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1.
藏北商旭造山型金矿床的发现及意义   总被引:4,自引:3,他引:1  
西藏双湖县商旭金矿床位于班公湖-怒江缝合带中段。矿体赋存于中-下侏罗统木嘎岗日群浅变质复理石中,受北西西向断裂构造控制,呈透镜体状、脉状,或者似层状产出;矿石矿物以自然金为主,矿石类型为石英脉型和蚀变岩型,围岩蚀变特征明显。该矿床主要受地层及构造因素控制,矿区的构造、围岩蚀变、矿物、地球化学异常等可作为找矿标志。野外地质调查和矿床对比研究显示,商旭金矿床在矿物共生组合、蚀变类型、构造类型等方面,与典型的造山型金矿床相似,其成因类型属于造山型金矿床。商旭金矿床的发现为班公湖-怒江成矿带金等贵金属矿产的地质找矿工作开辟了新的方向。  相似文献   

2.
西藏双湖县达则金矿位于班公湖—怒江缝合带中段,矿体受近东西向的脆—韧性断裂构造控制,呈似层状、脉状产于中—下侏罗统木嘎刚日群混杂岩中。本文在区域地质、大比例尺构造蚀变填图成果分析、岩石地球化学综合剖面成果分析,典型矿床对比等方面对双湖县达则金矿的金矿找矿潜力做了初步分析,利用构造蚀变填图和岩石地球化学综合剖面发现了三条含金蚀变带,通过探槽揭露发现三条金矿带,品位为1.84~3.17g/t,延申超过300m。与商旭金矿相似,均受近东西断裂控制,成矿物质与木嘎岗日群关系密切,初步认为达则金矿具有良好的找矿前景,具有中型以上的资源潜力,该矿金矿的发现为班公湖—怒江缝合带中段寻找造山型金矿提供有意义的参考。  相似文献   

3.
西藏双湖县达则金矿位于班公湖—怒江缝合带中段,矿体受近东西向的脆—韧性断裂构造控制,呈似层状、脉状产于中—下侏罗统木嘎刚日群混杂岩中。本文在区域地质、大比例尺构造蚀变填图成果分析、岩石地球化学综合剖面成果分析,典型矿床对比等方面对双湖县达则金矿的金矿找矿潜力做了初步分析,利用构造蚀变填图和岩石地球化学综合剖面发现了三条含金蚀变带,通过探槽揭露发现三条金矿带,品位为1.84~3.17g/t,延申超过300m。与商旭金矿相似,均受近东西断裂控制,成矿物质与木嘎岗日群关系密切,初步认为达则金矿具有良好的找矿前景,具有中型以上的资源潜力,该矿金矿的发现为班公湖—怒江缝合带中段寻找造山型金矿提供有意义的参考。  相似文献   

4.
西藏双湖县商旭造山型金矿床位于班公湖—怒江缝合带中段,矿体受NWW向的脆—韧性断裂构造控制,呈似层状、脉状产于中—下侏罗统木嘎岗日群混杂岩中。围岩为炭质板岩、变石英砂岩等。矿石类型主要为石英脉型和构造蚀变岩型,矿石构造以细脉状和角砾状为主,矿石矿物为自然金。矿床学与同位素地球化学研究认为木嘎岗日群含金建造为商旭金矿提供了主要物质来源,NWW向脆—韧性断裂构造为含金热液的运移和金的沉淀供了运输通道和就位空间,羌塘南缘早白垩世构造—岩浆活动为含金热液的运移提供了热动力,矿区内NWW向构造破碎带中变形强烈,具黄铁矿化、硅化蚀变的地段,为本矿区的找矿有利地区。土壤地球化学调查显示,Ⅲ号矿段南部,T-4、T-5异常区域具有较好的找矿潜力;电法测深资料显示,Ⅲ号矿段的控矿构造在深部还有延伸,并可能与区域较深大的断裂相连。综合分析认为,Ⅲ_(1-2)号矿体在标高4200m以下还具有较大的找矿潜力,通过进一步地质勘查工作,有望提高金资源量,扩大矿床规模。同时,初步总结了商旭造山型金矿床"找矿三步组合拳"的勘查工作方法。  相似文献   

