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1.
胶东胡八庄金矿成矿流体、稳定同位素及成矿时代研究   总被引:8,自引:4,他引:4  
胡八庄金矿是胶东牟平-乳山金成矿带内典型的黄铁矿、多金属硫化物-石英脉型金矿,金主要产出于黄铁矿和多金属硫化物石英脉中。流体包裹体研究表明,不同蚀变带岩石和各成矿阶段金矿石中的流体包裹体主要有三种类型:富CO2包裹体、CO2-H2O包裹体和H2O溶液包裹体。成矿早期(第Ⅰ阶段)主要为富CO2包裹体,主成矿期(第Ⅱ阶段)CO2-H2O包裹体和H2O溶液包裹体,成矿后期(第Ⅲ阶段)H2O溶液包裹体。包裹体显微测温结果表明,成矿早期(第Ⅰ阶段)包裹体均一温度范围为260~360℃,盐度1.0%~7.4% NaCleqv;主成矿期(第Ⅱ阶段)包裹体均一温度范围为180~269℃,盐度1.7%~13.1% NaCleqv;成矿后期(第Ⅲ阶段)包裹体均一温度范围为104~189℃,盐度0.9%~8.8% NaCleqv。成矿早期为中-高温、富含挥发份、低盐度的流体,到主成矿期演化为中低温、含少量挥发份、盐度变化范围大的CO2-H2O-NaCl流体体系,成矿后期流体的温度、盐度和挥发份含量均降低。对各成矿阶段石英的H-O同位素研究表明,胡八庄金矿成矿早期既有岩浆水又有大气降水参与,大气降水较少地参与了成矿,到了主成矿期成矿流体为以大气降水为主的混合流体。成矿阶段S同位素研究表明胡八庄金矿成矿物质可能主要来源于大气降水循环淋滤的围岩。温度降低和流体不混溶可能是胡八庄金矿金沉淀的主要原因。蚀变岩石中绢云母Rb-Sr等时线获得的胡八庄金矿的成矿时代为126.5±5.6Ma。  相似文献   

2.
西藏弄如日金矿流体包裹体研究   总被引:4,自引:0,他引:4  
弄如日金矿床位于青藏高原南部冈底斯-喜马拉雅构造区的冈底斯构造岩浆带东段,是该成矿带上首次发现的浅成低温热液型金锑矿床。本文在详细的野外矿床地质研究基础上,通过对各期与成矿密切相关的流体包裹体岩相学、显微测温分析、包裹体成分的LRM分析和包裹体中子矿物相的SEM/EDS分析等,对与矿化有关的成矿流体的特征、演化以及金的迁移与沉淀机制进行了讨论。通过研究流体成矿过程包括:形成黄铁矿-石英组合的早期阶段,发育以含子矿物的三相包裹体为主,均一温度集中于256~335℃,盐度29.7%~38.9% NaCleqv;形成毒砂-富砷黄铁矿-石英组合的主成矿阶段,发育富CO2包裹体,均一温度集中于230~357℃,盐度1.81%~9.74% NaCleqv,CO2密度为0.16~0.29g·cm-3;形成辉锑矿-石英、雄黄-石英和碳酸岩脉组合的晚期阶段,发育水溶液包裹体,均一温度集中于134~245℃,盐度1.91%~8.95% NaCleqv。与金成矿有关的流体为中温、低盐度的富CO2、CH4、N2、Na+流体体系,成矿流体温度、压力降低造成了流体不混溶,使CO2相与水溶液相分离是造成金沉淀的主要机制。  相似文献   

