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1.
罗迪柯  陈靖  姚仲友  匡福祥  姚春彦 《地质通报》2017,36(12):2197-2207
圭亚那地盾位于南美洲亚马孙克拉通的北部,其北部广泛发育太古宙典型的花岗岩-绿岩带,主要岩石组成为花岗岩、片麻岩和英云闪长岩,古元古代变质超基性-基性火山岩-侵入岩、其他变质火山岩等。由于独特的地质构造位置和复杂的构造演化历史,形成了良好的绿岩型金成矿地质背景,产生了大量的金矿床。通过总结圭亚那地盾北部绿岩带的岩石特征、成岩时代和构造演化历史,对委内瑞拉埃尔卡劳金矿、圭亚那欧迈金矿和苏里南罗瑟贝尔金矿进行典型矿床剖析,系统研究了该区绿岩带型金矿的成矿地质背景、成矿流体及成矿年代学特征,建立了区域绿岩带型金矿成矿模型,并在分析找矿要素的基础上,提出圭亚那地盾北部的金矿找矿方向。  相似文献   

2.
南非主要金矿集区研究现状及存在问题   总被引:1,自引:0,他引:1  
南非是世界上金矿石资源量最为丰富的国家,其金矿床主要产于东北部地区,主要有三种类型:1赋存于兰德盆地砾岩型建造中的"兰德"砾岩型金矿床,2产在绿岩带中的绿岩带型金矿床,和3主要与白云岩有关的白云岩型金矿床,以前两种类型为主。"兰德"砾岩型金矿床通常品位高,开采规模最大,目前采矿的深度最大,是南非最重要的矿床类型,其矿床成因长期以来存有争议,主要有两种观点,分别是砂矿模式和热液模式,就目前资料来看笔者等认为其代表了两个不同的矿化阶段;绿岩带型金矿床则以巴伯顿地区为代表,矿床具有规模大、易开采等特征,因此在南非金矿床开采中占有重要位置,其矿床主要赋存于石英脉或剪切带中,矿床成因主要有三种,分别是火山成矿模式、转换滑脱构造模式和构造交叉模式。  相似文献   

3.
诺斯曼-维卢纳金成矿带位于澳大利亚西澳克拉通伊尔岗地块东部黄金省次级地体内,是澳大利亚最重要的绿岩带型金矿成矿区。区内矿床可分为3类:剪切带中的蚀变晕±石英脉型,是区内最为重要的矿化类型,典型矿床为卡尔古利金哩矿床,矿床赋存在金哩粗玄岩中,矿化发生在绢云母-黄铁矿化蚀变带内;石英网脉型,典型矿床为卡尔古利夏洛特山金矿床。矿床也产于金哩粗玄岩中,矿化主要发生在硅化外围的碳酸盐-黄铁矿化蚀变带内;纹层状石英脉型,矿化表现出层控的特点,并多发育绿泥石化。通过对区域和典型矿床地质特征和区域成矿特征的总结,认为诺斯曼-维卢纳金成矿带的金主要赋存于铁硫化物或毒砂中,矿化与大规模的蚀变作用联系密切,太古宙绿岩带和条带状铁建造、深大断裂、褶皱等因素控制了矿床的分布。在此基础上,总结了绿岩带型金矿的找矿标志,并为在区内找矿提出若干建议。  相似文献   

4.
诺斯曼—维卢纳金成矿带位于澳大利亚西澳克拉通伊尔岗地块东部黄金省次级地体内,是澳大利亚最重要的绿岩带型金矿成矿区。区内矿床可分为3类:剪切带中的蚀变晕±石英脉型,是区内最为重要的矿化类型,典型矿床为卡尔古利金哩矿床,矿床赋存在金哩粗玄岩中,矿化发生在绢云母—黄铁矿化蚀变带内;石英网脉型,典型矿床为卡尔古利夏洛特山金矿床,矿床也产于金哩粗玄岩中,矿化主要发生在硅化外围的碳酸盐—黄铁矿化蚀变带内;纹层状石英脉型,矿化表现出层控的特点,并多发育绿泥石化。通过对区域和典型矿床地质特征和区域成矿特征的总结,认为诺斯曼—维卢纳金成矿带的金主要赋存于铁硫化物或毒砂中,矿化与大规模的蚀变作用联系密切,太古宙绿岩带和条带状铁建造、深大断裂、褶皱等因素控制了矿床的分布。在此基础上,总结了绿岩带型金矿的找矿标志,并为在区内找矿提出若干建议。  相似文献   