5.
西藏双湖县达则金矿位于班公湖—怒江缝合带中段,矿体受近东西向的脆—韧性断裂构造控制,呈似层状、脉状产于中—下侏罗统木嘎刚日群混杂岩中。本文在区域地质、大比例尺构造蚀变填图成果分析、岩石地球化学综合剖面成果分析,典型矿床对比等方面对双湖县达则金矿的金矿找矿潜力做了初步分析,利用构造蚀变填图和岩石地球化学综合剖面发现了三条含金蚀变带,通过探槽揭露发现三条金矿带,品位为1.84~3.17g/t,延申超过300m。与商旭金矿相似,均受近东西断裂控制,成矿物质与木嘎岗日群关系密切,初步认为达则金矿具有良好的找矿前景,具有中型以上的资源潜力,该矿金矿的发现为班公湖—怒江缝合带中段寻找造山型金矿提供有意义的参考。  相似文献   

6.
豫西吉家洼金矿位于熊耳山金多金属矿集区西部,是一构造蚀变岩-石英脉型金矿床。矿体产于近南北向断裂带中,在倾向上呈"Y"字型分布,矿化以细脉-网脉状、浸染状黄铁矿化蚀变岩型金矿为主,其次为石英脉型金矿。热液成矿过程包括4个矿化阶段,黄铁矿-石英阶段(Ⅰ)、石英-黄铁矿阶段(Ⅱ)、石英-多金属硫化物阶段(Ⅲ)和石英-碳酸盐阶段(Ⅳ)。本次工作对吉家洼金矿床主要成矿阶段(Ⅲ)的闪锌矿进行了Rb-Sr同位素测年研究,以限定成矿时代。结果获得Rb-Sr等时线年龄为118.2±2.4Ma,表明矿床形成于早白垩世。该年龄与熊耳山地区中的庙岭、祁雨沟、公峪等金矿床的成矿年龄基本一致,对于整个熊耳山地区的金矿成矿年龄具有一定的约束意义。锶-铅同位素研究结果显示,吉家洼金矿的成矿物质为壳幔混源,新太古界太华群基底及其重熔形成的花岗岩体可能为铅同位素的主要物源。我们认为,吉家洼金矿床是熊耳山地区在早白垩世区域性强烈的构造-岩浆-流体活动事件的产物,是整个中国东部金的大规模成矿作用的组成部分。  相似文献   

7.
<正>班公湖-怒江成矿带是一条具有巨大找矿潜力的铜铁金多金属成矿带,虽然该带中砂金遍布,但岩金发现较少,以原生金为主的金矿勘查评价以及研究工作相对滞后,严重制约了该带金成矿规律和找矿方向研究。在西藏那曲地区双湖县措折罗玛镇,发现具有较好找矿远景的商旭金矿床。该矿床位于班公湖-怒江缝合带中段,赋存  相似文献   

8.
金沙江—澜沧江—怒江地区金矿类型及成矿条件   总被引:9,自引:0,他引:9       下载免费PDF全文
杨岳清  田农 《地质学报》1993,67(1):63-75
金沙江-澜沧江-怒江地区是中国重要的贵金属、有色金属成矿远景区之一。金矿类型繁多,主要有:蛇绿混杂岩中的构造蚀变岩型;与中酸性岩浆侵入活动有关的多金属石英脉型;构造破碎带中的微细浸染型;碳酸盐岩层构造裂隙中的混成热液型;与次火山岩有关的热液型;火山热泉型和海底火山喷流沉积-热液改造型。成矿时间集中于中新生代。矿床和矿体主要受线型构造控制。岩浆活动在金的成矿过程中有不同程度影响。金矿基本属浅成、中低温热液型。蚀变作用普遍强烈。成矿物质及热液具多源性。  相似文献   

9.
钱建平 《矿床地质》1998,17(Z2):409-412
六岑金矿是大瑶山金银多金属成矿带北段一个典型的金矿床。其矿化类型可分为石英脉型和蚀变岩型。成矿阶段包括黄铁矿毒砂石英脉阶段、铅锌硫化物石英脉阶段和碳酸盐阶段。矿床成因属与花岗斑岩有关的岩浆热液矿床。  相似文献   

10.
商旭金矿床处于班公湖-怒江缝合带中段南侧,位于藏北双湖县境内,是班公湖-怒江缝合带已发现的可能是造山型的金矿床。矿体赋存于中-下侏罗统木嘎岗日群浅变质复理石中,受北西西向断裂构造控制,金矿化与石英脉密切相关。含矿石英脉中见较多黄铁矿、黄铜矿、方铅矿、闪锌矿等硫化物,自然金沿石英裂隙分布,少量分布在黄铁矿裂隙中。岩相学特征和激光拉曼测定结果显示,商旭金矿床中存在两类流体包裹体:1富液相包裹体(L型);2含CO2包裹体(C型),此类包裹体主要为CO2三相包裹体,见CO2两相包裹体。显微测温结果表明:1L型包裹体的均一温度为89.6~409.8℃,盐度ω(NaCleq)为0.35%~9.34%,流体密度为0.55~0.98g/cm3;2C型包裹体的均一温度为264.3~395.2℃,盐度ω(NaCleq)为4.62%~9.74%,流体密度为0.66~0.81g/cm3。商旭金矿床成矿流体具有富CO2、中低温度、低盐度、低密度的特征,与典型造山型金矿成矿流体特征相似。同时,商旭金矿床成矿流体的氢氧同位素组成分别为δD=-108‰~-89‰、δ18 O=-0.8‰~5.8‰,表明成矿流体主要来自变质水与建造水的混合。综合流体包裹体和氢氧同位素证据,进一步论证商旭金矿床为造山型金矿。  相似文献   

