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1.
黑龙江团结沟金矿床流体包裹体研究及矿床成因   总被引:15,自引:5,他引:10  
对团结沟金矿床赋矿岩体石英斑晶及矿石中玉髓状石英内发育的原生流体包裹体进行了系统研究 ,结果表明 ,赋矿岩体石英斑晶中主要发育含子矿物三相、气液两相、纯液相等类型包裹体 ,而矿石玉髓状石英中主要发育气液两相包裹体。测温结果显示成矿流体温度为 1 30~ 370℃ ,盐度 2~ 1 0wt%NaCl;与赋矿岩体石英斑晶中发育的气液两相包体温度、盐度范围相近 ,结合成分及氢氧同位素特征 ,认为成矿流体主要来自岩浆热液及大气降水 ,矿床成因属与中酸性斑岩侵入活动有关的中低温浅成热液金矿床  相似文献   

2.
Gold-bearing quartz veins of the Taihua Group consisting of Archean metavolcanic rocks are a main gold deposit type in the Xiao Qinling area,one of the three biggest gold production areas in China.The quartz veins experienced strong alteration characterized by a typical mesothermal hydrothermal altered mineral assemblage.The grade of gold is affected by the contents of sulphides,e.g.galena,pyrite and chalcopyrite.Results of minor elements analysis for the of gold-bearing quartz veins indicate higher contents of Au and high contents of Ag,Pb,Cu,Cd,W,and Mo.Abundant fluid inclusions were found in the gold-bearing quartz veins.Three types of fluid inclusions were identified:(1) aqueous inclusions;(2) CO 2-bearing inclusions;and(3) daughter crystal-bearing fluid inclusions.Homogenization temperatures ranged from 110 to 670℃ with low and high peaks appearing at 160 180℃ and 280 300℃,respectively.The salinity of aqueous inclusions varies between 1.8 wt% and 38.2 wt% NaCl.The homogenization temperature and salinity show a positive correlation.The H and O isotopes of fluid inclusions in the gold-bearing quartz veins indicate that magmatic solution and metamorphic hydrothermal solution,together with meteoric water,were involved in the formation of gold-bearing fluid.Mesozoic magma activities related to granite intrusions should be the main source of CO 2 fluid with higher temperature and salinity.  相似文献   

3.
德合龙洼铜(金)矿床为青藏高原北东端的一个岩浆热液型矿床。研究发现矿石中石英发育富液相水溶液(Ⅰ型)、富气相水溶液(Ⅱ型)和含子矿物水溶液(Ⅲ型)3种类型的流体包裹体。Ⅰ型包裹体呈均一至液相,均一温度为187~413℃,盐度值(NaClequiv.,质量分数)则为2.0%~19.0%。Ⅱ型包裹体呈均一至气相,均一温度为...  相似文献   

4.
江西银山多金属矿床高盐度包裹体及其成因意义   总被引:13,自引:1,他引:13  
流体包裹体岩相学和显微测温学研究表明,银山矿床石英斑岩和金金属矿床中都发现须含石盐的高盐度流体包裹体,表明至少在成矿作用的早期成矿流体为高盐度流体,高盐度流体不是由热水溶液的不混溶作用或沸腾作用形成的,而是直接从饱和水的结晶岩浆熔体中出溶的,银山矿床的成矿流体与斑岩铜矿的成矿流体具有相似性,证实矿床深部可能有隐伏斑岩铜矿。  相似文献   

5.
浙江八面山萤石矿床流体包裹体地球化学研究   总被引:2,自引:1,他引:1  
八面山萤石矿床流体包裹体可分为三大类型:Ⅰ气液包裹体,Ⅱ气体包裹体,Ⅲ含子矿物的多相包裹体;矿床成矿温度变化不大,主要集中在120~240°C之间。细粒条带状萤石矿石包裹体温度变化在115~250℃之间;巨晶块状萤石矿石和石英脉型萤石矿石包裹体温度集中在135~170℃之间。萤石矿床流体包裹体以低盐度成矿流体为主。成矿过程中起作用的成矿流体为KCl-H2O体系和CO2-CaF2-H2O体系,成矿溶液的离子类型属K+-Ca2+-HCO--F-型,KCl-H2O体系反映岩浆期后热液作用的结果,而CO2-CaF2-H2O体系可能反映了寒武纪矿源层成矿体系。通过包裹体研究,认为八面山萤石矿床是受地层-岩体-层间断裂共同控制"三位一体"的热液成因矿床。  相似文献   

