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1.
河南西峡石板沟金矿成矿流体地球化学及矿床成因讨论   总被引:5,自引:2,他引:3  
张德会  刘伟 《现代地质》1999,13(2):130-136
石板沟金矿是近年在豫西南发现的一个剪切带容矿的脉状金矿。根据流体包裹体地球化学研究,分析了矿床成矿流体地球化学特征,讨论了金的沉淀机制和矿床成因。构造蚀变岩型金矿的形成主要与热液蚀变作用有关,石英脉型金矿的形成,则可能主要与岩浆热液与变质热液的混合作用有关。矿质主要源自晋宁期岩浆岩,成矿流体和热能主要来自海西期花岗岩。矿床为剪切带容矿的中低温热液金矿床。  相似文献   

2.
中亚南天山是世界上最重要的金矿带,以浅变质含碳质碎屑岩系为容矿岩石的穆龙套型金矿最为发育且规模巨大。将境内外南天山作为整体开展研究,有助于推进中国新疆南天山地区金矿的找矿持续突破。南天山是南天山洋在石炭纪末闭合时在Karakum—塔里木板块北缘形成的褶皱冲断带。南天山地区穆龙套型金矿的容矿地层为一套浅变质、变形强烈的含碳质细碎屑岩建造,对金矿化有明显预富集;区域内的大型韧-脆性变形带,剪切带及相关断裂系统是穆龙套型金矿的控矿构造;金矿区岩浆活动虽然较弱,但岩浆活动与成矿具有紧密的时空联系。矿体呈脉状、板状、透镜状,常以黄铁矿和毒砂为主要载金矿物,围岩蚀变以硅化、黄铁矿化、碳酸盐化最为发育。成矿年龄多为晚古生代,同位素示踪指示成矿流体、硫及成矿金属物质具有壳幔混源特征。"碳质岩系+构造变形+岩浆热液"是穆龙套型金成矿的关键控制因素。按照总体控矿特征,探讨了中国新疆南天山地区穆龙套型金矿床的主要找矿策略。  相似文献   

3.
胶东地区破碎带蚀变岩型金矿时代的测定及其地质意义   总被引:30,自引:4,他引:26  
通过对胶东半岛西北部超大型破碎带蚀变岩型金矿 -新城金矿的强烈热液交代成因黄铁绢英岩 Rb- Sr等时线法测年 ,获得 116 .6± 5 .3Ma成矿年龄。结合本区焦家、仓上等大型 -超大型金矿蚀变矿物、石英流体包裹体的 Rb- Sr等时线年龄、K- Ar年龄 (10 5± 7Ma;10 6± 2 Ma;113.5± 0 .6 Ma)等前人成果 ,确定胶东半岛西北部破碎带蚀变岩型金矿成矿时代主要集中在 10 0~ 117Ma。与围岩花岗岩、花岗闪长岩的成岩年龄 (16 0~ 15 0 Ma;130~ 12 6 Ma)存在着近 10 Ma的时差 ,并根据(87Sr/ 86 Sr) i比值以及已有的 C、H、O稳定同位素资料表明 ,即使成矿物质部分来源于围岩花岗岩类 ,但成矿作用与岩浆活动无明显的成因关系 ,而是深部循环的大气降水或幔源 C- H - O流体参与成矿作用的结果  相似文献   

4.
缅萨洼金矿位于扬子地台西缘龙门山锦屏山造山带南段,扬子地台与松潘甘孜造山带的过渡地带,是与剪切带有关的金矿床.本文通过对蚀变花岗岩和含金石英脉两类矿石中的绢云母进行40Ar/39Ar快中子活化年龄测试,获得蚀变花岗岩中绢云母坪年龄和等时线年龄分别为23.31±0.07 Ma和23.26±0.42 Ma;含金石英脉中绢云母的坪年龄和等时线年龄分别为22.98±0.31 Ma和22.58±0.31 Ma.这些数据表明缅萨洼金矿成矿作用主要发生在23 Ma左右,这对于认识扬子地台西缘金矿床形成的地球动力学背景具有重要意义.  相似文献   

5.
穆龙套金矿构造、岩浆控矿作用   总被引:2,自引:0,他引:2  
穆龙套金矿床位于中亚成矿域南天山成矿域西段、卡拉库姆和中哈萨克斯坦-北天山板块的碰撞带上,赋矿围岩为寒武—奥陶纪别索潘组,金矿成矿时代主要为二叠纪.通过研究穆龙套金矿床区域构造演化及构造、岩浆控矿作用,提出穆龙套金矿床控矿因素为NWW向桑格龙套-塔姆德套剪切带及NE向穆龙套-道古兹套剪切带,岩浆活动与成矿密切相关.中亚成矿域新疆境内穆龙套式金矿找矿方向是NWW向与NE向构造的交汇处及附近同成矿期隐伏或出露的花岗质岩浆岩.  相似文献   