11.
哲兰德金矿是额尔齐斯构造带上重要的造山型金矿,产出于韧性剪切带中,金矿化赋存于黄铁矿化闪长岩脉、含金石英脉和黄铁矿化千枚岩中,矿化与韧脆性剪切变形有关。沿剪切面理发育的白云母、绿泥石等新生矿物,为测定金矿形成时代提供了依据。本研究利用白云母~(40)Ar/~(39)Ar年代学手段,确定了韧性剪切带的形成时代和金成矿时代。结果表明白云母坪年龄为295. 4±1. 6 Ma,韧性剪切变形和金成矿作用发生在295 Ma,略早于多拉纳萨依金矿形成时间。结合前人资料认为,新疆额尔齐斯构造带造山型金矿形成于295~270 Ma。  相似文献   

12.
金龙山金矿床位于南秦岭造山带的复理石褶冲带中,赋矿围岩为碎屑岩-碳酸盐建造,矿化明显受地层岩性与韧-脆性构造发育程度的控制。矿床稀土元素地球化学研究表明,地层岩石、矿石和热液矿物的轻重稀土分异程度和特征参数基本一致,表明成矿流体应主要来自于赋矿地层。铅同位素研究表明,地层岩石、矿石和热液矿物均具有较高的放射性成因的铅同位素组成,且均落入南秦岭造山带的泥盆系范围内,暗示铅也主要来自赋矿地层。对前人已有的碳-氧-硫-氢同位素组成和流体包裹体数据综合分析表明,碳和氧应主要来自海相碳酸盐的溶解作用,硫主要来自海相硫酸盐的热化学还原反应;从成矿早阶段到晚阶段,成矿流体的δ18O及δD值向大气降水线"漂移",指示成矿流体以盆地建造水和变质水为主,在晚阶段有大气降水加入。金龙山金矿床与卡林型金矿床的矿床地质-地球化学特征相似,应属于卡林型金矿床,其形成于秦岭造山带陆内造山作用过程中,多层次陆壳叠置加厚的地球动力学背景,是陆内碰撞造山作用的产物。  相似文献   

13.
俞军真  郑有业  许荣科 《地质学报》2020,94(11):3361-3375
双口山金-银-铅矿床地处柴北缘西段,赋存在滩间山变基性-超基性变火山岩中。矿体由金矿体和银铅矿体组成,成矿作用与热液活动密切相关。本文通过对双口山含金矿体赋矿围岩及含金石英脉进行LA-ICP-MS锆石U-Pb年代学分析和研究。结果表明,赋矿围岩形成时代为443±2.9Ma,与区域滩间山群火山岩形成年代一致(440~490Ma)。含金石英脉热液锆石U-Pb年代为402.8±4.2Ma,与区域金矿床成矿年龄以及韧性剪切带年龄相接近(~400Ma),代表了金矿体热液作用及成矿时代。结合地质特征及前人研究,表明双口山金银铅矿床是柴北缘造山带在不同造山带演化阶段,由不同成矿作用,在不同时期,相互叠加形成的复合型多金属矿床。金矿体具有典型造山型金矿床特征的变质热液型金矿,其成因主要与造山运动过程中的变质和变形作用有关,成矿物质和流体来源于绿片岩相的滩间山群变基性-超基性变火山岩。银铅矿体为岩浆热液型,成矿与后碰撞造山作用伸展-构造转换有关的岩浆作用有关,成矿物质和流体来源于晚泥盆世深部含矿岩浆作用。  相似文献   