5.
盖塔(Geita)金矿是坦桑尼亚重要的绿岩带型金矿之一。文章阐述了矿床地质背景、矿床地质特征,以及矿床同位素年代特征,并对矿床成矿模式进行了对比。在此基础上认为盖塔金矿以块状黄铁矿和浸染状黄铁矿的矿化为主,成矿时代约为2644~2680Ma,属于太古宙热液型金矿床,具有明显的"层控"特征,后生成矿模式可能是盖特金矿的矿床成因。  相似文献   

6.
哀牢山造山带金矿成矿时序及其动力学背景探讨   总被引:9,自引:41,他引:9  
杨立强  邓军  赵凯  刘江涛 《岩石学报》2011,27(9):2519-2532
哀牢山金矿带是我国最重要的喜马拉雅期造山型金矿带,形成于三江特提斯复合造山过程中。论文基于对哀牢山造山带金矿成矿作用的同位素定年结果,探讨了成矿年代学与构造-热事件的关系,厘定了其相关的地球动力学背景。已获得的最老成矿年龄集中于海西期,但过剩氩的存在导致视年龄值偏离真实成矿年龄,而最小视年龄(345.2±16Ma)与区域蛇绿岩的形成同时;含镍金黄铁矿硅质岩的含金量可能与热水沉积有关,其地球动力学环境对应于海底扩张和初始洋盆的形成。印支期是区域主碰撞造山高峰期,也是大规模岩浆活动与Cu-Ni-Pt-Pd硫化物矿床、VMS型Cu-Pb-Zn矿床及斑岩型Cu-Au矿床成矿集中期,其中老王寨金矿含金黄铁矿的Re-Os等时线年龄为229±38Ma。燕山期成矿年龄数据分散于180Ma、135Ma、110Ma和90Ma左右等多个时段,其中最晚时段年龄谱的最小视年龄值(91±1Ma)可能代表了一次较为重要的构造动力体制转换,该期(约90~70Ma)的区域成岩成矿(斑岩及斑岩型Cu-Mo-W-Au矿床)规模较大,表明增生造山→碰撞造山构造体制转换在研究区存在重要的成岩成矿响应。喜马拉雅期可能经历了早(63.09~61.55Ma)、主(36.10~33.76Ma)和晚(30.80~26.40Ma)三期金矿成矿-热事件,分别受控于印度-亚洲大陆碰撞早期的强烈汇聚挤压、早-晚期转换构造动力学体制,并可能受青藏高原物质东向逃逸和软流圈脉动隆起的联合制约,金矿大规模成矿作用与构造动力体制转换过程中的壳幔物质强烈交换与构造变形密切相关。  相似文献   

7.
The Wutai greenstone belt in central North China Craton(NCC) hosts a number of Precambrian gold deposits and ore occurrences. Based on the host rock association, these can be divided into Banded Iron Formation(BIF), meta-volcano-sedimentary and meta-conglomerate types. The two former types formed during ~2.5-2.3 Ga and the third one at ~1.85 Ga. The characteristics of these Precambrian gold deposits are broadly similar with those of the orogenic gold deposits. Based on available geochronological data, here we reconstruct the major tectonic events and their relationship with gold mineralization in the Wutai-Hengshan-Fuping region during Neoarchean to Paleoproterozoic as follows.(1)~2.6-2.5 Ga: widespread intrusion of tonalite-trondhjemite-granodiorite(TTG) magmas in the Hengshan terrane and Fuping continental arc, formation of the Wutai volcanic arc in the southern margin of Hengshan terrane with granitoids emplacement, and the Hengshan-Wutai intra-oceanic arc accretion to the Fuping arc at the end of Neoarchean.(2) ~ 2.5-2.3 Ga: the subduction of Hengshan arc from north leading to persistent magmatism and orogenic gold mineralization.(3)~2.2-2.1 Ga:extension leading to the formation of graben structure in the Wutai and Fuping region, deposition of the Hutuo and Wanzi Group sediments, formation of placer gold through erosion of the orogenic gold deposits.(4)~2.2-2.0 Ga: widespread magmatism in the Wutai-Hengshan-Fuping region.(5)~1.95-1.8 Ga: regional metamorphism associated with collision of the Western and Eastern Blocks of the NCC and associated orogenic gold deposits. The multiple subduction-accretion-collision history and subsequent deep erosion has significantly affected most of the Precambrian gold deposits in the Wutai greenstone belt.  相似文献   

