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1.
鸡冠嘴铜金矿床是鄂东南地区典型的矽卡岩型铜金矿床。矿体主要赋存于下三叠统大冶组大理岩中,矿石矿物以黄铜矿和黄铁矿及少量金银矿物为主,与矿化有关的蚀变包括矽卡岩化、硅化、绿泥石化、碳酸盐化、钾长石化等。根据野外观察和镜下鉴定将成矿过程划分为干矽卡岩阶段、湿矽卡岩阶段、硫化物阶段和碳酸盐阶段,其中硫化物阶段为金矿化的主要阶段。矿相学研究、扫描电子显微镜-能谱分析和电子显微探针分析结果表明,主要载金矿物为黄铜矿和黄铁矿,金的赋存状态包括可见金和不可见金,可见金以银金矿为主,其次为自然金和含银自然金,不可见金为纳米级自然金。主要载银矿物是黄铜矿和斑铜矿,银矿物多以可见银(硒银矿、碲银矿和辉银矿等)产出,包括独立银矿物和显微包体银;不可见银主要以次显微包体的形式分布于硫化物中。鸡冠嘴铜金矿床是高温岩浆热液与碳酸盐岩地层发生接触交代作用形成的,Au在高温热液中可能主要以氯络合物、碲络合物或碲化物熔体的形式搬运。随着矽卡岩化等蚀变作用的进行和热液温度的降低,热液中氯被消耗的同时硫逸度快速上升,Au主要以金硫络合物的形式在热液中运移,硫化物阶段早期大量Bi-Te-S矿物及少量纳米级自然金以显微包裹体的形式包裹于近于同时沉淀的黄铁矿中,随后碲银矿、辉银矿及硫铋铜矿与硫化物及石英和碳酸盐矿物共生产出。成矿流体演化过程中由于温度和硫逸度的进一步降低导致金络合物不稳定,当Logf Te2-20且-14Logf Se2-10时,金矿物与硒化物与黄铜矿近于同时沉淀,或充填于先期沉淀的黄铁矿微裂隙和其他矿物之间的空隙中。综合分析表明,鸡冠嘴铜金矿床成矿过程中Te和Bi对Au的富集具有重要重用。  相似文献   

2.
本文通过流体包裹体研究,获得了天头山金矿成矿流体的温度、盐度、氧逸度、硫逸度、成矿压力、化学成分等地球化学参数。由此得出天头山金矿为低温浅成热液脉状矿床。氢、氧、碳、硫同位索研究表明,成矿热液具有火山热液与天水混合特征。封闭体系水岩反应实验表明,成矿热液与地层相互作用可使金产生活化,并以络合物的形式迁移,在介质条件发生变化时,络合物分解、沉淀而成矿。  相似文献   

3.
金矿床中金与黄铁矿和毒砂的关系   总被引:10,自引:4,他引:6  
卡林型金矿中的金,以肉眼,甚至在显微镜下都看不到,因而称之为“不可见金”.经过金的物相分析,发现Au与毒砂、黄铁矿有关.进一步的问题是:Au在毒砂、黄铁矿中呈何状态分布,是呈微细的独立矿物?还是类质同象?是以化学键进入毒砂、黄铁矿的晶格?还是吸附在其表面?进一步的研究表明,世界上其他类型金矿,如浊积岩型金矿、造山带内太古代绿岩带金矿、变质金矿、与火成岩有关的金矿,甚至含金的块状硫化物矿床,其中的金除了以自然金(可见金)产出外,在黄铁矿、毒砂、辉锑矿、雄黄等硫化物中还含有不可见金.从不可见金到可见金,需经过热液蚀变作用,在高As条件下,温度和硫逸度的升高,可溶出不可见金,在温度下降和还原条件下,Au以可见金形式存在于蚀变环带中.这种从不可见金到可见金的转换过程,反映了Au、As、S以及Fe等元素的地球化学特征.金矿中的黄铁矿和毒砂具有相似的结构,包括在其原始生长的晶体中含有不可见金,并且在稍后的成矿阶段内形成赋存有可见金的蚀变环带.蚀变环带以As含量高为特征,并且,后期的可见金是沿裂隙或毒砂与黄铁矿的粒间分布.可见金是热液活化了矿物内的不可见金而形成的.  相似文献   

