of the pegmatites is attributed to extreme differentiation by fractional crystallization of a granitic magma. The economic potential for rare metals was evaluated in the geochemical discrimination diagrams. Accordingly, some of the pegmatites are not only highly differentiated in terms of alkalis, but also the promising targets for small-scale Ta and, to a less extent, Sn. The pegmatites also provide the first example of Fe-Mn and Nb-Ta fractionation in successive generations of granites to cassiterite-bearing pegmatites, which perfectly ex- hibit similar fractionation trends established for primary columbite-tantalite in the corresponding categories of pegmatites. Uranium and Th of magmatic origin are indicated by the presence of thorite and allanite, whereas evidence of hydrothermal mineralization is the alteration of rock- foring minerals such as feldspar and the formation of secondary minerals such as uranophane..  相似文献   

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