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1.
黑龙江省东宁县金厂金矿是滨太平洋成矿域浅成低温-斑岩成矿系统中极具代表性的特大型金矿床。矿区已发现爆破角砾岩筒型、环状一放射状裂隙充填型、似层状微细脉浸染型和断控构造破碎带蚀变岩型等矿化类型。为确定成矿时间,作者应用高精度单颗粒激光熔蚀氩氩法,选择Ⅻ号破碎带蚀变岩型矿体中多金属硫化物一石英脉中石英和J-9号爆破角砾岩筒型矿体中闪锌矿进行年龄测定。获得Ⅻ号矿体石英40Ar/39Ar等时线年龄为119±5Ma(MSWD:6.3),J-9号矿体闪锌矿40Ar/39Ar等时线年龄为129±0.8Ma(MSWD=3.7),限定了成矿作用的上限。结合最新获得的相关成矿地质体精细年代学成果,进一步认定金厂金矿成矿时代为燕山晚期,成矿与同时代闪长玢岩一花岗闪长斑岩关系密切。金厂金矿成岩、成矿环境具备寻找富金斑岩型铜矿的有利条件,与成矿关系密切侵入岩呈岩脉、岩枝状,指示矿区剥蚀程度浅,深部还有发现斑岩型Au(cu)矿化的可能。  相似文献   

2.
邱小平  潘淼 《黄金地质》1997,3(4):29-35
小营盘金矿赋存在稳定的缓倾斜石英脉中,但单纯的白色石英脉仅有微弱矿化,只有经过S懊断层剪切拉张破裂和叠加铁白云石化及硫化物蚀变的石英脉才能成为矿体,金矿体的顶底面常被铁白云石蚀变岩和糜棱岩所包裹,而且部分蚀变岩的金含量也达到工业品位,石英脉与蚀变岩作用构成矿体。因此,早期金成矿作用的时代大致与铁白云蚀变同期,含金铁白云石蚀变岩的δ^13C值平均为-4.13‰,Pb-Pb等时线年龄为2711±238  相似文献   

3.
四平银(金)矿床石英包裹体 Rb-Sr等时线年龄 187± 4 Ma,表明首期成矿作用发生在燕山早期,矿床 Rb-Sr等时线年龄与蚀变绢云母 K-Ar年龄差异及不同矿段矿化特征差异表明,蚀变绢云母 K-Ar年龄反映后期热液成矿事件时代,四平银(金)矿床至少经历了两期热液成矿事件,首期成矿事件发生在燕山早期,晚期成矿事件发生在燕山中期,成矿热液活动时间跨度约 33 Ma。  相似文献   

4.
大别山地区沙坪沟斑岩型钼矿床蚀变及矿化特征研究   总被引:2,自引:0,他引:2  
沙坪沟钼矿床是大别山地区新近发现的、世界第二大的斑岩型钼矿床。本文在前期以及前人的工作基础上,通过详细的野外地质观察和系统的岩相学、矿相学以及探针测试分析工作,详细研究了沙坪沟钼矿床的蚀变与矿化特征。结果表明,沙坪沟钼矿床的围岩蚀变类型主要有钾硅酸盐化、青磐岩化和绢英岩化,绢英岩化又可细分为以石英为主和以绢云母为主。矿床中产出16种脉体类型,根据矿床的脉体类型划分了4个成矿阶段:(1)石英-钾长石阶段;(2)石英-硫化物阶段;(3)石英-绢云母阶段;(4)石英-萤石-石膏阶段。蚀变及矿化特征显示,沙坪沟钼矿床的钼矿化开始于石英-钾长石阶段晚期,结束于石英-绢云母阶段早期,石英-硫化物阶段是辉钼矿主要的形成阶段。沙坪沟钼矿床经历了多期次脉动式成矿流体的蚀变与矿化过程,在不同蚀变-矿化阶段中,成矿流体的物化条件和组分的变化是控制各阶段蚀变类型和脉体中矿物组合的主要因素。产于以伸展为主的板内环境的沙坪沟钼矿床与其他构造环境下的斑岩钼矿床在与成矿关系密切的岩石、蚀变分带等方面相似,但由于围岩性质的差异,矿体赋存位置及产状不同;而在矿物种类、矿化产出位置及产状、与矿化关系最为紧密的蚀变类型等方面存在差异。斑岩型钼矿床的构造背景可能控制了其岩浆的形成、演化以及含矿性,而岩浆岩最终定位的深度、围岩等条件也是控制蚀变和矿化特征的重要因素。  相似文献   

5.
砂宝斯金矿床是大兴安岭北部唯一一个大型岩金矿床。本文应用石英真空击碎和阶段加热40Ar/39Ar定年技术,首次获得了砂宝斯金矿床的成矿年龄。石英真空击碎40Ar/39Ar定年方法获得了石英脉中原生包裹体等时线年龄为130.1±1.3 Ma;石英粉末阶段加热40Ar/39Ar定年方法获得石英脉中钾长石微晶的等时线年龄为133.1±3.5 Ma。石英脉中原生包裹体和钾长石微晶的年龄较吻合,~130 Ma代表了含金石英脉的形成年龄。砂宝斯金矿床的成矿时代为早白垩世,形成于蒙古-鄂霍茨克造山带后碰撞阶段的挤压向伸展转换期。  相似文献   

