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1.
大兴安岭中南段燕山期三类不同成矿花岗岩中黑云母主要为富铁黑云母和铁黑云母,属富铁黑云母—铁叶云母系列。黑云母主要化学成分表明本区花岗岩碱度属正常碱度—过碱性岩石系列;本区燕山期花岗岩为壳幔混源成因,其岩石系列属于长江深源系列和南岭浅源系列之间的过渡类型。燕山期三个不同期次不同成矿系列的花岗岩中黑云母的化学成分明显不同。燕山早期早阶段与铜成矿有关的花岗岩黑云母相对以富镁贫铁为特征,燕山晚期早阶段与锡多金属矿化有关的花岗岩其黑云母成分相对以富铁贫镁为特征,燕山早期晚阶段与铅锌银矿化有关的花岗岩黑云母成分处于两者之间,黑云母的化学成分是判别本区三类不同成矿岩体的有效标志。  相似文献   

2.
横断山不同成因类型花岗岩类岩石中黑云母的标型特征   总被引:8,自引:5,他引:8  
本文研究了横断山区不同成因类型花岗岩类岩石中黑云母的化学成分、微量元素、结构和物理性质等。结合花岗岩类岩石的成因类型,将黑云母分为三个亚种:富镁黑云母(MF=1.3—1.5)、镁黑云母(MF=1—1.3)和富铁黑云母(MF=0.5-1)。  相似文献   

3.
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   

4.
漳州地区白垩至纪I型和A型花岗岩中黑云母的矿物学特征   总被引:1,自引:0,他引:1  
漳州地区白垩纪花岗岩由I型和A型花岗岩组成,本文对该地区两类花岗岩中黑云母的矿物化学、矿物物理特征进行了系统研究。发现在两类花岗岩中的黑云母矿物学特征存在重大差别,如A型花岗岩中黑云母更富铝、铁、氟及水而贫镁、硅,形成温度及氧逸度较低等。在A型花岗岩中的黑云母穆斯堡尔谱也与I型不同,四极分裂(Q.S)较高,且Fe ̄(2+)在M_2位,Fe(3+)在T位占位率也较高。两类花岗岩中的黑云母化学成分随岩浆演化也呈现不同的变化规律。黑云母的矿物学特征可提供花岗岩成因类型的有益信息。  相似文献   

5.
本文通过黑云母的电子探针方法测试,分析闽西南地区才溪岩体、四方岩体及罗卜岭岩体中黑云母的地球化学特征及其成因意义。测试结果表明,才溪二长花岗岩中的黑云母为高铁黑云母,而四方花岗闪长岩及罗卜岭花岗闪长斑岩中的黑云母为高镁黑云母,在由黑云母成分确定的物质来源图上,它们均落入壳-幔混合源区域,表明其成因类型都是壳-幔混源型花岗岩,但随着形成时代的逐渐变新,其物质组成成分中幔源组分逐渐增多。  相似文献   

6.
黑云母是花岗质岩石中常见的造岩矿物,其成分可以有效指示花岗岩形成的物理化学条件和岩石成因。巴斯铁列克矿床是近年来在新疆阿尔泰造山带南缘发现的首例二叠纪矽卡岩型钨多金属矿床。矿区出露多种类型二叠纪含钨花岗岩。为理清花岗质岩体之间、岩体与钨多金属矿化之间的关系,文章采用电子探针测定了黑云母花岗岩、二长花岗岩、二云母花岗岩和钾长花岗岩中的黑云母成分。结果表明,所有黑云母具有富铁、高铝、贫镁特征,含铁指数(Fe2+/(Mg+Fe2+))为0.66~0.80,二云母花岗岩属铁质黑云母而黑云母花岗岩、二长花岗岩和钾长花岗岩属铁叶黑云母。所有岩石是具有A型特征的I型花岗岩。不同类型岩石中黑云母的成分差异与岩浆来源、分异演化程度有关。二云母花岗岩中黑云母的w(MgO)与结晶温度最高,与黑云母平衡流体的log(fHF/fHCl)值(-1.13~-1.25)最低,log(fH2O/fHF)值(4.64~4.96)最高,母岩浆相对富Cl;黑云母花岗岩中log(fHF/fHCl)值最高,log(fH2O/fHF)最低,与二长花岗岩是同一岩浆房不同演化阶段的产物,与二云母花岗岩和钾长花岗岩属不同的岩浆体系,母岩浆相对富F元素。黑云母花岗岩与W矿化关系更密切。  相似文献   

7.
本文对采自华南两个成岩成矿系列花岗岩中的黑云母进行了DTA特征和其他热性质的比较。发现可根据黑云母的OH脱失峰温度、熔化吸热峰的形状、熔化热及熔化后产物的形态来区分不同成因的花岗岩。文中还探讨了造成黑云母热性质差异的原因。  相似文献   