3.
西秦岭铧厂沟金矿床流体包裹体特征研究及矿床成因   总被引:3,自引:0,他引:3  
铧厂沟金矿位于西秦岭勉略缝合带南侧,其产出受韧脆性剪切带控制,赋矿围岩为泥盆系细碧岩、凝灰质绢云千枚岩和灰岩。根据脉体穿切关系和矿物交代关系,可以将铧厂沟金矿分为早、中、晚3个成矿阶段。在铧厂沟金矿的石英中发育了CO2-H2O型、纯CO2型、H2O溶液型和含子矿物型四种类型流体包裹体。早期石英中原生包裹体主要是CO2-H2O型和纯CO2型,其成分为CO2+H2O±N2±CH4±H2S,均一温度集中在320~360℃,盐度为0.43%~5.14% NaCleqv;中阶段为主成矿阶段,该阶段石英中包含了所有四种类型的包裹体,其中H2O溶液型包裹体占了大多数,CO2-H2O和水溶液包裹体均一温度集中在240~320℃,盐度为0.43%~11.19% NaCleqv;晚阶段石英仅发育水溶液型包裹体,具有较低的均一温度(118~228℃)和盐度(0.18%~6.59% NaCleqv)。根据CO2-H2O型包裹体计算主成矿阶段压力为70~195MPa,成矿深度为5~7km。总体而言,铧厂沟金矿的初始流体具有中高温、富CO2、低盐度的变质流体特征,晚成矿阶段流体演化为低温、低盐度水溶液流体,流体的不混溶导致了主成矿期的矿质的大量沉淀,铧厂金矿为中浅成的造山型矿床。  相似文献   

4.
黑龙江多宝山斑岩铜(钼)矿床蚀变-矿化阶段及其流体演化   总被引:5,自引:3,他引:2  
黑龙江多宝山斑岩铜(钼)矿床是大兴安岭中北部多宝山-阿尔山铜(钼)成矿带内最大的斑岩型矿床,位于兴蒙造山带的最东端。矿床赋存于花岗闪长岩及多宝山组下部地层中。据野外脉体类型和穿插关系、围岩蚀变类型、矿物组合,将多宝山斑岩铜(钼)矿床的蚀变和矿化自早至晚划分为4个阶段:Ⅰ钾硅化阶段;Ⅱ 硅化-钼矿化阶段;Ⅲ绢英岩化-铜矿化阶段;Ⅳ碳酸盐石英阶段。石英中包裹体类型主要有水溶液包裹体、富CO2包裹体、含子晶多相包裹体、纯CO2包裹体。成矿流体从早阶段到晚阶段具有规律性演化特征:钾硅化阶段发育水溶液包裹体、富CO2包裹体,盐度集中在6%~10% NaCleqv,密度0.5~0.9g·cm-3,均一温度峰值为245~400℃;硅化-钼矿化阶段发育水溶液包裹体、富CO2包裹体、含子晶多相包裹体均一温度峰值为260~300℃,盐度1.7%~39% NaCleqv,密度0.3~1.1g·cm-3;绢英岩化-铜矿化阶段发育水溶液包裹体、富CO2包裹体,均一温度峰值220~280℃,盐度0.1%~24.8% NaCleqv,峰值集中在6%~12%,密度0.5~1.0g·cm-3;碳酸盐阶段仅发育水溶液包裹体包裹体,均一温度峰值为125~170℃,盐度0.5%~12.8% NaCleqv,密度0.8~0.9g·cm-3。激光拉曼探针分析结果表明成分主要为H2O和CO2。本文对多宝山矿床主成矿期压力进行了估算,Ⅰ、Ⅱ、Ⅲ阶段捕获压力分别为110~160MPa、58~80MPa、8~17MPa。测温实验结合野外现象及包裹体岩相学表明多宝山斑岩铜(钼)矿床是一个复杂的构造-岩浆成矿系统,与成矿有关的热流体不是单一的岩浆分异的结果,构造裂隙系统也为含矿流体提供了很好的导矿与容矿空间,矿床沉淀机制为温度压力的变化及空间的开放导致流体不混溶与沸腾作用,不同流体的混合、水岩反应致使流体pH值、成分发生变化,从而导致铜、钼的矿化。  相似文献   