4.
鸡笼山矽卡岩型金铜矿床是长江中下游成矿带典型的矽卡岩矿床,矿体主要赋存于下三叠统大冶组碳酸盐岩与花岗闪长斑岩接触带内。根据野外观察和镜下鉴定,将成矿过程划分为进矽卡岩阶段、退化蚀变阶段、石英-硫化物阶段和碳酸盐阶段,其中石英-硫化物阶段为金和铜的主要成矿阶段。鸡笼山金铜矿床中不同类型矿石的矿相学观察和电子探针微区成分分析(EPMA)表明,金、银主要以自然金、银金矿、碲银矿、硫银铋矿等形式产出,主要载金矿物为黄铜矿和黄铁矿;同时发现鸡笼山金铜矿床中发育大量碲-铋矿物(如辉碲铋矿、针硫铋铅矿等)。成矿流体物理化学性质研究表明,鸡笼山金铜矿床中金银元素在高温热液中主要以氯络合物的形式运移,随着温度降低和流体进一步的演化,金银元素转变为以硫络合物、碲铋化物熔体等形式运移。在石英-硫化物阶段,由于硫化作用与流体的沸腾作用,流体中硫逸度降低,碲逸度升高;当流体处于黄铁矿-磁黄铁矿氧逸度范围、酸碱性呈中性-弱碱性、碲逸度(logf_(Te2))为-10.7~-8.4、硫逸度(logf_(S_2))为-11.4~-10.6时,金、银、铜元素近于同时沉淀,碲、铋和砷元素对金和银元素运移和富集起到了重要作用,最终形成了鸡笼山矽卡岩型金铜矿床。  相似文献   

5.
文章在野外地质勘查、研究的基础上,系统介绍了三官庙金矿床基本地质特征.通过系统的光学显微镜、扫描电镜观察,将三官庙金矿床热液期成矿阶段划分为成矿早阶段(S1)、主阶段(S2)和晚阶段(S3),主阶段形成大量硫化物及方解石石英脉(团块),并形成金矿化;载金硫化物主要为毒砂、黄铁矿,均为同一世代,形成环境条件稳定,总体与金同时生成.利用电子探针(EPMA)对载金硫化物进行分析,结合元素面扫描成像,认为三官庙金矿石中"不可见金"普遍分布于黄铁矿、毒砂等硫化物中,在黄铁矿中主要以超显微包裹的纳米金形式存在,在毒砂中以固溶体金形式存在.三官庙金矿床热液黄铁矿电子探针(EPMA)分析具有较高的Co/Ni比值,在As-Co-Ni微量元素图解中位于岩浆热液区,这些特征指示黄铁矿为岩浆热液成因;依据金矿石、围岩、钠长角砾岩全岩稀土元素数据,认为三官庙金矿床矿石显示了对钠长角砾岩稀土元素特征的继承演化,说明二者之间具有成因联系;Au/Ag比值、热液硫化物共生组合、毒砂标型特征等表明三官庙金矿床成矿主阶段流体性质为碱性,氧逸度logf(O2)<-28.5、硫逸度logf(S2)平均-8.4,毒砂温度计计算成矿温度约350℃.综合地质、地球化学特征认为,三官庙金矿床成因类型为与钠长岩相关的受断裂构造控制的岩浆热液型金矿床.  相似文献   

6.
成矿流体中金的沉淀机理研究述评   总被引:12,自引:1,他引:12  
张德会 《矿物岩石》1997,17(4):122-130
成矿流体中金的沉淀机理是金地球化学的一个重要研究领域。建立在现代实验地球化学和络合物化学等理论基础上,热液成矿流体中金的迁移形式研究已经取得很大进展。结合矿床地球化学、流体包裹体地球化学等的研究,对金的沉淀机理已提出了许多假说,如沸腾作用、不同流体的混合作用、流体不混溶作用、热液蚀变等等。一方面,受成矿地质环境的制约,不同矿床类型和不同成矿环境,金的沉淀机理可能不同;另一方面,不同沉淀机理还有各自不完善之处,需要更深入地研究。而成矿实验地球化学、计算机模拟等可以发挥重要作用。  相似文献   