8.
The P–T evolution of amphibolite facies gneisses and associated supracrustal rocks exposed along the northern margin of the Paleo to MesoArchean Barberton greenstone belt, South Africa, has been reconstructed via detailed structural analysis combined with calculated K(Mn)FMASH pseudosections of aluminous felsic schists. The granitoid‐greenstone contact is characterized by a contact‐parallel high‐strain zone that separates the generally low‐grade, greenschist facies greenstone belt from mid‐crustal basement gneisses. The supracrustal rocks in the hangingwall of this contact are metamorphosed to upper greenschist facies conditions. Supracrustal rocks and granitoid gneisses in the footwall of this contact are metamorphosed to sillimanite grade conditions (600–700 °C and 5 ± 1 kbar), corresponding to elevated geothermal gradients of ~30–40 °C km?1. The most likely setting for these conditions was a mid‐ or lower crust that was invaded and advectively heated by syntectonic granitoids at c. 3230 Ma. Combined structural and petrological data indicate the burial of the rocks to mid‐crustal levels, followed by crustal exhumation related to the late‐ to post‐collisional extension of the granitoid‐greenstone terrane during one progressive deformation event. Exhumation and decompression commenced under amphibolite facies conditions, as indicated by the synkinematic growth of peak metamorphic minerals during extensional shearing. Derived P–T paths indicate near‐isothermal decompression to conditions of ~500–650 °C and 1–3 kbar, followed by near‐isobaric cooling to temperatures below ~500 °C. In metabasic rock types, this retrograde P–T evolution resulted in the formation of coronitic Ep‐Qtz and Act‐Qtz symplectites that are interpreted to have replaced peak metamorphic plagioclase and clinopyroxene. The last stages of exhumation are characterized by solid‐state doming of the footwall gneisses and strain localization in contact‐parallel greenschist‐facies mylonites that overprint the decompressed basement rocks.  相似文献   

9.
云南哀牢山老王寨大型造山型金矿成矿流体地球化学   总被引:8,自引:4,他引:8  
云南哀牢山金矿带是我国最重要的喜马拉雅期金矿带,而老王寨是其中最大的金矿。流体包裹体研究显示:老王寨金矿含金石英脉中流体包裹体类型主要为NaCl-H2O型和CO2-H2O型,其均一温度为102~302℃, 峰值为160~180℃;流体盐度范围变化较大,介于2.5%~12.9% NaCleqv之间,峰值为6.0%~7.5% NaCleqv,显示老王寨成矿流体具有中低盐度和中低温度的特征。 氢氧同位素测定显示成矿流体δDH2O=-115‰~-90‰,δ18OH2O=5.2‰~6.8‰,显示其组成主要为岩浆水,可能与有机沉积物发生过同位素交换。流体包裹体碳同位素组成(δ13C为-6.5‰~-3.9‰)基本落在幔源碳变化范围之内,说明其中CO2可能来自地壳深部,甚至上地幔。综合成矿地质特征和成矿流体的证据,提出老王寨金矿为喜马拉雅期造山型金矿。  相似文献   

10.
Tourmaline-rich rocks are common in the lowgrade, interior portions of the Barberton greenstone belt of South Africa, where shallow-marine sediments and underlying altered basaltic and komatiitic lavas contain up to 50% tourmaline. The presence of tourmaline-bearing rip-up clasts, intraformational tourmalinite pebbles, and tourmaline-coated grains indicates that boron mineralization was a low-temperature, surficial process. The association of these lithologies with stromatolites, evaporites, and shallow-water sedimentary structures and the virtual absence of tourmaline in correlative deep-water facies rocks in the greenstone bels strengthens this model.Five tourmaline-bearing lithologic groups (basalts, komatiites, evaporite-bearing sediments, stromatolitic sediments, and quartz veins) are distinguished based on field, petrographic, and geochemical criteria. Individual tourmaline crystals within these lithologies show internal chemical and textural variations that reflect continued growth through intervals of change in bulk-rock and fluid composition accompanying one or more metasomatic events. Large single-crystal variations exist in Fe/Mg, Al/Fe, and alkali-site vacancies. A wide range in tourmaline composition exists in rocks altered from similar protoliths, but tourmalines in sediments and lavas have similar compositional variations. Boron-isotope analysis of the tourmalines suggest that the boron enrichment in these rocks has a major marine evaporitic component. Sediments with gypsum pseudomorphs and lavas altered at low temperatures by shallow-level brines have the highest 11B values (+2.2 to-1.9); lower 11B values of late quartz veins (-3.7 to-5.7) reflect intermediate temperature, hydrothermal remobilization of evaporitic boron. The 11B values of tourmaline-rich stromatolitic sediments (-9.8 and-10.5) are consistent with two-stage boron enrichment, in which earlier marine evaporitic boron was hydrothermally remobilized and vented in shallow-marine or subaerial sites, mineralizing algal stromatolites. The stromatolite-forming algae preferentially may have lived near the sites of hydrothermal discharge in Archean times.  相似文献   