14.
The Kalana gold deposit occurs within metamorphosed Paleoproterozoic volcano-sedimentary series of the Birimian Baoulé-Mossi domain of the West African Craton, in the south of Mali. These formations are intruded successively by small dioritic bodies, as well as andesitic and tonalitic dykes, which exhibit volcanic arc-setting signatures. Mineralization is hosted by two sets of quartz veins that intersect the regional schistosity. The first set of veins is the most important in terms of grades and size, and consists of thick veins (up to meter size) that range in trend from N–S to E–W with shallow plunges. The second set consists of much thinner (centimeter size) sub-vertical quartz veins oriented NE–SW. The two sets of veins are interpreted to have formed during the evolution of late, gently dipping thrust faulting. Two episodes of gold precipitation are recognized: a first episode, during early stages of vein growth, formed micron-size native gold inclusions in arsenopyrite; a later episode, during vein shearing and fracturing of the quartz lodes, precipitated native gold in free form in quartz, in fractured arsenopyrite, and associated with chalcopyrite, galena, sphalerite, Bi sulfides and native bismuth. All evidence suggests that the Kalana deposit represents orogenic gold mineralization formed during a relatively long-lived hydrothermal system, at a late stage of the tectonic history of the greenstone belt.  相似文献   

15.
The Laowan metallogenic belt in China is an important metallogenic belt within the Tongbai orogenic belt, and contains the medium-sized Laowan and Shangshanghe gold deposits, the small Huangzhuyuan lead–zinc–silver–gold deposit and some gold and Cu–Pb occurrences. These deposits are hosted in Mesoproterozoic plagioclase amphibolite (or schist) and mica-quartz schist. The gold ores are mainly quartz veins and veinlets and disseminated altered ores. Subordinate ore types include massive sulfides and breccias. The Laowan gold deposit is characterized by three right-stepping en-echelon fracture-controlled alteration zones that dip gently to the south and includes disseminated, sheeted and stockwork ores. These lodes were formed by the interaction of ore-forming fluid with foliated-to laminated cataclasite within the transpressional faults. The Shangshanghe gold deposit is characterized by parallel ore lodes that dip steeply to the north, and includes quartz veins and breccias in addition to ores in altered wallrocks. These lodes were formed by focusing of fluids into transtensional faults. These ore controlling faults displaced early barren quartz veins 10 m horizontally with a dextral sense of motion. The ore-hosting structures at the Laowan and Shangshanghe deposits correspond to the P and R-type shears of a brittle dextral strike-slip fault system, respectively, which make angles of about 15° and − 15° to the Laowan and Songpa boundary faults. The ore-controlling fault system post-dated formation of a ductile shear zone, and peak regional metamorphism. This precludes a genetic relationship between hydrothermal mineralization and regional metamorphism and ductile shear deformation. These gold deposits are not typical orogenic gold deposits. The metallogenic belt displays district-scale-zoning of Mo  Cu–Pb–Zn–Ag  Au relative to Songpa granite porphyry dike zone, suggesting the mineralization may be closely related to the granite porphyry. Measured δ34S of sulfides and δ18O and δD of fluid inclusion waters in auriferous quartz also are consistent with a magmatic source for sulfur and ore fluids. The similarity of Pb isotope ratios between the ores and Yanshanian granitoids suggests a similar source. As the age (139 ± 3 Ma) of granite porphyry obtained by zircon U–Pb isotope overlaps the mineralization age (138 ± 1 Ma: Zhang et al., 2008a), the gold and polymetallic metallogenesis of the Laowan gold belt has close spatial, temporal and possibly genetic relationships with Yanshanian high level magmatism.  相似文献   

16.
丁家林-太阳坪金矿带与丁家林-太阳坪脆-韧性剪切带同位分布、同能源作用、同步生成,是脆-韧性剪切变形形成的石英脉型金矿,总体走向NE,主要由丁家林和太阳坪2个金矿床组成,分石英单脉、单脉密集带、复脉带3个亚型。丁家林以含Au石英复脉为主,太阳坪以含Au石英单脉为主;成矿物质来源于富含Si质的志留系黄坪组,成矿流体主要是构造水;内生成矿作用分脆.韧性剪切变形-构造分异热液期和韧-脆性剪切变形-构造分异热液期,与2期脆-韧性剪切变形相对应,第2期为主成矿期。其成矿机理是脆-韧性剪切变形动力成岩成矿。  相似文献   

17.
新疆东天山康古尔塔格金矿带研究   总被引:25,自引:0,他引:25  
通过矿床地质和Rb-Sr法,U-Pb法,^40Ar-^39Ar法,Sm-Nd法生代学及氢,氧,硫,碳,锶,铅等稳定同位素与流体包裹体研究,查明东天康古尔塔格金矿带中浅成低温热液型金矿,韧性剪切带蚀变岩型金矿及花岗岩有关的石英脉型金矿三者大地构造背景相同,成矿时代一致。成矿物质来源相似,流体包裹体成分类同,属同一成矿系列,三者之间主要是成矿地质环境不尽相同,成矿元素组合有差异,控矿构造不同,反映成矿  相似文献   