7.
归来庄贫硫氧化型低温热液碲金矿床中金及碲化物矿物主要有自然金、碲金矿、碲金铜矿、碲银矿、碲金银矿、碲铅矿、碲镍矿、碲汞矿及自然碲等。金元素主要来源于泰山群山草峪组的片麻岩及寒武一奥陶系海相碳酸盐岩;碲元素主要是由铜石杂岩体的二长质、正长质等中偏碱性岩浆从地球深部的上地幔、下地壳带入矿区并进入由岩浆水及大气降水等组成的成矿热液中,与金元素形成碲金络合物进行搬迁、富集,因成矿体系的pH、Eh等物理化学  相似文献   

8.
已有研究表明,右江盆地卡林型金矿成矿期方解石具有独特的中稀土元素富集特点,但其成因还存在诸多争议。贵州泥堡金矿存在成矿期和非成矿期2种热液方解石脉,其中成矿期方解石脉多出现在矿化凝灰质细砾岩与凝灰质(粉)砂岩中,矿物组合为含砷黄铁矿+毒砂+石英+方解石;非成矿期方解石脉在未蚀变灰岩、矿化凝灰质细砾岩与凝灰质(粉)砂岩中均发育,且常穿切成矿期含硫化物方解石脉。文章通过对2种类型方解石脉开展稀土元素与碳、氧同位素、成矿期方解石脉内金属硫化物电子探针与微区原位LA-ICP-MS元素分析,发现与成矿期方解石脉共生的黄铁矿具典型的环带结构,黄铁矿环带和毒砂富Au、As、Sb、Hg、Cu、Co、Ni等元素。成矿期方解石脉显示中稀土元素富集模式和Eu正异常特征,表明金成矿流体为还原性流体,明显不同于非成矿期方解石脉的轻稀土元素富集模式和Eu负异常特征。泥堡金矿成矿期热液方解石的中稀土元素富集模式,与中国西南低温Au-Sb矿床成矿期方解石、萤石、磷灰石等矿物的稀土元素组成特征一致,酸性成矿流体的稀土元素组成可能是导致该金矿区成矿期方解石富集中稀土元素的主要原因。该区热液方解石特有的地球化学特征,使其在低温热液金矿床成矿年代学研究及深部找矿应用方面具有重要前景。  相似文献   

9.
新疆北部主要金矿床的成矿地球化学特征   总被引:15,自引:1,他引:14  
主要依据成矿作用方式,基本成矿特点及关键控矿标志等,将新疆北部的主要原生金矿新划分为7个矿床类型,分别是浅成低温热液型金矿、韧性剪切带蚀变岩型金矿、微细粒浸染型金矿、浅成岩-构造蚀变岩型金矿、变质热液型金矿、石英脉型金矿及铜、金伴生型矿床。通过分析比较各矿床类型典型金矿的REE分布型式、其矿石的微量元素含量与分布型式、硫与铅同位素组成及流体包裹体成分等资料,探讨了其成矿地球化学特征。  相似文献   

10.
王杰亭  刘争  张荣 《江苏地质》2018,42(2):228-234
爬奔金矿围岩蚀变主要有碳酸盐化、硅化、菱铁矿化。通过对各类蚀变岩进行元素地球化学特征及成矿关系分析,发现Au与Si、Fe、As、Sb、Hg呈强正相关关系,与Zn、W、Ag、Cu、Mg呈弱正相关关系,与Ca呈负相关关系。在金矿成矿过程中,碳酸盐化一方面有利于大量菱铁矿化蚀变的形成,另一方面可为金提供赋存空间;硅化、"红化"(褐铁矿化、菱铁矿化)蚀变改变成矿环境,使含矿流体酸度增大、氧逸度减小,有利于金的沉淀。  相似文献   