11.
李楠  张志超  刘兴武  刘基 《岩石学报》2018,34(5):1312-1326
阳山是西秦岭金矿带已探明金储量最大的独立金矿,金矿化主要呈微细浸染状分布于千枚岩和花岗质岩脉中,锑矿化主要分布于花岗质岩脉与千枚岩接触带的石英±方解石脉中,是研究微细浸染状金矿化与脉状金-锑矿化的时间、空间和成因关系的理想选区。成矿主阶段微细浸染状黄铁矿-毒砂矿化已有大量研究,而晚阶段脉状金-锑矿化特征及其与主阶段微细浸染状金矿化关系尚待查明。论文系统研究了成矿晚阶段流体包裹体组合特征、辉锑矿及石英的矿物学、稀土和微量元素特征,并与成矿主阶段进行对比,以期理清阳山金矿带金矿化与锑矿化的关系。流体包裹体组合显微测温结果显示,成矿晚阶段流体均一温度为271.3~288.3℃,具有中低温、低盐度、富Cl和CO_2、还原性的变质流体来源的特征,与成矿主阶段一致。辉锑矿呈轻稀土富集、重稀土亏损的"右倾式"稀土配分模式,并可见中-弱的Eu负异常和强的Ce负异常,与千枚岩和花岗质岩脉的稀土元素配分模式相似。辉锑矿富含Ag、Au、As等微量元素,与赋矿围岩中这些元素的高背景值有关。结合硫化物硫同位素数据,指示阳山金矿带成矿物质来源可能为赋矿的千枚岩和花岗质岩脉:在区域构造抬升引发的退变质过程中,千枚岩和花岗质岩脉发生变质脱挥发分作用,释放出金等成矿物质。金矿化与锑矿化贯穿整个成矿作用,随着成矿温度、压力的变化,以及成矿流体成分的演化,成矿早、主阶段以微细浸染状含金硫化物为主,发育位置较深,成矿晚阶段以自然金-辉锑矿脉为主,发育位置较浅,在矿带尺度上符合造山型金矿地壳连续成矿模式的垂向分布规律。本文查明了阳山金矿带微细浸染状金矿化与脉状金-锑矿化的关系,明确其为造山型金矿浅成金-锑矿化,并在此基础上提出了找矿方向,为西秦岭及其他地区类似金矿床的理论研究与找矿勘探提供了有益参考。  相似文献   

