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1.
Abstract: Transportation of various kinds of elements occurred in wall rocks (Quaternary andesites) during the hydrothermal alteration accompanied by the Hishikari epithermal gold mineralization. For example, K2O and MgO contents of wall rocks decrease away from the gold-quartz veins, while (CaO+Na2O) content increases, and SiO2 content is variable near the veins. Hydrothermal alteration zoning and bulk compositional variations in wall rocks suggest that the mixing of hydrothermal solution and acidic groundwater took place an important role as the cause for the hydrothermal alteration and bulk compositional variations. The relationship between dissolved silica concentration and temperature of hydrothermal solution mixed with groundwater is obtained based on precipitation kinetics-fluid flow–mixing model, and the computed results are compared with the distribution of SiO2 minerals (quartz and cristobalite) in the hydrothermal alteration zones. This comparison suggests that the most reasonable flow rate of fluids migrating through hydrothermal alteration zones, and A/M (A: surface area of rocks interacting with fluid, M: mass of fluid) are estimated to be ca. 10-4.2 m/sec, and ca. 0.10 m2/kg, respectively. The mixing of two fluids (hydrothermal solution and acidic groundwater) can also explain δ18O zoning in the altered country rocks, hydrothermal alteration zoning from K-feldspar through K-mica to kaolinite from the center (veins) to margin, and deposition of gold.  相似文献   

2.
Jun Deng    Liqiang Yang    Bangfei Gao    Zhongshi Sun    Chunying Guo    Qingfei Wang    Jianping Wang 《Resource Geology》2009,59(2):140-152
The Jiapigou gold belt, one of the most important gold-producing districts in China, is located in the northern margin of the North China Craton (NCC). The tectonic evolution of the gold belt is closely related to the Siberian Plate (SP) in the north, Yangtze Craton (YC) in the south and Pacific Plate in the east. In order to investigate the nature of the tectono-fluid-metallogenic system, the authors investigated the relationships among the tectonic regimes, fluid evolution and metallogenesis. This paper examined the corresponding spatial–temporal relationship between the ore-controlling tectonic regime and hydrothermal fluid evolution in the Jiapigou gold belt. There are two types of gold mineralization: disseminated ores that are distributed within the NW-trending main ductile shear zone and gold-bearing quartz veins and minor disseminated ores that are distant to the ductile shear zone. The fluid inclusions in quartz contain a large amount of CO2. Metamorphic fluids of middle to high temperatures and pressures and meteoric waters of low temperatures and pressures mixed together during mineralization. A proposed ore-forming model is as follows: in the pre-ore phase, the collision of SP and NCC resulted in the NS-trending compression of the ore belt. This formed the NE-trending and NW-trending shear faults and EW-trending folds. During the ore-forming phase, the collision of YC and NCC resulted in dextral shearing of the NW-trending Jiapigou fault and the NE-trending Green faults. High-pressure fluids caused by the compression flowed into the dilatant zone. This may have caused both phase separation of CO2-bearing fluids and the mixing of meteoric waters, metamorphic waters and magmatic source fluids and finally resulted in the disequilibrium of the ore fluids and precipitation of ore minerals.  相似文献   