11.
http://www.sciencedirect.com/science/article/pii/S1674987111000430   总被引:8,自引:0,他引:8  
Mineral assemblages formed during hydrothermal alteration reflect the geochemical composition of ore-forming fluids. Gold is mainly transported in solution as AueCl and AueS complexes. The change of physicochemical conditions such as temperature, pressure, oxygen fugacity, and sulfur fugacity are effective mechanisms for gold precipitation. Gold tends to be concentrated in the vapor phase of fluids at high temperatures and pressures. AueAs and AueSb associations are common in gold deposit. Native antimony and/or arsenic e native gold assemblages may precipitate from hydrothermal fluids with low sulfur fugacity. Hydrothermal fluids forming epithermal gold deposits are Au-saturated in most cases, whereas fluids of Carlin-type are Au-undersaturated. Quasi-steady As-bearing pyrite extracts solid solution Au from hydrothermal fluids through absorption. The capability of As-bearing pyrite to absorb Au from under-saturated fluid is the key to the formation of large-scale Carlin-type deposits. With increasing new data, studies on the geochemistry of gold deposits can be used to trace the origin of ore-forming fluids, the source of gold, and the transporting form of Au and other ore-forming elements, such as Si, S, F, Cl, As and Ag.  相似文献   

12.
At Rodalquilar gold mineralization is found in Late Tertiary volcanic rocks of the Sierra del Cabo de Gata and is related to a caldera collapse. Radial and concentric faults were preferred sites for gold deposition. Hydrothermal activity produced a specific alteration zoning around gold-bearing vein structures, grading from an innermost advanced argillic via an argillic into a more regionally developed propylitic zone. Advanced argillic alteration with silica, pyrophyllite, alunite, and kaolinite extends down to several hundred m indicating a hypogene origin. High-grade gold mineralization in vein structures is confined to the near-surface part of the advanced argillic alteration. Fine-grained gold is associated with hematite, jarosite, limonite, or silica. At a depth of about 120 m, the oxidic ore assemblage grades into sulfide mineralization with pyrite and minor chalcopyrite, covellite, bornite, enargite, and tennantite. Two types of fluids from different sources were involved in the hydrothermal system. Overpressured and hypersaline fluids of presumably magmatic origin initiated the hydrothermal system. Subsequent hydrothermal processes were characterized by the influx of low-salinity solutions of probable marine origin and by interactions between both fluids. Deep-reaching, advanced argillic alteration formed from high-salinity fluids with 20–30 equiv. wt% NaCl at about 225°C. Near-surface gold precipitation and silification are related to fluids with temperatures of about 175°C and 3–4 equiv. wt% NaCl. Gold was transported as Au(HS) 2 , and precipitation resulted from boiling with a concomitant decrease in temperature, pressure, and pH and an increase in fO2. All features of the Rodalquilar gold deposit reveal a close relationship to acid-sulfate-type epithermal gold mineralization.  相似文献   

13.
王炜晓 《地质与勘探》2022,58(5):917-928
赛坝沟金矿是青海省柴北缘构造带东段重要的金矿床,矿体受NW-NNW向韧-脆性断裂构造组控制,主要赋存于奥陶系英云闪长岩中,矿化蚀变主要有硅化、黄铁矿化、绢英岩化、绿泥石化、绿帘石化和碳酸盐化等。本文在厘定赛坝沟金矿热液蚀变类型、矿物组合特征以及蚀变空间变化关系的基础上,选取Ⅳ-4主矿体在AZK3901钻孔深部见矿岩心及底板蚀变围岩进行研究,通过对蚀变岩及其原岩的地球化学分析,剖析热液蚀变作用过程与机理。研究结果表明,赛坝沟金矿床钻孔深部蚀变中,绿泥石化绿帘石化及强糜棱岩化岩石表现为主量元素K_(2)O、CaO的明显带入和Na_(2)O的带出,大离子亲石元素Pb、Ba、Sr的带出以及过渡族金属元素Bi、Co、Cr的带入;黄铁矿绢英岩化、硅化岩石中,主量元素K_(2)O、SiO_(2),大离子亲石元素Rb、Ba、Cs、Pb以及过渡族金属元素均表现出不同程度的带入;各蚀变岩石中稀土元素以及高场强元素并未表现变化,仅在近矿体处出现了轻重稀土的解耦以及高场强元素Zr元素的带入。综合研究认为,赛坝沟金矿强糜棱岩化绿泥石化英云闪长岩为强烈的韧性剪切和脆性断裂叠加改造作用的产物,对流体成矿物质的运移形成了一定的屏障,使得成矿物质大部分沉淀在硅化、绢英岩化带内,局部发育的方解石细脉与成矿晚期碳酸盐化作用相关。金的沉淀主要是由于含矿流体温度、压力的下降和氧逸度的升高,使得含矿流体与围岩强烈反应形成硅化、绢云母化,同时伴随成矿流体pH值的增大和H^(+)的减少,热液中含硫组分与Fe元素发生反应形成黄铁矿等硫化物,破坏了含金络合物的稳定性,导致金的大量沉淀。  相似文献   