6.
黑龙江省铜山斑岩铜矿床流体包裹体研究   总被引:14,自引:4,他引:10  
武广  刘军  钟伟  朱明田  糜梅  万秋 《岩石学报》2009,25(11):2995-3006
铜山大型铜矿床位于小兴安岭西北部,是中亚-兴蒙造山带北东段最著名的斑岩型铜矿床之一,矿体产于加里东期花岗闪长岩和中奥陶世多宝山组安山岩、凝灰岩中,铜矿化与硅化-绢云母化关系密切.流体包裹体研究表明,铜山铜矿床主要发育气液两相包裹体、含CO_2包裹体和含子矿物多相包裹体.成矿流体在形成过程中经历了早、中、晚3个阶段的演化.成矿早阶段发育气液两相水溶液包裹体和少量含子矿物多相包裹体,均一温度介于420℃~>5500C之间,流体盐度介于13.72 wt%~59.76 wt%NaCl eqv之间;中阶段为铜山矿床的主成矿阶段,发育气液两相水溶液包裹体和含CO_2包裹体,均一温度为241℃~417℃,流体盐度介于2.96 wt%~14.04 wt%NaCl eqv之间,主成矿期成矿流体总体上属H_2O-CO_2-NaCl体系;晚阶段仅发育气液两相水溶液包裹体,均一温度为122℃~218℃,盐度介于3.71 wt%~15.96 wt%NaCl eqv之间,表明晚阶段有大气降水的混入.成矿早、中阶段的流体均为不混溶流体,流体沸腾作用是金属硫化物大量沉淀的主要机制.铜山矿床形成于陆缘弧环境.  相似文献   

7.
江西省全南县大吉山钨矿成矿流体演化特征   总被引:20,自引:1,他引:19  
大吉山钨矿位于南岭W、Sn成矿省,是我国著名的大型W矿床。本文旨在通过对大吉山脉形钨矿2513号脉中的包裹体进行详细的岩相学及显微测温学研究,对成矿流体的演化过程及矿床形成深度进行探讨。包裹体的岩相学研究表明,包裹体类型复杂主要由富液包裹体、含CO2、CH4三相包裹体及含子矿物包裹体组成;包裹体组合复杂,各种类型的包裹体常叠加在一起;原生、次生包裹体产状区别明显,较易识别,原生包裹体主要由含CO2、CH4三相包裹体及充填度较小的富液包裹体组成,次生包裹体主要为充填度较大的富液包裹体。显微测温分析发现不同类型的包裹体的盐度、均一温度差别显著,呈现复杂的流体演化过程。包裹体的爆裂曲线显示,曲线有高低温两个起爆点,分别对应原次生包裹体包裹体群的起爆温度;由深部到浅部,原生包裹体的起爆温度逐渐降低。利用显微共焦激光拉曼探针仪对原生包裹体进行成分分析发现,成矿流体主要由H2ONaCl和H2OCO2CH4NaCl体系组成。包裹体的显微测温结果显示,成矿流体演化经历了自然冷却、不混溶作用和混合作用等过程,各种过程相互作用造成了钨的沉淀。通过对不混溶包裹体的测温数据进行计算,得出大吉山脉型钨矿成矿流体的压力约为114~132MPa,矿床形成深度约为4.6~5.3km。  相似文献   