3.
西藏驱龙超大型斑岩铜矿床成矿流体对成矿的控制   总被引:9,自引:2,他引:7  
驱龙斑岩铜矿是冈底斯成矿带新发现的规模最大的超大型矿床, 形成于中新世.原生流体包裹体有5种类型, 主成矿阶段均一温度集中于240~650℃之间, 盐度变化于0.18%~52.04%之间, 明显分为高盐度高密度、低盐度低密度2类.可见含子矿物、液相、气相等包裹体共存现象, 且均一温度相近, 盐度相差很大, 表明成矿流体经历了沸腾过程; 氢氧同位素及单矿物微量稀土元素研究表明, 成矿物质主要来源于斑岩岩浆体系, 而成矿流体主要来源于岩浆水、天然热卤水有关的混合水, 且天然热卤水占优势, 属NaCl (F) -KCl (F) -C2H6-HCO3-CaSO4型流体.成矿流体总体显示出高温、高盐度、高矿化度、高氧逸度的还原性酸性流体特征, 并且富集Na+、K+、F-、Cl-、SO42-、CO2等成分, 以富F-为特征(F-/Cl- > 1, 平均为5.66), 这种特殊性质的流体特别有利于Fe2+、Cu2+等元素的迁移, 并最终在岩浆期后热液期富集成矿, 它是形成驱龙超大型斑岩铜矿床的必要条件; 流体减压沸腾及不同性质流体混合作用是促使金属离子沉淀富集的主要机制.对该矿床成矿深度(0.5~2km) 进行了探讨, 可作为该矿床勘查评价的依据.   相似文献   

4.
Ijolite-carbonatite complexes are ubiquitously surrounded of an aureole of metasomatically altered rocks. The process of alteration is termed fenitization and is generally caused by peralkaline fluids emanating from cooling alkaline, i.e. ijolite and carbonatite magmas. Ijolites and carbonatites normally occur together and attempts to determine the source of the fenitizing fluids may therefore lead to controversial, if not erroneous, conclusions.
Mineralogical and chemical data of fenites from Oldoinyo Lengai (Tanzania), Fen (Norway), and Alnö (Sweden) are reviewed in the present paper in order to reveal the main factors controlling the fenitization around ijolite and carbonatite. Despite the overall alkaline nature of the process, variables such as XCO2 of the fluid, activity gradients of SiO2, Al2O3 and CaO, FeO/MgO ratio, f O2 and temperature gradients may differ, producing distinctive patterns of fenitization around the two magmatic sources. The ijolitic-type fluid has low XCO2, high activities of alkalies, SiO2 and Al2O3, and low activity of CaO. The f O2 evolves along the hm-mt buffer conditions and the temperature falls gradually with distance from the magmatic source. The carbonatitic-type fluid has high XCO2, high activities of alkalies and CaO, and low activities of SiO2 and Al2O3. Temperatures and f O2 are initially high, but decrease sharply with distance from the source. Moreover, the CO2-rich fluid may complex and transport the REE.  相似文献   

5.
大张铁矿是鲁西地区近年来新发现的一个重要的矽卡岩型矿床.矿体主要赋存于石英二长闪长岩与奥陶系马家沟组灰岩接触带及其附近.根据脉体穿插关系和交代蚀变特征,将大张矽卡岩型铁矿床成矿过程划分为矽卡岩阶段、氧化物阶段、硫化物阶段和碳酸盐阶段.通过对透辉石、绿帘石、石英和方解石等透明矿物显微观察发现,大张铁矿中流体包裹体类型主要...  相似文献   

6.
Abstract: Djerfisherite occurs intimately intergrown with troilite and pentlandite in gehlenite-spurrite skarn at Kushiro, mainly as inclusions in gehlenite and andradite grains. The mode of occurrence indicates that the djerfisherite formed in the culminated stage of the contact metamorphic-metasomatic process. The chemical compositions of the mineral are approximately represented by a formula of K6Na(Fe, Ni, Cu)24S26Cl with Ni up to 4. 85. It is likely that high temperature condition corresponding to the formation of gehlenite-spurrite skarn as well as low fO2 and fS2 conditions are responsible for the formation of djerfisherite in the potassium-rich chemical environments.  相似文献   

7.
庙梁金矿床位于南秦岭柞水-山阳矿集区的中心地带,为了查明庙梁金矿成矿流体特征、金的沉淀机制及矿床成因,对该矿床不同成矿阶段脉石矿物中的流体包裹体进行了详细的岩相学、显微测温、激光拉曼光谱分析研究并与周边典型金矿床特征进行了对比.结果 表明,该矿床包裹体类型丰富,成矿早阶段主要为H2O-NaCl型包裹体(Ⅱ型)、部分H2...  相似文献   