8.
黑云母是花岗岩中常见的造岩矿物,其化学成分可以用于判断岩体形成时的物理化学条件、岩石成因类型及构造环境。本文利用电子探针(EMPA)对武当隆起西段牌楼花岗岩中的黑云母进行了成分分析,结果发现这些黑云母Al~Ⅵ原子数较低(0.128~0.395),而Ti原子数适中(0.236~0.267),属于铁叶云母,并且均具富Fe贫Mg的特征,Fe~(2+)/(Fe~(2+)+Mg)值为0.985~0.989。岩相学观察和化学成分分析结果显示,牌楼二长花岗岩中的黑云母为岩浆成因,结晶温度为640~710℃,寄主岩体的固结压力为0.9~1.7 GPa,log f_(O_2)变化于-18.1~-17.4之间,指示其形成于低氧逸度环境中。岩浆的氧逸度较低可能是导致牌楼岩体不能形成Cu、Au和Mo矿化的决定因素,而缺乏Sn矿化可能与熔体温度较低有关。综合黑云母化学成分和岩石地球化学特征,认为牌楼似斑状二长花岗岩为A型花岗岩,侵位于非造山的伸展构造背景。  相似文献   

9.
黑云母是花岗岩中最常见的暗色矿物,其成分特征可以指示岩石成因和成矿环境。薄竹山雷达站花岗岩中黑云母矿物化学成分表明该花岗岩中的黑云母属于铁镁质黑云母,Ti温度计计算的黑云母结晶温度为665~756℃,结晶氧逸度介于-12~-16之间,其固结压力为98.44~386.29 MPa,对应的形成深度为3.72~14.60 km,表明薄竹山雷达站花岗岩形成于中深成环境。w(Al2O3)含量高以及原生白云母的出现表明该花岗岩可能属于S型花岗岩。黑云母中w(MgO)含量为7.52%~9.99%,镁质率(IMg)为0.41~0.50,氧化系数为0.075~0.167,以及Mg/(Fe3++Fe2++Mg+Mn)值>0.38均指示雷达站花岗岩兼具I型花岗岩的特征,雷达站花岗岩岩浆源区具有壳幔混合的特点。中高温及低氧逸度的成岩环境有利于W、Sn矿床的形成,I型花岗岩的特点利于Cu、Pb、Zn、Ag矿床的形成。  相似文献   

10.
本文运用离子探针分析花岗岩中磷灰石、锆石和黑云母等矿物的同位素年龄、稀土组成、微量元素和挥发分,探讨康滇地轴云南段晋宁期花岗岩类物质来源及形成环境。结果说明,不同成因的磷灰石、锆石和黑云母具有某种指纹标型特征。花岗岩中矿物所含微量元素和挥发分之间存在相关关系。  相似文献   

11.
洛宁花山岩体地球化学特征及成因的探讨   总被引:2,自引:0,他引:2  
毕献武  骆庭川 《矿物学报》1995,15(4):433-441
出露在河南省洛宁县境内的花山花岗岩复式岩体从早到晚依次划分为似斑状黑云母二长花岗岩,似斑状黑云母角闲石英二长岩,中细粒角闪黑云母二长花岗岩三个阶段。本文简要叙述了花山岩体各阶段岩石的地球化学特征,并结合已有基础地质、同位素资料,探讨了花山岩体的成因机制。结果表明,花山岩体属I型花岗岩类,为大陆板块内部的同熔型花岗岩,形成花山岩体的岩浆来源于混有地幔物质的太华群地层。  相似文献   

12.
Flow-through dissolution experiments were carried out on crushed granitoid rock (the Elat Granite) and three mineral separates (plagioclase, perthite, and biotite + chlorite) from this rock at pH 1 and 25°C. Major element concentrations were combined with Pb and Sr isotopic analyses of starting materials and output solutions and together enabled us to elucidate several important mechanisms related to granitoid rock weathering. We observed an initial stage of rock dissolution (<200 hours of reaction) that was characterized by elemental release from traces of calcite and/or apatite and to a lesser extent from the interlayer sites of biotite. Dissolution in the interval of 200 to 400 h was dominated by the release of elements from the interlayer sites of biotite, and at 400 to 1000 h of reaction the chemistry of output solutions was dominated by the release of elements from tetrahedral and octahedral sites of biotite as well as from plagioclase. After 1000 h, the dissolution of plagioclase, and to a lesser extent biotite, dominated the composition of elements released by the rock. We demonstrate that Pb and Sr isotope ratios in the output solutions can be used to identify each of these stages of dissolution. By comparing our experimental results on the release of Pb and Sr isotopes with field measurements of Pb and Sr isotopes in soil chronosequences from the Wind River and the Sierra Nevada Mountains (USA), we are able to show that similar isotopic patterns appear in both the pH 1 experiments and in soils formed under natural conditions at higher pH. By combining these experimental results with previous field studies, we are able to estimate the duration of most of these stages of granitoid weathering under natural conditions in temperate climates. In soils older than a few hundred years and younger than 10,000 yr the release of elements from interlayer sites of biotite controls the weathering flux. Soils between 10,000 and 100,000 yr old are dominated by biotite and plagioclase weathering, with biotite weathering controlling the first part of this period and plagioclase dominating the later part. After more than 100,000 yr, plagioclase, and to a lesser degree biotite, dominate the weathering flux within these granitoid soils.  相似文献   