8.
《China Geology》2023,6(2):252-268
The Liwu stratiform copper deposit is located in the northwestern Jianglang dome, western China. Current studies mainly focus on the genetic type and mineralization of this deposit. Detailed fluid inclusion characteristics of metallogenic period quartz veins were studied to reveal the ore-forming fluid features. Laser Raman analysis indicates that the ore-forming fluids is a H2O-NaCl-CH4 (-CO2) system. Fluid inclusions microthermometry shows a homogenization temperature of 181–375°C and a salinity of 5.26%–16.99% for the disseminated-banded Cu-Zn mineralization; but a homogenization temperature of 142–343°C and a salinity of 5.41%–21.19% for the massive-veined Cu-Zn mineralization. These features suggest a medium-high temperature and a medium salinity for the ore-forming fluids. H-O isotopic data indicates that the ore-forming fluids were mainly from the metamorphic and magmatic water, plus minor formation water. And sulfur isotopic data indicates that sulfur was mainly derived from the formation and magmatic rocks. Metallogenesis of the disseminated-banded mineralization was mainly correlated with fluid mixing and water-rock reaction; whereas that of the massive-veined mineralization was mainly correlated with fluid boiling. The genetic type of the deposit is a medium-high temperature hydrothermal deposit related to magmatism and controlled by shear zones. This study is beneficial to understand the stratiform copper deposit.©2023 China Geology Editorial Office.  相似文献   

9.
西藏拉屋铜多金属矿床产于冈底斯构造岩浆成矿带的申扎—旁多铜-银-铅-锌-金成矿亚带内。分别对干矽卡岩阶段(Ⅰ)的石榴石、早期硫化物阶段(Ⅲ)的石英和晚期硫化物阶段(Ⅳ)的方解石中的流体包裹体进行岩相学观察和显微测温研究,研究表明成矿各阶段热液矿物中的流体包裹体主要为气液水两相包裹体,其次为纯液相水包裹体,偶见气液两相甲烷包裹体,石英中也有大量的含NaCl子矿物多相包裹体,其均一温度变化于95~476℃之间,盐度介于1.57%~37.33%,密度变化于0.68~1.23 g/cm3,总体属中-高温、中-高盐度、中等密度的体系;据此计算的成矿压力范围为24.63~133.61 MPa,成矿深度介于2.46~9.64 km,表明该矿床形成于中深成矿环境。不同成矿阶段流体包裹体研究数据表明,该矿床的成矿作用是一个温度、盐度和压力总体显著降低(减小)、密度略渐增大的过程。氢、氧同位素研究表明,成矿流体在主成矿阶段主要为初始混合岩浆水,随着成矿作用进行,大气降水大量加入,到晚期阶段成矿流体逐渐演化成大气降水。成矿流体在Ⅲ阶段(主成矿阶段)发生了沸腾作用,导致成矿元素沉淀形成矿体。因此认为沸腾作用可能是该矿床金属沉淀的主要机制。  相似文献   

10.
杜荒岭金矿床是产于石英闪长岩、受压性、压扭性断裂和爆破角砾岩筒联合控制的浅成中温岩浆热液矿床。流体包裹体研究表明: ①流体包裹体的类型以气液两相包裹体为主,其次为纯液相包裹体、气相包裹体及少量含NaCl 子矿物三相原生流体包裹体,成矿流体属NaCl--H2O 体系; ②主成矿阶段均一温度为200℃ ~ 375℃,集中在230℃ ~ 320℃; 流体具有低密度( 0. 68 ~ 0. 94 g /cm3 ) ,低盐度 ( 3. 39 ~ 13. 07 ( wt%,NaCl) ) 的特征,成矿压力为7. 5 ~ 14. 3 MPa,估算成矿深度1. 2 ~ 1. 6 km; ③ 结合新近同位素、微量元素及年代学研究成果,认为杜荒岭金矿主要与晚燕山期岩浆活动有关,成矿流体源于岩浆热液,流体上升过程中发生隐爆和沸腾作用,同时伴有部分大气降水加入,导致成矿物质快速沉淀富集。  相似文献   