8.
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   

9.
Liqiang Yang    Jun Deng    Chunying Guo    Jing Zhang    Shaoqing Jiang    Bangfei Gao    Qingjie Gong    Qingfei Wang 《Resource Geology》2009,59(2):181-193
The Dayingezhuang gold deposit is located in the central part of the Zhaoping Fault Zone, which is one of the most important gold-hosting faults in the Jiaodong gold province of China. Dayingezhuang is a typical large-scale shear zone-hosted disseminated gold deposit with superimposed silver mineralization. Fluid inclusion (FI) petrography and microthermometry, and analysis of oxygen and hydrogen isotopes for fluid inclusions were conducted to determine the characteristics of the ore-forming fluids and the processes of silver mineralization. Microthermometry data of FI indicated that ore-forming fluids are characterized by low salinity and low density. Homogenization pressures of FI are estimated at 20 × 105–220 × 105 Pa. The change in ore-forming fluids from K2SO4 type to NaCl type indicates the superposition of two hydrothermal mineralizing events. Ore-forming fluids were dominated by magmatic components in the early mineralization period, and affected by meteoric waters in the late period. Gold may have been transported as Au-S or Au-Cl complexes, whereas silver was transported as Ag-Cl complexes. Early fluid boiling and later fluid mixing are thought to be two of the main factors causing the deposition and superimposing of gold and silver to form the large deposit.  相似文献   

10.
三官庙金矿床位于秦岭造山带南秦岭北部逆冲推覆构造带内,为断裂构造控矿的热液型矿床。热液成矿期划分为成矿早阶段(S1)、主阶段(S2)和晚阶段(S3)。成矿主阶段流体包裹体的完全均一温度Th为150~420 ℃,盐度为2.1%~24.1%;成矿晚阶段Th为81~190 ℃,盐度为5.6%~22.2%。包裹体研究显示,在成矿主阶段温度>250 ℃时,以流体混合作用为主而导致矿物沉淀;在成矿主阶段温度<250 ℃及成矿晚阶段,以流体沸腾作用为主而导致矿物沉淀。成矿主阶段成矿流体的δDV-SMOW为-84.4‰~-77.0‰,δ18${{\text{O}}_{{{\text{H}}_{2}}\text{O}}}$为5.0‰~5.7‰,成矿流体来源以岩浆水为主,同时混入了外来流体。成矿流体的δ13CΣC为-13.5‰~-5.2‰,反映碳为岩浆来源并受到低温蚀变的影响。黄铁矿单矿物δ34SCDT为-2.73‰~-1.31‰;毒砂单矿物δ34SCDT为-3.36‰~0.03‰,反映成矿物质硫为典型的单一岩浆来源。综上分析,认为三官庙金矿床为岩浆热液成因,其成矿机制为:印支期末,在钠长(角砾)岩形成过程中,含金热液流体沿断裂构造运移,在距离钠长(角砾)岩较远地段的层间破碎带内,成矿流体发生混合及沸腾作用,促使成矿物质发生沉淀,最终形成三官庙金矿床。  相似文献   

11.
哈陇休玛钼多金属矿床是东昆仑成矿带东段目前仅有的中型斑岩型矿床。为了查明其成矿流体性质及成矿物质来源,构建矿床成矿模式,本文进行了详细的流体包裹体和H-O-S同位素研究。流体包裹体显微测温显示,哈陇休玛矿床发育气液两相和含CO2三相两种类型包裹体,成矿流体呈现中高温(集中于280~340 ℃)、高盐度(w(NaCl),集中于6.00%~18.00%)和中等密度(集中于0.64~0.92 g/cm3)特点,成矿深度为2.4~4.1 km,形成于中浅成环境。H-O同位素显示,成矿流体具有岩浆水和大气降水混合的特征,但主体以岩浆水为主;S同位素显示,成矿物质主要来自于深部岩浆。结合区域构造演化认为,哈陇休玛矿床成矿模式为印支晚期东昆仑地区发生强烈壳幔混合作用,形成富含成矿元素的混合岩浆,含矿流体在随混合岩浆上升的过程中发生流体沸腾,并与大气降水混合冷却,导致成矿物理化学条件发生变化,促使成矿物质沉淀成矿。  相似文献   