5.
金船塘锡铋矿床是东坡矿田内一个以锡铋为主的大型矽卡岩型多金属矿床,其成矿流体演化及成矿机制是理解该区花岗岩浆演化与成矿的关键内容,但迄今为止对其成矿流体演化及成矿物理化学条件尚无人研究。本文以金船塘锡铋矿床为研究对象,在详细野外调查的基础上,系统开展了镜下观察、流体包裹体显微测温以及激光拉曼分析,进而对金船塘矿床的地质特征及流体演化过程进行了初步研究,并获得如下认识:(1)该矿成矿演化过程可划分为原生矽卡岩阶段、退化蚀变阶段、云英岩阶段、锡石硫化物阶段及无矿石英-碳酸盐阶段;(2)成矿流体的成分以H2O为主,气相成分中含少量的CO2、CH4、SO2,子晶成分主要为NaCl,含有少量的KCl,成矿流体为H2O-NaCl(±KCl)-CO2(±CH4)体系;(3)矽卡岩阶段中流体包裹体均一温度分布在174~>550℃,但主要集中在550℃以上,其盐度范围为5.41%~15.3% NaCleqv;退化蚀变阶段均一温度范围为143~>550℃,主要集中在230~300℃,盐度范围为1.22%~37.4% NaCleqv;云英岩阶段均一温度分布于220~500℃范围内,主要为240~350℃之间,盐度范围为3.0%~14.3% NaCleqv;锡石硫化物阶段中的包裹体均一温度分布于170~368℃,主要为220~270℃,盐度分布在0.35%~7.86% NaCleqv。总体上从成矿早阶段到晚阶段,成矿流体总体具有向低温、低盐度方向演化的趋势。成矿流体的总体密度分布在0.65~1.0g/cm3之间,矿床形成的压力约为120~200MPa,对应的成矿深度约为4~7km;(4)早期成矿流体以岩浆水为主,在演化过程中有大气降水的加入,流体降压沸腾作用和流体混合作用可能是矿石沉淀的主要机制。  相似文献   

6.
河南省东沟超大型钼矿床流体包裹体研究   总被引:13,自引:6,他引:7  
杨永飞  李诺  王莉娟 《岩石学报》2011,27(5):1453-1466
河南省东沟钼矿床是东秦岭钼矿带新发现的燕山期超大型斑岩钼矿床,是大陆碰撞成矿理论预测在先,勘查突破在后的成功范例。该矿床的形成与东沟A型花岗斑岩有关,矿体产于斑岩体外接触带的熊耳群火山岩中。以岩体为中心发育典型的斑岩蚀变分带,由内到外依次是钾化、绢英岩化和青磐岩化。流体成矿过程包括早、中、晚3个阶段,分别以石英-钾长石组合、石英-(钾长石)-多金属硫化物组合和石英-碳酸盐-萤石组合为标志,矿石矿物主要沉淀于中阶段。早、中阶段热液石英中发育CO2-H2O型包裹体(C型)、水溶液包裹体(W型)和含子晶多相包裹体(S型),但晚阶段只发育水溶液包裹体(W型)。早阶段C型和W型包裹体均一温度集中于380~550℃,盐度为7.70%~18.28% NaCleqv;S型包裹体中常见石盐、黄铜矿、方解石和未知透明子矿物,其均一温度范围为318~516℃,加热过程中除石盐外其他子矿物不熔;不包括不熔子矿物的贡献,该类包裹体盐度变化于12.85%~17.87 和35.55%~47.67% NaCleqv。中阶段C型和W型流体包裹体均一温度集中于260~410℃,盐度为4.62%~18.28% NaCleqv;除不熔子矿物外,S型包裹体均一温度为197~436℃,盐度变化于7.45%~19.30% NaCleqv和31.71%~49.22% NaCleqv。晚阶段流体包裹体均一温度集中于125~225℃,盐度介于0.5%~7.25% NaCleqv之间。估算的早、中阶段流体捕获压力分别为63~117MPa和12~67MPa,推测最大成矿深度为4.7km。上述流体包裹体研究表明成矿流体由早阶段高温、富CO2的岩浆热液演化为晚阶段低温、贫CO2的大气降水热液。这种高温、富CO2的岩浆热液可视为大陆内部体制斑岩成矿系统的标志性特征,以区别于岩浆弧区同类矿床高温、贫CO2的岩浆热液。通过对比东秦岭-大别钼矿带典型斑岩成矿系统,认为成矿流体中CO2等挥发组分的含量和围岩性质(化学成分、结晶程度、抗剪抗压程度等)是控制矿体空间定位的重要因素。  相似文献   