11.
阿日特克山铜钼矿床位于柴北缘中北段,为近年来新发现的隐伏斑岩型矿床,矿体产出于海西晚期—印支期花岗闪长(斑)岩和古元古代达肯大坂岩群接触部位。为探讨该矿床成矿流体特征和成矿机制,本文对矿床野外地质特征、流体包裹体及稳定同位素组成进行了系统的研究。根据不同类型矿脉之间的相互关系,可将热液成矿期次划分为成矿早期石英阶段、成矿期辉钼矿-多金属硫化物-石英阶段和成矿晚期石英-方解石阶段。流体包裹体岩相学研究表明,阿日特克山铜钼矿床流体包裹体以Ⅰ型(富液相L+V两相水溶液包裹体)、Ⅱ型(富气相L+V两相水溶液包裹体)和Ⅲ型(含子矿物三相水溶液包裹体)为主。显微测温及包裹体拉曼光谱分析结果显示,成矿流体体系为中高温、中低盐度、中高密度的NaCl-H2O体系,至成矿晚期,流体性质变化为低温、低盐度、高密度流体,矿床形成深度为0.40~4.00 km。氢氧同位素分析测试结果显示,δDV-SMOW值为-92.9‰~-78.4‰,δ18OH2O值为-7.4‰~2.0‰,表明成矿流体以混合流体为主,随着成矿流体的演化,有更多的大气降水不断混入。矿石中金属硫化物δ34S值处于9.4‰~11.7‰之间,平均值为10.2‰,表现出明显的地层硫特征,为岩浆热液与围岩地层相互作用所致。综上认为,阿日特克山铜钼矿床为矽卡岩型-斑岩型矿床,形成于海西晚期—印支期俯冲碰撞构造环境,混合成矿流体强烈的不混溶作用为斑岩型铜钼矿床形成的主要机制。  相似文献   

12.
撰山子金矿床位于内蒙古台隆东段北缘华北克拉通与兴蒙造山带的结合部位。矿体赋存于下二叠统于家北沟组灰岩、中二叠世流纹岩和中三叠世花岗斑岩中,被晚三叠世闪长岩所截切。本文在查明矿床地质特征的基础上,对各成矿阶段热液矿物中的流体包裹体开展研究,查明了矿床成矿流体性质、演化特征及其与金成矿的关系。成矿阶段按从早到晚的顺序可分为石英-黄铁矿、石英-硫化物和石英-萤石-方解石阶段。流体包裹体岩相学和激光拉曼实验表明,热液矿物中原生包裹体可分为气液两相水型包裹体(Ⅰ型)、二氧化碳水三相型包裹体(Ⅱ型)、含子矿物三相型包裹体(Ⅲ型)、纯气相二氧化碳型包裹体(Ⅳ型)、纯气相水型包裹体(Ⅴ型)和纯液相水型包裹体(Ⅵ型)6种类型。成矿流体的温度和盐度从早阶段至晚阶段逐渐降低。成矿流体为中高温、中低和高盐度、中低密度的CO2-NaCl-H2O体系。主成矿阶段气液两相盐水和CO2-H2O三相包裹体限定的成矿压力范围分别为15.7~28.6、59.0~88.7 MPa,整体成矿深度范围在1.6~3.3 km之间。综合分析认为,撰山子金矿床在成矿过程中发生了流体不混溶(沸腾)作用,矿床的形成与中三叠世—晚三叠世华北板块和西伯利亚板块碰撞拼合引起的岩浆活动密切相关,是区内典型的中高温岩浆热液矿床。  相似文献   

13.
马坑铁矿是福建省一个大型铁钼铅锌多金属矿床,赋存于莒舟-大洋花岗岩外接触带上石炭统经畲组-下二叠统栖霞 组大理岩与下石炭统林地组石英砂岩之间,矿化阶段经历了从无水矽卡岩阶段(钙铁榴石-透辉石) →含水矽卡岩-磁铁矿 阶段(绿帘石-阳起石-绿泥石-钙铁辉石) →硫化物阶段(石英-方解石-萤石-黄铁矿-闪锌矿) →碳酸盐岩阶段(石英-方 解石) 演变,而本文对含水矽卡岩-磁铁矿阶段和硫化物阶段中的钙铁辉石、萤石、石英及方解石中流体包裹体所进行岩 相学观察和显微测温研究表明,早期含水矽卡岩-磁铁矿阶段包裹体类型主要有含NaCl子晶三相包裹体和富液相两相包裹 体,少量富气相两相包裹体;而晚期硫化物阶段包裹体类型主要为富液相两相包裹体。含水矽卡岩-磁铁矿阶段流体出现 流体沸腾作用,流体温度范围为448~596℃,两端员组分流体盐度分别为26.5~48.4 wt % NaCl equiv.和2.4~6.9 wt % NaCl equiv.;硫化物阶段流体呈现出混合趋势,流体温度和盐度分别为182~343℃和1.9~20.1 wt % NaCl equiv.。流体包裹体的均 一温度和盐度的研究结果表明含水矽卡岩-磁铁矿阶段流体主要来自岩浆水,而硫化物阶段流体以岩浆水为主,并有大气 降水加入。由于马坑铁矿化形成于含水矽卡岩阶段,铅锌矿化则形成于硫化物阶段,流体沸腾是导致马坑铁矿床形成的主 要因素,而流体混合则是引起马坑铁矿床铅锌矿化的主要因素。综合地质与地球化学研究,马坑铁矿床应属于与莒舟-大 洋花岗岩有关的矽卡岩型铁矿床。  相似文献   