12.
Abstract Andalusite-bearing veins formed during contact metamorphism in the aureole of the Vedrette di Ries tonalite. In the veins, quartz crystals that are completely armoured by andalusite or that occur in strain shadow areas contain three generations of fluid inclusions: low-salinity H2O-CO2-CH4 mixtures with CH4/(CO2+ CH4) ± 0.35 (type A); low-salinity aqueous fluids (type B); H2O-free, CO2-CH4 fluids with the same carbonic speciation as A (type C). Carbonic types A and C typically have a dark appearance, which is attributed to graphite coatings on inclusion walls. Microstructural analysis of the host quartz and calculated densities indicate that type A inclusions were likely trapped during vein formation. These inclusions underwent strain-assisted re-equilibration during cooling that resulted in density increases without change of composition. After the rocks had cooled below about 350 ° C, type C inclusions appear to have formed from one of the immiscible fractions after unmixing of the H2O-CO2-CH4 fluid mixtures. Aqueous type B inclusions, apparently trapped between 225 and 350 ° C, could represent an independent fluid, or could be the H2O-rich fraction of unmixed type A fluids. Taking account of the uncertainties, the composition and density of the complex type A inclusion fluids are in good agreement with the properties of primary fluids calculated from the petrological data. The fluid inclusion data support the model of vein formation by hydrofracturing as a result of dehydration of graphitic metapelites. These new results also demonstrate the importance of considering strain in the interpretation of metamorphic fluid inclusions.  相似文献   

13.
Major minerals (sulfates, sulfides, quartz) are distributed in different parts of submarine hydrothermal ore deposits. For instance, the abundance of barite increases stratigraphically upwards in the massive orebodies of the Kuroko deposits (black and yellow ores), while quartz is abundant in the lower parts (siliceous ore). The different distribution of barite and quartz in the Kuroko deposits can not be accounted for by thermochemical equilibrium calculations based on the precipitation due to mixing of ascending hydrothermal solutions with ambient cold seawater. In the present study, a coupled fluid flow‐precipitation kinetics model was used to calculate the amounts of quartz, barite, and anhydrite precipitated from a hydrothermal solution mixed with seawater, assuming reasonable values for temperature, precipitation rate, fluid flow velocity, mineral surface area/fluid mass ratio (A/M), and initial concentrations of hydrothermal solution and seawater before mixing occurred. The results indicate that barite precipitates more efficiently than quartz from discharging fluids with relatively higher flow velocity, lower temperatures and under the condition of lower A/M ratios on the seafloor (black ore), whereas quartz precipitates more effectively from solutions with lower flow velocity, higher temperatures and higher A/M ratios beneath the seafloor (siliceous ore) and in the orebody (barite ore, ferruginous chert ore). Anhydrite precipitates in shallow sub‐seafloor environments with lower precipitation rates and higher A/M ratios than barite and higher precipitation rates and lower A/M ratios than quartz. These results explain the observed occurrences of barite, anhydrite, and quartz in the Kuroko deposits. Namely, barite is abundant in black ore and barite ore which formed above the seafloor, anhydrite formed in high‐permeability tuff breccias, and quartz formed in low permeability dacite intrusive bodies in the sub‐seafloor environment.  相似文献   