7.
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:12,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   

8.
小秦岭东桐峪金矿床的流体包裹体研究   总被引:4,自引:2,他引:2  
东桐峪金矿床位于小秦岭金矿田的中西部,其含金石英脉受韧性剪切构造带的控制。该矿床的构造-成矿过程可划分为4个阶段:Ⅰ黄铁矿-乳白色石英脉阶段;Ⅱ灰白色石英-黄铁矿阶段;Ⅲ石英-多金属硫化物阶段;Ⅳ石英-碳酸盐阶段。相对于小秦岭地区的其他金矿床,东桐峪金矿床的流体包裹体研究资料相对缺乏。文章表明,该矿床内的流体包裹体类型主要为CO2-H2O包裹体和水溶液包裹体,见少量纯液相CO2包裹体。显微测温表明,Ⅰ阶段的构造-成矿流体以中温、富CO2等挥发分为特征,包裹体均一温度为221~392℃,盐度w(NaCleq)为5.5%~7.9%,密度为0.84~0.93 g/cm3;Ⅱ阶段和Ⅲ阶段以CO2-H2O±CH4流体为主,包裹体均一温度为205~350℃(Ⅱ阶段)和224~271℃(Ⅲ阶段),盐度w(NaCleq)集中于5.1%~7.1%,密度为0.83~0.96 g/cm3;Ⅳ阶段的流体演化为中-低温、低盐度的盐水溶液体系,包裹体均一温度为175~185℃。文章对该矿床各成矿阶段的压力进行了估算,Ⅰ、Ⅱ、Ⅲ阶段的流体最小捕获压力分别为123~160 MPa、160~170 MPa、170 MPa左右。  相似文献   

9.
山东金翅岭金矿成矿流体特征   总被引:2,自引:0,他引:2  
杜高峰 《地质与勘探》2012,48(4):677-684
[摘 要]通过流体包裹体岩相学、显微测温学和包裹体稀土元素等的分析,研究山东金翅岭金矿床成矿流体性质和演化,研究结果表明:流体包裹体主要为气液两相包裹体,另有少量液相包裹体。包裹体气相成分主要以H2O、CO2为主。液相成分属Na+-K+-Ca2+-Mg2+-Cl--SO2-4体系,成矿流体为岩浆热液夹有变质水和大气降水的混合流体。流体包裹体的均一温度介于140~350℃,金的主成矿期为第域和第芋阶段,成矿温度范围为290℃~185℃,流体盐度介于7.3%~8.9%,为中-低温、低盐度的成矿流体。石英、黄铁矿包裹体稀土元素特征研究表明:轻稀土富集,重稀土亏损,具有中等负铕异常,标准化曲线为略右倾曲线。  相似文献   