14.
大黑山钼矿床位于张广才岭-小兴安岭成矿带南段,矿体主要赋存在花岗闪长岩和花岗闪长斑岩内。含矿石英脉中主要发育气液两相包裹体(W型)和含子矿物三相包裹体(S型),偶见含CO2包裹体。成矿早阶段含矿石英脉中主要发育W型、S型包裹体和少量含CO2包裹体,均一温度为208~443 ℃,盐度(w(NaCl))为2.9%~49.8%,流体密度为0.5~1.2 g·cm-3;主成矿阶段含矿石英脉中发育W型、S型包裹体和少量含CO2包裹体,子矿物为石盐和金属硫化物,均一温度为197~398 ℃,盐度为1.6%~43.9%,流体密度为0.5~1.1 g·cm-3;成矿晚阶段仅见气液两相包裹体(W型),均一温度为171~301 ℃、盐度为1.6%~19.8%,流体密度为0.6~0.9 g·cm-3。主成矿阶段流体包裹体类型多样,且具有相似的均一温度,压力范围为30~100 MPa,成矿深度约为4 km。成矿阶段早期流体沸腾作用和晚期流体混合作用是金属硫化物沉淀的主要机制。  相似文献   

15.
清水沟—白柳沟矿田是北祁连西段重要的铜多金属矿田之一。采用显微测温和激光拉曼光谱分析技术对该矿田与矿石矿物共生的石英中的流体包裹体进行了研究,结果显示,清水沟—白柳沟矿田的流体包裹体类型主要有纯液相包裹体、气-液两相包裹体和含液体CO2包裹体等3类,气-液两相包裹体液相成分主要以盐水为主,气相成分主要以CO2为主。成矿流体均一温度和盐度变化范围较大,具有中等密度的特征,可能为岩浆热液与海水的混合来源。  相似文献   

16.
新华龙钼矿床位于中国东北地区吉林省东部,是一个新发现的斑岩型钼矿床。矿床产于花岗闪长斑岩中。矿床成矿阶段包括石英-浸染状辉钼矿、石英-网脉状辉钼矿、石英-黄铁矿-黄铜矿、石英-多金属硫化物和石英-碳酸盐化5个阶段。流体包裹体实验结果表明:流体包裹体的类型主要为气液两相包裹体,其次为纯气相和纯液相包裹体,还有少量含子矿物的多相包裹体。流体包裹体的均一温度为172~385 ℃,盐度(w(NaCl))为8.51%~45.44%。从早阶段到晚阶段成矿流体温度具有规律的演化,均一温度分别为360~390 ℃、270~350 ℃、250~260 ℃、220~230 ℃、170~190 ℃。其中:含子矿物多相包裹体均一温度为272~385 ℃,盐度为35.79%~45.44%,密度为1.07~1.08 g/cm3;气液两相包裹体均一温度为172~381 ℃,盐度为8.51%~23.36%,密度为0.70~0.99 g/cm3。激光拉曼光谱分析表明,包裹体的气体成分主要为CO2、H2O、N2和CH4。包裹体岩相学及测温表明,流体由早期的高温、高盐度、含二氧化碳的含矿流体在主成矿阶段发生流体包裹体的沸腾、CO2逸出、温度降低等过程,导致大量金属硫化物沉淀。结合氢氧同位素特征,初步确定该矿床的成矿流体主要以岩浆水为主,后期有大气水的加入。流体沸腾是新华龙钼矿床成矿的重要机制。  相似文献   