14.
Calcite and quartz veins have formed, and are forming, in steeply dipping fissures in the actively rising Alpine Schist metamorphic belt of New Zealand. The fluids that deposited these minerals were mostly under hydrostatic pressure almost down to the brittle-ductile transition, which has been raised to 5-6 km depth by rapid uplift. Some fluids were trapped under lithostatic pressures. Fluids in the fissure veins were immiscible H2O + NaCl-CO2 mixtures at 200-350 C. Bulk fluid composition is 15-20 mol% CO2 and <4.3 total mol CH4+ N2+ Ar/100mol H2O. Water hydrogen isotopic ratio δDH2O in the fissure veins spans -29 to -68‰, δ18OH2O -0.7 to 8.5‰, and bulk carbon isotopic ratio δ13C ranges from -3.7 to -11.7‰. The oxygen and hydrogen isotopic data suggest that the water has a predominantly meteoric source, and has undergone an oxygen isotope shift as a result of interaction with the host metamorphic rock. Similar fluids were present during cooling and uplift. Dissolved carbon is not wholly derived from residual metamorphic fluids; part may be generated by oxidation of graphite.  相似文献   

15.
Abstract Quartz-hosted, synthetic CO2-H2O fluid inclusions behave as open systems with respect to diffusional transfer of hydrogen during laboratory-simulated metamorphic re-equilibration at 650, 750 and 825°C and 1.5 kbar total pressure with fO2 defined by the C-CH4 buffer. Microthermometry and Raman spectroscopy show that the initial CO2-H2O inclusions become CO2-CH4-H2-H2O
inclusions after diffusive influx of hydrogen from the reducing confining medium. Measurable changes are observed in inclusion compositions after only 15 days of re-equilibration, implying significant hydrogen mobility at still lower temperatures over geological time spans. Results of synthetic inclusion re-equilibrium experiments have profound implications for the interpretation of natural fluid-inclusion data; failure to account for potential hydrogen migration in inclusions from high-temperature geological environments may lead to erroneous estimates of P-T, and/or the compositions of metamorphic fluids.  相似文献   

16.
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   

17.
列廷冈-勒青拉矿床位于西藏冈底斯北缘多金属成矿带东侧,是该成矿带内一个独特的同时发育Pb、Zn、Fe、Cu、Mo五种元素矿化的典型矽卡岩型矿床.对该矿床成矿流体性质研究有助于解决这种具有不同来源属性的多金属共生矿床的成矿机制等科学问题.基于此,选取与Fe-Cu-Mo矿化和Pb-Zn-Cu矿化密切相关的矽卡岩矿物和脉石矿物,系统开展了流体包裹体和碳氢氧同位素研究,结果显示二者的成矿流体来源相同并经历了相似的演化过程.矽卡岩阶段主要发育富液相包裹体,成矿流体具有高温中高盐度特征.成矿期石英硫化物阶段和成矿后期碳酸盐阶段主要发育富液相包裹体和含子晶的多相包裹体,前者成矿流体温度属于中高温范畴,而盐度分为高盐度和低盐度两类;后者成矿流体温度属于中低温范畴,而盐度同样分为高盐度和低盐度两类,研究表明出现两种盐度截然不同的流体是由于沸腾作用造成的.稳定同位素研究结果显示矽卡岩阶段成矿流体主要源于发生过脱水去气作用的残余岩浆水,石英硫化物阶段和碳酸盐阶段均有大气降水的参与.灰岩地层与正常海相碳酸盐岩相比δ18O明显亏损,表明成矿流体在矿区灰岩地层中大规模运移并发生水岩反应,从而在远端矽卡岩带形成铅锌铜矿化.结合前人及本次研究结果,列廷冈-勒青拉矿床Fe-Cu矿化与Pb-Zn矿化为同一时期岩浆活动的产物,但分别与不同属性的岩浆有关.降温冷却、流体混合作用以及pH值的变化是控制列廷冈-勒青拉矿床金属沉淀的重要因素,而成矿温度和岩浆属性的差异是造成成矿元素在空间上分带的主要原因.  相似文献   