6.
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   

7.
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   

8.
小秦岭矿化带近东西向展布有5个金矿化宫集带(亚矿带)。其中以文峪-杨砦峪亚矿带矿脉密度最大,矿床数量最多。全区发育有两类金矿化,即含金石英脉型与蚀变岩型,两者空间发育具互补性特点以及一定的分带趋势。全区自西向东,石英脉型矿化所占比重渐减,蚀变岩型矿化逐增,至东部雪家山岩体以东则形成一些蚀变岩型小型矿床,垂向分布上,含金石英脉型矿化多在浅部;蚀变岩型矿化则多发育于深部。  相似文献   

9.
桂北地区金矿划分为石英脉型、石英细脉薄脉型和构造蚀变岩型金矿.不同级别剪切带构造控制着矿化集中区、矿床、矿体的分布,以及与矿脉形态、产状和矿化类型有着空间上的密切联系.具有上部石英脉型、中部石英细脉薄脉型、下部构造蚀变岩型金矿的矿化分带模式.桂北地区成矿条件好,与国内外许多大型超大型剪切带型金矿有类似成矿地质背景.研究认为,在桂北地区找矿应转变找矿思路,在老矿山深部及周边地区,具有大型构造蚀变岩型金矿找矿前景.  相似文献   

10.
冀西北东坪金矿床的成矿期次及成矿阶段研究   总被引:1,自引:0,他引:1  
冀西北东坪金矿床的成矿期次及成矿阶段研究莫测辉(华南农业大学资源环境学院,广州510642)王秀璋程景平梁华英(中国科学院广州地球化学研究所,广州510640)关键词金矿床石英脉型蚀变岩型成矿期次成矿阶段“石英脉型”与“蚀变岩型”是中温(中深)热液脉...  相似文献   

11.
广西珊瑚钨锡矿床成矿年代学研究及其地质意义   总被引:2,自引:0,他引:2  
珊瑚钨锡矿床位于富贺钟钨锡多金属成矿集中区的中部,是南岭钨锡多金属成矿带内典型的热液石英脉型矿床之一。本文采用白云母~(40)Ar-~(39)Ar法和石英流体包裹体Rb-Sr法,对矿床V32号含矿石英脉进行精细年代学研究,获得石英脉中白云母~(40)Ar-~(39)Ar坪年龄为101.7±0.7 Ma(MSWD=0.34),正等时线年龄为102.0±1.0 Ma(MSWD=1.17);石英流体包裹体Rb-Sr等时线年龄为106.4±3.5 Ma(MSWD=0.83)。它们在误差范围内一致,是华南地区燕山晚期成岩成矿高峰期的产物。同时通过石英包裹体H-O同位素组成的初步分析,认为成矿流体属于"再平衡岩浆水",主要来自岩浆,在矿床深部可能存在隐伏花岗岩体。该成果对研究区域成矿规律,指导类似地区的找矿勘查工作具有重要意义。  相似文献   

12.
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   

13.
The Xinlu Sn‐polymetallic ore field is located in the western Nanling Polymetallic Belt in northeastern Guangxi, South China, where a number of typical skarn‐, hydrothermal vein‐type tin deposits have developed. There are two types of Sn deposits: skarn‐type and sulfide‐quartz vein‐type. The tin mineralizations mainly occur on the south side of the Guposhan granitic complex pluton and within its outer contact zone. To constrain the Sn mineralization age and further understand its genetic links to the Guposhan granitic complex, a series of geochronological works has been conducted at the Liuheao deposit of the ore field using high‐precision zircon SHRIMP U‐Pb, molybdenite Re‐Os, and muscovite Ar‐Ar dating methods. The results show that the biotite‐monzogranite, which is part of the Xinlu intrusive unit of the Guposhan complex pluton, has a SHRIMP U‐Pb zircon age of 161.0 ± 1.5 Ma. The skarn‐type ore has a 40Ar‐39Ar muscovite plateau age of 160 ± 2 Ma (same as its isochron age), and the sulfide‐quartz vein‐type ore yields an Re‐Os molybdenite isochron age of 154.4 ± 3.5 Ma. The magmatic‐hydrothermal geochronological sequence demonstrated that the hydrothermal mineralization took place immediately following the emplacement of the monzogranite, with the skarn metasomatic mineralization stage predating the sulfide mineralization stage. Geochronologically, we have compared this ore field with 26 typical Sn deposits distributed along the Nanling Polymetallic Belt, leading to the suggestion of the magmatic‐metallogenic processes in the Xinlu ore field (ca. 161–154 Ma) as a component of the Early Yanshanian large‐scale Sn‐polymetallic mineralization event (peaked at 160–150 Ma) in the Nanling Range of South China. Petrogenesis of Sn‐producing granite and Sn‐polymetallic mineralization were probably caused by crust–mantle interaction as a result of significant lithospheric extension and thinning in South China in the Late Jurassic.  相似文献   