14.
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   

15.
Abstract. The Rodnikovoe gold deposit situated in a presently active hydrothermal system located north of the Mutnovsko-Asachinskaya geothermal area in southern Kamchatka, Far Eastern Russia, consists of typical low-sulfidation quartz-adularia veins in a host rock of diorite. The age of the mineralization was dated by the K-Ar method as 0.9 to 1.1 Ma based on adular-ia collected from the veins. Representative ore minerals in the deposit are electrum, argentite, aguilarite, polybasite, pearceite and lenaite. Dominant alteration minerals are adularia, α-cristobalite, chlorite, illite and kaolinite. Hydrothermal solutions of neutral pH were responsible for the mineralization, which is divided into six stages defined by tectonic boundaries. Gold mineralization occurred in stages I and III. Hydrothermal brecciation occurred during stages III, IV and VI. Stages II, IV, V and VI were barren. The estimated ore formation temperature based on a fluid inclusion study is 150 to 250 °C at a depth of approximately 170 m below the paleo-water table. Boiling of hydrothermal fluids is hypothesized as the cause of the intermittent deposition of gold ore. The sulfur and oxygen fugacities during the deposition of anhydrite prior to the hydrothermal brecciation were higher than those during the gold mineralization stages. The occurrence in the hydrothermal breccia of fragments of high grade Au-Ag and polymetallic ores suggests that higher grade mineralization of these metal ores might have occurred in a deeper portion of the deposit.  相似文献   

16.
Agawa gold prospect, located in Yamaguchi Prefecture, southwestern Japan, is a small prospect, where placer gold has been explored and mined since the 17th century. We investigated the prospect to clarify the genesis of the deposit based on the geology, hydrothermal alteration, geochronology, and ore mineralogy. The main mineralized zone of the prospect has a horizontal and vertical extensions of 500 m and 100 m, respectively, and a width of less than 100 m. Gold mineralization in the prospect occurs as dissemination and stockwork veinlets in the intensely sericitized rocks at the apical part of the Agawa dioritic porphyry intrusion at 86.5–88.5 Ma. Mineralization is typified by at least three stages – an early stage characterized by the occurrence of pyrrhotite and native gold; a middle stage by chalcopyrite; and a late stage by pyrite–bornite. Mineral assemblage and fluid inclusion microthermometry estimation suggest a trend of decreasing temperatures from 400°C to 160°C at a constant sulfur fugacity. The mineralizing fluids formed by the mixing of a hypogene fluid of possibly magmatic origin with an external lower‐temperature and lower‐salinity fluid. The mixing process decreased the temperature and salinity of the fluid, resulting in the precipitation of sulfides, native gold and Bi–Te alloys and sulfosalts. The magnetite‐series signature of the Agawa porphyry and related molybdenite‐bearing mineralization indicate that the plutonism of the San‐in granitoids belt extends to the westernmost end of the Honshu Island. The compiled geochronology and distribution of the metallic deposits in the southwestern Japan arc show that transition from ilmenite‐series to magnetite‐series plutonism started earlier in the west, and shifted eastwards with time during the period from Late Cretaceous to Paleogene.  相似文献   