13.
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   

14.
花岗岩类某些矿物中微量元素和挥发分离子探针[SIMS]研究   总被引:1,自引:0,他引:1  
本文采用离子探针(SIMS)分析花岗岩类磷灰石、锆石和黑云母等矿物中微量元素和挥发分,来探讨花岗岩类成矿作用。结果证明,不同时代和不同成因的磷灰石和锆石具有某些指纹特征;并显示了花岗岩类所含微量元素和挥发分之间存在某种相关关系。  相似文献   

15.
本文应用单颗粒锆石SHRIMP U—Pb法和角闪石^40Ar/^39Ar法,对出露在冈底斯构造带上的门巴花岗岩体进行了同位素测年,时代分别为207Ma和215Ma,表明它们形成于晚印支期。地质与地球化学研究显示该时期形成的岩体主要为黑云角闪花岗闪长岩和黑云母二长花岗岩,它们形成于岛弧环境,与其南侧墨竹工卡一带出露的晚三叠世钙碱性火山岩(叶巴组)共同构成与板块俯冲有关的特征性岩石组合,揭示新特提斯洋的俯冲时代应早于晚三叠世。  相似文献   

16.
辽西台里地区花岗质岩石主要由花岗质片麻岩、斑状花岗质片麻岩和黑云母二长花岗岩等组成,这些花岗质岩石均曾被视为新太古代花岗岩。根据各类花岗质岩石的产状序次关系确定,块状/片麻状黑云母二长花岗岩呈岩脉或岩枝状侵入太古宙花岗质片麻岩和斑状花岗质片麻岩中,分别出露于研究区南北两侧。地球化学研究表明,黑云母二长花岗岩属于准铝质-弱过铝质的I型花岗岩,显示火山弧花岗岩的特点。黑云母二长花岗岩中锆石组成复杂,大量继承性锆石和新生锆石共存。新生锆石岩浆结晶特征明显,内部发育振荡生长环带,并具较高的Th/U值(0.15~1.70)。两个样品的新生锆石U-Pb定年结果(加权平均年龄)分别为(153.7±2.0) Ma和(153.7±4.7) Ma。研究表明,黑云母二长花岗岩为源自下地壳中基性火成岩的晚侏罗世花岗质侵入岩,其构造背景与古太平洋板块向亚洲大陆下俯冲作用有关。  相似文献   

17.
The Blue Tier Batholith is one of a number of high-level, essentially postkinematic, composite granitoid bodies occurring at the southern end of the Tasman orogenic belt of Eastern Australia.An integrated study of the structure, texture, and geochemistry of the batholith suggests that it has a cumulate-like character. In particular, the trace element (Ba, Rb, Sr) data, when constrained by textural features of the granitiods, indicate that the batholith formed by fractional crystallization of a single magma which underwent crystallization in situ by progressive nucleation and solidification from the roof, walls, and floor inwards. Progressive changes in liquids (cumulate) mineralogy during crystallization led to the observed sequence of early biotite and/or hornblende granodiorites followed by biotite adamellites and late muscovite biotite granites. Progressive in situ crystallization led in some instances to gradational boundaries between granitoid types whereas periodic tectonic distrubances caused the rest magma to reintrude earlier crystallizates in places: thus emplacement and crystallization sequences are parallel. The ultimate product of fractional crystallization was a water-saturated melt, enriched in incompatible elements, whose crystallization resulted in significant tin mineralization.The chemistry of the rocks comprising the batholith is in many respects analogous to that of basic cumulate rocks, although an origin by outward growth of crystals and expulsion of interstitial melt, coupled with convective mixing, rather than by crystal settling, is favoured for the granitoid suite. It is suggested that the Blue Tier Batholith is not an isolated example of a granitoid body with cumulate-like character, but that such bodies may be more common than is recognized.  相似文献   

18.
The Agacoren Intrusive Suite is exposed as a large intrusive body over ~500 km2 east of Lake Tuz in central Anatolia and consists of the Cokumkaya gabbro, the Agacoren granitoid, and young dikes. The Agacoren granitoid is the predominant lithology of the Agacoren Intrusive Suite, and is differentiated into several subunits ranging in composition from monzonite, through granite, to alkali feldspar granite. The Cokumkaya gabbro occurs as stocks enclosed in the Agacoren granitoid; individual bodies range in size from 10 m × 20 m to 7 km × 3 km. Young dikes cut both the Cokumkaya gabbro and the Agacoren granitoid, and are particularly abundant in the central part of the intrusive body.