18.
阿斯哈金矿位于东昆中隆起带东段,是东昆仑重要的金、铁多金属成矿带。金矿的容矿围岩为印支早期闪长岩和黑云母花岗岩,NNE向和NW向断裂为主要的容矿构造,Ⅰ号脉为该金矿主要的矿脉之一,云煌岩与金矿脉空间关系密切。流体包裹体主要有富CO2三相和气液两相2种类型。流体盐度(w(NaCl))为1.83%~8.13%,流体密度为0.69~0.87 g/cm3,成矿温度为155.3~425.6 ℃。成矿Ⅰ阶段流体为低盐度、富CO2的高温流体;成矿Ⅱ阶段富CO2型和气液两相流体包裹体共存,发生了以CO2逸失为特征的不混溶或沸腾,致使残余流体盐度升高;成矿Ⅲ阶段为气液两相包裹体。激光拉曼光谱分析表明,流体气相成分主要有CO2、CH4、N2。结合氢、氧和硫同位素组成分析认为,成矿流体主要为幔源流体,晚期有大气水的加入。通过等容线图解法估算成矿压力为98~132 MPa,估算成矿深度为8.16~9.58 km。通过与典型造山型金矿特征对比,阿斯哈金矿为中成造山型金矿,矿床形成于早印支期陆内造山由挤压向伸展转换时期。  相似文献   

19.
五凤和五星山金矿为延边地区中生代火山岩金、铜成矿带中典型的金矿床.通过岩石化学、成矿元素、流体包裹体和同位素组成等方面的分析,提出五凤和五星山金矿床属于典型的冰长石-绢云母型浅成低温热液型金矿床,其形成是深部火山-热液流体系统与浅成大气流体的混合.成矿构造环境与陆内造山带后期垮塌机制有关,造山带的垮塌与古太平洋板块斜向俯冲导致的大型走滑剪切有密切的成因联系.  相似文献   

20.
Abstract: The Kanggur gold deposit lies in East Tianshan mountains, eastern section of Central Asia orogenic belt. The gold mineralization occurs on the northern margin of the Aqishan‐Yamansu Paleozoic island arc in the Tarim Plate. It was hosted mainly in Middle‐Lower Carboniferous calc‐alkaline volcanic rocks, and controlled by the distributions of syn‐tectonic intrusions and ductile shear zones. In order to determine ore‐forming age of the Kanggur deposit, samples were collected from ores, wall rocks, altered rocks and intrusions. The dating methods include Rb‐Sr isochron and Sm‐Nd isochron, and secondly 40Ar/39Ar age spectrum, U‐Pb and Pb‐Pb methods. Based on the mineral assemblage and crosscutting relationship of ore veins, five mineralization stages are identified. This result is confirmed by isotope geochronologic data. The first stage featuring formation of pyrite‐bearing phyllic rock, is mineralogically represented by pyrite, sericite and quartz with poor native gold. The Rb‐Sr isochron age of this stage is 2905 Ma. The second stage represents the main ore‐forming stage and is characterized by native gold–quartz–pyrite–magnetite–chlorite assemblage. Magnetite and pyrite of this stage are dated by Sm‐Nd isochron at 290.47.2 Ma and fluid inclusion in quartz is dated by Rb‐Sr isochron at 282.35 Ma. The third mineralization stage features native gold–quartz–pyrite vein. In the fourth stage, Au‐bearing polymetallic sulfide‐quartz veins formed. Fluid inclusions in quartz are dated by Rb‐Sr isochron method at 25821 Ma. The fifth stage is composed of sulfide‐free quartz–carbonate veins with Rb‐Sr age of 2547 Ma. The first and second stages are related to ductile‐brittle deformation of shear zones, and are named dynamo‐metamorphic hydrothermal period. The third to fifth stages related to intrusive processes of tonalite and brittle fracturing of the shear zones, are called magmato‐hydrothermal mineralization period. The Rb‐Sr isochron age of 2905 Ma of the altered andesite in the Kanggur mine area may reflect timing of regional ductile shear zone. The Rb‐Sr isochron age of 28216 Ma of the quartz‐syenite porphyry and the zircon U‐Pb age of 2757 Ma of tonalite in the north of Kanggur gold mine area are consistent with the age of gold mineralization (290‐254 Ma). This correspondence indicates that the tonalite and subvolcanic rocks may have been related to gold mineralization. The Rb–Sr, Sm‐Nd and U‐Pb ages and regional geology support the hypothesis that the Kanggur gold deposit was formed during collisional orogenesis process in Late Variscan.  相似文献   

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