17.
Hydrothermal alteration related to Sb-Au mineralization is widespread in the Variscan Armorican Massif, but mineral replacement reactions are not well characterized, in particular the hydrothermal breakdown of ilmenite-titanohematite. Based on petrography, electron probe micro-analyzer and laser ablation-inductively coupled plasma-mass spectrometer analyses, we document mineralogical change at rock- and mineral-scale and the redistribution of Sb and others trace elements during the recrystallization of ilmenite-titanohematite to hydrothermal rutile. Hydrothermal alteration is mainly potassic with associated carbonation. The replacement mechanism is interpreted to be an interface-coupled dissolution-reprecipitation process. Results show that Mn, Zn, Co, Ni, Sn, Mo and U are released during hydrothermal alteration, whereas Sb and W are incorporated in newly-formed hydrothermal rutile from the hydrothermal fluid. Furthermore, the concentration of Sb evolves through time suggesting a change in fluid composition likely related to an enrichment of fluid in Sb during rutile crystallization. Considering that Fe-Ti oxides breakdown during hydrothermal alteration is common within epithermal and mesothermal/orogenic Au-Sb mineralizing systems, results report in this study yield important constraints about metal mobility and exchanges in hydrothermal gold systems.  相似文献   

18.
赛盛勋  邱昆峰 《岩石学报》2020,36(5):1547-1566
位于胶东东部苏鲁地体内的乳山金矿曾是我国单脉金储量最大的矿床,其主矿脉为一具有复杂内部结构的富金石英脉,形成于包含周期性流体活动的增量增长过程。该矿床成矿流体演化、精细成矿过程和金沉淀机制仍缺乏有效制约。本研究在详细结构构造观察基础上,在代表单次成矿流体活动的同一石英层内识别出分别代表三个连续成矿阶段的三类黄铁矿,开展激光剥蚀-电感耦合等离子质谱原位微量元素测试。结果显示不同阶段黄铁矿微量元素成分基本一致,Co、Ni、As等元素因成矿流体间歇性压力波动而周期性地以不同含量进入黄铁矿,形成这些元素的韵律成分环带。Au等其他微量元素在不同阶段黄铁矿内均匀分布,其分布行为受压力波动影响较小。间歇性压力波动和由此引发的周期性流体不混溶使乳白色粗粒石英和黄铁矿、烟灰色中细粒他形石英和黄铁矿依次大规模沉淀,金银碲化物、银金矿、自然金和方铅矿、闪锌矿、黄铜矿等硫化物随后在愈加富Au、Ag、Te、Pb、Zn和Cu等的流体中近于同时沉淀。在此过程中成矿流体虽整体表现为还原性,但其还原性随着压力波动而不断递减氧化性持续增加;流体碲逸度早期保持稳定,后期则大幅上升。金以可见金形式充填先成黄铁矿裂隙或沿黄铁矿边缘分布,周期性流体压力波动引发的间歇性流体不混溶导致H_2S、CO_2和CH_4等气体大规模逸出,金硫络合物失稳分解,金被吸附至黄铁矿内水力致裂形成的裂隙面发生沉淀。排除了先成黄铁矿内不可见金再活化为可见金的可能性,认为周期性流体压力波动引起的流体不混溶是引发乳山金矿床可见金高效沉淀的关键机制。  相似文献   

19.
金矿成矿流体的来源是金矿床成因研究的重要内容.对传统的成矿流体认识进行了评述,强调了渗滤热液在金成矿中的作用.金沉淀的机制除流体温、压的降低外,流体的混合作用及流体与围岩的反应是更为重要的因素.  相似文献   

20.
西秦岭凤太矿集区丝毛岭金矿床地质地球化学特征   总被引:1,自引:0,他引:1  
西秦岭凤太矿集区丝毛岭金矿床位于八卦庙造山型金矿床西侧5km左右,是一个新探明的剪切带型金矿。其成矿作用过程可分为早期石英-绢云母-硫化物阶段、中期多金属-硫化物阶段和晚期碳酸盐阶段。对早、中期的石英流体包裹体测试结果表明,丝毛岭金矿床成矿流体以富CO2、中温、低盐度为特征,总体上属于中温低盐度CO2-H2O体系,流体包裹体类型的多样性是流体不混溶性的产物。从早阶段到主成矿阶段成矿流体的温度、压力和盐度均有降低,硫逸度增高,有利于金的沉淀富集。H、O、S、C同位素研究结果,以及与八卦庙金矿床的对比分析表明,二者的成矿流体具有相似性和同源性,都是以深部来源为主的多源流体。由于丝毛岭金矿床产出的层位高于八卦庙金矿床,其成矿环境相对开放。  相似文献   

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