12.
The Kalahari Goldridge Mine is located within the Archaean Kraaipan Greenstone Belt, about 60 km southwest of Mafikeng in the North West Province, South Africa. The ore body thickness varies from 15 to 45 m along a strike length of about 1.5 km within approximately N–S striking banded iron formation (BIF). The stratabound ore body is hosted primarily by BIF, which consists of alternating chert and magnetite–chlorite–stilpnomelane–sulphide–carbonate bands of millimetre- to centimetre scale. A footwall of sericite–carbonate–chlorite schist underlain by mafic amphibolite occurs to the west and carbonaceous metapelites in the hanging wall to the east. Overlying the hanging wall, carbonaceous metapelites, units of coarse-grained metagreywackes fining upwards, become increasingly conglomeratic up the stratigraphy. Small-scale isoclinal folds, brecciation, extension fractures and boudinage of cherty BIF units reflect brittle-ductile deformation. Fold axial planes have foliation, with subvertical plunges parallel to prominent rodding and mineral lineation in the footwall rocks. Gold mineralisation is associated with two generations of quartz–carbonate veins, dipping approximately 20° to 40° W. The first generation consists of ladder-vein sets (group IIA) preferentially developed in centimetre-scale Fe-rich mesobands, whereas the second generation consists of large quartz–carbonate veins (group IIB), which locally crosscut the entire ore body and extend into the footwall and hanging wall. The ore body is controlled by mesoscale isoclinal folds approximately 67° E, orthogonal to the plane of mineralised, gently dipping veins, defining the principal stretching direction and development of fluid-focussing conduits. The intersections of the mineralised veins and foliation planes of the host rock plunges approximately 08° to the north. Pervasive hydrothermal alteration is characterised by chloritisation, carbonatisation, sulphidation and K-metasomatism. Gold is closely associated with sulphides, mainly pyrite and pyrrhotite, and to a lesser extent, with bismuth tellurides and carbonate minerals. Mass balance transfer calculations indicate that hydrothermal alteration of BIF involved enrichment of Au, Ag, Bi, Te, S and CO2 (LOI), MgO, Ba, K and Rb, but significant depletion of SiO2 and, to a lesser extent, Fe2O3. Extensive replacement of magnetite and chlorite in BIF and other pelitic sedimentary rocks by sulphide and carbonate minerals, both on mesoscopic and microscopic scales, is evidence of interaction of CO2- and H2S-bearing fluids with the Fe-rich host rocks. The fineness of gold grains ranges from 823 to 921, similar to that of other epigenetic Archaean BIF-hosted gold deposits, worldwide.  相似文献   

13.
滇西大坪金矿床地质特征及成因初探   总被引:1,自引:18,他引:1  
大坪金矿床被视为哀牢山造山带南段最典型的造山型金矿,但其诸多地质特征明显不同于国外典型造山型金矿床,而呈现出与浅成低温热液型金矿床的一致性.区域上,脉型金铜铅银矿床的产出与中酸性侵入岩及中基性火山岩密切相关.大坪金矿床形成于主要赋矿的桃家寨闪长岩侵位之后约800Ma的新生代构造-岩浆热事件中,金矿床是区域尺度伸展和转换拉伸应力体制的产物;成矿作用过程中,研究区构造动力体制发生了转换,主成矿期容矿断裂带显示为张剪性正断层性质.矿脉多(55条)、薄(0.2~0.8m)、长(200 ~ 1500m)、陡(56°~ 85°)、延深大(约700m),且近平行成带产出;矿体中Au品位高(超过10×10-6),Au/Ag低(o.1 ~o.5),且伴生Pb、Cu、Ag.矿石的充填型结构构造和矿物共生组合指示矿脉形成温度低、深度浅;矿化-蚀变样式以及蛋白石和氧化矿的出现表明成矿体系处于开放的氧化环境,成矿后保存良好.大坪金矿床这种特殊的地质特征可能与其复杂的区域构造背景及成矿演化过程密切相关,金矿床虽然具有造山型金矿的基本特征,但在成矿作用晚期,矿床浅部叠加了浅成低温热液型金铜铅银成矿作用.即大坪金矿床属于深部造山型+浅部低温热液型矿床套叠组合,成矿体系保存完整,现发现的均为浅部矿体,深部找矿潜力巨大.  相似文献   

14.
陕西省宁陕县丰富金矿产于南秦岭构造带东江口岩体内,为一中型规模金矿床,赋矿围岩为黑云母二长花岗岩。矿床形成于印支-燕山期秦岭造山过程中由碰撞向伸展构造体制转变的后碰撞构造环境,成矿时代限定为200Ma左右的燕山早期,矿床类型为硫化物石英脉型和破碎带蚀变岩型。金的赋存状态有包裹金、裂隙金及晶隙金三种,以裂隙金和晶隙金为主,具有多期成矿特征。围绕主岩浆期后超浅成-浅成侵入的中基性岩脉、岩枝、岩株呈环状展布的缓倾斜断裂是主要的控矿和赋矿构造,成矿作用与主岩浆期后火山-次火山作用或隐蔽爆破作用引发的热液作用有关。  相似文献   