17.
The Yaoling tungsten deposit is a typical wolframite quartz vein‐type tungsten deposit in the South China metallogenic province. The wolframite‐bearing quartz veins mainly occur in Cambrian to Ordovician host rocks or in Mesozoic granitic rocks and are controlled by the west‐north‐west trending extensional faults. The ore mineralization mainly comprises wolframite and variable amounts of molybdenite, chalcopyrite, pyrite, fluorite, and tourmaline. Hydrothermal alteration is well developed at the Yaoling tungsten deposit, including greisenization, silicification, fluoritization, and tourmalinization. Three types of primary/pseudosecondary fluid inclusions have been identified in vein quartz, which is intimately intergrown with wolframite. These include two‐phase liquid‐rich aqueous inclusions (type I), two‐ or three‐phase CO2‐rich inclusions (type II), and type III daughter mineral‐bearing multiphase high‐salinity aqueous inclusions. Microthermometric measurements reveal consistent moderate homogenization temperatures (peak values from 200 to 280°C), and low to high salinities (1.3–39 wt % NaCl equiv.) for the type I, type II, and type III inclusions, where the CO2‐rich type II inclusions display trace amounts of CH4 and N2. The ore‐forming fluids are far more saline than those of other tungsten deposits reported in South China. The estimated maximum trapping pressure of the ore‐forming fluids is about 1230–1760 bar, corresponding to a lithostatic depth of 4.0–5.8 km. The δDH2O isotopic compositions of the inclusion fluid ranges from ?66.7 to ?47.8‰, with δ18OH2O values between 1.63 and 4.17‰, δ13C values of ?6.5–0.8‰, and δ34S values between ?1.98 and 1.92‰, with an average of ?0.07‰. The stable isotope data imply that the ore‐forming fluids of the Yaoling tungsten deposit were mainly derived from crustal magmatic fluids with some involvement of meteoric water. Fluid immiscibility and fluid–rock interaction are thought to have been the main mechanisms for tungsten precipitation at Yaoling.  相似文献   

18.
In recent decades, several skarn-related deposits have been found and explored in the southern Great Xing’an Range of China. To get a clear understanding of the characteristics and genetics of this type of deposit in this area, three of the largest, most typical, and most famous skarn-related deposits (Haobugao Pb–Zn deposit, Huanggang Sn–Fe polymetallic deposit, and Baiyinnuoer Pb–Zn deposit) are selected for systematically metallogenic study in this paper. The results of ore geology, fluid inclusion, and stable isotopes indicate that (1) most of the ore bodies of each deposit, occurred in the outer contact zone of the magma intrusion and Permian strata, fine vein disseminated mineralization within the intrusions were also found in this study. Mineralization of these deposits all show closely temporal, spatial, and genetic relationships with skarns. (2) Fluid inclusion petrography and microthermometry results show that the fluid inclusion assemblages developed in the different mineralization stages of each deposit changed from Type-S (daughter mineral-bearing three-phase fluid inclusions) + Type-V (vapor-rich fluid inclusions) + Type-L (liquid-rich fluid inclusions) to Type-V + Type-L and eventually evolved into L-Type. Correspondingly, the ore-forming fluids changed from medium to a high-temperature, high-salinity, and boiling fluid system and then to a low-temperature, low-salinity, and uniform fluid system. The types of fluid inclusions in garnets are consistent with those in quartz phenocrysts of Mesozoic granites, indicating that the formation of skarns is directly related to Mesozoic magmatic activity. (3) The δ34S values of ores from the above three deposits all exhibit a narrow variation range (changes are mainly around 0‰) and greatly differ from the SEDEX-type deposits in China. The lead isotope compositions of the sulfide minerals are also consistent with those of Mesozoic granites. These previous characteristics suggest that both of the ore-forming fluids and the ore-forming materials were of magmatic origin. Consequently, the Haobugao, Baiyinnuoer, and Huanggang deposits are all skarn-type deposits, which are related to Mesozoic magmatic activities in terms of ore geology features, ore-forming fluids, and ore-forming material.  相似文献   