Centimeter- to meter-size mafic microgranular enclaves (MME) are enclosed in the Agacoren granitoid. The enclaves are diorite, quartz diorite, and monzodiorite in composition, and represent blobs of mafic magma injected into a felsic host magma. The MME have a mineral assemblage (plagioclase + amphibole + biotite ± quartz ± K-feldspar) almost identical to that of host granitoid, but with different mineral proportions. The characteristic petrographic features of the MME are the presence of acicular apatite, blade-shaped biotite, quartz ocelli, and K-feldspar poikilitically enclosing mafic minerals. Microprobe analyses performed on amphibole and plagioclase reveal similar mineral chemistries for both the MME and the host granitoid. The anorthite contents of the plagioclases show an increase from rim to core in both the MME and the host granitoid. The rims of the MME plagioclase have compositions ranging from An5 to An40, whereas those of the host granitoid vary from An0 to An42. The cores, on the other hand, range from An30 to An90 and An20 to An90 in the MME and the host, respectively. Amphiboles are essentially of ferro-hornblende composition in the MME, and of ferro- to magnesiohornblende composition in the host granitoid. The similarity in mineral compositions reflects chemical equilibrium attained through the magma-mixing process.  相似文献   

19.
北山地区照壁山金矿床地质特征及成因   总被引:2,自引:1,他引:2  
照壁山金矿床是北山地区中部金矿集中区最具代表性的金矿床之一,金矿化主要在黑云母花岗岩株内或沿其与志留系公婆泉群火山-沉积岩的接触带产出,黑云母40Ar-39Ar同位素年龄为296±5 Ma.金矿体主要由含金石英脉,网脉和细脉浸染状块体组成,金属矿物主要有黄铁矿、方铅矿、闪锌矿、黄铜矿、自然金和银金矿,脉石矿物为石英和绢云母.围岩蚀变自含金矿脉(体)向外,分别为硅化、绢云母化和绿泥石化;另外,沿岩体与火山-沉积岩接触带常可观察到黄铁绢英岩化.微量元素和硫、氧、氢及铅同位素数据表明:黑云母花岗岩是同碰撞造山期深源岩浆与地壳物质相互作用的结果,成(岩)矿物质主要来自壳幔混合源,含矿热液是岩浆热流体与大气降水混合的产物.海西期花岗质岩浆活动不仅为金矿床的形成提供了物质和热力来源,而且是成矿热液对流循环的"发动机",成矿体系温、压降低是导致金沉淀与富集的重要控制因素.  相似文献   

20.
The Miocene Kaikomagatake pluton is one of the Neogene granitoid plutons exposed in the Izu Collision Zone, which is where the juvenile Izu-Bonin oceanic arc is colliding against the mature Honshu arc. The pluton intrudes into the Cretaceous to Paleogene Shimanto accretionary complex of the Honshu arc along the Itoigawa-Shizuoka Tectonic Line, which is the collisional boundary between the two arcs. The pluton consists of hornblende–biotite granodiorite and biotite monzogranite, and has SiO2 contents of 68–75 wt%. It has high-K series compositions, and its incompatible element abundances are comparable to the average upper continental crust. Major and trace element compositions of the pluton show well-defined chemical trends. The trends can be interpreted with a crystal fractionation model involving the removal of plagioclase, biotite, hornblende, quartz, apatite, and zircon from a potential parent magma with a composition of ~68 wt% SiO2. The Sr isotopic compositions, together with the partial melting modeling results, suggest that the parent magma is derived by ~53% melting of a hybrid lower crustal source comprising ~30% Shimanto metasedimentary rocks of the Honshu arc and ~70% K-enriched basaltic rocks of the Izu-Bonin rear-arc region. Together with previous studies on the Izu Collision Zone granitoid plutons, the results of this study suggest that the chemical diversity within the parental magmas of the granitoid plutons reflects the chemical variation of basaltic sources (i.e., across-arc chemical variation in the Izu-Bonin arc), as well as a variable contribution of the metasedimentary component in the lower crustal source regions. In addition, the petrogenetic models of the Izu Collision Zone granitoid plutons collectively suggest that the contribution of the metasedimentary component is required to produce granitoid magma with compositions comparable to the average upper continental crust. The Izu Collision Zone plutons provide an exceptional example of the transformation of a juvenile oceanic arc into mature continental crust.  相似文献   

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