6.
文章在已有资料的基础上,通过对抱伦金矿构造背景、区域地质、岩石矿物学、流体包裹体以及围岩蚀变和相关岩体的研究,认为抱伦金矿是一个在时空上与花岗质岩浆紧密相关的、受断裂控制的、赋存于造山带变形的变质炭质岩系中、由低盐度炭质流体形成的高品位低硫化物中温石英脉型大型矿床。其成矿作用发生在应力转变期,且围岩发生了硅化、碳酸盐化、绢云母化等蚀变。因此它属于典型的造山型金矿,且与超大型穆龙套金矿相似。  相似文献   

7.
云南大坪金矿是哀牢山金矿带中最重要的金矿之一,主要赋存在受到强烈韧性剪切和水-岩反应的加里东期闪长岩中,是典型的韧性剪切带控矿型金矿。本文对大坪金矿绢英岩化近矿围岩中的热液绢云母进行了40Ar-39Ar定年,得到其坪年龄为33.76±0.65Ma,相应的反等时线和正等时线年龄分别为33.55±0.74Ma和33.57±0.74Ma,显示大坪属于喜马拉雅早期金矿。这些年龄数据与哀牢山金矿带中广泛出现的喜马拉雅期煌斑岩脉年龄(33~34Ma)非常接近,显示金矿与上地幔部分熔融形成的煌斑岩之间可能存在成因上的联系。喜马拉雅早期,本区在地壳拉张和强烈韧性剪切条件下,Moho面上升,地幔物质部分熔融并上涌,形成大量煌斑岩等基性岩脉,地幔排气形成的深源地幔流体和下地壳脱水形成的富CO2流体混合,沿韧性剪切带上升,并与糜棱岩化的加里东期闪长岩围岩发生水-岩反应,局部发生流体沸腾作用,导致成矿流体物理化学条件的改变和矿石矿物的沉淀,在剪切带脆性构造中形成含金石英脉。  相似文献   

8.
邓格庄金矿地处华北克拉通胶东半岛东部苏鲁超高压带内,黄金储量已超过50t,是胶东牟平-乳山成矿带第二大石英脉型金矿床。矿体产于昆嵛山岩体和荆山群变质岩接触带附近的昆嵛山岩体中,金矿体受控于金牛山断裂带西侧的次级断裂。矿石中的硫-铅-氢-氧同位素值表明成矿流体主要来源于岩浆,具有以地壳为主兼具地幔混合特征,通过深渊断裂发生迁移,在成矿晚期遭受天水混染。围岩昆嵛山二长花岗岩高精度的锆石U-Pb年龄为155. 8Ma,成矿前期蚀变岩中蚀变矿物钾长石和绢云母~(40)Ar-~(39)Ar精确测年结果分别为123Ma和104Ma。结合近年来前人的研究资料,我们建立了胶东金矿集区中生代岩浆岩演化序列,将其划分为160~150Ma、130~110Ma、110~100Ma三个阶段,并给出了大规模爆发式成矿的年龄峰值(120±10Ma)。认为邓格庄金矿既非以变质流体为特征的典型造山型金矿,也非浅成低温热液型金矿,而是伴随华北克拉通岩石圈减薄、软流圈物质上涌、地壳拉张而使壳幔混合流体在浅部以大纵深脉状集中成矿为基本特征的中温岩浆热液型金矿。  相似文献   