15.
Orogenic gold mineralization in the Amalia greenstone belt is hosted by oxide facies banded iron-formation (BIF). Hydrothermal alteration of the BIF layers is characterized by chloritization, carbonatization, hematization and pyritization, and quartz-carbonate veins that cut across the layers. The alteration mineral assemblages consist of ankerite-ferroan dolomite minerals, siderite, chlorite, hematite, pyrite and subordinate amounts of arsenopyrite and chalcopyrite. Information on the physico-chemical properties of the ore-forming fluids and ambient conditions that promoted gold mineralization at Amalia were deduced from sulfur, oxygen and carbon isotopic ratios, and fluid inclusions from quartz-carbonate samples associated with the gold mineralization.Microthermometric and laser Raman analyses indicated that the ore-forming fluid was composed of low salinity H2O-CO2 composition (~3 wt% NaCl equiv.). The combination of microthermometric data and arsenopyrite-pyrite geothermometry suggest that quartz-carbonate vein formation, gold mineralization and associated alteration of the proximal BIF wall rock occurred at temperature-pressure conditions of 300 ± 30 °C and ∼2 kbar. Thermodynamic calculations at 300 °C suggest an increase in fO2 (10−32–10−30 bars) and corresponding decrease in total sulfur concentration (0.002–0.001 m) that overlapped the pyrite-hematite-magnetite boundary during gold mineralization. Although hematite in the alteration assemblage indicate oxidizing conditions at the deposit site, the calculated low fO2 values are consistent with previously determined high Fe/Fe + Mg ratios (>0.7) in associated chlorite, absence of sulfates and restricted positive δ34S values in associated pyrite. Based on the fluid composition, metal association and physico-chemical conditions reported in the current study, it is confirmed that gold in the Amalia fluid was transported as reduced bisulfide complexes (e.g., Au(HS)2). At Amalia, gold deposition was most likely a combined effect of increase in fO2 corresponding to the magnetite-hematite buffer, and reduction in total sulfur contents due to sulfide precipitation during progressive fluid-rock interaction.The epigenetic features coupled with the isotopic compositions of the ore-forming fluid (δ34SΣS = +1.8 to +2.3‰, δ18OH2O = +6.6 to +7.9‰, and δ13CΣC = −6.0 to −7.7‰ at 300–330 °C) are consistent with an externally deep-sourced fluid of igneous signature or/and prograde metamorphism of mantle-derived rocks.  相似文献   

16.
Two types of structurally controlled hydrothermal mineralization have occurred during folding of fissile schist in southern New Zealand: fold-related mineralization and normal fault-related mineralization. Both types have the same mineralogy and textures, and are dominated by quartz–ankerite veins and silicified breccias with ankeritic alteration. Most mineralized zones are thin (centimetre scale), although host schist is commonly impregnated with ankerite up to 20 m away. Thick (up to 5 m wide) mineralized zones are generally gold-bearing and contain pyrite and arsenopyrite with stibnite pods locally. Some of these auriferous zones have been extensively mined historically despite rugged topography and difficult access. Mineralization occurred during regional tectonic compression in the initial stages of development of the Southern Alps mountain belt at the Pacific–Australian plate boundary in the Miocene. Most of the gold-bearing deposits occur in east to south-east, striking normal faults that cut across mesoscopic folds in a belt that coincides with the southern termination of a regional-scale north trending antiform. Mineralized zones have similar structural control and relative timing to a nearby swarm of Miocene lamprophyre dykes and carbonatites. Limited stable isotopic data (C and O) and trace element geochemistry suggest that there was probably no genetic link between the igneous activity and gold mineralization. However, these two types of fluid flow have been controlled by the same tectonically created crustal plumbing system. This Miocene hydrothermal activity and gold deposition demonstrates that orogenic (mesothermal) mineralization can occur during the inception of an orogenic belt, not just in the latter stages as is commonly believed. These Miocene structures have been preserved in the orogen because the locus of uplift has moved northwards, so the early-formed gold deposits have not yet been structurally overprinted or eroded.  相似文献   

17.
对南非兰德砾岩型金矿床的研究成果进行总结,概括了绍斯迪普金矿床的区域地质背景、岩石地层划分,较为系统地分析了矿床的地质特征和矿床成因。得出如下结论:1金的主要来源可能与太古宙含金花岗绿岩带有密切关系;2金矿体主要受太古宙文特斯多普砾岩地层和中兰德群中的Turffontein亚群埃尔斯伯格组砾岩地层控制;3金矿床可能经历了早期沉积成岩成矿阶段—后期改造富集多个(Klipriviersberg火山活动作用时期和与2050Ma布什维尔德杂岩体有关的变质作用高峰时期)阶段,为复合成因的层控改造型矿床。研究结果对该类矿床的深入研究和走出去的中国企业有重要的参考价值。  相似文献   