10.
邓小华  姚军明  李晶  刘国飞 《岩石学报》2011,27(5):1439-1452
河南西峡县石门沟钼矿床位于东秦岭北坡的二郎坪地体内,包含斑岩型和石英脉型两类独立的钼矿化,前者呈透镜状产于岩体内,后者呈脉状沿花岗岩裂隙充填。斑岩型钼矿化由花岗岩全岩矿化所致,矿物组合以钾长石-石英-辉钼矿-黄铁矿-磁铁矿-钛铁矿-金红石为标志;石英脉型钼矿化可分为3个阶段,分别以石英-黄铁矿、石英-辉钼矿-黄铁矿-黄铜矿-闪锌矿-方铅矿-辉铋矿和石英-碳酸盐为标志。斑岩型钼矿化石英中发育CO2-H2O型、NaCl-H2O型包裹体以及含子晶包裹体,石英脉型钼矿化早阶段以CO2-H2O型和NaCl-H2O型包裹体为主,中晚阶段仅见NaCl-H2O型包裹体,无矿石英脉包含CO2-H2O型和NaCl-H2O型包裹体。斑岩型钼矿化捕获了H2O-CO2-NaCl体系的初始流体,其温度集中于270~400℃,盐度为4%~13% NaCleqv,流体压力为32~155MPa,对应深度为1.1~5.4km。石英脉型钼矿化早阶段流体为H2O-CO2-NaCl体系,温度集中于240~330℃,盐度集中于2%~10% NaCleqv,压力为14~46MPa和101~153MPa,对应成矿深度3.5~4.6km;中阶段温度降为170~290℃,盐度降为2%~8% NaCleqv;晚阶段均一温度继续降至150~200℃,盐度为1%~6% NaCleqv。石英脉型钼矿化从早阶段到晚阶段,成矿流体盐度随均一温度降低而逐渐降低,指示高温、高盐度、富CO2的岩浆热液与晚阶段低温、低盐度的大气降水的混合作用,导致了钼金属的沉淀。矿区花岗岩成岩年龄为109.8±4.1Ma, 本次研究获得的6件斑岩型钼矿化辉钼矿Re-Os加权平均年龄为109.0±1.7Ma,石英脉型钼矿化辉钼矿Re-Os同位素加权平均年龄为107.1±0.6Ma,略晚于斑岩型钼矿化,与区内燕山晚期的岩浆作用近同时形成,指示成矿作用与燕山晚期的岩浆作用有关,为与侵入岩有关的钼矿床。  相似文献   

11.
八卦庙金矿床是分布于秦岭造山带中的一种中高温碳酸盐型热液金矿床。石英是其主要的脉石矿物之一,与金矿化密切相关。根据含金石英脉的产状可将其分为三种类型:①顺层石英脉;②含铁白云石石英脉;③NE向节理石英脉。它们在微量元素和稀土元素的组成特征上有一定的差异,分别形成于金的不同成矿阶段,是金在成矿作用过程中演化的产物。同时,为八卦庙金矿的成矿提供了条件。石英中包裹体测温结果为八卦庙金矿床的中温成因提供了证据  相似文献   

12.
Abstract. Denggezhuang gold deposit is an epithermal gold‐quartz vein deposit in northern Muru gold belt, eastern Shandong, China. The deposit occurs in the NNE‐striking faults within the Mesozoic granite. The deposit consists of four major veins with a general NNE‐strike. Based on crosscutting relationships and mineral parageneses, the veins appear to have been formed during the same mineralization epochs, and are further divided into three stages: (1) massive barren quartz veins; (2) quartz‐sulfides veins; (3) late, pure quartz or calcite veinlets. Most gold mineralization is associated with the second stage. The early stage is characterized by quartz, and small amounts of ore minerals (pyrite), the second stage is characterized by large amounts of ore minerals. Fluid inclusions in vein quartz contain C‐H‐O fluids of variable compositions. Three main types of fluid inclusions are recognized at room temperature: type I, two‐phase, aqueous vapor and an aqueous liquid phase (L+V); type II, aqueous‐carbonic inclusions, a CC2‐liquid with/without vapor and aqueous liquid (LCO2+VCC2+Laq.); type III, mono‐phase aqueous liquid (Laq.). Data from fluid inclusion distribution, microthermometry, and gas analysis indicate that fluids associated with Au mineralized quartz veins (stage 2) have moderate salinity ranging from 1.91 to 16.43 wt% NaCl equivalent (modeled salinity around 8–10 wt% NaCl equiv.). These veins formatted at temperatures from 80d? to 280d?C. Fluids associated with barren quartz veins (stage 3) have a low salinity of about 1.91 to 2.57 wt% NaCl equivalent and lower temperature. There is evidence of fluid immiscibility and boiling in ore‐forming stages. Stable isotope analyses of quartz indicate that the veins were deposited by waters with δO and δD values ranging from those of magmatic water to typical meteoric water. The gold metallogenesis of Muru gold belt has no relationship with the granite, and formed during the late stage of the crust thinning of North China.  相似文献   