9.
南天山萨瓦亚尔顿金矿床稀土微量元素特征及其成因意义   总被引:3,自引:1,他引:2  
萨瓦亚尔顿金矿位于新疆乌恰县的南天山构造带中,是我国20世纪90年代发现的第一例“穆龙套型”金矿.矿床形成于印支期,矿化与石英脉密切相关,显示了与穆龙套金矿的相似性.成矿流体演化经历了早期高温无矿化石英阶段,中期中低温矿化石英阶段,晚期低温碳酸盐脉阶段.早期无矿石英的稀土及微量元素含量均低于矿化石英.矿化石英包体中流体的稀土元素配分模式显示较一致的轻稀土富集和Eu正异常,指示流体中较高的钙离子或相对还原环境;流体中Pb含量较高,而蚀变强烈的围岩则显示出明显的Ca和Pb流失,这表明成矿流体可能部分来源于与围岩发生交代作用的蚀变流体,矿质沉淀可能与流体混合作用相关.早期石英包体中流体的稀土和微量元素含量较低则指示早期阶段可能未发生流体混合.萨瓦亚尔顿Ⅳ号矿脉为最大矿带,其含矿石英包体中流体微量元素一般高于其它矿脉石英,可能显示较强的流体混合及成矿作用.Ⅱ号矿脉在流体稀土及微量元素含量上显示与Ⅳ脉更为相似.萨瓦亚尔顿金矿稀土微量元素研究表明围岩组分可能为成矿流体主要来源之一,而流体混合则为成矿重要机制,这与前期流体包裹体及同位素研究结论一致,也符合造山型金矿的一般特征.  相似文献   

10.
通过浙西南韧性剪切带的专题研究,确定了两条具有一定规模的含金韧性剪切带。它们具有特定的地质、地球化学、矿化蚀变标志和流体特征,分析研究这些特征对指导浙闽地区寻找韧性剪切带型金矿具有重要的实际意义。  相似文献   

11.
This article presents new data on the age of the largest gold deposits in the southeastern part of Eastern Sayan. The dates have been obtained by Ar–Ar analysis of micas occurring in gold-bearing quartz veins and mineralized zones. The obtained Ar–Ar ages of fuchsite and sericite from the tectonized and mineralized zones of the Zun–Holba deposit (ore body Severnoye-3), range within 353.9–386.4 Ma; a similar result of 352.9 Ma was yielded by Ar–Ar dating of Cr–muscovite from mylonitized listvenite in the veins of the periphery of the Zun–Ospa gold deposit. However, muscovite from the ore-bearing quartz vein of the Pioneer gold–quartz deposit, located near Zun–Holba, has been dated to 421.9 Ma. The obtained new data on isotopic age of the gold–quartz ores and gold–sulphide–quartz deposits allow recognition of the Early Palaeozoic accretion–collision and the Late Palaeozoic shearing stages of formation of gold mineralization in the SE Eastern Sayan.  相似文献   

12.
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   

13.
内蒙古阿拉善地区朱拉扎嘎金矿是新近发现的特大型层控改造型金矿床,该矿床以产于中元古界地层中和巨大的找矿潜力而引人注目。容矿岩石主要为钙质粉砂岩、粉砂质板岩。曾采用颗粒锆石U-Pb法和~(40)Ar/~(39)Ar法对成矿期花岗斑岩、成矿后期闪长玢岩和含金石英-硫化物矿体进行了年龄测定,获得成矿期花岗斑岩锆石U-Pb年龄为(304±5)Ma,成矿后期闪长玢岩为(258.6±5.7)Ma,金矿体中石英的~(40)Ar/~(39)Ar年龄为(282.3±0.9)Ma。现采用SHRIMP锆石U-Pb法对成矿期花岗斑岩和成矿后期闪长玢岩进行了重新测年,结果表明花岗斑岩的形成时代为(280±6)Ma,闪长玢岩的形成时代为(279.7±5.2)Ma,两者的年龄差仅0.3 Ma,从而限定了朱拉扎嘎金矿的形成年龄,非常接近于280 Ma(279.7~280 Ma)。  相似文献   

14.
南秦岭铧厂沟金矿床位于勉略缝合带以南的逆冲推覆带内,矿体呈透镜体或脉状产于新元古界蚀变细碧岩及泥盆系灰岩中,受控于近EW向叠瓦状逆冲断层及韧脆性剪切带。为了准确厘定其成矿时代,对矿区蚀变细碧岩型矿石和含矿石英脉中的铬云母进行了年龄测定。2件铬云母样品的~(40)Ar/~(39)Ar坪年龄分别为209.4±2.3 Ma和211.5±2.5 Ma,相应的等时线年龄211.4±3.6 Ma和215.3±3.9 Ma,与坪年龄在误差范围内一致。因此,铧厂沟金矿床的成矿年龄为212~209 Ma。结合铧厂沟金矿床的大地构造位置、矿床地质特征及成因类型,推测铧厂沟金矿床形成于扬子板块与秦岭微板块的碰撞过程,其成矿年龄代表了两板块发生碰撞的下限。  相似文献   