18.
对南非兰德砾岩型金矿床的研究成果进行总结,概括了绍斯迪普金矿床的区域地质背景、岩石地层划分,较为系统地分析了矿床的地质特征和矿床成因。 得出如下结论:①金的主要来源可能与太古宙含金花岗绿岩带有密切关系;②金矿体主要受太古宙文特斯多普砾岩地层和中兰德群中的Turffontein亚群埃尔斯伯格组砾岩地层控制;③金矿床可能经历了早期沉积成岩成矿阶段—后期改造富集多个(Klipriviersberg火山活动作用时期和与2050Ma布什维尔德杂岩体有关的变质作用高峰时期)阶段,为复合成因的层控改造型矿床。研究结果对该类矿床的深入研究和走出去的中国企业有重要的参考价值。  相似文献   

19.
哀牢山金矿带是我国最重要的喜马拉雅期造山型金矿带,形成于三江特提斯复合造山过程中。论文基于对哀牢山复合造山带区域构造背景、控矿构造系统演化、金成矿期次及其时代的系统研究,从金成矿年代序列、成矿过程构造控制及成矿作用动力学环境三个方面,探讨了复合造山过程中的金矿成矿作用。研究结果表明,哀牢山金矿带发育三期金矿成矿-热事件:早期金成矿作用(61.55~63.09Ma)对应于逆冲推覆构造系统最为发育的时期,与剪切走滑断裂构造的形成同步,显示它们统一受控于印度-亚洲大陆碰撞早期的强烈汇聚挤压构造动力学体制;主期金成矿作用(33.76~36.10Ma)对应于区域挤压构造应力场的相对松弛阶段以及富碱斑岩和剪切走滑断裂构造系统最为发育的时期,受控于印度-亚洲大陆碰撞构造动力学转换体制,并可能受青藏高原物质东向逃逸和软流圈脉动隆起的联合制约,金矿大规模成矿作用与构造动力体制转换过程中的壳幔物质强烈交换与构造变形密切相关;晚期金成矿作用(26.40~30.80Ma)对应于岩石圈伸展作用的发生以及亏损地幔减压熔融产生的板内高钾岩浆岩的就位,受控于印度板块反向旋转拖曳与斜向俯冲回退的综合作用。  相似文献   

20.
北山造山带处于中亚造山带南缘,研究其岩浆事件对于推演中亚造山带地质构造演化具有重要意义。在甘肃北山南带的双鹰山-花牛山岛弧带中,分布有大量花岗质岩体。本文选取甘肃北山南带双峰山南复式岩体中的花岗闪长岩和二长花岗岩,开展LA-ICP-MS锆石年代学、Hf同位素、全岩地球化学和Sr-Nd同位素研究。研究结果表明该复式岩体成岩时代、地球化学与同位素特征基本一致,具体如下:(1)锆石年代学结果显示二长花岗岩年龄为367.5±1.7Ma、368.0±1.8Ma,花岗闪长岩年龄为366.3±2.2Ma,均为晚泥盆世;(2)复式岩体SiO_(2)含量为64.39%~74.95%、碱含量为5.01%~9.21%,属准铝质(A/CNK=0.88~1.00),P 2O 5含量低(0.02%~0.17%),且与SiO_(2)呈负相关,具有典型的I型花岗岩特征;(3)样品总体富集轻稀土元素((La/Yb)N=6.23~23.0),具有较强烈的Eu负异常(δEu=0.31~0.55),富集Rb、Th、U等大离子亲石元素,亏损Nb、Ti、P等高场强元素;(4)锆石εHf(t)值为-3.1~+6.0,t DM2为928~1327Ma,全岩(87 Sr/86 Sr)i在0.705607~0.708523之间,εNd(t)在-4.1~-1.9之间。结合区域构造环境,实验数据表明,双峰山南晚泥盆世复式岩体是在活动大陆边缘的环境下,由幔源岩浆底侵加热下地壳使之部分熔融,并与之混合形成的,代表了晚泥盆世柳园洋向北俯冲的构造事件。  相似文献   

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