13.
黑龙江省黑河市北大沟金矿床流体包裹体研究   总被引:1,自引:1,他引:0  
黑龙江省黑河市北大沟金矿床是近年来在大兴安岭燕山期成矿带发现的小型金矿床。对石英脉中流体包裹体岩相学研究、显微测温和气液相成分分析表明:(1)主成矿阶段石英脉中发育纯液相、气液两相、富气相和纯气相4类包裹体。(2)流体包裹体均一温度在160~380℃之间,主要集中在260~300℃;成矿流体为NaCl-H2O体系;流体包裹体盐度估计在0.2%~2.0%(NaCleq)之间;成矿流体密度估计在0.550~0.912 g/cm3之间;成矿压力估计在6×105~210×105Pa之间;估算成矿深度为0.06~2.10 km。(3)从流体包裹体成分分析获得的pH值为6.6~6.7之间,还原参数n(CH4+CO+H2)/n(CO2)(摩尔数比值)在0.027~0.271之间,表明具有浅成中偏酸性和弱还原环境成矿的特点。该矿床是与火山热液有关的浅成中—低温热液金矿床。  相似文献   

14.
冀北东坪金矿床深部-外围的构造-蚀变-流体成矿研究   总被引:2,自引:0,他引:2  
冀北东坪金矿田是我国首次在碱性杂岩体内发现的金矿床,曾被认为是与碱性岩有关的金矿床。近年来年代学数据表明,东坪-后沟一带金矿的赋矿碱性杂岩体形成于海西期,而成矿却主要发生在燕山期。金矿床严格受构造裂隙控制,构造-蚀变-流体成矿作用显著,钾长石化是最重要的蚀变。由未蚀变岩石向矿体和断裂带中心方向,典型的构造-蚀变-矿化分带依次为:0-原岩(二长岩、正长岩)带,I-微斜长石化带,II硅化绢云母化微斜长石岩带,III碎裂微斜长石岩带,及IV断层泥。从0带到III带,Au含量增加,Ag、Cu、Pb、Zn、Mo也略有增加。东坪金矿构造-蚀变-矿化阶段可分为4个:Ⅰ钾长石-石英脉阶段;Ⅱ黄铁矿-白色石英阶段;Ⅲ多金属硫化物-烟灰色石英脉阶段;Ⅳ晚期碳酸盐阶段。深部中段各阶段脉石英的流体包裹体研究表明, 在I、II、III阶段均发育富CO2包裹体。第Ⅰ阶段钾长石石英脉L-V型包裹体均一温度(Th)为220.3~359℃,盐度1.1%~3.1% NaCleqv;H2O-CO2型包裹体Th在346.5~383.5℃。第Ⅱ阶段黄铁矿白色石英脉中L-V型包裹体Th范围是217.2~372.5℃,盐度在1.1%~5.7% NaCleqv;H2O-CO2型包裹体Th在241.2~396.7℃,盐度为2.2%~6.2% NaCleqv。第Ⅲ阶段的烟灰色石英脉中L-V型包裹体Th范围为158.2~350.5℃,盐度在0.7%~5.5% NaCleqv;H2O-CO2型包裹体Th范围在215.2~378℃之间,盐度范围在3.0%~6.0% NaCleqv。第Ⅳ阶段晚期石英脉L-V型包裹体Th范围为151.2~249.8℃,盐度在0.9%~8.3% NaCleqv。矿区外围转枝莲矿段的II阶段白色石英脉中包裹体的Th范围为220~416.2℃,III阶段烟灰色石英脉的Th范围为195.3~425℃。富金石英脉形成于中高温(>300℃,可达400℃以上)、中深压力(70~160MPa以上)条件下。其成矿背景、热液蚀变、矿物共生组合及流体性质与典型的造山型金矿有一定的差别,归属于"与侵入岩有关的金矿床"更合理。  相似文献   