14.
石英脉型金矿是广西大瑶山地区主要的金矿床类型之一,但一直没有高精度的年龄数据约束其成矿时代。论文首次 对大瑶山南部广西苍梧县上木水石英脉型金矿中的热液白云母进行39Ar/40Ar年龄法测年,获得坪年龄为(432.6 ± 3.2)Ma,相应 的等时线年龄为(428.2 ± 7.2)Ma,反等时线年龄为(425.3 ± 6.6)Ma,表明其成矿时代为加里东期。这一数据进一步证明 大瑶山南部的古龙-夏郢环形成矿区主要以加里东期矿化为主,除了与加里东期岩浆岩有关的斑岩-矽卡岩型钨多金属矿化 外,还存在石英脉型金矿。同时,位于大瑶山中部沿区域性大黎断裂分布的六岑-桃花-古袍金矿田的石英脉型金矿时代仍 然不明确,还需要进一步的高精度测年数据来约束。  相似文献   

15.
The Dongchuang gold deposit in the Xiaoqinling area is an orogenic-type lode gold deposit. It is one of the few superlarge (>100 t Au) deposits in China. Although it has been argued that it was formed in the Mesozoic, related isotopic age data have not been reported in previous studies. Based on detailed geological study, the authors have carried out isotopic dating on various metallogenic generations. The ore-forming process of the Dongchuang gold deposit consists of four stages: coarse-grained pyrite-bearing quartz veins (stage Ⅰ), fine-grained pyrite-quartz veinlets (stage Ⅱ), multi-sulfides (stage Ⅲ) and carbonate-quartz veinlets (stage IV). Ar-Ar dating on mineral separates of stages Ⅰ, Ⅱ and Ⅲ yields plateau ages of 142.9±2.9 Ma, 132.2±2.6 Ma and 128.3±6.2 Ma, respectively. Sericite separates from stage Ⅱ assemblage also yield an Ar-Ar isochron age of 132.6±2.7 Ma, similar to the Ar-Ar plateau age. These results suggest that the Dongchuang gold deposit was mainly formed during 143-128 M  相似文献   

16.
西藏岗穷拉钼铜矿床是近年在冈底斯带东段新发现的石英脉型钼铜矿.本次研究对岗穷拉矿床8件石英-辉钼矿脉样品中辉钼矿进行Re-Os同位素精确定年.测试结果表明,辉钼矿的模式年龄加权平均值为22.6±0.2 Ma(MSWD=1.3),等时线年龄为24.1±1.3 Ma(MSWD=1.1),二者在误差范围内基本一致,代表了岗穷拉矿床的成矿年龄,该年龄明显早于区域上南冈底斯带斑岩型钼铜矿的成矿时代(集中在17~12 Ma).辉钼矿中Re含量在239.1×10-6~314.7×10-6之间,指示成矿物质可能主要为幔源.结合区域上渐新世-早中新世大规模成矿作用的资料,岗穷拉钼铜矿可能为印度大陆与欧亚大陆碰撞造山过程中晚碰撞与后碰撞转换阶段成矿作用的产物.   相似文献   

17.
位处新疆东昆仑祁漫塔格地区的白干湖是中国西部最新探明的一个具超大型远景规模的钨锡矿田,柯可卡尔德是其中勘查程度最高、规模最大的钨锡矿床.文章在对柯可卡尔德钨锡矿地质特征详细野外调研和剖析的基础上,重点开展了控矿构造和白云母40Ar-39Ar定年研究.结果表明,该矿区内构造活动强烈且具多期次性,可划分为成矿前向西右旋剪切构造、成矿期以NE向为主的左旋张扭性断裂和成矿后近SN向正断层性质断裂等3期.应用白云母40 Ar-39 Ar同位素测年技术,分别测得了强云英岩化钨锡矿化花岗岩脉内白云母的积分年龄为(411.7±2.6) Ma,等时线年龄为(411.8±4.7) Ma(n=8,MSWD=0.21);黑钨矿-石英脉垂直脉壁生长的片状白云母的积分年龄为(412.8±2.4) Ma,等时线年龄为(414.6±3.9) Ma(n=10,MSWD=0.22),厘定了该矿床的成矿时代为晚志留世,认为其形成于东昆仑地区加里东造山旋回的后碰撞构造阶段.  相似文献   

18.
内蒙古阿拉善呼伦西白金矿的成矿时代   总被引:3,自引:0,他引:3  
内蒙古阿拉善呼伦西白金矿产于呼伦西白花岗岩体的内外接触带的中 ,矿体受构造破碎带的控制 ,由蚀变浸染型矿体和穿插其间的含金石英脉透镜体构成。采用单颗粒锆石U Pb法和石英的40 Ar/ 3 9Ar法 ,直接测定了含金石英脉的形成年代 ,结果表明呼伦西白金矿的形成年代为 319 5~ 348 84Ma ,即华力西中期  相似文献   

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