15.
嵩县祁雨沟金矿成矿时代的40Ar-39Ar年代学证据   总被引:31,自引:4,他引:31       下载免费PDF全文
采用单矿物40Ar-39Ar年代学方法,对河南祁雨沟爆破角砾岩型金矿的矿化蚀变矿物进行了高精度的定年研究.矿脉中钾长石的40Ar-39Ar年龄表明,祁雨沟金矿的主要成矿阶段发生在115~125Ma期间,成矿作用持续达10Ma.结合前人研究成果分析,区域燕山期花岗岩侵位30Ma之后祁雨沟金矿开始进入主成矿期,此时正是区域伸展构造的发育时期,深部流体活动频繁而强烈.祁雨沟金矿是中国东部金的大规模成矿作用的组成部分.  相似文献   

16.
The application of the Sm-Nd isotope system of scheelite to dating of low-sulfide, quartz-vein hosted Au mineralization is still under discussion. In the present work, new Sm-Nd and Rb-Sr data for scheelite from the giant Muruntau/Myutenbai Au deposit (Kyzylkum, Western Uzbekistan) are discussed. Based on the geological relationship, mineralogical properties, and trace element characteristics, two types of scheelite can be distinguished within the deposit. The first one is represented by early bluish luminescent and weakly coloured scheelite (generation 1) found within strongly deformed flat quartz veins. The apparent isochron defined by this scheelite (351ᆪ Ma) is interpreted as a mixing line. Typically brownish to orange and yellowish luminescent scheelite from steeply dipping veins (generation 2) defines a Sm-Nd isochron age of 279ᆦ Ma ()Nd=-9.5ǂ.3; MSWD: 1.5). No evidence for mixing or disturbance by late alteration were found for these scheelites. This Sm-Nd isochron age agrees with the Rb-Sr and K-Ar age range for wall rock alteration in this deposit reported previously. The age of 280 Ma is interpreted to date the high-grade ore formation in the Muruntau deposit. There are currently no reliable age data available on the magmatic events in the Muruntau region. Probably, there is some overlap in time of the Hercynian gold deposition with the intrusion of lamprophyric dykes. The Nd and Sr isotopic signatures of scheelite define the wall rocks (mainly metasiltstones and metasandstones) as the most probable sources for these elements in scheelite.  相似文献   

17.
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   

18.
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   

19.
粤北连平地区钨锡多金属矿床成矿时代研究   总被引:3,自引:0,他引:3       下载免费PDF全文
粤北连平地区钨锡多金属矿床类型主要为石英脉型.采用云母Ar-Ar法和石英包裹体Rb-Sr法.分别获得:锯板坑含钨锡石英脉中的云母Ar-Ar坪年龄为(139.2±1.5)Ma(等时线年龄为143.6±3.9 Ma,MSWD:0.30):鸡啼石含钨石英脉中石英包裹体Rb-Sr等时线年龄为(155.4±5.1)Ma(MSWD=2.1).结果表明该区存在燕山早期和燕山早晚过渡期两期钨锡多金属成矿作用,并且认为:(1)鸡啼石钨矿为南岭地区中生代大规模成岩成矿作用高峰期(150~160 Ma)的产物;(2)南岭地区140 Ma左右也有大型钨锡多金属矿的形成.这一成果为研究区域成矿规律,指导区域找矿提供了重要同位素年代学依据.  相似文献   

20.
粤北302铀矿床同位素地球化学研究   总被引:11,自引:1,他引:10  
位于粤北诸广山岩体东南部的302铀矿床是我国规模较大、埋藏较深的花岗岩型铀矿床之一。该矿床产于印支期油洞岩体和燕山早期长江岩体的断裂蚀变带内,矿区内NWW向基性岩脉十分发育,矿体呈似脉状、扁豆状或透镜状。同位素研究表明,矿石的沥青铀矿Sm-Nd和U-Pb等时线年龄(70 Ma)与油洞岩体(232 Ma)、长江岩体(160 Ma)的年龄相差巨大;主成矿期成矿流体的δDH2O值为-65‰~-82‰(平均为-75‰),δ18OH2O值为6.8‰~0.6‰(平均为3.9‰),反映出成矿流体主要由地幔流体组成;方解石的δ13C值为-8.4‰~-5.3‰,表明矿化剂ΣCO2也来自地幔;矿区内辉绿岩的(87Sr/86Sr)i值为0.70861~0.70882,花岗岩的(87Sr/86Sr)i值为0.73519~0.77152,萤石的(87Sr/86Sr)i值为0.71474~0.71697,表明成矿组分Sr可能来源于基性脉岩(幔源)与赋矿花岗岩体(壳源),并呈不同程度的混合,而主成矿组分铀主要来源于赋矿花岗岩体。  相似文献   

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