15.
Abstract: The Wenyu mesothermal gold deposit is located in the Xiaoqinling district about 1000 km southwest of Beijing in central China. It occurs in the Late Archean to Early Proterozoic metamorphosed volcanic and sedimentary rocks. Three distinct stages of veins have been identified: (I) gold‐poor quartz–pyrite veins, (II) gold‐rich sulfide–quartz veins, and (III) gold‐poor carbonate–quartz veins. Stage II can be subdivided into IIa and IIb. Gold typically occurs as fracture‐fillings associated with chalcopyrite and galena. Fluid inclusions were examined in quartz samples from veins of both stage I and II. Three types of fluid inclusions are identified: CO2–H2O, CO2–rich, and aqueous inclusions. The first two types are of primary in origin. The last type occurs in two ways: coexisting with CO2–H2O and CO2–rich inclusions and thus primary in origin; and occurring along late healed fractures and hence secondary in origin. CO2–H2O inclusions display progressively decreasing Th and increasing Thco2, from the highest Th (311–408C) and lowest Thco2 (average 18C) in stage I quartz through middle Th (284–358C) and ThCO2(average 25C) in stage IIa quartz to the lowest Th (275–314C) and highest ThCO2 (average 28C) in stage IIb quartz, indicating an evolving H2O–CO2–NaCl fluid system. CO2–rich and primary aqueous inclusions show consistent ThCO2 or Th with their coexistent CO2–H2O inclusions. Whereas the secondary aqueous inclusions in stage I and IIa quartz have almost the same Th and salinity as the primary aqueous inclusions in stage IIb quartz. Comparing with CO2–H2O inclusions, these non–CO2, low salinity aqueous inclusions may come from different origin, most probably meteoric water. Unlike in both stage I and IIa quartz, fluid inclusions in stage IIb do not show evidence of fluid immiscibility. The fact that most of gold is associated with stage IIa and IIb veins and not with veins of stage I which is the main stage of vein formation suggests that gold deposition occurs at the later stage of fluid immiscibility. The continuing phase separation led to the deposition of large amounts of gold at the Wenyu mine.  相似文献   

16.
赤峰地区金矿床流体包裹体与深部预测   总被引:4,自引:0,他引:4  
张文淮  伍刚 《矿物学报》1991,11(4):334-340
对赤峰地区石英脉型及蚀变岩型(含石英脉蚀变岩)金矿床的研究表明,石英中流体包裹体的成分、温度和特征元素比值等可以作为金矿化找矿评价和深部预测的标志。(1) 石英中的流体包裹体,是成矿溶液的代表,反映了金矿形成的条件和环境。可以将均一温度作为一种深部预测的变量指标。(2) 石英红外光谱CO_2和H2_的光密度,实际上反映的是石英中流体包裹体CO_2和H_2O的含量特征。D_2和D_2/D_1的特征值可以作为金矿床深部预测的变量参数。从上到下,D_2/D_1值的增大,可以预示金矿化向下逐渐增强。(3) 容矿围岩为石墨片岩(或含有机质的岩层)的金矿床,包裹体的气体成分,特别是CH_4和N_2的含量与金的富集有关,可以判别“无矿”和“含金”石英。  相似文献   

17.
The Huai Kham On gold deposit is located in the central part of the Sukhothai Fold Belt, northern Thailand. The Sukhothai Fold Belt represents an accretionary complex formed by subduction and collision between the Indochina and Sibumasu Terranes. There are many small gold deposits in the Sukhothai Fold Belt; however, the styles and formation environments of those gold deposits are not clear. The geology of the Huai Kham On deposit consists of volcanic and volcanosedimentary rocks, limestone, and low‐grade metamorphic rocks of Carboniferous to Triassic age. Gold‐bearing quartz veins are hosted by volcanic and volcanosedimentary rocks. The quartz veins can be divided into four stages. The mineral assemblage of the gold‐bearing quartz veins of Stages I and II comprises quartz, calcite, illite, pyrite, native gold, galena, chalcopyrite, and sphalerite. Quartz veins of Stage III consist of microcrystalline quartz, dolomite, calcite, pyrite, native gold, and chalcopyrite. Veins of Stage IV consist of calcite, dolomite, chlorite, and quartz. Fluid inclusions in quartz veins are classified into liquid‐rich two‐phase (Types IA and IB), carbonic‐aqueous (Type II), and carbonic (Type III) fluid inclusions. The homogenization temperatures of Types IA and II fluid inclusions that are related to the gold‐bearing quartz veins from Stages I to III ranged from 240° to 280°C. The δ18O values of quartz veins of Stages I to III range from +12.9 to +13.4‰, suggesting the presence of a homogeneous hydrothermal solution without temperature variation such as a decrease of temperature during the formation of gold‐bearing quartz veins from Stages I to III in the Huai Kham On gold deposit. Based on the calculated formation temperature of 280°C, the δ18O values of the hydrothermal solution that formed the gold‐bearing quartz veins range from +3.2 to +3.7‰, which falls into the range of metamorphic waters. The gold‐bearing quartz veins of the Huai Kham On deposit are interpreted to be the products of metamorphic water.  相似文献   