19.
金路金矿床位于华北克拉通和中亚造山带的结合部位,矿体受北东向韧-脆性断裂控制,赋矿围岩为太古宇小塔子沟组变质岩和三叠纪片麻状二长花岗岩。以流体包裹体和电子探针分析为研究手段,讨论了成矿流体的特征、演化及其与金矿化的关系。其热液成矿过程可划分为乳白色石英阶段(Ⅰ阶段)、石英-黄铁矿阶段(Ⅱ阶段)、石英-多金属硫化物阶段(Ⅲ阶段)和碳酸盐阶段(Ⅳ阶段) 4个阶段,自然金主要产于Ⅲ阶段的石英和黄铁矿中,以粒间金、裂隙金和包体金的形式产出,成色较高。石英中原生包裹体主要有水溶液包裹体、含微量CO2水包裹体、含子矿物多相包裹体3种类型。Ⅰ阶段石英中以水溶液包裹体和含微量CO2水包裹体为主,均一温度较高,为365~405℃,盐度为7. 9%~11. 7%,密度为0. 61~0. 70 g/cm3;Ⅱ阶段石英中3种类型包裹体均发育,均一温度为335~390℃,盐度为4. 3%~36. 1%,密度为0. 62~0. 79 g/cm3;Ⅲ阶段(主阶段)石英中发育3种类型包裹体,均一温度为270~367℃,盐度为1. 7%~37. 8%,密度为0. 64~1. 1 g/cm3。成矿流体属H2O-Na Cl-CO2体系,成矿温度和流体盐度呈逐渐降低趋势,密度则呈现逐渐增大趋势。根据流体包裹体岩相学特征和矿床地质特征,认为流体沸腾作用和硫化作用是本矿区金沉淀成矿的主要机制。综合分析认为矿床成因类型为岩浆热液矿床。  相似文献   

20.
内蒙古乌奴格吐山大型铜钼矿床位于得尔布干成矿带西南段。矿体产于燕山早期二长花岗斑岩、流纹斑岩等构成的火山通道相与外围黑云母花岗岩接触带内外。矿床从中心向外发育典型的热液蚀变分带: 钾化带、绢英岩化带和伊利石—水白云母化带。根据矿物组合不同,将热液成矿期分为早、中、晚3 个阶段,其矿物组合分别为石英+钾长石+黄铁矿±辉钼矿、石英+绢云母+ 黄铜矿± 辉钼矿+黄铁矿、石英+碳酸盐矿物+黄铁矿±闪锌矿。流体包裹体研究表明,乌山斑岩铜钼矿床发育L 型富液相包裹体、V 型富气相包裹体、S 型含子矿物多相包裹体以及PG 型纯气相包裹体。激光拉曼探针分析表明,石英斑晶和早阶段石英内水溶液包裹体除H2O 外,多数含CO2,少数还含有 CH4,C4H6 等,含子矿物多相包裹体中子矿物主要有赤铁矿和黄铜矿; 中阶段石英内只有少量V 型包裹体含CO2,多数只有H2O,S 型包裹体中子矿物有黄铜矿和黄铁矿,不再含有赤铁矿; 而晚阶段石英内包裹体只含H2O。成矿流体由H2O--CO2 --NaCl 体系逐渐演化为H2O--NaCl 体系。成矿早、中、晚3 个阶段均一温度分别集中在340℃ ~ 460℃,240℃ ~ 360℃和120℃ ~ 240℃; 盐度变化范围分别为 5. 32 ~ 53. 26 wt% NaCl. eqv,1. 65 ~ 41. 58 wt% NaCl. eqv 和0. 66 ~ 14. 05 wt% NaCl. eqv。初始流体是直接从浅部结晶冷凝的岩浆熔体中出熔的高温、高盐度和高氧逸度的成矿流体。富气相包裹体、富液相包裹体和含矿物的多相包裹体普遍共生,流体的沸腾可能是早期金属硫化物大量沉淀的重要机制。结合氢、氧同位素研究,认为中--晚阶段天水的混入导致的流体混合及降温作用在成矿过程中也发挥了重要作用。  相似文献   

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