18.
周云  黄惠兰  于玉帅  李芳  谭靖 《地球科学》2021,46(4):1248-1268
为了解锡田钨锡多金属矿床的成矿流体演化过程和成矿元素迁移机制,深入揭示成矿机制,指导该地区的下一步找矿勘探工作,对黑钨矿、锡石及透明矿物的流体包裹体进行了岩相学观察、红外显微测温及LA-ICP-MS原位分析.显示锡田钨锡多金属矿床绿柱石、黑钨矿中发育流体-熔体包裹体,均一温度最高可达760℃.早成矿阶段流体均一温度为360~500℃,盐度主要为28.4%~41.5% NaCleqv,主成矿阶段均一温度为280~450℃,盐度主要为3.0%~20.0% NaCleqv.,晚成矿阶段均一温度为120~280℃,盐度为0.4%~6.6% NaCleqv..LA-ICP-MS分析表明,超临界流体开始出溶时,W、Cu、Mo等元素优先富集于富挥发分气相中,Pb、Zn、Sn、Fe、Mn等元素则更倾向富集于高盐度卤水相中.锡田钨锡多金属矿床成矿流体来源于燕山期浅源花岗岩,钨锡成矿作用始于岩浆-热液过渡阶段,成矿流体具有高温、高盐度和富CO2等特征.成矿流体来自岩浆流体的出溶,演化过程中经历了两次不混溶作用,不混溶相分离过程中,成矿元素选择性迁移,在各相中进行不均匀分配.流体不混溶、水岩反应、流体混合和流体冷却作用是导致该矿床钨锡矿物沉淀的原因.   相似文献   

19.
花垣铅锌矿床的成矿流体演化特点和铅锌矿物沉淀机制存有分歧,为了总结矿床成因并建立成矿模式,指导该地区铅锌矿的下一步找矿勘探工作.对闪锌矿、主成矿期方解石和萤石中的流体包裹体进行岩相学观察、显微测温、拉曼光谱分析以及同步辐射X射线荧光微探针分析,结果显示花垣地区铅锌矿床成矿流体温度主要为150~220℃,总盐度一般为13%~23% NaCleqv,多> 15% NaCleqv,密度多 > 1 g/cm3,成矿流体为NaCl-CaCl2-MgCl2-H2O卤水体系.成矿流体均一温度具有由北而南降低的趋势.流体液相组分中主要为Ca2+、Mg2+、Na+、Cl-,具有盆地热卤水体系特点.流体包裹体气相中发育CO2、CH4,方解石、萤石中流体包裹体均有成矿元素Pb、Zn的存在.花垣矿集区成矿流体属于低温度、中-高盐度、中-高密度,成分以钠和钙氯化物为主的含矿热水溶液,流体运移方向为由北向南,流体来源于封层水、大气降水和少量变质水.铅锌矿物的沉淀与热化学硫酸盐还原作用有关.闪锌矿、方铅矿等矿石矿物与方解石、萤石等脉石矿物应属同一富含Pb、Zn、Mn、Fe、As、Cr等成矿元素的成矿流体在同一成矿期次相同条件下沉淀的产物.   相似文献   

20.
为揭示谦比希铜矿床的成矿流体性质、成矿物质来源及其演化特征,对其矿石和脉石矿物展开了流体包裹体和H-O-S同位素地球化学研究.结果显示,热液型脉状矿化石英流体包裹体均一温度变化于100~350 ℃,盐度变化于11%~19%NaCleqv;δDV-SMOW值为-64.0‰~-52.6‰,δ18OH2O值为1.57‰~2.97‰.热液型脉状和沉积型层状铜矿体δ34SCDT值分别变化于5.5‰~12.1‰和6.0‰~21.0‰.分析表明,热液型成矿流体属Cl-Na-Ca型水溶液,属中低密度流体;成矿流体受幔源和壳源岩浆混合,导致铜发生沉淀.沉积型层状矿化硫主要来自成岩硫化物和海水硫酸盐,硫酸盐以热化学还原为主,导致SO42-较彻底的变为H2S.整体看来,谦比希铜矿床热液型脉状矿化与新元古代中期岩浆活动密切相关,沉积型层状矿化主要与新元古代晚期大规模造山运动和区域变质作用有关.   相似文献   

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