18.
藏南折木朗造山型金矿成矿流体地球化学和成矿机制   总被引:5,自引:4,他引:1  
折木朗金矿位于青藏高原雅鲁藏布江缝合带东段的南侧,矿体受大型脆-韧性剪切带的次级断裂控制。系统的显微测温和激光拉曼测定显示折木朗金矿矿石中存在3类流体包裹体: NaCl-H2O溶液包裹体(类型Ⅰ);含CO2盐水溶液包裹体(类型Ⅱ),此类包裹体又分为两相(Ⅱa)和三相(Ⅱb)2个小类;Ⅲ纯气相包裹体。折木朗金矿床中流体包裹体显微测温显示该矿成矿流体的盐度范围为2.31%~7.39% NaCleqv,平均值为5.33%% NaCleqv,峰值为4.0%~7.0% NaCleqv;均一温度的范围为164.5~273.1℃,峰值为220~240℃,平均值为221.0℃。相对应的密度范围为0.82~0.93g·cm-3,峰值为0.84~0.90g·cm-3,平均值为0.88g·cm-3。折木朗金矿床成矿流体具有富含CO2、低盐度、低密度、中低温度的特征,与造山型金矿成矿流体相似。此外,同位素测定显示成矿流体的氢氧碳同位素组成分别为δDH2O=-36.7‰~-107.5‰,δ18OH2O=4.1‰~5.5‰,δ13C=-9.6‰~-11.5‰,说明成矿流体主要为变质水,但有地幔流体的加入。综合成矿地质特征和成矿流体的证据,提出折木朗金矿为陆陆碰撞造山型金矿。  相似文献   

19.
西藏邦布石英脉型金矿床是产于印度-亚洲板块陆-陆造山主碰撞汇聚环境下、与大洋俯冲无关的新型造山型金矿床。该矿床位于雅鲁藏布江缝合带南侧朗杰学增生楔的东段南缘,矿体受区域内EW向金地-鲁农复向斜和错古-折木朗壳型脆-韧性剪切带及其次级构造的控制。金矿化主要与石英脉密切相关,并包裹于脉内细粒/粗粒硫化物中。矿区内主要分布有3期石英脉:成矿前钩状石英脉、成矿期石英大脉和成矿后陡立状石英脉。文章对3期石英脉流体包裹体形态、形成温度、密度及H-O同位素等方面进行了详细的对比研究,试图查明成矿流体来源以及金的沉淀机制等问题。研究表明,钩状石英脉内包裹体主要为液相(L)包裹体,成分主要为H2O溶液,其流体可能为早期区域变质的产物;石英大脉内包裹体主要为含CO2气液(VL)两相包裹体,体积较大,成分主要为H2O+CO2+CH4±N2,成矿流体为深源变质流体,并与变质地层中的有机质发生强烈反应;陡立状石英脉内包裹体主要为气液两相包裹体,体积较小,其主要成分为H2O+CO2,流体主要与后期区域变质事件有关,为成矿后变质作用的产物。邦布金矿的主要成矿流体源自深部变质流体,流体不混溶作用可能是导致金矿沉淀的主要原因。  相似文献   

20.
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   

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